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[使用带有珀耳帖堆栈的流量探头通过热扩散测量脑血流量]

[Measurement of cerebral blood flow by thermal diffusion using a flow probe with a Peltier stack].

作者信息

Yamagata S, Kikuchi H, Hashimoto K, Minamikawa J, Watanabe Y

出版信息

No To Shinkei. 1987 May;39(5):479-84.

PMID:3620218
Abstract

In order to evaluate the blood flow by means of thermal diffusion, relationship between blood flow and parameters induced by thermal diffusion was investigated. Flow probe employed for measurement by thermal diffusion incorporated a Peltier stack which contained a small semiconductor and two L-shaped gold plates. These two plates were attached to both sides of the semiconductor by one side of each gold plate and the other side was surfaced with a tissue to be measured. Temperature gradient is created with current applied to the Peltier stack between two plates, one cooled and the other heated, and it is affected only by tissue blood flow. Two kinds of parameters of thermal diffusion were subjected to compare to blood flow. One was temperature gradient when the constant current was applied to the Peltier stack. The other was a current required to maintain a definite temperature gradient which was determined before hand. From the theoretical principle in thermodynamics, the correlations between blood flow and each of thermal diffusion parameters were defined by the following equations: (Formula: see text) where F is blood flow, delta V is voltage converted from temperature gradient, and Ci and Cv are constants. Each of phi v and phi i indicates the characteristics of each probe. Experimental study was carried out to confirm the above relationship using cortex of experimental animals. Under the general anesthesia, a cat was placed in prone position. After the craniotomy, dura mater was opened and a small flow probe, 10 mm in diameter, 5 mm in height and 5 g in weight, was placed on the cortex and blood flow was continuously evaluated by two parameters.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

为了通过热扩散评估血流,研究了血流与热扩散诱导参数之间的关系。用于热扩散测量的流量探头包含一个珀耳帖堆,该珀耳帖堆包含一个小半导体和两个L形金板。这两个金板的一侧分别连接到半导体的两侧,另一侧与待测组织表面接触。通过向珀耳帖堆施加电流在两个板之间产生温度梯度,一个板被冷却,另一个板被加热,并且它仅受组织血流的影响。对两种热扩散参数与血流进行了比较。一种是向珀耳帖堆施加恒定电流时的温度梯度。另一种是维持预先确定的确定温度梯度所需的电流。根据热力学的理论原理,血流与每个热扩散参数之间的相关性由以下方程定义:(公式:见原文)其中F是血流,ΔV是从温度梯度转换而来的电压,Ci和Cv是常数。φv和φi各自表示每个探头的特性。使用实验动物的皮质进行实验研究以证实上述关系。在全身麻醉下,将一只猫置于俯卧位。开颅后,打开硬脑膜,将一个直径10毫米、高5毫米、重5克的小型流量探头放置在皮质上,并通过两个参数连续评估血流。(摘要截断于250字)

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[Measurement of cerebral blood flow by thermal diffusion using a flow probe with a Peltier stack].[使用带有珀耳帖堆栈的流量探头通过热扩散测量脑血流量]
No To Shinkei. 1987 May;39(5):479-84.
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