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Auteur A. KOLEVZON |
Documents disponibles écrits par cet auteur (14)



Brief Report: Sensory Reactivity in Children with Phelan–McDermid Syndrome / A. M. MIESES in Journal of Autism and Developmental Disorders, 46-7 (July 2016)
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Titre : Brief Report: Sensory Reactivity in Children with Phelan–McDermid Syndrome Type de document : Texte imprimé et/ou numérique Auteurs : A. M. MIESES, Auteur ; Teresa TAVASSOLI, Auteur ; E. LI, Auteur ; L. SOORYA, Auteur ; S. LURIE, Auteur ; A. Ting WANG, Auteur ; P. M. SIPER, Auteur ; A. KOLEVZON, Auteur Article en page(s) : p.2508-2513 Langues : Anglais (eng) Mots-clés : Phelan–McDermid syndrome 22q13 deletion syndrome Autism Autism spectrum disorder Sensory reactivity Sensory profile Index. décimale : PER Périodiques Résumé : Phelan–McDermid syndrome (PMS), a monogenic form of autism spectrum disorder (ASD), results from deletion or mutation of the SHANK3 gene. Atypical sensory reactivity is now included in the diagnostic criteria for ASD. Examining the sensory phenotype in monogenic forms of ASD, such as PMS, may help identify underlying mechanisms of sensory reactivity. Using the Short Sensory Profile, the current study compared sensory reactivity in 24 children with PMS to 61 children with idiopathic ASD (iASD). Results suggest that children with PMS show more low energy/weak symptoms and less sensory sensitivity as compared to children with iASD. This study is the first to demonstrate differences in sensory reactivity between children with PMS and iASD, helping to refine the PMS phenotype. En ligne : http://dx.doi.org/10.1007/s10803-016-2754-0 Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=290
in Journal of Autism and Developmental Disorders > 46-7 (July 2016) . - p.2508-2513[article] Brief Report: Sensory Reactivity in Children with Phelan–McDermid Syndrome [Texte imprimé et/ou numérique] / A. M. MIESES, Auteur ; Teresa TAVASSOLI, Auteur ; E. LI, Auteur ; L. SOORYA, Auteur ; S. LURIE, Auteur ; A. Ting WANG, Auteur ; P. M. SIPER, Auteur ; A. KOLEVZON, Auteur . - p.2508-2513.
Langues : Anglais (eng)
in Journal of Autism and Developmental Disorders > 46-7 (July 2016) . - p.2508-2513
Mots-clés : Phelan–McDermid syndrome 22q13 deletion syndrome Autism Autism spectrum disorder Sensory reactivity Sensory profile Index. décimale : PER Périodiques Résumé : Phelan–McDermid syndrome (PMS), a monogenic form of autism spectrum disorder (ASD), results from deletion or mutation of the SHANK3 gene. Atypical sensory reactivity is now included in the diagnostic criteria for ASD. Examining the sensory phenotype in monogenic forms of ASD, such as PMS, may help identify underlying mechanisms of sensory reactivity. Using the Short Sensory Profile, the current study compared sensory reactivity in 24 children with PMS to 61 children with idiopathic ASD (iASD). Results suggest that children with PMS show more low energy/weak symptoms and less sensory sensitivity as compared to children with iASD. This study is the first to demonstrate differences in sensory reactivity between children with PMS and iASD, helping to refine the PMS phenotype. En ligne : http://dx.doi.org/10.1007/s10803-016-2754-0 Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=290 Clinical trial of insulin-like growth factor-1 in Phelan-McDermid syndrome / A. KOLEVZON in Molecular Autism, 13 (2022)
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Titre : Clinical trial of insulin-like growth factor-1 in Phelan-McDermid syndrome Type de document : Texte imprimé et/ou numérique Auteurs : A. KOLEVZON, Auteur ; M. S. BREEN, Auteur ; P. M. SIPER, Auteur ; Danielle B. HALPERN, Auteur ; Y. FRANK, Auteur ; H. RIEGER, Auteur ; J. WEISMANN, Auteur ; M. P. TRELLES, Auteur ; B. LERMAN, Auteur ; R. RAPAPORT, Auteur ; J. D. BUXBAUM, Auteur Article en page(s) : 17 p. Langues : Anglais (eng) Mots-clés : Child Chromosome Deletion Chromosome Disorders/drug therapy/genetics Chromosomes, Human, Pair 22 Humans Insulin-Like Growth Factor I/therapeutic use Pilot Projects Asd Autism spectrum disorder Igf-1 Insulin-like growth factor-1 Pms Phelan-McDermid syndrome shank3 Index. décimale : PER Périodiques Résumé : BACKGROUND: