Literature DB >> 26379134

The Electrophysiological Phenomenon of Alzheimer's Disease: A Psychopathology Theory.

Ezra C Holston1.   

Abstract

The current understanding of Alzheimer's disease (AD) is based on the Aβ and tau pathology and the resulting neuropathological changes, which are associated with manifested clinical symptoms. However, electrophysiological brain changes may provide a more expansive understanding of AD. Hence, the objective of this systematic review is to propose a theory about the electrophysiological phenomenon of Alzheimer's disease (EPAD). The review of literature resulted from an extensive search of PubMed and MEDLINE databases. One-hundred articles were purposively selected. They provided an understanding of the concepts establishing the theory of EPAD (neuropathological changes, neurochemical changes, metabolic changes, and electrophysiological brain changes). Changes in the electrophysiology of the brain are foundational to the association or interaction of the concepts. Building on Berger's Psychophysical Model, it is evident that electrophysiological brain changes occur and affect cortical areas to generate or manifest symptoms from onset and across the stages of AD, which may be prior to pathological changes. Therefore, the interaction of the concepts demonstrates how the psychopathology results from affected electrophysiology of the brain. The theory of the EPAD provides a theoretical foundation for appropriate measurements of AD without dependence on neuropathological changes. Future research is warranted to further test this theory. Ultimately, this theory contributes to existing knowledge because it shows how electrophysiological changes are useful in understanding the risk and progression of AD across the stages.

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Year:  2015        PMID: 26379134     DOI: 10.3109/01612840.2015.1015696

Source DB:  PubMed          Journal:  Issues Ment Health Nurs        ISSN: 0161-2840            Impact factor:   1.835


  1 in total

1.  Dehydroevodiamine·HCl enhances cognitive function in memory-impaired rat models.

Authors:  Ki Young Shin; Ka Young Kim; Yoo-Hun Suh
Journal:  Korean J Physiol Pharmacol       Date:  2016-12-21       Impact factor: 2.016

  1 in total

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