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主动加压服装可预防人体倾斜诱发的直立性心动过速。

Active compression garment prevents tilt-induced orthostatic tachycardia in humans.

作者信息

Kelly Kevin L, Johnson Christopher P, Dunne Lucy E, Holschuh Brad, Joyner Michael, Johnson Bruce D

机构信息

Center for Clinical and Translational Sciences, Mayo Clinic, Rochester, Minnesota.

Department of Cardiovascular Diseases, Mayo Clinic, Rochester, Minnesota.

出版信息

Physiol Rep. 2019 Apr;7(7):e14050. doi: 10.14814/phy2.14050.

Abstract

Compression garments are used by patients with lower extremity edema to help regulate fluid distribution and to prevent orthostatic symptoms. Current compression stockings are often reported as uncomfortable and adherence is poor. The current study was conducted to assess the efficacy of a novel active compression garment on healthy individuals undergoing 60-degree head-up tilts for 10 min to induce venous pooling and subsequent physiological responses. During tilts while garments were on, participants' absolute change in heart rate relative to baseline was lower (16.7 ± 8.7 BPM) compared to control (20.9 ± 11.47 BPM, P = 0.002). There were no differences in changes in mean arterial blood pressure between conditions (P = 0.303). One participant had a pre-syncopal event which occurred during a tilt without garments. This participant did not experience pre-syncopal symptoms with the garments on. All together, these data suggest that a novel active compression garment is capable of blunting increases in heart rate during head-up tilt. While untested thus far in patient populations, these garments may prove efficacious in preventing orthostatic intolerance.

摘要

下肢水肿患者使用加压服装来帮助调节液体分布并预防直立性症状。目前的加压长袜常被报告穿着不舒服且依从性差。本研究旨在评估一种新型主动加压服装对健康个体的疗效,这些个体进行60度头高位倾斜10分钟以诱导静脉血液淤积及随后的生理反应。在穿着服装进行倾斜期间,与对照组(20.9±11.47次/分钟,P = 0.002)相比,参与者心率相对于基线的绝对变化更低(16.7±8.7次/分钟)。不同条件下平均动脉血压的变化没有差异(P = 0.303)。一名参与者在未穿服装倾斜期间发生了晕厥前事件。该参与者穿着服装时未出现晕厥前症状。总体而言,这些数据表明一种新型主动加压服装能够抑制头高位倾斜期间心率的增加。虽然迄今为止尚未在患者群体中进行测试,但这些服装可能在预防直立不耐受方面被证明是有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c82e/6440912/e7cc8527662e/PHY2-7-e14050-g001.jpg

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