Evidence for Early Vulnerability of the Medial and Inferior Aspects of the Temporal Lobe in an 82-Year-Old Patient With Preclinical Signs of Dementia
- 1 September 1992
- journal article
- case report
- Published by American Medical Association (AMA) in Archives of Neurology
- Vol. 49 (9) , 946-953
- https://doi.org/10.1001/archneur.1992.00530330070019
Abstract
• Detailed neuropathologic studies of neurofibrillary tangle and senile plaque distribution have shown that key elements of certain neocortical and hippocampal circuits are either compromised or lost in Alzheimer's disease. It has been suggested that a global corticocortical disconnection underlies dementia and leads to the dramatic disruption of integrated functions exhibited by patients with Alzheimer's disease. To investigate the distribution of lesions associated with the earliest indications of incipient dementia, we performed a quantitative neuropathologic evaluation of a nondemented 82-year-old patient demonstrating globally intact intellectual function but initial signs of impairment of specific cognitive functions before death. We observed densities of senile plaques comparable to those found in Alzheimer's disease throughout the cerebral cortex, whereas extensive neurofibrillary tangle formation was restricted to selective areas of the temporal lobe. The results of this systematic quantitative and comparative analysis of medial and inferior temporal lobe structures suggest a functional relationship between the degree of cognitive decline evidenced in the earliest stages of Alzheimer's disease and the anatomic progression of Alzheimer's disease-related pathologic changes along specific elements of the cortical circuitry.Keywords
This publication has 10 references indexed in Scilit:
- An improved thioflavine S method for staining neurofibrillary tangles and senile plaques in Alzheimer's diseaseCellular and Molecular Life Sciences, 1992
- A68: a Major Subunit of Paired Helical Filaments and Derivatized Forms of Normal TauScience, 1991
- A subpopulation of primate corticocortical neurons is distinguished by somatodendritic distribution of neurofilament proteinBrain Research, 1991
- Neurofibrillary changes confined to the entorhinal region and an abundance of cortical amyloid in cases of presenile and senile dementiaActa Neuropathologica, 1990
- Large amounts of neocortical βA4 deposits without neuritic plaques nor tangles in a psychometrically assessed, non-demented personNeuroscience Letters, 1990
- Monoclonal antibody to neurofilament protein (SMI‐32) labels a subpopulation of pyramidal neurons in the human and monkey neocortexJournal of Comparative Neurology, 1989
- The Prepiriform Cortex in Dementia of the Alzheimer TypeArchives of Neurology, 1987
- THE TOPOGRAPHIC DISTRIBUTION OF SENILE PLAQUES AND NEUROFIBRILLARY TANGLES IN THE BRAINS OF NON‐DEMENTED PERSONS OF DIFFERENT AGESNeuropathology and Applied Neurobiology, 1987
- Observations on the brains of demented old peopleJournal of the Neurological Sciences, 1970
- Observations on the brains of non-demented old peopleJournal of the Neurological Sciences, 1968