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仓鼠颊囊中小动脉和小静脉的电阻

Electrical resistance of arterioles and venules in the hamster cheek pouch.

作者信息

Olesen S P

出版信息

Acta Physiol Scand. 1985 Jan;123(1):121-6. doi: 10.1111/j.1748-1716.1985.tb07568.x.

Abstract

The electrical resistance of the vascular endothelium was determined on single microvessels in the hamster cheek pouch in order to obtain information about this variable in a mammalian preparation. So far, the technique has only been applied to frog microvessels. The technique consists of injection of current into the vascular lumen via a microelectrode and recording of the ensuing intravascular potential distribution by a second microelectrode. Cable theory was used for the analysis. The average diameter of the vessels under study was 41 micron for arterioles and 28 micron for venules. The average resistance of the vessel wall at 37 degrees C was 19 omega cm2 and 3.3 omega cm2, respectively. For the venules this is somewhat lower than what has been recorded on muscle capillaries (Olesen & Crone 1983) in the frog at room temperature, whilst the values on arterioles are rather similar. The calculated sodium permeabilities, PNa+, were for arterioles 4 X 10(-5) cm X s-1 and for venules 23 X 10(-5) cm X s-1. The high permeability values for arterioles and venules indicate that the vascular exchange function may not be limited to capillaries only.

摘要

为了获取哺乳动物制剂中血管内皮电阻这一变量的相关信息,我们对仓鼠颊囊中的单个微血管进行了测定。到目前为止,该技术仅应用于青蛙微血管。该技术包括通过微电极向血管腔内注入电流,并通过第二个微电极记录随后的血管内电位分布。分析采用电缆理论。所研究血管的平均直径,小动脉为41微米,小静脉为28微米。在37℃时,血管壁的平均电阻分别为19Ω·cm²和3.3Ω·cm²。对于小静脉,这略低于室温下青蛙肌肉毛细血管的记录值(奥勒森和克罗内,1983年),而小动脉的值则相当相似。计算得出的小动脉和小静脉的钠渗透率PNa+分别为4×10⁻⁵cm·s⁻¹和23×10⁻⁵cm·s⁻¹。小动脉和小静脉的高渗透率值表明,血管交换功能可能并不局限于毛细血管。

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