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Enhanced flow-motion complexity of skin microvascular perfusion in Sherpas and lowlanders during ascent to high altitude

机译:上升到高海拔期间夏尔巴协作和低地人群皮肤微血管灌注的流动运动复杂性增强

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摘要

An increased and more effective microvascular perfusion is postulated to play a key role in the physiological adaptation of Sherpa highlanders to the hypobaric hypoxia encountered at high altitude. To investigate this, we used Lempel-Ziv complexity (LZC) analysis to explore the spatiotemporal dynamics of the variability of the skin microvascular blood flux (BF) signals measured at the forearm and finger, in 32 lowlanders (LL) and 46 Sherpa highlanders (SH) during the Xtreme Everest 2 expedition. Measurements were made at baseline (BL) (LL: London 35 m; SH: Kathmandu 1300 m) and at Everest base camp (LL and SH: EBC 5,300 m). We found that BF signal content increased with ascent to EBC in both SH and LL. At both altitudes, LZC of the BF signals was significantly higher in SH, and was related to local slow-wave flow-motion activity over multiple spatial and temporal scales. In SH, BF LZC was also positively associated with LZC of the simultaneously measured tissue oxygenation signals. These data provide robust mechanistic information of microvascular network functionality and flexibility during hypoxic exposure on ascent to high altitude. They demonstrate the importance of a sustained heterogeneity of network perfusion, associated with local vaso-control mechanisms, to effective tissue oxygenation during hypobaric hypoxia.
机译:推测增加和更有效的微血管灌注在夏尔巴人高地生物适应高原上遇到的低压缺氧的生理适应中起关键作用。为了对此进行调查,我们使用了Lempel-Ziv复杂度(LZC)分析来探讨在32个低地(LL)和46个夏尔巴高地()中在前臂和手指处测得的皮肤微血管血流(BF)信号变化的时空动态。 SH)在Xtreme Everest 2探险中。在基线(BL)(LL:伦敦35 m; SH:加德满都1300 m)和珠穆朗玛峰大本营(LL和SH:EBC 5,300 m)进行测量。我们发现,SH和LL中的BF信号含量随EBC的增加而增加。在这两个海拔高度上,BF的LZC在SH中均显着较高,并且与多个时空尺度上的局部慢波流动运动活动有关。在SH中,BF LZC也与同时测量的组织氧合信号的LZC正相关。这些数据提供了在高海拔地区低氧暴露期间微血管网络功能和灵活性的可靠机制信息。他们证明了与局部血管控制机制相关的网络灌注持续异质性对于低压缺氧期间有效组织氧合的重要性。

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