Phelan-McDermid syndrome (PMS) is caused by haploinsufficiency of the SHANK3 gene and is characterized by global developmental delays and autism spectrum disorder (ASD). Based on several converging lines of preclinical and clinical evidence supporting the use of insulin-like growth factor-1 (IGF-1) in PMS, this study aims to follow-up a previous pilot study with IGF-1 to further evaluate this novel therapeutic for core symptoms of ASD in children with PMS. METHODS: Ten children aged 5-9 with PMS were enrolled. Participants were randomized to receive IGF-1 or placebo (saline) using a 12-week, double-blind, crossover design. Efficacy was assessed using the primary outcome of the Aberrant Behavior Checklist-Social Withdrawal (ABC-SW) subscale as well as secondary outcome measures reflecting core symptoms of ASD. To increase power and sample size, we jointly analyzed the effect of IGF-1 reported here together with results from our previous controlled trail of IGF-1 in children with PMS (combined N=19). RESULTS: Results on the ABC-SW did not reach statistical significance, however significant improvements in sensory reactivity symptoms were observed. In our pooled analyses, IGF-1 treatment also led to significant improvements in repetitive behaviors and hyperactivity. There were no other statistically significant effects seen across other clinical outcome measures. IGF-1 was well tolerated and there were no serious adverse events. LIMITATIONS: The small sample size and expectancy bias due to relying on parent reported outcome measures may contribute to limitations in interpreting results. CONCLUSION: IGF-1 is efficacious in improving sensory reactivity symptoms, repetitive behaviors, and hyperactivity in children with PMS. Trial registration NCT01525901. En ligne : http://dx.doi.org/10.1186/s13229-022-00493-7 Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=477
in Molecular Autism > 13 (2022) . - 17 p.[article] Clinical trial of insulin-like growth factor-1 in Phelan-McDermid syndrome [Texte imprimé et/ou numérique] / A. KOLEVZON, Auteur ; M. S. BREEN, Auteur ; P. M. SIPER, Auteur ; Danielle B. HALPERN, Auteur ; Y. FRANK, Auteur ; H. RIEGER, Auteur ; J. WEISMANN, Auteur ; M. P. TRELLES, Auteur ; B. LERMAN, Auteur ; R. RAPAPORT, Auteur ; J. D. BUXBAUM, Auteur . - 17 p.
Langues : Anglais (eng)
in Molecular Autism > 13 (2022) . - 17 p.
Mots-clés : Child Chromosome Deletion Chromosome Disorders/drug therapy/genetics Chromosomes, Human, Pair 22 Humans Insulin-Like Growth Factor I/therapeutic use Pilot Projects Asd Autism spectrum disorder Igf-1 Insulin-like growth factor-1 Pms Phelan-McDermid syndrome shank3 Index. décimale : PER Périodiques Résumé : BACKGROUND: Phelan-McDermid syndrome (PMS) is caused by haploinsufficiency of the SHANK3 gene and is characterized by global developmental delays and autism spectrum disorder (ASD). Based on several converging lines of preclinical and clinical evidence supporting the use of insulin-like growth factor-1 (IGF-1) in PMS, this study aims to follow-up a previous pilot study with IGF-1 to further evaluate this novel therapeutic for core symptoms of ASD in children with PMS. METHODS: Ten children aged 5-9 with PMS were enrolled. Participants were randomized to receive IGF-1 or placebo (saline) using a 12-week, double-blind, crossover design. Efficacy was assessed using the primary outcome of the Aberrant Behavior Checklist-Social Withdrawal (ABC-SW) subscale as well as secondary outcome measures reflecting core symptoms of ASD. To increase power and sample size, we jointly analyzed the effect of IGF-1 reported here together with results from our previous controlled trail of IGF-1 in children with PMS (combined N=19). RESULTS: Results on the ABC-SW did not reach statistical significance, however significant improvements in sensory reactivity symptoms were observed. In our pooled analyses, IGF-1 treatment also led to significant improvements in repetitive behaviors and hyperactivity. There were no other statistically significant effects seen across other clinical outcome measures. IGF-1 was well tolerated and there were no serious adverse events. LIMITATIONS: The small sample size and expectancy bias due to relying on parent reported outcome measures may contribute to limitations in interpreting results. CONCLUSION: IGF-1 is efficacious in improving sensory reactivity symptoms, repetitive behaviors, and hyperactivity in children with PMS. Trial registration NCT01525901. En ligne : http://dx.doi.org/10.1186/s13229-022-00493-7 Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=477 Delineation of the genetic and clinical spectrum of Phelan-McDermid syndrome caused by SHANK3 point mutations / S. DE RUBEIS in Molecular Autism, 9 (2018)
