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Title:
Neuronal loss, neurofibrillary tangles and granulovacuolar degeneration in the hippocampus with ageing and dementia | Acta Neuropathologica
Description:
The number of pyramidal neurones in the hippocampal cortex was determined in serially sectioned mesial temporal lobe from brains of 18 mentally normal people; as well as those of 8 demented patients with pathologically confirmed Alzheimer
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google, scholar, dementia, article, ageing, quantitative, neuronal, loss, degeneration, cortex, alzheimers, neurofibrillary, tangles, granulovacuolar, disease, neuropath, brain, senile, cerebral, privacy, cookies, content, acta, hippocampus, ball, neurones, brains, access, subjects, neurol, data, publish, search, study, number, age, springer, analysis, information, log, journal, research, january, demented, patients, discover, download, optional, personal, parties,
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month download article/chapter handbuch der geisteskrankheiten privacy choices/manage cookies full article pdf alzheimer-type neurodegenerative degenerative nerve cell neurologically healthy subjects disease neurodegeneration neuronal loss european economic area scope submit manuscript negative exponential correlation aged human brain clinical neurological sciences article ball related subjects conditions privacy policy check access instant access ball rights january 1977 volumeΒ 37 cerebral grey matter accepting optional cookies quantitative histological studies dements' brains showed pathologically confirmed alzheimer' neurofibrillary tangles granulovacuolar degeneration neurofibrillary degeneration journal finder publish article log hippocampal cortex gradual loss neuronal fall quantitative study article cite normal ageing ageing brain demented patients' brains acta neuropathol 37 privacy policy personal data neurology diseases books a elderly subjects acta neuropath optional cookies senile dementia manage preferences
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headline:Neuronal loss, neurofibrillary tangles and granulovacuolar degeneration in the hippocampus with ageing and dementia
description:The number of pyramidal neurones in the hippocampal cortex was determined in serially sectioned mesial temporal lobe from brains of 18 mentally normal people; as well as those of 8 demented patients with pathologically confirmed Alzheimer's disease. Normal ageing was accompanied by a gradual loss of neurones, whereas dements' brains showed a much more severe decrease, exceeding that of controls at any age. A high degree of negative exponential correlation was found between the density of neurones/mm3 of cortex and both the number of neurones with neurofibrillary degeneration and the number with granulovacuolar degeneration. The functional significance of the latter changes is thus probably greater than previously assumed, given the diminished population of surviving neurones in which these alterations appear. Both tangles and granulovacuoles demonstrated a stronger propensity for occurring in the posterior half of the hippocampus in demented patients' brains. This would not have been predicted from the relative distribution of neuronal loss in the two halves. The posterior portion of the hippocampus may be considerably more susceptible to the degenerative nerve cell changes prominent in dementia of the Alzheimer type.
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Ageing
Dementia
Neuronal loss
Neurofibrillary tangles
Granulovacuolar degeneration
Hippocampus
Pathology
Neurosciences
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headline:Neuronal loss, neurofibrillary tangles and granulovacuolar degeneration in the hippocampus with ageing and dementia
description:The number of pyramidal neurones in the hippocampal cortex was determined in serially sectioned mesial temporal lobe from brains of 18 mentally normal people; as well as those of 8 demented patients with pathologically confirmed Alzheimer's disease. Normal ageing was accompanied by a gradual loss of neurones, whereas dements' brains showed a much more severe decrease, exceeding that of controls at any age. A high degree of negative exponential correlation was found between the density of neurones/mm3 of cortex and both the number of neurones with neurofibrillary degeneration and the number with granulovacuolar degeneration. The functional significance of the latter changes is thus probably greater than previously assumed, given the diminished population of surviving neurones in which these alterations appear. Both tangles and granulovacuoles demonstrated a stronger propensity for occurring in the posterior half of the hippocampus in demented patients' brains. This would not have been predicted from the relative distribution of neuronal loss in the two halves. The posterior portion of the hippocampus may be considerably more susceptible to the degenerative nerve cell changes prominent in dementia of the Alzheimer type.
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Ageing
Dementia
Neuronal loss
Neurofibrillary tangles
Granulovacuolar degeneration
Hippocampus
Pathology
Neurosciences
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