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Reliability of respiratory tidal volume estimation by means of ambulatory inductive plethysmography.

机译:通过动态感应体积描记法估算呼吸潮气量的可靠性。

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Ambulatory monitoring of ventilatory parameters in everyday life, field research and clinical situations may offer new insights into respiratory functioning in health and disease. Recent technological advances that employ ambulatory inductive plethysmography could make monitoring of respiration outside the clinic and laboratory feasible. Inductive plethysmography provides a method for nonintrusive assessment of both timing (e.g. respiration rate) and volumetric parameters (e.g. tidal volume and minute ventilation), by which tidal volume is initially calibrated to direct measures of volume. Estimates of tidal volume assessed by this technique have been validated in laboratory investigations, usually examining within-individual relations to direct measures over a large range of tidal volume variation. However, the reliability of individual differences in tidal volume or other breathing parameters has not been tested under naturalistic measurement conditions using inductive plethysmography. We examined the test-retest reliability of respiration rate, tidal volume and other volumetric parameters of breathing over a period of six weeks of repeated measurements during baseline conditions and breathing exercises with 16 healthy freely moving volunteers in a Yoga course. Reliability of measurement was evaluated by calculating the average week-to-week between-subject correlation coefficients for each physiological measure. Additionally because body-mass index has been previously positively correlated to tidal volume, we also assessed this relationship as an external criterion of validity of tidal volume estimation. Regarding the latter, similar correlations to those previous studies were found (r = 0.6). Furthermore, reliability estimates were high and consistent across respiratory measures (typically r's = 0.7-0.8). These results suggest the validity of ambulatory inductive plethysmographic measurement of respiration, at least under relatively sedentary conditions. Findings also point to the stability of individual differences in respiratory parameters over consecutive weeks.
机译:对日常生活,现场研究和临床情况中的通气参数进行动态监视可能会为健康和疾病中的呼吸功能提供新的见解。采用动态感应容积描记法的最新技术进展可能使在诊所和实验室外进行呼吸监测成为可能。感应体积描记法提供了一种对时机(例如呼吸频率)和体积参数(例如潮气量和分钟通气量)进行非侵入式评估的方法,通过该方法可以初步校准潮气量以直接测量体积。通过这种技术评估的潮气量估计值已在实验室调查中得到验证,通常会检查个体内部的关系以在大范围的潮气量变化范围内采取直接措施。但是,尚未在自然测量条件下使用感应体积描记法测试潮气量或其他呼吸参数个体差异的可靠性。我们在基线状况下进行了六周的重复测量,并在瑜伽课程中与16名健康自由活动的志愿者进行了呼吸测试,潮气量和其他呼吸体积参数的重测可靠性测试。通过计算每种生理测量的平均每周与受试者之间的相关系数来评估测量的可靠性。另外,由于身体质量指数以前已与潮气量成正相关,因此我们也将此关系作为潮气量估算有效性的外部标准进行了评估。关于后者,发现与先前的研究相似(r = 0.6)。此外,可靠性估计是很高的,并且在呼吸测量之间是一致的(通常r = 0.7-0.8)。这些结果表明,至少在相对久坐的情况下,动态感应体积描记法测量呼吸的有效性。研究结果还表明,连续几周的呼吸参数个体差异具有稳定性。

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