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Titre : Delineation of the genetic and clinical spectrum of Phelan-McDermid syndrome caused by SHANK3 point mutations Type de document : Texte imprimé et/ou numérique Auteurs : S. DE RUBEIS, Auteur ; P. M. SIPER, Auteur ; A. DURKIN, Auteur ; J. WEISSMAN, Auteur ; F. MURATET, Auteur ; Danielle B. HALPERN, Auteur ; M. D. P. TRELLES, Auteur ; Y. FRANK, Auteur ; R. LOZANO, Auteur ; A. Ting WANG, Auteur ; J. L. HOLDER, Auteur ; Catalina BETANCUR, Auteur ; Joseph D. BUXBAUM, Auteur ; A. KOLEVZON, Auteur Article en page(s) : 31p. Langues : Anglais (eng) Mots-clés : Adolescent Adult Child Child, Preschool Chromosome Deletion Chromosome Disorders/genetics/pathology Chromosomes, Human, Pair 22/genetics Female Haploinsufficiency Humans Male Nerve Tissue Proteins/genetics Phenotype Point Mutation 22q13 deletion syndrome Autism spectrum disorder Intellectual disability Phelan-McDermid syndrome shank3 Sequence variants Index. décimale : PER Périodiques Résumé : Background: Phelan-McDermid syndrome (PMS) is a neurodevelopmental disorder characterized by psychiatric and neurological features. Most reported cases are caused by 22q13.3 deletions, leading to SHANK3 haploinsufficiency, but also usually encompassing many other genes. While the number of point mutations identified in SHANK3 has increased in recent years due to large-scale sequencing studies, systematic studies describing the phenotype of individuals harboring such mutations are lacking. Methods: We provide detailed clinical and genetic data on 17 individuals carrying mutations in SHANK3. We also review 60 previously reported patients with pathogenic or likely pathogenic SHANK3 variants, often lacking detailed phenotypic information. Results: SHANK3 mutations in our cohort and in previously reported cases were distributed throughout the protein; the majority were truncating and all were compatible with de novo inheritance. Despite substantial allelic heterogeneity, four variants were recurrent (p.Leu1142Valfs*153, p.Ala1227Glyfs*69, p.Arg1255Leufs*25, and c.2265+1G>A), suggesting that these are hotspots for de novo mutations. All individuals studied had intellectual disability, and autism spectrum disorder was prevalent (73%). Severe speech deficits were common, but in contrast to individuals with 22q13.3 deletions, the majority developed single words, including 41% with at least phrase speech. Other common findings were consistent with reports among individuals with 22q13.3 deletions, including hypotonia, motor skill deficits, regression, seizures, brain abnormalities, mild dysmorphic features, and feeding and gastrointestinal problems. Conclusions: Haploinsufficiency of SHANK3 resulting from point mutations is sufficient to cause a broad range of features associated with PMS. Our findings expand the molecular and phenotypic spectrum of PMS caused by SHANK3 point mutations and suggest that, in general, speech impairment and motor deficits are more severe in the case of deletions. In contrast, renal abnormalities associated with 22q13.3 deletions do not appear to be related to the loss of SHANK3. En ligne : https://dx.doi.org/10.1186/s13229-018-0205-9 Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=371
in Molecular Autism > 9 (2018) . - 31p.[article] Delineation of the genetic and clinical spectrum of Phelan-McDermid syndrome caused by SHANK3 point mutations [Texte imprimé et/ou numérique] / S. DE RUBEIS, Auteur ; P. M. SIPER, Auteur ; A. DURKIN, Auteur ; J. WEISSMAN, Auteur ; F. MURATET, Auteur ; Danielle B. HALPERN, Auteur ; M. D. P. TRELLES, Auteur ; Y. FRANK, Auteur ; R. LOZANO, Auteur ; A. Ting WANG, Auteur ; J. L. HOLDER, Auteur ; Catalina BETANCUR, Auteur ; Joseph D. BUXBAUM, Auteur ; A. KOLEVZON, Auteur . - 31p.
