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List of citations analyzed in content published by the French company Thérapie Autisme

List of scientific citations included in the audit, together with their final concordance score category and verification status.

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127 citations

Citation #60

Bibliographic concordance score: 61.4/100 (partial correspondence)
View record

Cited reference

Smith, R., & Lane, R. D. (2015). The neural basis of one’s own and others’ emotions. Cortex, 73, 314-328.

Best automated candidate

No validated match

Smith, Ryan; Lane, Richard D. (2015). The neural basis of one's own conscious and unconscious emotional states. Neuroscience & Biobehavioral Reviews. https://doi.org/10.1016/j.neubiorev.2015.08.003

Source: Tool bibliography Published on: 25 Jun 2025

Citation #67

Bibliographic concordance score: 40.3/100 (low correspondence)
View record

Cited reference

Beaudoin, C., & Beauchamp, M. H. (2020). Social cognition in autism: Typology and neural mechanisms. Neuroscience & Biobehavioral Reviews, 118, 338-360

Best automated candidate

No validated match

Beaudoin-Ryan, Leanne (2020). Social Development Theory in Media Research. The International Encyclopedia of Media Psychology. https://doi.org/10.1002/9781119011071.iemp0163

Source: Tool bibliography Published on: 25 Jun 2025

Citation #71

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Livingston, L. A., Carr, B. V., Shah, P., & Happé, F. (2021). Do neurotypical observers like or dislike autistic behaviour? A qualitative investigation of first impressions. Autism, 25(6), 1621-1631

Best automated candidate

No validated match

Y Steele (2024). First Impressions of Autistic People in the Criminal Justice System. https://doi.org/google scholar

Source: Tool bibliography Published on: 25 Jun 2025

Citation #74

Bibliographic concordance score: 30/100 (low correspondence)
View record

Cited reference

McPartland, J. C., Bernier, R. A., & Jeste, S. S. (2021). Autism Biomarkers Consortium for Clinical Trials: Multisite studies of early development in ASD. Biological Psychiatry, 89(5), 411-420

Best automated candidate

No validated match

Hamo, Ester; McPartland, James C. (2022). Autism Biomarkers Consortium for Clinical Trials. Textbook of Autism Spectrum Disorders, Second Edition. https://doi.org/10.1176/appi.books.9781615379521.lg44

Source: Tool bibliography Published on: 25 Jun 2025

Citation #173

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Lai, M.-C., Lombardo, M. V., Ruigrok, A. N. V. et al. (2017). Quantifying and exploring camouflaging in men and women with autism. Nature Communications.

Best automated candidate

Ambiguous match

MC Lai; MV Lombardo; ANV Ruigrok (2017). Quantifying and exploring camouflaging in men and women with autism. Autism, Crossref+PubMed, Crossref+PubMed. https://doi.org/10.1177/1362361316671012

Source: Blog Published on: 6 Jun 2025

Citation #176

Bibliographic concordance score: 12.5/100 (very low correspondence)
View record

Cited reference

Canto, J. G. et al. (2000). The Paradoxical Gender Differences in Mortality in Patients With Acute Myocardial Infarction. New England Journal of Medicine.

Best automated candidate

No validated match

Vaccarino, Viola; Parsons, Lori; Peterson, Eric D. (2009). Sex Differences in Mortality After Acute Myocardial Infarction. Archives of Internal Medicine. https://doi.org/10.1001/archinternmed.2009.332

Source: Blog Published on: 6 Jun 2025

Citation #186

Bibliographic concordance score: 27.8/100 (very low correspondence)
View record

Cited reference

Piwowarczyk, A. et al. (2020). Dietary interventions in autism spectrum disorders: A critical review. Nutrients.

Best automated candidate

No validated match

Piwowarczyk, Anna; Horvath, Andrea; Lukasik, Jan (2018). Gluten- and casein-free diet and autism spectrum disorders in children: a systematic review. European Journal of Nutrition. https://doi.org/10.1007/s00394-017-1483-2

Source: Blog Published on: 19 Jun 2025

Citation #187

Bibliographic concordance score: 53.3/100 (low correspondence)
View record

Cited reference

Sanctuary, M. R. et al. (2019). Probiotic and gut microbiome modulation in ASD: Focus on inflammation and immunity. Seminars in Pediatric Neurology.

Best automated candidate

No validated match

Sanctuary, Megan R.; Kain, Jennifer N.; Chen, Shin Yu (2019). Pilot study of probiotic/colostrum supplementation on gut function in children with autism and gastrointestinal symptoms. PLOS ONE. https://doi.org/10.1371/journal.pone.0210064

Source: Blog Published on: 19 Jun 2025

Citation #190

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Lai, M.-C., Lombardo, M. V., Ruigrok, A. N. V., et al. (2017). Quantifying and exploring camouflaging in men and women with autism. Nature Communications.

Best automated candidate

Ambiguous match

MC Lai; MV Lombardo; ANV Ruigrok (2017). Quantifying and exploring camouflaging in men and women with autism. Autism, Crossref+PubMed, Crossref+PubMed. https://doi.org/10.1177/1362361316671012

Source: Blog Published on: 23 Jun 2025

Citation #192

Bibliographic concordance score: 36.1/100 (low correspondence)
View record

Cited reference

Baron-Cohen, S. (2004). The empathizing-systemizing theory of sex differences and the extreme male brain theory of autism. Trends in Cognitive Sciences.

Best automated candidate

No validated match

Baron-Cohen, Simon (2010). Empathizing, systemizing, and the extreme male brain theory of autism. Progress in Brain Research. https://doi.org/10.1016/b978-0-444-53630-3.00011-7

Source: Blog Published on: 23 Jun 2025

Citation #197

Bibliographic concordance score: 12.5/100 (very low correspondence)
View record

Cited reference

Higgins, J. M., Arnold, S. R. C., & Weise, J. (2021). "Autistic burnout: An identity-based conceptual model". Autism in Adulthood.

Best automated candidate

No validated match

Arnold, Samuel RC; Higgins, Julianne M; Weise, Janelle (2023). Towards the measurement of autistic burnout. Autism. https://doi.org/10.1177/13623613221147401

Source: Blog Published on: 3 Jul 2025

Citation #198

Bibliographic concordance score: 38.3/100 (low correspondence)
View record

Cited reference

Mantzalas, J., Richdale, A. L., & Adams, D. (2022). "Autistic burnout, depression and anxiety in autism: A cross-sectional study". Journal of Autism and Developmental Disorders.

Best automated candidate

No validated match

Mantzalas, Jane; Richdale, Amanda L.; Dissanayake, Cheryl (2023). Examining subjective understandings of autistic burnout using Q methodology: A study protocol. PLOS ONE. https://doi.org/10.1371/journal.pone.0285578

Source: Blog Published on: 3 Jul 2025

Citation #199

Bibliographic concordance score: 37.5/100 (low correspondence)
View record

Cited reference

South, M. et al. (2012). "Neuropsychological Functioning in Autism Spectrum Disorders". Neuropsychology Review.

