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Brachial artery blood flow dynamics during sinusoidal leg cycling exercise in humans

机译:人正弦腿骑自行车运动中肱动脉血流动力学

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To explore the control of the peripheral circulation of a nonworking upper limb during leg cycling exercise, blood flow (BF) dynamics in the brachial artery (BA) were determined using a sinusoidal work rate (WR) exercise. Ten healthy subjects performed upright leg cycling exercise at a constant WR for 30????min, followed by 16????min of sinusoidal WR consisting of 4?¢????min periods of WR fluctuating between a minimum output of 20????W and a maximum output corresponding to ventilatory threshold (VT). Throughout the protocol, pulmonary gas exchange, heart rate (HR), mean arterial blood pressure (MAP), blood velocity (BV), and cross?¢????sectional area of the BA, forearm skin BF (SBF), and sweating rate (SR) were measured. Each variable was fitted to a sinusoidal model with phase shift ( ???? ) and amplitude (A). Nearly all variables closely fit a sinusoidal model. Variables relating to oxygen transport, such as V O 2 and HR, followed the sinusoidal WR pattern with certain delays ( ???? : V O 2 ; 51.4???????±????4.0???°, HR; 41.8???????±????5.4???°, mean???????±????SD). Conversely, BF response in the BA was approximately in antiphase (175.1???????±????28.9???°) with a relatively large A, whereas the phase of forearm SBF was dissimilar (65.8???????±????35.9???°). Thus, the change of BF through a conduit artery to the nonworking upper limb appears to be the reverse when WR fluctuates during sinusoidal leg exercise, and it appears unlikely that this could be ascribed exclusively to altering the downstream circulation to forearm skin.
机译:为了探索在腿部自行车运动过程中不工作的上肢周围循环的控制,使用正弦波工作频率(WR)运动确定肱动脉(BA)的血流(BF)动态。十名健康受试者以恒定的WR进行直立的腿部自行车运动30分钟,然后由16分钟的正弦波WR组成,其中4分钟的WR周期在最小输出功率之间波动。 20?W和最大输出对应于通气阈值(VT)。在整个方案中,肺气体交换,心率(HR),平均动脉血压(MAP),血流速度(BV)和BA,前臂皮肤BF(SBF)的横截面积以及测量出汗率(SR)。将每个变量拟合到具有相移(Δβ)和幅度(A)的正弦模型。几乎所有变量都非常适合正弦模型。与氧气传输有关的变量(例如VO 2和HR)以正弦波WR模式出现某些延迟(????:VO 2; 51.4 ???????±???? 4.0 ???°,HR ; 41.8 ??????±???? 5.4 ???°,意思是??????±???? SD)。相反,BA中的BF响应大致处于反相状态(175.1°±±28.9°),A值相对较大,而前臂SBF的相则相异(65.8°)。 ????±??? 35.9 ???°)。因此,当在正弦腿运动中WR波动时,通过导管动脉到不起作用的上肢的BF的变化似乎是相反的,这似乎不可能完全归因于改变前臂皮肤的下游循环。

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