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Anthony Bailey

Publications and source records attributed to Anthony Bailey.

2 recordsLinked to original sources

Autism and pervasive developmental disorders.

The quantity and quality of research into autism and related conditions have increased dramatically in recent years. Consequently we selectively review key accomplishments and highlight directions for future research. More consistent approaches to diagnosis and more rigorous assessment methods have significantly advanced research, although the boundaries of the 'broader phenotype' remain to be defined and the validity of Asperger's disorder as a discrete syndrome remains controversial. Recent epidemiological studies have shown that Autism Spectrum Disorders are common, but there continues to be debate about the causes of the increase in the frequency with which autism is diagnosed. Psychological research has helped to develop new developmental models for the disorder and there have also been significant advances in the molecular genetics of autism and understanding of the underlying neurobiological processes. Areas important for future research include the study of autism as it first develops, i.e., in infants and very young children, and of specific processes (psychological and neurobiological) which underlie the disorder. Significant challenges lie ahead in evaluating the growing number of treatments for autism and in integrating the results of research into treatment and educational settings.

Autistic Disorder↗

Implications of the broader phenotype for concepts of autism.

Autism, like many new diseases, was initially characterized by its most severe phenotypic manifestation and the ability to explain these distinctive features has been the benchmark against which explanatory models have subsequently been judged. Our understanding of the significance of milder phenotypes in other relatives has shifted from presumed environmental aetiological factors to variable manifestations of a complex disease process. In this paper we outline how the challenge of explaining the full range of phenotypic expression inevitably leads to more complex models of disease process than previously supposed. The implications of milder phenotypes for genetic, neurobiological and cognitive models of autism will be considered in relationship to several key features of complex diseases: complexity, hierarchy, emergence and coherence.

Autistic Disorder↗