Literature DB >> 18972278

Time course and degree of hyperinflation with metronome-paced tachypnea in COPD patients.

S Samuel Weigt1, Marlon Abrazado, Eric C Kleerup, Donald P Tashkin, Christopher B Cooper.   

Abstract

In COPD patients, tachypnea should increase (dynamic) hyperinflation by shortening expiratory time. We developed a method to evaluate the time course and degree of dynamic hyperinflation during metronome-paced tachypnea. Fourteen patients with stable COPD (FEV(1) 43 +/- 13% predicted) were studied. Inspiratory capacity (IC) was measured breathing through a flow transducer. Subjects paced their respiratory rate (f(R)) at 20/min, 30/min and 40/min for 60-second periods in response to audible tones generated by a computer. IC measurements were obtained at baseline and after 30 and 60 seconds at each f(R). End-tidal carbon dioxide was monitored and f(R) was allowed to return to baseline between periods of tachypnea. Tachypnea produced reductions in IC of 200 +/- 240 ml, 380 +/- 330 ml and 540 +/- 300 ml after 30 seconds at 20/min, 30/min and 40/min, respectively. IC reduction at 60 seconds was similar to 30 seconds for each f(R). In patients with moderate-to-severe COPD, the dynamic hyperinflation induced by metronome-paced tachypnea was shown to occur rapidly and be complete by 30 seconds for a given f(R). Controlled increments in f(R) produced stepwise increases in dynamic hyperinflation. This standardized method could be a useful and easier method of assessing dynamic hyperinflation in COPD patients before and after therapeutic interventions.

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Year:  2008        PMID: 18972278     DOI: 10.1080/15412550802363428

Source DB:  PubMed          Journal:  COPD        ISSN: 1541-2563            Impact factor:   2.409


  2 in total

1.  The measurement of lung volumes using body plethysmography and helium dilution methods in COPD patients: a correlation and diagnosis analysis.

Authors:  Yongjiang Tang; Mingke Zhang; Yulin Feng; Binmiao Liang
Journal:  Sci Rep       Date:  2016-11-23       Impact factor: 4.379

2.  Induction of dynamic hyperinflation by expiratory resistance breathing in healthy subjects - an efficacy and safety study.

Authors:  Matthias Helmut Urban; Anna Katharina Mayr; Ingrid Schmidt; Eduard Margulies; Erwin Grasmuk-Siegl; Otto Chris Burghuber; Georg-Christian Funk
Journal:  Exp Physiol       Date:  2020-11-23       Impact factor: 2.969

  2 in total

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