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Clinical models of cardiovascular regulation after weightlessness

  • David Robertson*
  • , Giris Jacob
  • , Andrew Ertl
  • , John Shannon
  • , Rogelio Mosqueda-Garcia
  • , Rose Marie Robertson
  • , Italo Biaggioni
  • *Corresponding author for this work
  • Vanderbilt University

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

After several days in microgravity, return to earth is attended by alterations in cardiovascular function. The mechanisms underlying these effects are inadequately understood. Three clinical disorders of autonomic function represent possible models of this abnormal cardiovascular function after spaceflight. They are pure autonomic failure, baroreflex failure, and orthostatic intolerance. In pure autonomic failure, virtually complete loss of sympathetic and parasympathetic function occurs along with profound and immediate orthostatic hypotension. In baroreflex failure, various degrees of debuffering of blood pressure occur. In acute and complete baroreflex failure, there is usually severe hypertension and tachycardia, while with less complete and more chronic baroreflex impairment, orthostatic abnormalities may be more apparent. In orthostatic intolerance, blood pressure fall is minor, but orthostatic symptoms are prominent and tachycardia frequently occurs. Only careful autonomic studies of human subjects in the microgravity environment will permit us to determine which of these models most closely reflects the pathophysiology brought on by a period of time in the microgravity environment.

Original languageEnglish
Pages (from-to)S80-S84
JournalMedicine and Science in Sports and Exercise
Volume28
Issue number10 SUPPL.
DOIs
StatePublished - Oct 1996
Externally publishedYes

Funding

FundersFunder number
National Institute of Neurological Disorders and StrokeU01NS033460

    Keywords

    • ARTERIOLAR RESISTANCE
    • BAROREFLEX FAILURE
    • ORTHOSTATIC FAILURE
    • ORTHOSTATIC HYPERTENSION
    • PARTIAL DYSAUTONOMIA
    • PURE AUTONOMIC FAILURE

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