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February 13, 2026Journal of Nuclear Medicine Technology2 citations

Brain Primer, Part 2: Pathophysiology of Neurodegeneration

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SJSara L. Johnson

Key Points

  • This work aims to summarize the mechanisms and anatomical changes in neurodegenerative diseases.
  • Integrated review of neurodegenerative disease literature
  • Analysis of neuroanatomy and physiology basics
  • Evaluation of neuroinflammatory responses from microglia and astrocytes
  • Identified key features of neurodegeneration including amyloid-β plaques and tau hyperphosphorylation
  • Outlined the role of microtubule destabilization and synaptic degeneration
  • Described the implications of neuroinflammatory responses in disease progression

Abstract

Neurodegenerative diseases are characterized by progressive neuronal dysfunction, synaptic loss, and decline in cognitive, behavioral, or motor function. Understanding these disorders requires a foundational knowledge of neuroanatomy and physiology. Although normal aging leads to expected neuronal loss and changes in gray and white matter, neurodegenerative diseases are marked by systematic and progressive destruction of normal anatomy and function. Neurodegenerative diseases involve several key features, such as accumulation of amyloid-β plaques, tau hyperphosphorylation, microtubule destabilization, synaptic degeneration, and widespread neuroinflammatory responses driven by microglia and astrocytes. This article provides an integrated review of neurodegenerative mechanisms and provides a pathophysiologic overview of neurodegenerative diseases relevant to nuclear medicine and molecular imaging.

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Cite This Study

Sara L. Johnson (2026) studied this question.

synapsesocial.com/papers/698ebf1d85a1ff6a930164a0https://doi.org/10.2967/jnmt.125.271788
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