Best automated candidate

No validated match

Antonio Narzisi; Filippo Muratori; Sara Calderoni (2012). Neuropsychological Profile in High Functioning Autism Spectrum Disorders. Journal of Autism and Developmental Disorders. https://doi.org/10.1007/s10803-012-1736-0

Source: Blog Published on: 7 Jul 2025

Citation #200

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Neuhaus, E. et al. (2014). "Impaired Social and Emotional Processing in Autism". Journal of Autism and Developmental Disorders.

Best automated candidate

No validated match

Velasquez, Francisco; Qin, Xiaoyan Angela; Reilly, Melissa A. (2017). Neural correlates of emotional inhibitory control in autism spectrum disorders. Research in Developmental Disabilities. https://doi.org/10.1016/j.ridd.2017.03.008

Source: Blog Published on: 7 Jul 2025

Citation #206

Bibliographic concordance score: 34.4/100 (low correspondence)
View record

Cited reference

Khalfa, S., Bruneau, N., Rogé, B., Georgieff, N., Veuillet, E., Adrien, J. L.,... & Collet, L. (2004). Peripheral auditory asymmetry in autism: a comparison with specific language impairment. Journal of Autism and Developmental Disorders, 34(6), 715-723.

Best automated candidate

No validated match

Khalfa, S.; Bruneau, N.; Rogé, B. (2001). Peripheral auditory asymmetry in infantile autism. European Journal of Neuroscience. https://doi.org/10.1046/j.1460-9568.2001.01423.x

Source: Blog Published on: 22 Aug 2025

Citation #210

Bibliographic concordance score: 22.5/100 (very low correspondence)
View record

Cited reference

Browning, J. et al. (2022). Autistic adults’ experiences of anxiety in daily life. Autism.

Best automated candidate

No validated match

Moody, Myles D.; Browning, Wesley R.; Hossain, Monir (2023). Vicarious experiences of major discrimination, anxiety symptoms, and mental health care utilization among Black Adults. Social Science & Medicine. https://doi.org/10.1016/j.socscimed.2022.114997

Source: Blog Published on: 9 Sep 2025

Citation #212

Bibliographic concordance score: 34.2/100 (low correspondence)
View record

Cited reference

Kerns, C. M. et al. (2014). The prevalence and correlates of anxiety disorders in youth with autism spectrum disorders. Journal of Autism and Developmental Disorders.

Best automated candidate

Ambiguous match

Roma A. Vasa; Luther G. Kalb; Micah O. Mazurek (2013). Age-related differences in the prevalence and correlates of anxiety in youth with autism spectrum disorders. Research in autism spectrum disorders. https://doi.org/10.1016/j.rasd.2013.07.005

Source: Blog Published on: 9 Sep 2025

Citation #214

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

McCann, J., & Peppe, S. (2003). Prosody in autism spectrum disorders. Journal of Neurolinguistics.

Best automated candidate

Ambiguous match

J McCann; S Peppé (2003). Prosody in autism spectrum disorders: a critical review. International Journal of Language & Communication Disorders. https://doi.org/10.1080/1368282031000154204

Source: Blog Published on: 9 Sep 2025

Citation #215

Bibliographic concordance score: 27.1/100 (very low correspondence)
View record

Cited reference

Paolieri, D. et al. (2019). Conversational timing in autism: Delays in turn-taking. Frontiers in Psychology.

Best automated candidate

No validated match

Paolieri, Marco; Quinones, Eduardo; Cazorla, Francisco J. (2013). Timing effects of DDR memory systems in hard real-time multicore architectures. ACM Transactions on Embedded Computing Systems. https://doi.org/10.1145/2435227.2435260

Source: Blog Published on: 9 Sep 2025

Citation #220

Bibliographic concordance score: 12.5/100 (very low correspondence)
View record

Cited reference

Grabe, H. J. et al. (2004). Alexithymia and mental health. Psychopathology.

Best automated candidate

No validated match

Rakesh Pandey; Prachi Saxena; Akanksha Dubey (2011). Emotion regulation difficulties in alexithymia and mental health. Europe’s Journal of Psychology. https://doi.org/10.5964/ejop.v7i4.155

Source: Blog Published on: 17 Sep 2025

Citation #221

Bibliographic concordance score: 55/100 (low correspondence)
View record

Cited reference

Herbert, B. M. et al. (2011). Interoceptive sensitivity and insular cortex activity in alexithymia. Biological Psychology.

Best automated candidate

No validated match

BM Herbert; C Herbert; O Pollatos (2011). On the relationship between interoceptive awareness and alexithymia: is interoceptive awareness related to emotional awareness?. Journal of personality. https://doi.org/10.1111/j.1467-6494.2011.00717.x

Source: Blog Published on: 17 Sep 2025

Citation #222

Bibliographic concordance score: 30.6/100 (low correspondence)
View record

Cited reference

Moreno-Lopez, L. et al. (2016). Brain structural correlates of alexithymia in autism spectrum disorder. NeuroImage: Clinical.

Best automated candidate

No validated match

Moreno, Antonio; Limousin, Fanny; Dehaene, Stanislas (2018). Brain correlates of constituent structure in sign language comprehension. NeuroImage. https://doi.org/10.1016/j.neuroimage.2017.11.040

Source: Blog Published on: 17 Sep 2025

Citation #228

Bibliographic concordance score: 35.7/100 (low correspondence)
View record

Cited reference

Crompton, C. J., et al. (2020). The double empathy problem: A theory of autistic-neurotypical interaction. Autism, 24(6), 1276-1278.

Best automated candidate

No validated match

Crompton, Catherine J. (2026). Autism diagnosis and the double empathy problem. The British Journal of Psychiatry. https://doi.org/10.1192/bjp.2025.10478

Source: Blog Published on: 6 Oct 2025

Citation #251

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Ypma, R. J. F., et al. (2020). Different brain network organization in adults with autism spectrum disorder: A resting-state fMRI study. Nature Communications, 11(1), 4768.

Best automated candidate

No validated match

N Yoon; Y Huh; H Lee (2022). Alterations in social brain network topology at rest in children with autism spectrum disorder. Psychiatry. https://doi.org/google scholar

Source: Study Published on: 13 Nov 2025

Citation #252

Bibliographic concordance score: 25.2/100 (very low correspondence)
View record

Cited reference

Chen, H., et al. (2020). Disrupted salience network connectivity in adults with autism spectrum disorder: Insights from ABIDE-II. Cerebral Cortex, 30(9), 4725-4738.