Langues : Anglais (eng)
in Molecular Autism > 9 (2018) . - 31p.
Mots-clés : Adolescent Adult Child Child, Preschool Chromosome Deletion Chromosome Disorders/genetics/pathology Chromosomes, Human, Pair 22/genetics Female Haploinsufficiency Humans Male Nerve Tissue Proteins/genetics Phenotype Point Mutation 22q13 deletion syndrome Autism spectrum disorder Intellectual disability Phelan-McDermid syndrome shank3 Sequence variants Index. décimale : PER Périodiques Résumé : Background: Phelan-McDermid syndrome (PMS) is a neurodevelopmental disorder characterized by psychiatric and neurological features. Most reported cases are caused by 22q13.3 deletions, leading to SHANK3 haploinsufficiency, but also usually encompassing many other genes. While the number of point mutations identified in SHANK3 has increased in recent years due to large-scale sequencing studies, systematic studies describing the phenotype of individuals harboring such mutations are lacking. Methods: We provide detailed clinical and genetic data on 17 individuals carrying mutations in SHANK3. We also review 60 previously reported patients with pathogenic or likely pathogenic SHANK3 variants, often lacking detailed phenotypic information. Results: SHANK3 mutations in our cohort and in previously reported cases were distributed throughout the protein; the majority were truncating and all were compatible with de novo inheritance. Despite substantial allelic heterogeneity, four variants were recurrent (p.Leu1142Valfs*153, p.Ala1227Glyfs*69, p.Arg1255Leufs*25, and c.2265+1G>A), suggesting that these are hotspots for de novo mutations. All individuals studied had intellectual disability, and autism spectrum disorder was prevalent (73%). Severe speech deficits were common, but in contrast to individuals with 22q13.3 deletions, the majority developed single words, including 41% with at least phrase speech. Other common findings were consistent with reports among individuals with 22q13.3 deletions, including hypotonia, motor skill deficits, regression, seizures, brain abnormalities, mild dysmorphic features, and feeding and gastrointestinal problems. Conclusions: Haploinsufficiency of SHANK3 resulting from point mutations is sufficient to cause a broad range of features associated with PMS. Our findings expand the molecular and phenotypic spectrum of PMS caused by SHANK3 point mutations and suggest that, in general, speech impairment and motor deficits are more severe in the case of deletions. In contrast, renal abnormalities associated with 22q13.3 deletions do not appear to be related to the loss of SHANK3. En ligne : https://dx.doi.org/10.1186/s13229-018-0205-9 Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=371 Erratum to: Neural selectivity for communicative auditory signals in Phelan-McDermid syndrome / A. Ting WANG in Journal of Neurodevelopmental Disorders, 8-1 (December 2016)
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Titre : Erratum to: Neural selectivity for communicative auditory signals in Phelan-McDermid syndrome Type de document : Texte imprimé et/ou numérique Auteurs : A. Ting WANG, Auteur ; T. LIM, Auteur ; J. JAMISON, Auteur ; L. BUSH, Auteur ; L. V. SOORYA, Auteur ; Teresa TAVASSOLI, Auteur ; P. M. SIPER, Auteur ; Joseph D. BUXBAUM, Auteur ; A. KOLEVZON, Auteur Article en page(s) : p.8 Langues : Anglais (eng) Index. décimale : PER Périodiques Résumé : [This corrects the article DOI: 10.1186/s11689-016-9138-9.]. En ligne : http://dx.doi.org/10.1186/s11689-016-9143-z Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=348
in Journal of Neurodevelopmental Disorders > 8-1 (December 2016) . - p.8[article] Erratum to: Neural selectivity for communicative auditory signals in Phelan-McDermid syndrome [Texte imprimé et/ou numérique] / A. Ting WANG, Auteur ; T. LIM, Auteur ; J. JAMISON, Auteur ; L. BUSH, Auteur ; L. V. SOORYA, Auteur ; Teresa TAVASSOLI, Auteur ; P. M. SIPER, Auteur ; Joseph D. BUXBAUM, Auteur ; A. KOLEVZON, Auteur . - p.8.
