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Biomedical subjects

L A Sweeney

Publications and source records attributed to L A Sweeney.

2 recordsLinked to original sources

Inferring genotype from clinical phenotype through a knowledge based algorithm.

Genomic information is becoming increasingly useful for studying the origins of disease. Recent studies have focused on discovering new genetic loci and the influence of these loci upon disease. However, it is equally desirable to go in the opposite direction--that is, to infer genotype from the clinical phenotype for increased efficiency of treatment. This paper proposes a methodology for such inference. Our method constructs a simple knowledge-based model without the need of a domain expert and is useful in situations that have very little data and/or no training data. The model relates a disease's symptoms to particular clinical states of the disease. Clinical information is processed using the model, where appropriate weighting of the symptoms is learned from observed diagnoses to subsequently identify the state of the disease presented in hospital visits. This approach applies to any simple genetic disorder that has defined clinical phenotypes. We demonstrate the use of our methods by inferring age of onset and DNA mutations for Huntington's disease patients.

Algorithms↗

Reaction and movement time variability in ADD/H: effect of tactile experience.

A clinical group of children with attention deficit disorders with hyperactivity (ADD/H) was compared to a control group, each divided into high and low variability (HV and LV) on reaction time (RT) and movement time (MT) measures. The effects of tactile-somatosensory experience on performance was also investigated. Analyses of the HV and LV groups based on RT variability found improvement on MT in both HV groups (ADD/H and control) following a tactile-somatosensory task. Both HV groups based on MT variability also showed improvement in MT following the TPT administration. No LV group (based on either RT or MT) showed improvement in MT or RT. The results in this study indicated that HV (either RT or MT) predicted improved speed and accuracy following a tactile somatosensory task. Several neuroanatomical models for the study of response variability and the role of tactile somatosensory training programmes in paediatric rehabilitation are discussed.

Adolescent↗