Best automated candidate

No validated match

Gong, JiaYing; Chen, Guanmao; Jia, Yanbin (2019). Disrupted functional connectivity within the default mode network and salience network in unmedicated bipolar II disorder. Progress in Neuro-Psychopharmacology and Biological Psychiatry. https://doi.org/10.1016/j.pnpbp.2018.06.012

Source: Study Published on: 13 Nov 2025

Citation #255

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Simmonite, M., et al. (2021). Microstructural integrity of salience network tracts in adults with autism spectrum disorder. NeuroImage: Clinical, 32, 102839.

Best automated candidate

No validated match

Luo, Qiang; Pan, Baobao; Gu, Huaguang (2020). Effective connectivity of the right anterior insula in schizophrenia: The salience network and task-negative to task-positive transition. NeuroImage: Clinical. https://doi.org/10.1016/j.nicl.2020.102377

Source: Study Published on: 13 Nov 2025

Citation #257

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Ypma, R. J. F., et al. (2020). Different brain network organization in adults with autism spectrum disorder: A resting-state fMRI study. Nature Communications, 11(1), 4768.

Best automated candidate

No validated match

N Yoon; Y Huh; H Lee (2022). Alterations in social brain network topology at rest in children with autism spectrum disorder. Psychiatry. https://doi.org/google scholar

Source: Study Published on: 13 Nov 2025

Citation #261

Bibliographic concordance score: 63.6/100 (partial correspondence)
View record

Cited reference

Ecker, C., et al. (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their neurodevelopmental implications. Neuroscience & Biobehavioral Reviews, 83, 70-89.

Best automated candidate

No validated match

Ecker, Christine (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their translatability to the clinical setting. Autism. https://doi.org/10.1177/1362361315627136

Source: Study Published on: 13 Nov 2025

Citation #265

Bibliographic concordance score: 33.3/100 (low correspondence)
View record

Cited reference

Woodward, N. D., Cascio, C. J., & Haist, F. (2017). Thalamocortical dysconnectivity in autism spectrum disorder: Evidence from resting-state fMRI and DTI. Human Brain Mapping, 38(2), 1090-1105.

Best automated candidate

No validated match

Giraldo-Chica, Monica; Woodward, Neil D. (2017). Review of thalamocortical resting-state fMRI studies in schizophrenia. Schizophrenia Research. https://doi.org/10.1016/j.schres.2016.08.005

Source: Study Published on: 13 Nov 2025

Citation #266

Bibliographic concordance score: 26.7/100 (very low correspondence)
View record

Cited reference

Zhao, L., et al. (2020). Differential thalamocortical microstructure and sensory processing in adults with autism spectrum disorder. Cerebral Cortex, 30(11), 5962-5975.

Best automated candidate

No validated match

Zhao, Shuo; Uono, Shota; Yoshimura, Sayaka (2018). A functional but atypical self: Influence of self-relevant processing on the gaze cueing effect in autism spectrum disorder. Autism Research. https://doi.org/10.1002/aur.2019

Source: Study Published on: 13 Nov 2025

Citation #268

Bibliographic concordance score: 63.6/100 (partial correspondence)
View record

Cited reference

Ecker, C., et al. (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their neurodevelopmental implications. Neuroscience & Biobehavioral Reviews, 83, 70-89.

Best automated candidate

No validated match

Ecker, Christine (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their translatability to the clinical setting. Autism. https://doi.org/10.1177/1362361315627136

Source: Study Published on: 13 Nov 2025

Citation #269

Bibliographic concordance score: 63.6/100 (partial correspondence)
View record

Cited reference

Ecker, C., et al. (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their neurodevelopmental implications. Neuroscience & Biobehavioral Reviews, 83, 70-89.

Best automated candidate

No validated match

Ecker, Christine (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their translatability to the clinical setting. Autism. https://doi.org/10.1177/1362361315627136

Source: Study Published on: 13 Nov 2025

Citation #270

Bibliographic concordance score: 2.3/100 (very low correspondence)
View record

Cited reference

Haigh, S. M., Heeger, D. J., & Minshew, N. J. (2022). Longitudinal associations between frontoparietal connectivity and cognitive rigidity in autism spectrum disorder. NeuroImage: Clinical, 36, 103217.

Best automated candidate

No validated match

Beck, Aaron T.; Haigh, Emily A.P. (2014). Advances in Cognitive Theory and Therapy: The Generic Cognitive Model. Annual Review of Clinical Psychology. https://doi.org/10.1146/annurev-clinpsy-032813-153734

Source: Study Published on: 13 Nov 2025

Citation #272

Bibliographic concordance score: 31.2/100 (low correspondence)
View record

Cited reference

Keown, C. L., Shih, P., Nair, A., Peterson, N., Mulvey, M. E., & Müller, R. -A. (2017). Local functional overconnectivity in fronto-parietal control networks in autism. Brain, 140(7), 2051-2066.

Best automated candidate

No validated match

Keown, Christopher Lee; Shih, Patricia; Nair, Aarti (2013). Local Functional Overconnectivity in Posterior Brain Regions Is Associated with Symptom Severity in Autism Spectrum Disorders. Cell Reports. https://doi.org/10.1016/j.celrep.2013.10.003

Source: Study Published on: 13 Nov 2025

Citation #274

Bibliographic concordance score: 7.2/100 (very low correspondence)
View record

Cited reference

Sato, J. R., et al. (2019). Fronto-parietal dysconnectivity in adults with autism spectrum disorder: A meta-analytic review of resting-state fMRI studies. Cortex, 119, 479-495.

Best automated candidate

No validated match

Macêdo, Marcos Antônio; Sato, Joao Ricardo; Bressan, Rodrigo A. (2022). Adolescent depression and resting-state fMRI brain networks: a scoping review of longitudinal studies. Brazilian Journal of Psychiatry. https://doi.org/10.47626/1516-4446-2021-2032

Source: Study Published on: 13 Nov 2025

Citation #275

Bibliographic concordance score: 13.3/100 (very low correspondence)
View record

Cited reference

Schmitz, N., Rubia, K., Daly, E., Smith, A., & Murphy, D. G. M. (2020). Neural correlates of cognitive flexibility and rigidity in adults with autism spectrum disorder. Human Brain Mapping, 41(4), 981-992.

Best automated candidate

No validated match

Schmitz, Florian; Krämer, Raimund J. (2023). Task Switching: On the Relation of Cognitive Flexibility with Cognitive Capacity. Journal of Intelligence. https://doi.org/10.3390/jintelligence11040068

Source: Study Published on: 13 Nov 2025

Citation #276

Bibliographic concordance score: 57.5/100 (low correspondence)
View record

Cited reference

Uddin, L. Q. (2021). Cognitive and neural flexibility in autism spectrum disorder: Implications for neurobiological models. Current Opinion in Behavioral Sciences, 38, 73-81.

