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持续静态运动期间拇短展肌的微血管血流变化

Microvascular blood flow changes of the abductor pollicis brevis muscle during sustained static exercise.

作者信息

Giovannella Martina, Urtane Evelina, Zanoletti Marta, Karadeniz Umut, Rubins Uldis, Weigel Udo M, Marcinkevics Zbignevs, Durduran Turgut

机构信息

ICFO-Institut de Ciències Fotòniques, The Barcelona Institute of Science and Technology, 08860 Castelldefels (Barcelona), Spain.

Faculty of Biology, Department of Human and Animal Physiology, University of Latvia, Kronvalda Blvd. 4, LV 1586, Riga, Latvia.

出版信息

Biomed Opt Express. 2021 Jun 18;12(7):4235-4248. doi: 10.1364/BOE.427885. eCollection 2021 Jul 1.

Abstract

A practical assessment of the general health and microvascular function of the palm muscle, abductor pollicis brevis (APB), is important for the diagnosis of different conditions. In this study, we have developed a protocol and a probe to study microvascular blood flow using near-infrared diffuse correlation spectroscopy (DCS) in APB during and after thumb abduction at 55% of maximum voluntary contraction (MVC). Near-infrared time resolved spectroscopy (TRS) was also used to characterize the baseline optical and hemodynamic properties. Thirteen (n=13) subjects were enrolled and subdivided in low MVC (N=6, MVC<2.3 kg) and high MVC (N=7, MVC≥2.3 kg) groups. After ruling out significant changes in the systemic physiology that influence the muscle hemodynamics, we have observed that the high MVC group showed a 56% and 36% decrease in the blood flow during exercise, with respect to baseline, in the long and short source-detector (SD) separations (p=0.031 for both). No statistical differences were shown for the low MVC group (p=1 for short and p=0.15 for long SD). These results suggest that the mechanical occlusion, due to increased intramuscular pressure, exceeded the vasodilation elicited by the higher metabolic demand. Also, blood flow changes during thumb contraction negatively correlated (R=-0.7, p<0.01) with the absolute force applied by each subject. Furthermore, after the exercise, muscular blood flow increased significantly immediately after thumb contractions in both high and low MVC groups, with respect to the recorded values during the exercise (p=0.031). An increase of 251% (200%) was found for the long (short) SD in the low MVC group. The high MVC groups showed a significant 90% increase in blood flow only after 80 s from the start of the protocol. For both low and high MVC groups, blood flow recovered to baseline values within 160 s from starting the exercise. In conclusion, DCS allows the study of the response of a small muscle to static exercise and can be potentially used in multiple clinical conditions scenarios for assessing microvascular health.

摘要

对掌肌拇短展肌(APB)的总体健康状况和微血管功能进行实际评估,对于不同病症的诊断具有重要意义。在本研究中,我们制定了一项方案并开发了一种探头,用于在拇指外展至最大自主收缩(MVC)的55%期间及之后,使用近红外漫散射相关光谱法(DCS)研究APB中的微血管血流。近红外时间分辨光谱法(TRS)也用于表征基线光学和血液动力学特性。招募了13名(n = 13)受试者,并将其细分为低MVC组(N = 6,MVC < 2.3 kg)和高MVC组(N = 7,MVC≥2.3 kg)。在排除影响肌肉血液动力学的全身生理显著变化后,我们观察到,在长源探测器(SD)和短源探测器分离情况下,高MVC组在运动期间的血流相对于基线分别下降了56%和36%(两者p = 0.031)。低MVC组未显示出统计学差异(短SD时p = 1,长SD时p = 0.15)。这些结果表明,由于肌肉内压力增加导致的机械性阻塞超过了较高代谢需求引起的血管舒张。此外,拇指收缩期间的血流变化与每个受试者施加的绝对力呈负相关(R = -0.7,p < 0.01)。此外,运动后,高MVC组和低MVC组在拇指收缩后立即的肌肉血流相对于运动期间记录的值均显著增加(p = 0.031)。低MVC组在长(短)SD时血流增加了251%(200%)。高MVC组仅在方案开始80秒后血流才显著增加90%。对于低MVC组和高MVC组,血流在运动开始后160秒内恢复到基线值。总之,DCS能够研究小块肌肉对静态运动的反应,并有可能用于多种临床情况以评估微血管健康状况。

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