Literature DB >> 1455095

Reduced tidal volume increases 'air hunger' at fixed PCO2 in ventilated quadriplegics.

H L Manning1, S A Shea, R M Schwartzstein, R W Lansing, R Brown, R B Banzett.   

Abstract

The act of breathing diminishes the discomfort associated with hypercapnia and breath-holding. To investigate the mechanisms involved in this effect, we studied the effect of tidal volume (VT) on CO2-evoked air hunger in 5 high-level quadriplegic subjects whose ventilatory capacity was negligible, and who lacked sensory information from the chest wall. Subjects were ventilated at constant frequency with a hyperoxic gas mixture, and end-tidal PCO2 was maintained at a constant but elevated level. VT was varied between the subjects' normal VT and a smaller VT. Subjects used a category scale to rate their respiratory discomfort or 'air hunger' at 30-40 sec intervals. In 4 of 5 subjects there was a strong inverse relationship between breath size and air hunger ratings. The quality of the sensation associated with reduced VT was nearly identical to that previously experienced with CO2 alone. We conclude that afferent information from the lungs and upper airways is sufficient to modify the sensation of air hunger.

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Year:  1992        PMID: 1455095     DOI: 10.1016/0034-5687(92)90131-f

Source DB:  PubMed          Journal:  Respir Physiol        ISSN: 0034-5687


  31 in total

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2.  Coughing induced by airway irritation modulates the sensation of air hunger.

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3.  The time-course of cortico-limbic neural responses to air hunger.

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4.  Lower tidal volumes for everyone: principle or prescription?

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5.  Aerosol furosemide for dyspnea: High-dose controlled delivery does not improve effectiveness.

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6.  Physiological mechanisms of dyspnea during exercise with external thoracic restriction: role of increased neural respiratory drive.

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7.  A Multidimensional Profile of Dyspnea in Hospitalized Patients.

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Review 8.  Cortico-limbic circuitry and the airways: insights from functional neuroimaging of respiratory afferents and efferents.

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Review 9.  The multiple dimensions of dyspnea: review and hypotheses.

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Review 10.  Physiologic changes and clinical correlates of advanced dyspnea.

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