Best automated candidate

No validated match

Uddin, Lucina Q. (2021). Cognitive and behavioural flexibility: neural mechanisms and clinical considerations. Nature Reviews Neuroscience. https://doi.org/10.1038/s41583-021-00428-w

Source: Study Published on: 13 Nov 2025

Citation #278

Bibliographic concordance score: 63.6/100 (partial correspondence)
View record

Cited reference

Ecker, C., et al. (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their neurodevelopmental implications. Neuroscience & Biobehavioral Reviews, 83, 70-89.

Best automated candidate

No validated match

Ecker, Christine (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their translatability to the clinical setting. Autism. https://doi.org/10.1177/1362361315627136

Source: Study Published on: 13 Nov 2025

Citation #279

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Lombardo, M. V., Chakrabarti, B., Bullmore, E. T., & Baron-Cohen, S. (2010). Atypical neural self-representation in autism. Brain, 133(2), 611-624.

Best automated candidate

Ambiguous match

Lombardo MV; Chakrabarti B; Bullmore ET (2010). Atypical neural self-representation in autism. Brain: a journal of neurology, Crossref+PubMed, Crossref+PubMed. https://doi.org/10.1093/brain/awp306

Source: Study Published on: 13 Nov 2025

Citation #283

Bibliographic concordance score: 34.6/100 (low correspondence)
View record

Cited reference

Weng, S. -J., et al. (2022). Dynamic functional connectivity of the default mode network in adults with autism spectrum disorder. Human Brain Mapping, 43(7), 2134-2149.

Best automated candidate

No validated match

Weng, Jun Cheng; Wang, Natalie Y; Jui Li, Cheng (2018). Resting-State Functional Connectivity within Default Mode Network in Chinese-speaking Children with Specific Learning Disabilities. Neuropsychiatry. https://doi.org/10.4172/neuropsychiatry.1000414

Source: Study Published on: 13 Nov 2025

Citation #284

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Ypma, R. J. F., et al. (2020). Different brain network organization in adults with autism spectrum disorder: A resting-state fMRI study. Nature Communications, 11(1), 4768.

Best automated candidate

No validated match

N Yoon; Y Huh; H Lee (2022). Alterations in social brain network topology at rest in children with autism spectrum disorder. Psychiatry. https://doi.org/google scholar

Source: Study Published on: 13 Nov 2025

Citation #287

Bibliographic concordance score: 63.6/100 (partial correspondence)
View record

Cited reference

Ecker, C., et al. (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their neurodevelopmental implications. Neuroscience & Biobehavioral Reviews, 83, 70-89.

Best automated candidate

No validated match

Ecker, Christine (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their translatability to the clinical setting. Autism. https://doi.org/10.1177/1362361315627136

Source: Study Published on: 13 Nov 2025

Citation #288

Bibliographic concordance score: 62.5/100 (partial correspondence)
View record

Cited reference

Fishman, I., Linke, A. C., Hau, J., Carper, R. A., Müller, R. -A. (2018). Atypical functional connectivity of the amygdala in children and adults with autism spectrum disorders. NeuroImage: Clinical, 18, 650-659.

Best automated candidate

No validated match

Fishman, Inna; Linke, Annika C.; Hau, Janice (2018). Atypical Functional Connectivity of Amygdala Related to Reduced Symptom Severity in Children With Autism. Journal of the American Academy of Child & Adolescent Psychiatry. https://doi.org/10.1016/j.jaac.2018.06.015

Source: Study Published on: 13 Nov 2025

Citation #292

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Salmond, C. H., Vargha-Khadem, F., Gadian, D. G., de Haan, M., & Baldeweg, T. (2020). Memory generalization and hippocampal structure in adults with autism. Hippocampus, 30(12), 1231-1243.

Best automated candidate

No validated match

J Long; H Li; Y Liu (2024). Insights into the structure and function of the hippocampus: implications for the pathophysiology and treatment of autism spectrum disorder. Frontiers in. https://doi.org/10.3389/fpsyt.2024.1364858/full

Source: Study Published on: 13 Nov 2025

Citation #294

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Yu, H., et al. (2019). Reduced amygdala and hippocampal volumes in adults with autism spectrum disorder: A voxel-based meta-analysis. Progress in Neuro-Psychopharmacology & Biological Psychiatry, 93, 75-84.

Best automated candidate

No validated match

Y Chen; X Zheng; M Wen (2021). The volume alterations of the amygdala in autism spectrum disorder: a meta-analysis on MRI study. https://doi.org/google scholar

Source: Study Published on: 13 Nov 2025

Citation #295

Bibliographic concordance score: 29.2/100 (very low correspondence)
View record

Cited reference

Zhao, L., et al. (2022). Limbic network dysconnectivity and memory overgeneralization in adults with autism spectrum disorder. Cerebral Cortex, 32(9), 1846-1859.

Best automated candidate

No validated match

Cai, Yun; Zhao, Jinghui; Wang, Lian (2022). Altered topological properties of white matter structural network in adults with autism spectrum disorder. Asian Journal of Psychiatry. https://doi.org/10.1016/j.ajp.2022.103211

Source: Study Published on: 13 Nov 2025

Citation #296

Bibliographic concordance score: 67.8/100 (partial correspondence)
View record

Cited reference

Courchesne, E., Mouton, P. R., Calhoun, M. E., Semendeferi, K., Ahrens-Barbeau, C., Hallet, M. J., Barnes, C. C., & Pierce, K. (2011). Neuron number and size in prefrontal cortex and cerebellum in autism. Neuron, 70(5), 905-918.

Best automated candidate

Ambiguous match

Courchesne, Eric; Mouton, Peter R.; Calhoun, Michael E. (2011). Neuron Number and Size in Prefrontal Cortex of Children With Autism. JAMA. https://doi.org/10.1001/jama.2011.1638

Source: Study Published on: 13 Nov 2025

Citation #298

Bibliographic concordance score: 24.3/100 (very low correspondence)
View record

Cited reference

D’Mello, A. M., Moore, D. M., Crocetti, D., & Stoodley, C. J. (2016). Cerebellar grey matter and cognitive flexibility in adults with autism spectrum disorder. NeuroImage: Clinical, 10, 38-49.

Best automated candidate

No validated match

Moore, Dorothea M.; D’Mello, Anila M.; McGrath, Lauren M. (2017). The developmental relationship between specific cognitive domains and grey matter in the cerebellum. Developmental Cognitive Neuroscience. https://doi.org/10.1016/j.dcn.2016.12.001

Source: Study Published on: 13 Nov 2025

Citation #299

Bibliographic concordance score: 52.8/100 (low correspondence)
View record

Cited reference

Larsen, B., et al. (2021). Structural cerebellar differences in adults with autism: Evidence from multi-site morphometric analysis. Cerebellum, 20(2), 207-220.

Best automated candidate

No validated match

Larsen, Hannah; Budka, Marcin; Bennett, Matthew R. (2021). Technological innovation in the recovery and analysis of 3D forensic footwear evidence: Structure from motion (SfM) photogrammetry. Science & Justice. https://doi.org/10.1016/j.scijus.2021.04.003

Source: Study Published on: 13 Nov 2025

Citation #304

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Stoodley, C. J. (2016). The cerebellum and neurodevelopmental disorders. Handbook of Clinical Neurology, 155, 125-144.