Langues : Anglais (eng)
in Journal of Neurodevelopmental Disorders > 8-1 (December 2016) . - p.8
Index. décimale : PER Périodiques Résumé : [This corrects the article DOI: 10.1186/s11689-016-9138-9.]. En ligne : http://dx.doi.org/10.1186/s11689-016-9143-z Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=348 Individuals with FOXP1 syndrome present with a complex neurobehavioral profile with high rates of ADHD, anxiety, repetitive behaviors, and sensory symptoms / M. P. TRELLES in Molecular Autism, 12 (2021)
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Titre : Individuals with FOXP1 syndrome present with a complex neurobehavioral profile with high rates of ADHD, anxiety, repetitive behaviors, and sensory symptoms Type de document : Texte imprimé et/ou numérique Auteurs : M. P. TRELLES, Auteur ; T. LEVY, Auteur ; B. LERMAN, Auteur ; P. SIPER, Auteur ; R. LOZANO, Auteur ; Danielle B. HALPERN, Auteur ; H. WALKER, Auteur ; J. ZWEIFACH, Auteur ; Y. FRANK, Auteur ; J. FOSS-FEIG, Auteur ; A. KOLEVZON, Auteur ; Joseph D. BUXBAUM, Auteur Article en page(s) : 61 p. Langues : Anglais (eng) Mots-clés : Anxiety Attention-deficit/hyperactivity disorder Autism spectrum disorder FOXP1 gene FOXP1 syndrome Intellectual disability Neurodevelopment Therapeutics, Acadia, Alkermes, Sema4, and Ritrova. PMS and Mount Sinai licensed the Sensory Assessment for Neurodevelopmental Disorders (SAND) developed by PMS to Stoelting, Co. No other competing interests to declare. Index. décimale : PER Périodiques Résumé : BACKGROUND: FOXP1 syndrome is an autosomal dominant neurodevelopmental disorder characterized by intellectual disability, developmental delay, speech and language delays, and externalizing behaviors. We previously evaluated nine children and adolescents with FOXP1 syndrome to better characterize its phenotype. We identified specific areas of interest to be further explored, namely autism spectrum disorder (ASD) and internalizing and externalizing behaviors. METHODS: Here, we assess a prospective cohort of additional 17 individuals to expand our initial analyses and focus on these areas of interest. An interdisciplinary group of clinicians evaluated neurodevelopmental, behavioral, and medical features in participants. We report results from this cohort both alone, and in combination with the previous cohort, where possible. RESULTS: Previous observations of intellectual disability, motor delays, and language deficits were confirmed. In addition, 24% of the cohort met criteria for ASD. Seventy-five percent of individuals met DSM-5 criteria for attention-deficit/hyperactivity disorder and 38% for an anxiety disorder. Repetitive behaviors were almost universally present (95%) even without a diagnosis of ASD. Sensory symptoms, in particular sensory seeking, were common. LIMITATIONS: As FOXP1 syndrome is a rare disorder, sample size is limited. CONCLUSIONS: These findings have important implications for the treatment and care of individuals with FOXP1 syndrome. Notably, standardized testing for ASD showed high sensitivity, but low specificity, when compared to expert consensus diagnosis. Furthermore, many individuals in our cohort who received diagnoses of attention-deficit/hyperactivity disorder or anxiety disorder were not being treated for these symptoms; therefore, our findings suggest that there may be immediate areas for improvements in treatment for some individuals. En ligne : http://dx.doi.org/10.1186/s13229-021-00469-z Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=459
in Molecular Autism > 12 (2021) . - 61 p.[article] Individuals with FOXP1 syndrome present with a complex neurobehavioral profile with high rates of ADHD, anxiety, repetitive behaviors, and sensory symptoms [Texte imprimé et/ou numérique] / M. P. TRELLES, Auteur ; T. LEVY, Auteur ; B. LERMAN, Auteur ; P. SIPER, Auteur ; R. LOZANO, Auteur ; Danielle B. HALPERN, Auteur ; H. WALKER, Auteur ; J. ZWEIFACH, Auteur ; Y. FRANK, Auteur ; J. FOSS-FEIG, Auteur ; A. KOLEVZON, Auteur ; Joseph D. BUXBAUM, Auteur . - 61 p.
