Literature DB >> 18309096

Breathing through an inspiratory threshold device improves stroke volume during central hypovolemia in humans.

Kathy L Ryan1, William H Cooke, Caroline A Rickards, Keith G Lurie, Victor A Convertino.   

Abstract

Inspiratory resistance induced by breathing through an impedance threshold device (ITD) reduces intrathoracic pressure and increases stroke volume (SV) in supine normovolemic humans. We hypothesized that breathing through an ITD would also be associated with a protection of SV and a subsequent increase in the tolerance to progressive central hypovolemia. Eight volunteers (5 men, 3 women) were instrumented to record ECG and beat-by-beat arterial pressure and SV (Finometer). Tolerance to progressive lower body negative pressure (LBNP) was assessed while subjects breathed against either 0 (sham ITD) or -7 cmH(2)O inspiratory resistance (active ITD); experiments were performed on separate days. Because the active ITD increased LBNP tolerance time from 2,014 +/- 106 to 2,259 +/- 138 s (P = 0.006), data were analyzed (time and frequency domains) under both conditions at the time at which cardiovascular collapse occurred during the sham experiment to determine the mechanisms underlying this protective effect. At this time point, arterial blood pressure, SV, and cardiac output were higher (P < or = 0.005) when breathing on the active ITD rather than the sham ITD, whereas indirect indicators of autonomic activity (low- and high-frequency oscillations of the R-to-R interval) were not altered. ITD breathing did not alter the transfer function between systolic arterial pressure and R-to-R interval, indicating that integrated baroreflex sensitivity was similar between the two conditions. These data show that breathing against inspiratory resistance increases tolerance to progressive central hypovolemia by better maintaining SV, cardiac output, and arterial blood pressures via primarily mechanical rather than neural mechanisms.

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Year:  2008        PMID: 18309096     DOI: 10.1152/japplphysiol.00439.2007

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  18 in total

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4.  Respiratory Training Improves Blood Pressure Regulation in Individuals With Chronic Spinal Cord Injury.

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5.  Cerebral blood velocity regulation during progressive blood loss compared with lower body negative pressure in humans.

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Journal:  J Appl Physiol (1985)       Date:  2015-07-02

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8.  Heat stress does not augment ventilatory responses to presyncopal limited lower body negative pressure.

Authors:  J Pearson; M S Ganio; R A I Lucas; T G Babb; C G Crandall
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9.  Reductions in central venous pressure by lower body negative pressure or blood loss elicit similar hemodynamic responses.

Authors:  Blair D Johnson; Noud van Helmond; Timothy B Curry; Camille M van Buskirk; Victor A Convertino; Michael J Joyner
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10.  Sympathetic responses to central hypovolemia: new insights from microneurographic recordings.

Authors:  Kathy L Ryan; Caroline A Rickards; Carmen Hinojosa-Laborde; William H Cooke; Victor A Convertino
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