View clinical trials related to Autistic Disorder.
Filter by:The purpose of this study is to develop and test a family navigator training and an app (a technology-based treatment support system) for low-resourced families of young children (aged 3-5) with autism. The hypothesis is that the navigator training and treatment support system will help enable navigators to support families of young children with autism in accessing needed services.
Given the increasing prevalence of autism spectrum disorder (ASD), estimated to be 1 in 68 in the United States alone, ASD has become one of the fastest-growing pediatric concerns. The deficits of children with ASD range across social communication and academic skills. One of the effective interventions that have been used commonly for ASD is the model-lead-test, which includes modeling, prompting children to practice target skills together, and providing children with affirmative feedback or error correction. Previous research has demonstrated that the model-lead-test is successful in teaching different skills for individuals with ASD, including functional, social, and academic skills. The vast majority of the studies had researchers, therapists, or teachers implement the intervention. However, there is clear empirical support and implications for interventions mediated by more familiar persons, such as parents and siblings, which may lead to better effects, maintenance, and generalization due to more practice opportunities in the natural environments. Research has supported the effectiveness of using parents or peers as agents to deliver interventions for individuals with ASD, whereas fewer studies explored the use of siblings to deliver or mediate intervention. As typically developing siblings are an essential part of the daily life of children with ASD, it makes logical extensions to have siblings as mediators to deliver interventions. In the initial findings, the investigators found the typically developing siblings can accurately implement the model-lead-test procedure that improved various skills of their siblings with ASD. This project will extend these findings by examining the efficacy of the sibling-implemented intervention on early literacy (reading) and social reciprocity (conversation and play) of children with ASD as well as the sibling relationship before, during, and after the intervention.
The investigators explored the neural and behavioral effect of oxytocin on youth with Autism spectrum disorder using magnetoencephalography (MEG). The investigators hypothesize that oxytocin will modulate neural activity to resemble patterns observed in the age-matched control group. Thirty-two adolescents with autism and 26 typically developing adolescents participated in this randomized, double-blind MEG study. Individuals with autism arrived at the lab twice and received an acute dose of intranasal oxytocin or placebo in each session. During the scans, participants were asked to complete several tasks related to social perception - such as identification of social and non-social stimuli.
ML-004-002 is a multi-center, randomized, double-blind, parallel-group, placebo-controlled study that will enroll approximately 150 adolescent and adult subjects with ASD. The primary objective is to evaluate the efficacy of ML-004 compared with placebo in the improvement of social communication deficits in subjects with ASD.
For many reasons, medical monitoring in autistic patients is very difficult. This study is designed to determine the prevalence of comorbid diseases (neurological, cardiac, digestive, dental diseases…) in patients suffering from ASD to prevent them or diagnose them earlier.
This study will investigate the efficacy, safety and tolerability of L1-79 in participants aged 12-21 years who have been diagnosed with ASD with a score of >/= 70 on the Wechsler Abbreviated Scale of Intelligence (WASI-II), and a score of >/= 4 on the Clinical Global Impression of Severity of Illness (CGI-S) weighted for socialization.
The social cognitive deficits associated with autism spectrum disorder (ASD) are related to an imbalance in excitatory and inhibitory neurotransmission, specifically a deficit in the inhibitory neurotransmitter GABA. The investigators have used magnetic resonance spectroscopy (MRS) techniques to measure GABA in specific brain regions and have demonstrated that a single dose of gabapentin increases GABA in brain regions associated with social cognition. This study will use a biomarker-driven approach to investigate gabapentin to correct the underlying imbalance of neurotransmitters and improve the core social cognitive deficits in ASD. By using a brain-based biomarker (GABA) that is quantifiable and measurable, the investigators can target this biomarker directly and measure the impact of the treatment. This will help with the future development of targeted therapies for ASD and provide an early marker of response to aid in the selection of individuals more likely to respond to various treatments. The specific aims of this study are to: 1) determine if treatment with gabapentin sustainably increases GABA in the right anterior insula (RAI; an area of the brain involved in social cognition), 2) determine if response of RAI GABA levels to a single dose challenge of gabapentin predicts a sustained response after treatment, and 3) determine if the increase in GABA levels with gabapentin treatment translates into clinically measurable improvement in social cognition. The investigators will conduct an 8-week open-label clinical trial of gabapentin in 40 adolescents (age 13-17 years) with ASD, using MRS before and after treatment to measure GABA in the RAI (the primary outcome for the study). Before the trial, a single dose challenge of gabapentin will be used to evaluate the immediate response of GABA levels in the RAI, to determine if this predicts later response. A secondary outcome will be the clinical effects of gabapentin on social cognition. This study can demonstrate for the first time that neuroimaging biomarkers can be used to guide treatment of social cognition deficits seen in ASD and that the excitatory-inhibitory imbalance in neurotransmitters in ASD can be pharmacologically targeted. This can provide a rational basis for pharmacological treatment of the core social deficits of ASD, providing direct benefit to participants in the study as well as indirect benefit to countless patients in the future.
The investigators propose to evaluate the use of a telemedicine tool, the TELE-ASD-PEDS (TAP), that is designed to assess for autism spectrum disorder (ASD) symptoms in toddlers. The TAP was developed at VUMC by a team of clinical psychologists with expertise in the early identification of ASD. The TAP has been studied in controlled laboratory settings, with high levels of family and clinician satisfaction, as well as excellent agreement with blinded comprehensive ASD evaluation. The TAP has also been used to complete direct-to-home telemedicine assessments during the COVID-19 pandemic. However, the investigators have not yet compared direct-to-home assessments using the TAP with gold standard, in-person ASD assessments. It has also not yet been studied in a diverse sample of families or with providers outside of VUMC. This study will allow the investigators to address those gaps.
Autism spectrum disorder (ASD) is a neuro-behavioral disorder associated with repetitive movements. The role of physical therapist towards an autistic child is most neglected one. Therefore, the objective of this study was to see the effectiveness of different ball exercise on stereotypic behavior of children with ASD. Different ball exercises were implemented for 2 months, 3 sessions per week and every session consist of 35 minutes.
The primary aims are to identify important gut microbiota signatures for youth with ASD, to identify dysbiosis features for different levels of ASD features and clinical courses, to search the possibility to intervene the disease course if we can tease out the dysbiosis responsible for the flare-up and improvement of the symptoms of the disease. The secondary aims are to identify the clinical and neuropsychological measures that are associated with direct and indirect regulation or interactions from gut-brain axis signaling, and based our preliminary results on reducing the measures for future large-scale microbiome study in ASD.