Langues : Anglais (eng)
in Molecular Autism > 12 (2021) . - 61 p.
Mots-clés : Anxiety Attention-deficit/hyperactivity disorder Autism spectrum disorder FOXP1 gene FOXP1 syndrome Intellectual disability Neurodevelopment Therapeutics, Acadia, Alkermes, Sema4, and Ritrova. PMS and Mount Sinai licensed the Sensory Assessment for Neurodevelopmental Disorders (SAND) developed by PMS to Stoelting, Co. No other competing interests to declare. Index. décimale : PER Périodiques Résumé : BACKGROUND: FOXP1 syndrome is an autosomal dominant neurodevelopmental disorder characterized by intellectual disability, developmental delay, speech and language delays, and externalizing behaviors. We previously evaluated nine children and adolescents with FOXP1 syndrome to better characterize its phenotype. We identified specific areas of interest to be further explored, namely autism spectrum disorder (ASD) and internalizing and externalizing behaviors. METHODS: Here, we assess a prospective cohort of additional 17 individuals to expand our initial analyses and focus on these areas of interest. An interdisciplinary group of clinicians evaluated neurodevelopmental, behavioral, and medical features in participants. We report results from this cohort both alone, and in combination with the previous cohort, where possible. RESULTS: Previous observations of intellectual disability, motor delays, and language deficits were confirmed. In addition, 24% of the cohort met criteria for ASD. Seventy-five percent of individuals met DSM-5 criteria for attention-deficit/hyperactivity disorder and 38% for an anxiety disorder. Repetitive behaviors were almost universally present (95%) even without a diagnosis of ASD. Sensory symptoms, in particular sensory seeking, were common. LIMITATIONS: As FOXP1 syndrome is a rare disorder, sample size is limited. CONCLUSIONS: These findings have important implications for the treatment and care of individuals with FOXP1 syndrome. Notably, standardized testing for ASD showed high sensitivity, but low specificity, when compared to expert consensus diagnosis. Furthermore, many individuals in our cohort who received diagnoses of attention-deficit/hyperactivity disorder or anxiety disorder were not being treated for these symptoms; therefore, our findings suggest that there may be immediate areas for improvements in treatment for some individuals. En ligne : http://dx.doi.org/10.1186/s13229-021-00469-z Permalink : https://www.cra-rhone-alpes.org/cid/opac_css/index.php?lvl=notice_display&id=459 Neural selectivity for communicative auditory signals in Phelan-McDermid syndrome / A. Ting WANG in Journal of Neurodevelopmental Disorders, 8-1 (December 2016)
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PermalinkNeuropsychiatric decompensation in adolescents and adults with Phelan-McDermid syndrome: a systematic review of the literature / A. KOLEVZON in Molecular Autism, 10 (2019)
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PermalinkPhelan-McDermid syndrome: a review of the literature and practice parameters for medical assessment and monitoring / A. KOLEVZON in Journal of Neurodevelopmental Disorders, 6-1 (December 2014)
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PermalinkA proof-of-concept study of growth hormone in children with Phelan-McDermid syndrome / S. SETHURAM in Molecular Autism, 13 (2022)
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PermalinkProspective and detailed behavioral phenotyping in DDX3X syndrome / L. TANG in Molecular Autism, 12 (2021)
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PermalinkPermalinkA randomized controlled trial of intranasal oxytocin in Phelan-McDermid syndrome / J. FASTMAN in Molecular Autism, 12 (2021)
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PermalinkReduced engagement of visual attention in children with autism spectrum disorder / C. S. MCLAUGHLIN in Autism, 25-7 (October 2021)
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PermalinkShifted phase of EEG cross-frequency coupling in individuals with Phelan-McDermid syndrome / M. G. MARISCAL in Molecular Autism, 12 (2021)
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