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Autonomic dysfunction in PD: a window to early detection?

Abstract
It has been suggested that autonomic dysfunction constitutes a biomarker for early detection of the disease process in Parkinson disease (PD). Recent findings based on cardiac sympathetic and striatal dopaminergic imaging in the same patients indicate that this view is overly simple. Although evidence of cardiac sympathetic denervation is associated with other non-motor manifestations such as anosmia, REM behavior disorder, dementia, baroreflex failure, and orthostatic hypotension (OH), across individual patients the severities of OH and of the cardiac sympathetic lesion (indicated by thoracic 6-[(18)F]fluorodopamine PET scanning) are unrelated to the severity of the putamen dopaminergic lesion (indicated by brain 6-[(18)F]fluorodopa PET scanning). Moreover, whereas cases have been reported with neuroimaging evidence of cardiac sympathetic denervation several years before motor onset of PD, in other cases loss of cardiac sympathetic innervation progresses approximately concurrently with the movement disorder or can even occur as a late finding. Bases for independent sympathetic noradrenergic and striatal dopaminergic lesions in Lewy body diseases remain poorly understood. In elderly patients with unexplained OH or other evidence of autonomic failure, it is reasonable for clinicians to look for subtle signs of parkinsonism, such as masked facies, cogwheel rigidity, and shuffling gate.
AuthorsDavid S Goldstein, LaToya Sewell, Yehonatan Sharabi
JournalJournal of the neurological sciences (J Neurol Sci) Vol. 310 Issue 1-2 Pg. 118-22 (Nov 15 2011) ISSN: 1878-5883 [Electronic] Netherlands
PMID21529844 (Publication Type: Journal Article, Research Support, N.I.H., Intramural, Review)
CopyrightPublished by Elsevier B.V.
Chemical References
  • Radiopharmaceuticals
Topics
  • Autonomic Nervous System Diseases (etiology)
  • Disease Progression
  • Early Diagnosis
  • Humans
  • Models, Biological
  • Parkinson Disease (complications, diagnosis, diagnostic imaging)
  • Radionuclide Imaging
  • Radiopharmaceuticals

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