Publications by authors named "U Tomiyasu"

Purpose: We performed this study to determine whether significant head trauma in human adults can result in hippocampal cell loss, particularly in hilar (polymorph) and CA3 neurons, similar to that observed in animal models of traumatic brain injury. We examined the incidence of hippocampal pathology and its relation to temporal neocortical pathology, neuronal reorganization, and other variables.

Methods: Twenty-one of 200 sequential temporal lobectomies had only trauma as a risk factor for epilepsy.

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Objectives: To quantify the progression of senile plaques, neurofibrillary tangles, cerebral amyloid angiopathy, and microglial activation in the cortex and white matter of patients with Alzheimer disease evaluated at both biopsy and subsequent autopsy and correlate these changes with the progression of neurologic impairment.

Setting: Academic referral center for patient with Alzheimer disease.

Patients: Four patients meeting the clinical criteria for Alzheimer disease, enrolled in a pilot study for the evaluation of response to intracerebroventricular administration of bethanechol chloride.

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In 1995, we mapped a gene for Lafora's progressive myoclonus epilepsy in chromosome 6q23-25. In 1997 and 1998, we reduced the size of the locus to 300 kb, and an international collaboration identified mutations in the protein tyrosine phosphatase gene. Here, we examine for heterogeneity through the admixture test in 22 families and estimate the proportion of linked families to be 75 to 85%.

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Cranial dura maters of 36 consecutive infants with sudden infant death syndrome (SIDS) and 16 control infants coming to the Department of Coroner were examined microscopically to determine if subdural neomembranes are associated with cases submitted as SIDS. Thirty-one percent (31%) of the infants with SIDS and 13% of control infants had organizing subdural neomembranes (p > 0.05).

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This 53-year-old man presented with a syncopal episode 31 years after undergoing craniotomy and external-beam radiation for a pituitary macroadenoma. A gadolinium-enhanced magnetic resonance (MR) image of the brain demonstrated a 2.5-cm enhancing mass in the right caudate region that had not been seen on previous studies.

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