Suppr超能文献

在递增握力运动过程中无创性同时测量组织氧合和微血管血液动力学。

The noninvasive simultaneous measurement of tissue oxygenation and microvascular hemodynamics during incremental handgrip exercise.

机构信息

Department of Kinesiology, Kansas State University , Manhattan, Kansas.

出版信息

J Appl Physiol (1985). 2018 Mar 1;124(3):604-614. doi: 10.1152/japplphysiol.00815.2017. Epub 2017 Dec 14.

Abstract

Limb blood flow increases linearly with exercise intensity; however, invasive measurements of muscle microvascular blood flow during incremental exercise have demonstrated submaximal plateaus. We tested the hypotheses that 1) brachial artery blood flow (Q̇) would increase with increasing exercise intensity until task failure, 2) blood flow index of the flexor digitorum superficialis (BFI) measured noninvasively via diffuse correlation spectroscopy would plateau at a submaximal work rate, and 3) muscle oxygenation characteristics (total-[heme], deoxy-[heme], and percentage saturation) measured noninvasively with near-infrared spectroscopy would demonstrate a plateau at a similar work rate as BFI. Sixteen subjects (23.3 ± 3.9 yr, 170.8 ± 1.9 cm, 72.8 ± 3.4 kg) participated in this study. Peak power (P) was determined for each subject (1.8 ± 0.4 W) via an incremental handgrip exercise test. Q̇, BFI, total-[heme], deoxy-[heme], and percentage saturation were measured during each stage of the exercise test. On a subsequent testing day, muscle activation measurements of the FDS (RMS) were collected during each stage of an identical incremental handgrip exercise test via electromyography from a subset of subjects ( n = 7). Q̇ increased with exercise intensity until the final work rate transition ( P < 0.05). No increases in BFI or muscle oxygenation characteristics were observed at exercise intensities greater than 51.5 ± 22.9% of P. No submaximal plateau in RMS was observed. Whereas muscle activation of the FDS increased until task failure, noninvasively measured indices of perfusive and diffusive muscle microvascular oxygen delivery demonstrated submaximal plateaus. NEW & NOTEWORTHY Invasive measurements of muscle microvascular blood flow during incremental exercise have demonstrated submaximal plateaus. We demonstrate that indices of perfusive and diffusive microvascular oxygen transport to skeletal muscle, measured completely noninvasively, plateau at submaximal work rates during incremental exercise, even though limb blood flow and muscle recruitment continued to increase.

摘要

肢体血流随运动强度呈线性增加;然而,递增运动期间对肌肉微血管血流的侵入性测量表明存在亚最大平台。我们检验了以下假设:1)肱动脉血流量(Q̇)将随运动强度的增加而增加,直至任务失败,2)通过漫反射相关光谱无创测量的指浅屈肌血流指数(BFI)将在亚最大工作率下达到平台,3)通过近红外光谱无创测量的肌肉氧合特征(总血红素、脱氧血红素和饱和度百分比)将在类似的工作率下达到平台BFI。16 名受试者(23.3±3.9 岁,170.8±1.9cm,72.8±3.4kg)参与了这项研究。每位受试者通过递增握力测试确定峰值功率(P)(1.8±0.4W)。在运动测试的每个阶段都测量了 Q̇、BFI、总血红素、脱氧血红素和饱和度百分比。在随后的测试日,通过肌电图从一部分受试者(n=7)收集了相同递增握力运动测试的每个阶段的 FDS(RMS)肌肉激活测量。Q̇随运动强度的增加而增加,直至最终工作率过渡(P<0.05)。在大于 51.5±22.9%的 P 时,未观察到 BFI 或肌肉氧合特征的增加。在 RMS 中未观察到亚最大平台。尽管 FDS 的肌肉激活一直增加到任务失败,但无创测量的肌肉弥散性微血管氧输送的灌注和弥散指标显示出亚最大平台。侵入性测量递增运动期间的肌肉微血管血流已经证明存在亚最大平台。我们证明,骨骼肌的灌注和弥散性微血管氧输送的指数,完全无创测量,在递增运动的亚最大工作率下达到平台,尽管肢体血流和肌肉募集继续增加。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验