Best automated candidate

Ambiguous match

Stoodley CJ; Crossref+PubMed; Crossref+PubMed (2016). The Cerebellum and Neurodevelopmental Disorders. Cerebellum (London, England), Crossref+PubMed, Crossref+PubMed. https://doi.org/10.1007/s12311-015-0715-3

Source: Study Published on: 13 Nov 2025

Citation #305

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Wang, S. S., et al. (2019). Altered cerebello-prefrontal connectivity in adults with autism spectrum disorder: Implications for predictive processing. NeuroImage: Clinical, 24, 102011.

Best automated candidate

No validated match

Dai, Zhen; Yang, Lan; Li, Zhifeng (2026). Altered Higher-Order Structural and Functional Connectivity Coupling in Autism Spectrum Disorder. Journal of Autism and Developmental Disorders. https://doi.org/10.1007/s10803-026-07259-7

Source: Study Published on: 13 Nov 2025

Citation #311

Bibliographic concordance score: 57.5/100 (low correspondence)
View record

Cited reference

Uddin, L. Q. (2021). Cognitive and neural flexibility in autism spectrum disorder: Implications for neurobiological models. Current Opinion in Behavioral Sciences, 38, 73-81.

Best automated candidate

No validated match

Uddin, Lucina Q. (2021). Cognitive and behavioural flexibility: neural mechanisms and clinical considerations. Nature Reviews Neuroscience. https://doi.org/10.1038/s41583-021-00428-w

Source: Study Published on: 13 Nov 2025

Citation #312

Bibliographic concordance score: 63.6/100 (partial correspondence)
View record

Cited reference

Ecker, C., et al. (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their neurodevelopmental implications. Neuroscience & Biobehavioral Reviews, 83, 70-89.

Best automated candidate

No validated match

Ecker, Christine (2017). The neuroanatomy of autism spectrum disorder: An overview of structural neuroimaging findings and their translatability to the clinical setting. Autism. https://doi.org/10.1177/1362361315627136

Source: Study Published on: 13 Nov 2025

Citation #317

Bibliographic concordance score: 2.3/100 (very low correspondence)
View record

Cited reference

Haigh, S. M., Heeger, D. J., & Minshew, N. J. (2022). Longitudinal associations between frontoparietal connectivity and cognitive rigidity in autism spectrum disorder. NeuroImage: Clinical, 36, 103217.

Best automated candidate

No validated match

Beck, Aaron T.; Haigh, Emily A.P. (2014). Advances in Cognitive Theory and Therapy: The Generic Cognitive Model. Annual Review of Clinical Psychology. https://doi.org/10.1146/annurev-clinpsy-032813-153734

Source: Study Published on: 13 Nov 2025

Citation #321

Bibliographic concordance score: 7.2/100 (very low correspondence)
View record

Cited reference

Sato, J. R., et al. (2019). Fronto-parietal dysconnectivity in adults with autism spectrum disorder: A meta-analytic review of resting-state fMRI studies. Cortex, 119, 479-495.

Best automated candidate

No validated match

Macêdo, Marcos Antônio; Sato, Joao Ricardo; Bressan, Rodrigo A. (2022). Adolescent depression and resting-state fMRI brain networks: a scoping review of longitudinal studies. Brazilian Journal of Psychiatry. https://doi.org/10.47626/1516-4446-2021-2032

Source: Study Published on: 13 Nov 2025

Citation #323

Bibliographic concordance score: 57.5/100 (low correspondence)
View record

Cited reference

Uddin, L. Q. (2021). Cognitive and neural flexibility in autism spectrum disorder: Implications for neurobiological models. Current Opinion in Behavioral Sciences, 38, 73-81.

Best automated candidate

No validated match

Uddin, Lucina Q. (2021). Cognitive and behavioural flexibility: neural mechanisms and clinical considerations. Nature Reviews Neuroscience. https://doi.org/10.1038/s41583-021-00428-w

Source: Study Published on: 13 Nov 2025

Citation #324

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Ypma, R. J. F., et al. (2020). Different brain network organization in adults with autism spectrum disorder: A resting-state fMRI study. Nature Communications, 11(1), 4768.

Best automated candidate

No validated match

N Yoon; Y Huh; H Lee (2022). Alterations in social brain network topology at rest in children with autism spectrum disorder. Psychiatry. https://doi.org/google scholar

Source: Study Published on: 13 Nov 2025

Citation #329

Bibliographic concordance score: 14.3/100 (very low correspondence)
View record

Cited reference

Leroy, F., & Marret, S. (2017). Le rythme Alpha comme biomarqueur dans les troubles du spectre autistique: une revue de la littérature. Neurophysiologie Clinique, 47(5), 317-323.

Best automated candidate

No validated match

Leroy, Michel (2002). La littérature française dans les instructions officielles au XIXe siècle. Revue d'histoire littéraire de la France. https://doi.org/10.3917/rhlf.023.0365

Source: Instagram Published on: 3 Apr 2025

Citation #331

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Gallese et al. (1996) - Brain, "Action recognition in the premotor cortex"

Best automated candidate

Ambiguous match

Gallese V; Fadiga L; Fogassi L (1996). Action recognition in the premotor cortex. Brain: a journal of neurology, Crossref+PubMed, Crossref+PubMed. https://doi.org/10.1093/brain/119.2.593

Source: Instagram Published on: 19 Apr 2025

Citation #339

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Iacoboni et al. (1999) - Science, "Cortical mechanisms of human imitation"

Best automated candidate

Ambiguous match

M Iacoboni; RP Woods; M Brass (1999). Cortical mechanisms of human imitation. Science (New York, N.Y.), Crossref+PubMed, Crossref+PubMed. https://doi.org/10.1126/science.286.5449.2526

Source: Instagram Published on: 21 Apr 2025

Citation #341

Bibliographic concordance score: 50/100 (low correspondence)
View record

Cited reference

Ramachandran (2001) - Medical Hypotheses, "Broken Mirrors: a theory of autism"

Best automated candidate

Ambiguous match

Ramachandran, Vilayanur S.; Oberman, Lindsay M. (2006). Broken Mirrors: A Theory of Autism. Scientific American. https://doi.org/10.1038/scientificamerican1106-62

Source: Instagram Published on: 23 Apr 2025

Citation #342

Bibliographic concordance score: 48.3/100 (low correspondence)
View record

Cited reference

Hobson & Bishop (2016) - Neuroscience & Biobehavioral Reviews, "The interpretation of mirror neuron evidence in autism: a systematic review"

Best automated candidate

No validated match

HM Hobson; DVM Bishop (2017). The interpretation of mu suppression as an index of mirror neuron activity: past, present and future. Royal Society open science. https://doi.org/google scholar

Source: Instagram Published on: 25 Apr 2025

Citation #345

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Craig, J., Baron-Cohen, S., Scott, F.J., et coll. (2001). Drawing ability in autism: A window into the imagination. Journal of Autism and Developmental Disorders, 31(2), 129-137.

