Effects of Inspiratory Impedance on Hemodynamic Responses to a Squat-stand Test in Human Volunteers: Implications for Treatment of Orthostatic Hypotension

Abstract

Recent studies in our laboratory demonstrated that spontaneous breathing through an inspiratory impedance threshold device (ITD) increased heart rate (HR), stroke volume (SV), cardiac output (Q), and mean arterial blood pressure (MAP) in supine human subjects. In this study, we tested the effectiveness of an ITD as a countermeasure against development of orthostatic hypotension, provoked using a squat-to-stand test (SST). Using a prospective, randomized blinded protocol, 18 healthy, normotensive volunteers (9 males, 9 females) completed two-counterbalanced 6-min SST protocols with and without (sham) an ITD set to open at 0.7 kPa (7-cm H 2 O) pressure. HR, SV, Q, total peripheral resistance (TPR), and MAP were assessed noninvasively with infrared finger photoplethysmography. Symptoms were recorded on a 5-point scale (1=normal; 5=faint) of subject perceived rating (SPR). The reduction in TPR produced by SST ( 35 + or - 5 %) was not affected by the ITD. Reduction in MAP with ITD during the transient phase of the SST ( 3.6+ or - 0.5 kPa or 27 + or - 4 mmHg) was less ( P =0.03) than that measured while breathing through a sham device ( 4.8 + or - 0.4 kPa or 36+ or - 3 mmHg) despite similar (P less than 0.926) elevations in HR of 15 2 bpm. SV (+2+ or -4 %) and Q (+22+ or -5%) with the ITD were higher (P less than 0.04) than SV ( 8+ or - 4%) and Q (+10 6 %) without the ITD. SPR was 1.4 + or - 0.1 with ITD compared to 2.0 + or - 0.2 with the sham device (P less than 0.04). This reduction in orthostatic symptoms with application of an ITD during the SST was associated with higher MAP, SV and Q. Our results demonstrate the potential application of an ITD as a countermeasure against orthostatic hypotension.

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Document Details

Document Type
Technical Report
Publication Date
Apr 28, 2005
Accession Number
ADA628185

Entities

People

  • Ahamed H Idris
  • Donald F. Doerr
  • Duane A. Ratliff
  • Jacqueline Crissey
  • Keith G. Lurie
  • Victor A Convertino

Organizations

  • United States Army Institute of Surgical Research

Tags

Communities of Interest

  • Biomedical

DTIC Thesaurus Topics

  • Biological Sciences
  • Blood Flow
  • Cardiac Arrest
  • Cardiopulmonary Resuscitation
  • Cardiovascular Diseases
  • Cardiovascular Physiological Phenomena
  • Cardiovascular System
  • Computer Programming
  • Health Services
  • Heart Rate
  • Hemorrhagic Shock
  • Hypotension
  • Impedance
  • Medical Personnel
  • Respiration
  • Respiratory Physiological Phenomena
  • Vascular Diseases

Fields of Study

  • Medicine

Readers

  • Auditory Neuroscience/Auditory Physiology.
  • Brain and Cognitive Science; Experimental Psychology; Cognitive Neuroscience
  • Trauma Surgery or Emergency Medicine.