Literature DB >> 8089258

Cardiovascular responses to repetitive exposure to hyper- and hypogravity states produced by parabolic flight.

C N Mukai1, C M Lathers, J B Charles, B S Bennett.   

Abstract

Physiologic changes to repetitive hyper- and hypogravity stresses occurring during eight to ten parabolas on NASA's KC-135 aircraft were studied. Hemodynamic responses in 11 subjects in 4 different postures (supine, standing, sitting, and semisupine Space Shuttle launch position) were determined using noninvasive impedance cardiography. Five seconds of heart rate, cardiac index, thoracic fluid index, stroke index, ejection velocity index, and ventricular ejection time data were averaged during four different gravity (g) states: 1.3g (before parabola onset); 1.9g (parabola entry); 0g (parabola peak); and 1.7g (parabola exit) for each subject. The standing position was associated with the largest changes in the cardiovascular response to hypo- and hypergravity. The thoracic fluid index did not indicate a headward redistribution during transition from a simulated launch position to weightlessness. Analysis of the eight to ten parabolas revealed that, in general, values obtained at 1.8g differed from 1.6g, 0g differed from 1.6 and 1.3g, and 1.6g differed from 1.3g. The factors of gravity, thoracic fluid index, and cardiac index exhibited significant differences that were most likely to occur between parabola 1 versus parabolas 6, 7, and 8, and parabola 2 versus parabolas 4 through 8. Only the parameter of thoracic fluid index exhibited significance for parabolas 3 versus parabolas 6 and 7.

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Year:  1994        PMID: 8089258     DOI: 10.1002/j.1552-4604.1994.tb04989.x

Source DB:  PubMed          Journal:  J Clin Pharmacol        ISSN: 0091-2700            Impact factor:   3.126


  3 in total

1.  Parasympathetic heart rate modulation during parabolic flights.

Authors:  F Beckers; B Seps; D Ramaekers; B Verheyden; A E Aubert
Journal:  Eur J Appl Physiol       Date:  2003-06-13       Impact factor: 3.078

2.  Quantification of left ventricular modification in weightlessness conditions from the spatio-temporal analysis of 2D echocardiographic images.

Authors:  C Corsi; C Lamberti; S Cerutti; J P Laulom; O Bailliart; B Cholley; A Capderou; P Vaida; E G Caiani
Journal:  Med Biol Eng Comput       Date:  2004-09       Impact factor: 2.602

3.  Interactions of the human cardiopulmonary, hormonal and body fluid systems in parabolic flight.

Authors:  U Limper; P Gauger; P Beck; F Krainski; F May; L E J Beck
Journal:  Eur J Appl Physiol       Date:  2014-03-13       Impact factor: 3.078

  3 in total

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