Best automated candidate

Ambiguous match

Craig J; Baron-Cohen S; Scott F (2001). Drawing ability in autism: a window into the imagination. The Israel journal of psychiatry and related sciences, OpenAlex+PubMed, OpenAlex+PubMed. https://doi.org/openalex+pubmed

Source: Instagram Published on: 21 May 2025

Citation #347

Bibliographic concordance score: 36.9/100 (low correspondence)
View record

Cited reference

Hoshino, Y., Yashima, Y., Watanabe, M., Kaneko, M., & Kumashiro, H. (1987). Clinical and EEG findings of children with autistic disorder: A comparison based on the presence or absence of epilepsy. Psychiatry and Clinical Neurosciences, 41(2), 187-195.

Best automated candidate

No validated match

Hoshino Y; Kaneko M; Yashima Y (1987). Clinical features of autistic children with setback course in their infancy. The Japanese journal of psychiatry and neurology, 41(2), Crossref+PubMed. https://doi.org/10.1111/j.1440-1819.1987.tb00407.x

Source: Instagram Published on: 22 May 2025

Citation #351

Bibliographic concordance score: 2.8/100 (very low correspondence)
View record

Cited reference

Geschwind, D. H., et al. (2022). Brain changes in autism are far more sweeping than previously known. Nature.

Best automated candidate

No validated match

Abrahams, Brett S.; Geschwind, Daniel H. (2010). Connecting Genes to Brain in the Autism Spectrum Disorders. Archives of Neurology. https://doi.org/10.1001/archneurol.2010.47

Source: Instagram Published on: 22 May 2025

Citation #354

Bibliographic concordance score: 10.2/100 (very low correspondence)
View record

Cited reference

Bouchard, C., Héroux, G., & Dubé, F. (2019). Enhanced perceptual functioning in autism and the structuring role of memory: A review. Review Journal of Autism and Developmental Disorders, 6(4), 383-396.

Best automated candidate

No validated match

Bouchard, Constance B.; Geary, Patrick J. (1996). Phantoms of Remembrance: Memory and Oblivion at the End of the First Millennium. The American Historical Review. https://doi.org/10.2307/2170418

Source: Instagram Published on: 6 Jun 2025

Citation #368

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Pahnke et al., 2019. "The role of sensory sensitivities, perceived stress and autistic traits in autistic burnout" (Frontiers in Psychology)

Best automated candidate

No validated match

Lischke, Alexander; Freyberger, Harald J.; Grabe, Hans J. (2022). Alexithymic But Not Autistic Traits Impair Prosocial Behavior. Journal of Autism and Developmental Disorders. https://doi.org/10.1007/s10803-021-05154-x

Source: Instagram Published on: 13 Jul 2025

Citation #372

Bibliographic concordance score: 32.1/100 (low correspondence)
View record

Cited reference

Yap, C. X., Henders, A. K., Alvares, G. A., et al. (2021). Autism-related gut microbiota alterations are associated with restrictive dietary patterns. Cell, 184(24), 5916-5931.e17.

Best automated candidate

No validated match

Yap, Yu Anne; Marino, Eliana (2020). Dietary SCFAs Immunotherapy: Reshaping the Gut Microbiota in Diabetes. Advances in Experimental Medicine and Biology. https://doi.org/10.1007/5584_2020_515

Source: Instagram Published on: 4 Aug 2025

Citation #375

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Nair, A., Treiber et al. (2013). Impaired thalamocortical connectivity in autism spectrum disorder: a study of functional and anatomical connectivity. Brain, 136(6)

Best automated candidate

Ambiguous match

Nair A; Treiber JM; Shukla DK (2013). Impaired thalamocortical connectivity in autism spectrum disorder: a study of functional and anatomical connectivity. Brain: a journal of neurology, Crossref+PubMed, Crossref+PubMed. https://doi.org/10.1093/brain/awt079

Source: Instagram Published on: 22 Aug 2025

Citation #379

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

Critchley, H. D. et al. (2000). The functional neuroanatomy of social behaviour: changes in cerebral blood flow when people with autism process facial expressions. Brain, 123(11), 2203-2212.

Best automated candidate

Ambiguous match

Critchley HD; Daly EM; Bullmore ET (2000). The functional neuroanatomy of social behaviour: changes in cerebral blood flow when people with autistic disorder process facial expressions. Brain: a journal of neurology, Crossref+PubMed, Crossref+PubMed. https://doi.org/10.1093/brain/123.11.2203

Source: Instagram Published on: 15 Sep 2025

Citation #381

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Surman, C. B., Hammerness, P. G., Pion, K., & Faraone, S. V. (2021). Rejection sensitivity dysphoria: clinical characteristics and treatment response. CNS Spectrums, 26(3), 212-219.

Best automated candidate

No validated match

RSD Common (Google Scholar). Understanding Rejection Sensitive Dysphoria: Real-Life Examples and Coping Strategies for ADHD Individuals. neurolaunch.com. https://doi.org/google scholar

Source: Instagram Published on: 17 Sep 2025

Citation #398

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Pardo CA, et al. (2021). Cerebral folate deficiency and autism spectrum disorders: a systematic review. Journal of Inherited Metabolic Disease.

Best automated candidate

No validated match

DA Rossignol; RE Frye (2021). Cerebral folate deficiency, folate receptor alpha autoantibodies and leucovorin (folinic acid) treatment in autism spectrum disorders: a systematic review and. Journal of personalized medicine. https://doi.org/google scholar

Source: Instagram Published on: 2 Oct 2025

Citation #399

Bibliographic concordance score: 28.1/100 (very low correspondence)
View record

Cited reference

Ramaekers V, Quadros EV. (2018). Clinical recognition and diagnosis of cerebral folate deficiency. Journal of Inherited Metabolic Disease.

Best automated candidate

Ambiguous match

Ramaekers, Vincent; Sequeira, Jeffrey M.; Quadros, Edward V. (2013). Clinical recognition and aspects of the cerebral folate deficiency syndromes. Clinical Chemistry and Laboratory Medicine. https://doi.org/10.1515/cclm-2012-0543

Source: Instagram Published on: 2 Oct 2025

Citation #403

Bibliographic concordance score: 32.1/100 (low correspondence)
View record

Cited reference

Thakkar et al., 2008. Neural mechanisms of response monitoring and cognitive control in autism. Biol Psychiatry.

Best automated candidate

No validated match

Thakkar, Jitesh J. (2022). Project Monitoring and Control. Management and Industrial Engineering. https://doi.org/10.1007/978-981-15-3695-3_10

Source: Instagram Published on: 14 Oct 2025

Citation #405

Bibliographic concordance score: 58.3/100 (low correspondence)
View record

Cited reference

Cerliani et al., 2015. Functional connectivity of the language and control networks in ASD. Cerebral Cortex.

