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呼吸感应体积描记法横截面积的准确性。

Accuracy of respiratory inductive plethysmographic cross-sectional areas.

作者信息

Watson H L, Poole D A, Sackner M A

机构信息

Division of Pulmonary Disease, University of Miami School of Medicine, Mount Sinai Medical Center, Florida 33140.

出版信息

J Appl Physiol (1985). 1988 Jul;65(1):306-8. doi: 10.1152/jappl.1988.65.1.306.

Abstract

The present study was undertaken to evaluate whether the respiratory inductive plethysmograph (RIP) 1) reflects changes of cross-sectional area enclosed by its transducer band in the presence of deformations of shape or whether it 2) has a stable base line. Testing of RIP was carried out with a device incorporating a thermally compensated oscillator and digital demodulatory circuitry. This system, introduced to commerce in 1983, superceded the nonthermal compensated oscillatory and analog demodulator circuitry first used in 1977. Testing the effects of changing cross-sectional area was accomplished by stretching a standard RIP transducer band around wooden dowels placed in holes on a peg board grid to form 23 curved and 5 rectangular shapes. The output voltage from RIP was linear for both the curved and rectangular shapes for changes of cross-sectional area within a physiological range. However, the regression line of voltage vs. cross-sectional area for the rectangular shapes was parallel and slightly displaced from the regression line for the curved shapes due to mutual coupling of inductance in the corners. Base-line drift from a RIP transducer band stretched to enclose an elliptical shape was less than 2.5 mV over a 12-h observation period. Current RIP technology accurately reflects changes of cross-sectional area of physiological shapes and has a stable base line.

摘要

本研究旨在评估呼吸感应体积描记器(RIP):1)在存在形状变形的情况下,是否能反映其换能器带所包围的横截面积变化;或者2)是否具有稳定的基线。使用包含热补偿振荡器和数字解调电路的设备对RIP进行测试。该系统于1983年投入商业使用,取代了1977年首次使用的非热补偿振荡和模拟解调器电路。通过将标准RIP换能器带围绕放置在钉板网格孔中的木销拉伸,以形成23个弯曲形状和5个矩形形状,来测试横截面积变化的影响。在生理范围内,横截面积变化时,RIP的输出电压对于弯曲形状和矩形形状均呈线性。然而,由于角部电感的相互耦合,矩形形状的电压与横截面积的回归线与弯曲形状的回归线平行且略有偏移。在12小时的观察期内,拉伸以包围椭圆形的RIP换能器带的基线漂移小于2.5 mV。当前的RIP技术能够准确反映生理形状的横截面积变化,并具有稳定的基线。

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