View clinical trials related to Autistic Disorder.
Filter by:The febrile hypothesis of Autism Spectrum Disorder (ASD) stems from the observation that clinical symptoms improve during fever. This fever induced amelioration of symptoms could be due to one of three possible causes, (1) the direct effect of temperature; (2) a resulting change in the immune inflammatory system function associated with the infection or fever; and/or (3) and increase in the functionality of a previously dysfunctional Locus Coeruleus-Noradrenerigic (LC-NA) system. Little has been done to explore the potential direct effect an increased body temperature may have on autism symptomology. Parental reports have demonstrated that during febrile episodes children with ASD have improved social cognition and language skills, and decreased disruptive behaviors. In order to further explore the direct temperature effect, further investigation is needed, which the investigators propose below. The investigators propose to complete a one year double blind crossover study with 15 children with ASD between the ages of 5 and 17 years old. Five children with ASD will complete a control protocol prior to beginning the full protocol with 10 additional ASD children. This will allow for any needed amendment of protocol parameters prior to completion of the full protocol.
The study is a randomized controlled trial to examine the efficacy of individual cognitive behavioral therapy (CBT) relative to a standard community treatment, in youngsters with autism spectrum disorder (ASD). The individual CBT program has been tailored over the last five years to the clinical needs of high-functioning youth with ASD.
Melatonin is a neurohormone produced from serotonin which promotes sleep. The alterations in central and peripheral serotonin neurobiology and in circadian sleep-wake rhythms observed in autistic disorder suggest abnormalities in melatonin secretion. Several studies have reported a decrease in melatonin secretion in individuals with autism. Furthermore, nocturnal excretion of 6-Sulphatoxymelatonin (the predominant melatonin metabolite) was significantly negatively correlated with severity of autistic impairments in verbal communication and play. Melatonin could therefore have a therapeutic effect on sleep problems and may play a role in the pathophysiology of autistic disorder. These data highlight the possible therapeutic interest of an oral administration of melatonin in patients with autistic disorder. Thus, the objective of this clinical trial is to study the relation between the melatonin dose administered and its effect on severity of autistic impairments especially in verbal communication and play.
The proposed study will result in a software application compatible with the Apple iPad, iPhone and iPod Touch (hereafter termed "iOS devices") which addresses several aspects of prosodic deficits common in speakers with Autism Spectrum Disorders (ASDs) and other communication disorders, using a developmentally appropriate, intuitive interface that requires little technical skill and which can be managed by educators and parents. The program will contain elements that aid in tracking and maintaining individual student progress records, and will be designed for use in the classroom, at home, and in other environments. This study's intended focus is on the feasibility and usability of the software application.
Neurophysiological, Molecular and Developmental Analysis of the glutamate synapse in Autism
This study is a large, multi-site, randomized controlled NIH trial that evaluates whether The P.L.A.Y. (Play and Language for Autistic Youngsters) Project is effective. The PLAY Project Home Consultation model coaches parents, through monthly home visits and the use of video feedback, to effectively interact with their young child with autism. The aims of the study are 1.) to show that the PLAY Home Consultants show fidelity to the model, 2.) that caregivers can be taught to interact in an engaging way with their child (with causing more stress), 3.) that the child then interacts better, improves his/her language, and has reduced severity of his or her autism.
There is accumulating evidence that genetic expression plays a role in autism spectrum disorder, but the regulation of such genes is poorly understood. Small RNA particles, called microRNA (miRNA), have the ability to alter gene expression. These particles can be packaged and released from brain cells into the blood. Changes in miRNA may contribute to the patterns observed in autism spectrum disorder. The purpose of this study is to identify small RNA particles that regulate gene expression in autism spectrum disorder. The goal is to identify miRNA expression patterns which may improve our understanding and diagnosis of autism spectrum disorder.
Autism Spectrum Disorders (ASD) are characterized by difficulties in language, social communication, and repetitive and restricted behaviors. ASD affects as many as 1 in 90-150 children. Sleep issues/insomnia is very common in children with ASD (50-80%). Insomnia has a negative impact on both the developmental and behavioral function of the child and the quality of life for the family. Causes of insomnia in children with ASD are multifactorial and can be difficult to treat effectively. Low iron stores, as manifest by low serum ferritin levels, is also common in children with ASD. Both insomnia and low iron stores are associated with Restless Legs Syndrome (RLS) and Periodic Limb Movement of Sleep (PLMS). Children with ASD often have difficulty communicating symptoms or tolerating Polysomnography (Sleep Study). This makes establishing a diagnosis of RLS or PLMS very difficult in children with ASD.
The purpose of this study is to determine whether the plasticity of autologous intrathecal hematopoietic cells would improve the neurologic and the social skills of pediatric patients with autism spectrum disorders.
The primary objective of this study is to evaluate and compare the safety and efficacy of Trichuris suis ova (TSO) therapy (versus placebo) in pediatric patients with autism. Evaluation of the safety and tolerability of treatment with TSO in the target population across the dose range being tested is considered a primary objective, while the primary efficacy objective will be assessed via the change from baseline in the Aberrant Behavior Checklist (ABC) subscale scores. Dose response will be considered a primary objective as well. Secondary assessments of efficacy will be assessed via: • The change from baseline in the Clinical Global Impression scale (CGI-I)