Best automated candidate

No validated match

Cerliani, Leonardo; Mennes, Maarten; Thomas, Rajat M. (2015). Increased Functional Connectivity Between Subcortical and Cortical Resting-State Networks in Autism Spectrum Disorder. JAMA Psychiatry. https://doi.org/10.1001/jamapsychiatry.2015.0101

Source: Instagram Published on: 14 Oct 2025

Citation #406

Bibliographic concordance score: 50/100 (low correspondence)
View record

Cited reference

Uddin et al., 2013. Salience network dysfunction in autism spectrum disorders. Brain Struct Funct.

Best automated candidate

Ambiguous match

Uddin, Lucina Q. (2017). Salience Network Dysfunction. Salience Network of the Human Brain. https://doi.org/10.1016/b978-0-12-804593-0.00005-9

Source: Instagram Published on: 14 Oct 2025

Citation #407

Bibliographic concordance score: 18.8/100 (very low correspondence)
View record

Cited reference

Berthoz & Hill, 2005. Moral reasoning and empathy in ASD. J Child Psychol Psychiatry.

Best automated candidate

No validated match

Berthoz, Alain (2012). Gaze and Empathy. Simplexity. https://doi.org/10.12987/yale/9780300169348.003.0003

Source: Instagram Published on: 14 Oct 2025

Citation #408

Bibliographic concordance score: 50/100 (low correspondence)
View record

Cited reference

Scott-Van Zeeland et al., 2010. Dopamine system abnormalities in autism. Neuron.

Best automated candidate

No validated match

Van Zeeland, Nathan L.; Yamaguchi, Ken (2010). Arthroscopic capsular release of the elbow. Journal of Shoulder and Elbow Surgery. https://doi.org/10.1016/j.jse.2010.01.003

Source: Instagram Published on: 14 Oct 2025

Citation #412

Bibliographic concordance score: 12.5/100 (very low correspondence)
View record

Cited reference

Mazefsky et al., 2013. Emotion regulation and stress physiology in ASD. Autism Res.

Best automated candidate

No validated match

Weiss, Jonathan A.; Riosa, Priscilla Burnham; Mazefsky, Carla A. (2017). Emotion Regulation in Autism Spectrum Disorder. Emotion Regulation and Psychopathology in Children and Adolescents. https://doi.org/10.1093/med:psych/9780198765844.003.0012

Source: Instagram Published on: 14 Oct 2025

Citation #415

Bibliographic concordance score: 26.9/100 (very low correspondence)
View record

Cited reference

Stavropoulos & Kleinman, 2019 - Affective learning and habituation deficits in ASD: The role of prediction error. Frontiers in Human Neuroscience, 13:352.

Best automated candidate

No validated match

Katsaros, Dimitrios; Stavropoulos, George; Papakostas, Dimitrios (2019). Which machine learning paradigm for fake news detection?. IEEE/WIC/ACM International Conference on Web Intelligence. https://doi.org/10.1145/3350546.3352552

Source: Instagram Published on: 21 Oct 2025

Citation #417

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Koegel et al., Research in Developmental Disabilities, 2004 - Desensitization procedures in autism: early case studies and limitations.

Best automated candidate

No validated match

JC Fodstad; SA Kerswill; AC Kirsch (2021). Assessment and treatment of noise hypersensitivity in a teenager with autism spectrum disorder: A case study. Journal of Autism and. https://doi.org/10.1007/s10803-020-04650-w

Source: Instagram Published on: 21 Oct 2025

Citation #418

Bibliographic concordance score: 35/100 (low correspondence)
View record

Cited reference

Stavropoulos et al., 2020. “Reward anticipation and feedback in children with ASD: An ERP study.” Autism Research, 13(10), 1703-1716.

Best automated candidate

No validated match

Stavropoulos, Katherine K. M.; Carver, Leslie J. (2014). Reward sensitivity to faces versus objects in children: an ERP study. Social Cognitive and Affective Neuroscience. https://doi.org/10.1093/scan/nst149

Source: Instagram Published on: 21 Oct 2025

Citation #419

Bibliographic concordance score: 26.9/100 (very low correspondence)
View record

Cited reference

Stavropoulos & Kleinman, 2019. “Affective learning and habituation deficits in ASD: The role of prediction error.” Frontiers in Human Neuroscience, 13:352.

Best automated candidate

No validated match

Katsaros, Dimitrios; Stavropoulos, George; Papakostas, Dimitrios (2019). Which machine learning paradigm for fake news detection?. IEEE/WIC/ACM International Conference on Web Intelligence. https://doi.org/10.1145/3350546.3352552

Source: Instagram Published on: 21 Oct 2025

Citation #420

Bibliographic concordance score: 25/100 (very low correspondence)
View record

Cited reference

Remington, A., Swettenham, J., & Lavie, N. (2012). Lightening the load: perceptual load theory and the autism spectrum. Journal of Abnormal Psychology, 121(2), 554-561.

Best automated candidate

No validated match

Remington, Anna; Swettenham, John; Campbell, Ruth (2009). Selective Attention and Perceptual Load in Autism Spectrum Disorder. Psychological Science. https://doi.org/10.1111/j.1467-9280.2009.02454.x

Source: Instagram Published on: 21 Oct 2025

Citation #422

Bibliographic concordance score: 52.8/100 (low correspondence)
View record

Cited reference

Yasuda Y. et al., J Autism Dev Disord, 2016 - Meta-analysis of altered pain sensitivity in ASD.

Best automated candidate

No validated match

Yasuda, Yuka; Hashimoto, Ryota; Nakae, Aya (2016). Sensory cognitive abnormalities of pain in autism spectrum disorder: a case-control study. Annals of General Psychiatry. https://doi.org/10.1186/s12991-016-0095-1

Source: Instagram Published on: 22 Oct 2025

Citation #423

Bibliographic concordance score: 8.3/100 (very low correspondence)
View record

Cited reference

Failla M.D. et al., Pain, 2018 - Context-dependent modulation of pain in autism.

Best automated candidate

No validated match

Moore, David; Failla, Michelle D. (2020). Pain in Autism Spectrum Disorders. Encyclopedia of Autism Spectrum Disorders. https://doi.org/10.1007/978-1-4614-6435-8_102488-1

Source: Instagram Published on: 22 Oct 2025

Citation #424

Bibliographic concordance score: 29.2/100 (very low correspondence)
View record

Cited reference

Duerden E.G. et al., Eur J Neurosci, 2015 - Altered central pain processing in ASD.

