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肌肉收缩期间延髓腹外侧神经元的放电模式。

Discharge patterns of ventrolateral medullary neurons during muscular contraction.

作者信息

Bauer R M, Iwamoto G A, Waldrop T G

机构信息

Department of Physiology and Biophysics, University of Illinois, Urbana 61801.

出版信息

Am J Physiol. 1990 Sep;259(3 Pt 2):R606-11. doi: 10.1152/ajpregu.1990.259.3.R606.

Abstract

Static muscular contraction is known to elicit reflex increases in arterial pressure. However, the areas of the central nervous system that mediate this reflex remain elusive. A recent study from this laboratory suggested that neurons in the ventrolateral medulla (VLM) participate in the pressor reflex to muscular contraction. In the present study, we sought to ascertain whether extracellular single-unit activity of VLM neurons is altered by static contraction of hindlimb muscles. In anesthetized cats, muscular contraction elicited by stimulation of L7 and S1 ventral roots evoked increases in arterial pressure, heart rate, and minute ventilation. The firing frequency in 33 of 50 VLM units increased greater than 70% during muscular contraction. VLM units displayed two types of discharge patterns in response to contraction: 1) a rapid onset response (0.5-3 s) and 2) a delayed onset response (10-20 s). Computer averaging analysis showed that 14 of 28 VLM units tested had a cardiac-related rhythm and 10 of those 14 also responded to muscular contraction. Muscular contraction had no effect on the discharge patterns of most neurons located outside the VLM. These findings suggest that neurons in the ventrolateral medulla respond to muscular contraction and may have a role in the pressor reflex to muscular contraction.

摘要

已知静态肌肉收缩会引起动脉血压反射性升高。然而,介导这种反射的中枢神经系统区域仍不清楚。本实验室最近的一项研究表明,延髓腹外侧区(VLM)的神经元参与了对肌肉收缩的升压反射。在本研究中,我们试图确定后肢肌肉的静态收缩是否会改变VLM神经元的细胞外单单位活动。在麻醉的猫中,刺激L7和S1腹根引起的肌肉收缩会导致动脉血压、心率和每分钟通气量增加。在肌肉收缩期间,50个VLM单位中的33个单位的放电频率增加超过70%。VLM单位对收缩表现出两种放电模式:1)快速起始反应(0.5 - 3秒)和2)延迟起始反应(10 - 20秒)。计算机平均分析显示,在测试的28个VLM单位中,有14个具有与心脏相关的节律,其中14个中的10个也对肌肉收缩有反应。肌肉收缩对位于VLM之外的大多数神经元的放电模式没有影响。这些发现表明,延髓腹外侧区的神经元对肌肉收缩有反应,并且可能在对肌肉收缩的升压反射中起作用。

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