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水蛭的心跳控制。II. 虚构运动模式。

Heartbeat control in leeches. II. Fictive motor pattern.

作者信息

Wenning Angela, Hill Andrew A V, Calabrese Ronald L

机构信息

Department of Biology, Emory University, Atlanta, Georgia 30322, USA.

出版信息

J Neurophysiol. 2004 Jan;91(1):397-409. doi: 10.1152/jn.00528.2003. Epub 2003 Sep 17.

Abstract

The rhythmic beating of the tube-like hearts in the medicinal leech is driven and coordinated by rhythmic activity in segmental heart motor neurons. The motor neurons are controlled by rhythmic inhibitory input from a network of heart interneurons that compose the heartbeat central pattern generator. In the preceding paper, we described the constriction pattern of the hearts in quiescent intact animals and showed that one heart constricts in a rear-to-front wave (peristaltic coordination mode), while the other heart constricts in near unison over its length (synchronous coordination mode) and that they regularly switch coordination modes. Here we analyze intersegmental and side-to-side-coordination of the fictive motor pattern for heartbeat in denervated nerve cords. We show that the intersegmental phase relations among heart motor neurons in both coordination modes are independent of heartbeat period. This finding enables us to combine data from different experiments to form a detailed analysis of the relative phases, duty cycle, and intraburst spike frequency of the bursts of the segmental heart motor neurons. The fictive motor pattern and the constriction pattern seen in intact leeches closely match in their intersegmental and side-to-side coordination, indicating that sensory feedback is not necessary for properly phased intersegmental coordination. Moreover, the regular switches in coordination mode of the fictive motor pattern mimic those seen in intact animals indicating that these switches likely arise by a central mechanism.

摘要

药用水蛭管状心脏的节律性跳动由节段性心脏运动神经元的节律性活动驱动和协调。运动神经元受心脏中间神经元网络的节律性抑制性输入控制,该网络构成心跳中枢模式发生器。在前一篇论文中,我们描述了静止完整动物心脏的收缩模式,表明一个心脏以从后向前的波状收缩(蠕动协调模式),而另一个心脏在其长度上几乎同步收缩(同步协调模式),并且它们会定期切换协调模式。在这里,我们分析去神经支配神经索中心跳的虚拟运动模式的节段间和左右协调。我们表明,两种协调模式下心脏运动神经元之间的节段间相位关系与心跳周期无关。这一发现使我们能够结合来自不同实验的数据,对节段性心脏运动神经元爆发的相对相位、占空比和爆发内尖峰频率进行详细分析。在完整水蛭中看到的虚拟运动模式和收缩模式在节段间和左右协调方面密切匹配,表明感觉反馈对于正确的节段间协调相位不是必需的。此外,虚拟运动模式协调模式的定期切换模仿了在完整动物中看到的情况,表明这些切换可能是由中枢机制引起的。

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