Best automated candidate

No validated match

Duerden, Emma G.; Tannock, Rosemary; Dockstader, Colleen (2012). Altered cortical morphology in sensorimotor processing regions in adolescents and adults with attention-deficit/hyperactivity disorder. Brain Research. https://doi.org/10.1016/j.brainres.2012.01.034

Source: Instagram Published on: 22 Oct 2025

Citation #425

Bibliographic concordance score: 32.1/100 (low correspondence)
View record

Cited reference

Noël J.-P. et al., Cerebral Cortex, 2020 - Atypical connectivity in pain perception in ASD.

Best automated candidate

No validated match

Noël-Jorand, M. C.; Bragard, D.; Plaghki, L. (1996). Pain Perception under Chronic High-altitude Hypoxia. European Journal of Neuroscience. https://doi.org/10.1111/j.1460-9568.1996.tb00728.x

Source: Instagram Published on: 22 Oct 2025

Citation #426

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Failla M.D. et al., Pain, 2018 - Dysregulated interoceptive modulation in ASD.

Best automated candidate

No validated match

Patel, Ankita; Shapiro, Joseph; Kuhlman, Kaitlin (2026). Characterizing Endogenous Pain Modulation in Autistic Adults. The Journal of Pain. https://doi.org/10.1016/j.jpain.2025.105838

Source: Instagram Published on: 22 Oct 2025

Citation #427

Bibliographic concordance score: 32.1/100 (low correspondence)
View record

Cited reference

Duerden E.G. et al., Eur J Neurosci, 2015 - Reduced insula activity in pain processing.

Best automated candidate

No validated match

Duerden, Emma G.; Arsalidou, Marie; Lee, Minha (2013). Lateralization of affective processing in the insula. NeuroImage. https://doi.org/10.1016/j.neuroimage.2013.04.014

Source: Instagram Published on: 22 Oct 2025

Citation #429

Bibliographic concordance score: 23.8/100 (very low correspondence)
View record

Cited reference

Failla M.D. et al., Autism Research, 2019 - Visceral pain and interoceptive processing in ASD.

Best automated candidate

No validated match

Moore, David; Failla, Michelle D. (2020). Pain in Autism Spectrum Disorders. Encyclopedia of Autism Spectrum Disorders. https://doi.org/10.1007/978-1-4614-6435-8_102488-1

Source: Instagram Published on: 22 Oct 2025

Citation #430

Bibliographic concordance score: 16.7/100 (very low correspondence)
View record

Cited reference

Mazefsky C.A. & White S.W., JAACAP, 2014 - Emotional dysregulation and pain amplification in ASD.

Best automated candidate

No validated match

Mazefsky, Carla A. (2018). Emotion Dysregulation Inventory. Encyclopedia of Autism Spectrum Disorders. https://doi.org/10.1007/978-1-4614-6435-8_102226-1

Source: Instagram Published on: 22 Oct 2025

Citation #431

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Noël J.-P. et al., Cerebral Cortex, 2020 - Overcoupling of limbic-sensory networks in ASD.

Best automated candidate

No validated match

TIDY, NOËL M. (2013). DISEASES OF THE SENSORY NEURONS. Massage and Remedial Exercises. https://doi.org/10.1016/b978-1-4831-9740-1.50014-x

Source: Instagram Published on: 22 Oct 2025

Citation #433

Bibliographic concordance score: 50/100 (low correspondence)
View record

Cited reference

Rommelse NNJ et al. (2017). Cognitive profiles in autism spectrum disorder and attention-deficit/hyperactivity disorder: a meta-analysis. Psychological Bulletin.

Best automated candidate

No validated match

N Rommelse; JK Buitelaar; CA Hartman (2017). Structural brain imaging correlates of ASD and ADHD across the lifespan: a hypothesis-generating review on developmental ASD-ADHD subtypes. Journal of Neural Transmission. https://doi.org/10.1007/s00702-016-1651-1

Source: Instagram Published on: 27 Oct 2025

Citation #434

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Failla MD, Gerdes MB, Moore DJ. (2018). Pain modulation in autism spectrum disorder: The role of sensory and emotional processing. Pain.

Best automated candidate

No validated match

Prasad, MD, Amrita; Chakravarthy, MD, Krishnan (2021). Review of complex regional pain syndrome and the role of the neuroimmune axis. Molecular Pain. https://doi.org/10.1177/17448069211006617

Source: Instagram Published on: 27 Oct 2025

Citation #436

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

Uljarevic M. et al., 2017. Cognitive rigidity and intolerance of uncertainty in ASD: A meta-analysis. Autism.

Best automated candidate

No validated match

S Bird; LAE Moid; CA Jones (2024). The relationships between restrictive/repetitive behaviours, intolerance of uncertainty, and anxiety in autism: A systematic review and meta-analysis. ... in Autism Spectrum Disorders. https://doi.org/google scholar

Source: Instagram Published on: 28 Oct 2025

Citation #437

Bibliographic concordance score: 25/100 (very low correspondence)
View record

Cited reference

Mazefsky C.A. & White S.W., 2014. Emotion regulation in ASD. J Am Acad Child Adolesc Psychiatry.

Best automated candidate

Ambiguous match

Weiss, Jonathan A.; Riosa, Priscilla Burnham; Mazefsky, Carla A. (2017). Emotion Regulation in Autism Spectrum Disorder. Emotion Regulation and Psychopathology in Children and Adolescents. https://doi.org/10.1093/med:psych/9780198765844.003.0012

Source: Instagram Published on: 28 Oct 2025

Citation #439

Bibliographic concordance score: 75/100 (partial correspondence)
View record

Cited reference

D’Cruz A.-M. et al., 2013. Reduced behavioral flexibility in ASD. Biol Psychiatry.

Best automated candidate

Ambiguous match

D'Cruz AM; Ragozzino ME; Mosconi MW (2013). Reduced behavioral flexibility in autism spectrum disorders. Neuropsychology. https://doi.org/10.1037/a0031721

Source: Instagram Published on: 28 Oct 2025

Citation #440

Bibliographic concordance score: 0/100 (No corresponding reference identified)
View record

Cited reference

South M. et al., 2017. Ruminative thinking and repetitive cognition in ASD. J Autism Dev Disord.

Best automated candidate

No validated match

K Cooper; A Russell; S Calley (2022). Cognitive processes in autism: Repetitive thinking in autistic versus non-autistic adults. . https://doi.org/10.1177/13623613211034380

Source: Instagram Published on: 28 Oct 2025

Citation #442

Bibliographic concordance score: 17.9/100 (very low correspondence)
View record

Cited reference

Courchesne E. et al., 2019. Functional connectivity of default mode network in ASD. NeuroImage: Clinical.

Best automated candidate

Ambiguous match

Amritha Harikumar; Chao Zhang; Chase C. Dougherty (2023). 44 Functional Connectivity In The Default Mode Network Of ASD and ADHD. Journal of the International Neuropsychological Society. https://doi.org/10.1017/s1355617723005945

Source: Instagram Published on: 28 Oct 2025