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在小脑顶核注射海藻酸会在清醒和麻醉大鼠中产生不同的心血管效应。

Kainic acid administration in the fastigial nucleus produces differential cardiovascular effects in awake and anesthetized rats.

作者信息

Parry T J, McElligott J G

机构信息

Department of Pharmacology, Temple University School of Medicine, Philadelphia, PA 19140.

出版信息

Brain Res. 1994 Jan 28;635(1-2):27-36. doi: 10.1016/0006-8993(94)91420-6.

Abstract

Kainic acid was microinjected or microdialyzed into the rostral medial aspect of the fastigial nucleus to determine its effect on mean arterial pressure and heart rate. This was carried out in both the awake and the anesthetized (alpha-chloralose) rat. In awake animals, kainic acid elicited an initial phasic pressor response which was followed by a long-term elevation of mean arterial pressure that lasted for the duration of the experiment (2 h). Rats anesthetized with alpha-chloralose exhibited only a tonic depressor response. This converted to a pressor response as the rats began to emerge from anesthesia after 2 h. Both the awake and the anesthetized rats exhibited regular phasic changes in mean arterial pressure that was superimposed on the longer term changes in the mean arterial pressure. Similar results were obtained in both the microinjected and the microdialyzed animals. Thus, stimulation of the intrinsic fastigial neurons by kainic acid evokes an elevation of the mean arterial pressure in the awake rat. This is manifested as a decrease in pressure in the anesthetized animal. Thus, stimulation of the cardiovascular region of the fastigial nucleus can increase or decrease mean arterial pressure. It is possible that the direction of the change in mean arterial pressure is dependent on the level of afferent or intrinsic fastigial neural activity.

摘要

将海人酸微量注射或微量透析到小脑顶核的嘴侧内侧,以确定其对平均动脉压和心率的影响。这一操作在清醒和麻醉(α-氯醛糖)大鼠中均进行。在清醒动物中,海人酸引发了最初的阶段性升压反应,随后是平均动脉压的长期升高,这种升高在实验持续时间(2小时)内一直持续。用α-氯醛糖麻醉的大鼠仅表现出持续性降压反应。2小时后,随着大鼠开始从麻醉中苏醒,这种反应转变为升压反应。清醒和麻醉大鼠的平均动脉压均出现有规律的阶段性变化,这些变化叠加在平均动脉压的长期变化之上。在微量注射和微量透析的动物中均获得了类似结果。因此,海人酸对小脑顶核内在神经元的刺激会引起清醒大鼠平均动脉压升高。在麻醉动物中则表现为血压下降。因此,刺激小脑顶核的心血管区域可使平均动脉压升高或降低。平均动脉压变化的方向可能取决于传入或小脑顶核内在神经活动的水平。

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