首页> 美国卫生研究院文献>The Journal of Physiology >Autoregulation of hind-limb blood flow in conscious dogs.
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Autoregulation of hind-limb blood flow in conscious dogs.

机译:自觉狗后肢血流的自动调节。

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摘要

We evaluated the efficiency of blood flow autoregulation of the hind-limb vascular bed of eleven conscious dogs during: resting conditions; graded levels of treadmill exercise; and increases in oxygen consumption produced by the administration of 2,4-dinitrophenol (DNP). Blood flow to the left hind limb was measured with an electromagnetic flow probe on the left external iliac artery. Hind-limb perfusion pressure was measured from a catheter in the deep femoral artery and was controlled via an externally inflatable occlusion cuff positioned just distal to the flow probe. Arterial pressure was measured in the abdominal aorta. Experiments were performed 5-16 days after instrumentation. Hind-limb pressure-flow (P-F) relationships were evaluated by decreasing hind-limb perfusion pressure in 4-5 small sequential 'square-wave' steps of 10-15 mmHg each while measuring flow. Each step decrease in perfusion pressure was maintained for 2 min. The efficiency of autoregulation was quantified by calculating the closed-loop gain of flow regulation (Gc) at each decrement in perfusion pressure utilizing the equation: Gc = 1-[(F0-Fn/F0)/(P0-Pn/P0)] where F0 and P0 are the starting (control) flows and pressures prevailing prior to decreasing perfusion pressure, and Fn and Pn are the new flows and pressures at each decrement in perfusion pressure. A Gc value less than 0 indicates a predominantly passive P-F relationship, while a Gc of 1 is perfect autoregulation of flow. When the dogs were at rest, decrements in hind-limb perfusion pressure were accompanied by almost equivalent decreases in flow, i.e. no autoregulation occurred, and Gc averaged -0.177 +/- 0.044 over the pressure range from 100-40 mmHg. During all levels of treadmill exercise (on gradients of 0, 7, or 21%), however, positive Gc values were found that averaged from 0.258 +/- 0.046 at a gradient of 0% to 0.392 +/- 0.041 at a gradient of 21% and were significantly different from Gc values found during rest at perfusion pressure ranges from 90-40 mmHg. The administration of DNP directly into the hind-limb circulation increased hind-limb blood flow from 199 to 481 ml/min. In the presence of DNP, Gc values were positive over perfusion pressure ranges from 100-40 mmHg and averaged 0.473 +/- 0.054. These data demonstrate that hind-limb blood flow is not autoregulated in resting dogs, but that significant autoregulation is manifest during conditions that increase oxygen consumption.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:我们评估了十一只清醒犬的后肢血管床的血流自动调节的效率。跑步机运动的分级水平;以及通过服用2,4-二硝基苯酚(DNP)产生的氧气消耗增加。用左flow外动脉上的电磁流量探头测量流到左后肢的血流量。从股深动脉中的导管测量后肢灌注压力,并通过恰好位于流量探头远端的外部可充气闭塞套进行控制。测量腹主动脉中的动脉压。仪器安装后5-16天进行实验。后肢压力-流量(P-F)关系是通过在测量流量时以4-5个连续的“方波”小步长(每个步长为10-15 mmHg)降低4-5个后肢灌注压力来评估的。每个步骤的灌注压力降低均维持2分钟。通过使用以下公式计算灌注压力每个递减量时流量调节(Gc)的闭环增益来量化自动调节的效率:Gc = 1-[((F0-Fn / F0)/(P0-Pn / P0)]其中F0和P0是在降低灌注压力之前的起始(控制)流量和主要压力,而Fn和Pn是在灌注压力每降低一个时的新流量和压力。 Gc值小于0表示主要是被动P-F关系,而Gc为1则是流量的完美自动调节。当狗休息时,后肢灌注压力的降低伴随着流量的几乎相等的降低,即没有自动调节发生,并且在100-40mmHg的压力范围内Gc平均为-0.177 +/- 0.044。但是,在所有水平的跑步机运动期间(在0%,7%或21%的梯度下),Gc的正值平均从0%的梯度的0.258 +/- 0.046到梯度为0的0.392 +/- 0.041的平均值21%,与在90-40 mmHg的灌注压力下休息时发现的Gc值显着不同。将DNP直接施用于后肢循环中可使后肢血流量从199毫升/分钟增加到481毫升/分钟。在存在DNP的情况下,在100-40 mmHg的灌注压力范围内,Gc值为正,平均值为0.473 +/- 0.054。这些数据表明,静息的狗不能自动调节后肢的血流,但是在增加耗氧量的条件下会表现出明显的自动调节作用。(摘要截断为400字)

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