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Paper Title
<i>CNTN5</i><sup>-</sup><i><sup>/+</sup></i>or <i>EHMT2</i><sup>-</sup><i><sup>/+</sup></i>human iPSC-derived neurons from individuals with autism develop hyperactive neuronal networks.
PubMed
Paper Journal Title
Elife
Paper Citation Count
56
Paper Publication Year
2019
Bio Mention
ASD, Autism Spectrum Disorder, CNTN5, CNTN5-or EHMT2-human iPSC-derived neurons, EHMT2, GLI3, Induced pluripotent stem cell (iPSC)-derived neurons, KIF21A, UBE2I, autism, human, iPSC-derived glutamatergic neuronal lines, iPSC-derived neurons, multi-electrode array, neurons, participants, polygenic risk variants
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Author Name
Affiliation
Susan Walker
The Hospital for Sick Children
Susan Walker
The Hospital for Sick Children
Frederick P Roth
Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital
Frederick P Roth
University of Toronto
Frederick P Roth
University of Toronto
Frederick P Roth
University of Toronto
Frederick P Roth
Canadian Institute for Advanced Research (CIFAR)
Ryan K C Yuen
The Hospital for Sick Children
Ryan K C Yuen
The Hospital for Sick Children
Stephen W Scherer
The Hospital for Sick Children
Stephen W Scherer
The Hospital for Sick Children
Stephen W Scherer
University of Toronto
Stephen W Scherer
University of Toronto
Stephen W Scherer
The Hospital for Sick Children
Stephen W Scherer
The Hospital for Sick Children
Stephen W Scherer
University of Toronto
Stephen W Scherer
University of Toronto
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