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Biomedical subjects

T H Jobe

Publications and source records attributed to T H Jobe.

10 recordsLinked to original sources

Neuropoiesis: proposal for a connectionistic neurobiology.

Given current assumptions about the biology of neural organization, some connectionists believe that it may not be possible to accurately model the brain's neural architecture. We have identified five restrictive neurobiological dogmas that we believe have limited the exploration of more fundamental correlations between computational and biological neural networks. We postulate that: 1) the dendritic tree serves as a synapse storage device rather than a simple summation device; 2) connection strength between neurons depends on the number and location of synapses of similar weight, not on synapses of variable weights; 3) axonal sprouting occurs regularly in adult organisms; 4) the postsynaptic genome directly controls the presynaptic cell via mRNA, rather than indirectly by the expression of NCAMs, reverse neurotransmitters, etc.; 5) dendritic spines serve a trophic function by controlling development of new sprouts via a process we term retroduction. We entertain an alternative formulation of a computational neural element that is fully consistent with modern neuroscience research. We then show how our model neuron can learn under Hebbian conditions, and extend the model to explain non-Hebbian, one-trial learning. This work is significant because by stretching the theoretical boundaries of modern neuroscience, we show how connectionists can potentially create new, more biologically-based neural elements which, when, interconnected into networks, exhibit not only properties of existing backpropagation networks, but other physiological properties as well.

Adult

Schizophrenic deficits: neuroleptics and the prefrontal cortex.

Modern techniques have been applied to brain modeling, based on recent approaches in the artificial intelligence field that use brain-like "connectionistic" computational architectures. The model proposed by Cohen and Servan-Schreiber uses a gain parameter which they identify with dopamine function. They apply their model to neuroleptically treated schizophrenia patients who show improved task performance which they link to increased dopamine function and increased gain in the prefrontal cortex. However, evidence indicates that antipsychotic medications block dopamine (especially D2) receptors, decreasing mesolimbic and mesocortical dopamine function. If therapeutic dosages of neuroleptics diminish dopamine function, this would decrease gain in context modules needed for adequate task performance. Schizophrenia patients would perform more poorly by further reducing gain in their already compromised context modules. The current investigators suggest three possible ways to resolve this difficulty, to explain why normals perform more poorly when taking neuroleptics, although acute schizophrenia patients' performance may be enhanced in several areas. Evidence would suggest that multiple processes occur simultaneously in neuroleptically treated patients with some processes counterbalancing others.

Antipsychotic Agents

Pisa syndrome mistaken for conversion in an adolescent.

We present a case of acute dystonia in an adolescent, with features that fit the description of the Pisa syndrome. The symptoms developed postoperatively, in a non-psychiatric setting, following administration of antiemetic medication, and the phenomenon was misdiagnosed as a conversion disorder. This case reinforces previous reports cautioning against misinterpretation of dystonic reactions as functional disorders, especially in children and adolescents.

Adolescent

4 p.m. baseline cortisol level as a predictor of DST results in depression.

To assess the relationship of baseline cortisol to the 1 mg dexamethasone suppression test (DST), 4 p.m. baseline and 4 p.m. postdexamethasone blood samples were drawn on 52 consecutive depressed outpatients. Baseline cortisol correlated significantly with post-DST values, and baseline levels above 15 micrograms/dl predicted DST nonsuppression with 90.4% accuracy. These data lend some support to the usefulness of baseline cortisol determination in depressed outpatients in whom a full DST may be difficult.

Ambulatory Care

Correlation of the Hamilton and Carroll Depression Rating Scales: a replication study among psychiatric outpatients.

The Carroll Depression Rating Scale (CRS) was developed as a self-administered variant of the widely used Hamilton Depression Rating Scale (HDRS). This study is a replication. The CRS and HDRS total and item correlations are compared for a sample of 64 outpatients. The CRS is shown to be a reliable and convenient alternative to the HDRS, suitable for routine office practice.

Adult