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生理操作对自由活动猫蓝斑神经元活动的影响。I. 体温调节挑战。

Effects of physiological manipulations on locus coeruleus neuronal activity in freely moving cats. I. Thermoregulatory challenge.

作者信息

Morilak D A, Fornal C A, Jacobs B L

机构信息

Department of Psychology, Princeton University, NJ 08544.

出版信息

Brain Res. 1987 Sep 29;422(1):17-23. doi: 10.1016/0006-8993(87)90535-x.

Abstract

This and the following two papers examine the activity of locus coeruleus noradrenergic (LC-NE) neurons in response to a variety of physiological manipulations in unanesthetized, unrestrained cats. Unit responses were studied during a constant behavioral state in order to avoid the potentially confounding effects of state changes upon LC-NE unit discharge. In the present study, LC-NE unit activity was recorded during two thermoregulatory challenges: ambient heating and pyrogen-induced fever. These two conditions are particularly interesting since the direction of body temperature change that they produce is the same, but the thermoregulatory responses elicited are opposite, i.e. heat loss and heat gain. LC-NE neurons were activated by both manipulations. In response to ambient heating, neuronal activity increased only with the occurrence of panting, and not during earlier portions of the heating session. Following pyrogen administration, LC-NE neurons responded only during the peak increase in body temperature. Both of these effects on unit activity occurred independent of changes in behavioral state. Since both manipulations similarly increased LC-NE unit activity, despite eliciting opposite thermoregulatory responses, it appears that these neurons do not play a specific role in thermoregulation, but may participate in the response to physiological challenges in general.

摘要

本论文以及随后的两篇论文研究了在未麻醉、未束缚的猫身上,蓝斑去甲肾上腺素能(LC-NE)神经元对各种生理操作的反应。为了避免状态变化对LC-NE单位放电产生潜在的混杂影响,在恒定行为状态下研究单位反应。在本研究中,在两种体温调节挑战期间记录LC-NE单位活动:环境加热和致热原诱导的发热。这两种情况特别有趣,因为它们产生的体温变化方向相同,但引发的体温调节反应相反,即散热和产热。两种操作均激活了LC-NE神经元。对环境加热的反应中,神经元活动仅在出现喘息时增加,而在加热过程的早期阶段没有增加。给予致热原后,LC-NE神经元仅在体温峰值升高期间做出反应。这两种对单位活动的影响均独立于行为状态的变化而发生。由于尽管引发了相反的体温调节反应,但两种操作同样增加了LC-NE单位活动,因此这些神经元似乎在体温调节中不发挥特定作用,但可能总体上参与对生理挑战的反应。

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