Murchison D, Larimer J L
Department of Zoology, University of Texas, Austin 78712.
J Exp Biol. 1990 May;150:269-93. doi: 10.1242/jeb.150.1.269.
Many behavior patterns of the crayfish involve the positioning of the abdomen by the tonic motor system. Movements and positionings of the swimmerets are coordinated with these abdominal movements. Evidence from extracellular analyses suggested that single interneurons of the abdominal nerve cord could produce motor outputs in both the swimmeret and the abdominal positioning systems. Our intracellular investigation has revealed that many single cells can evoke outputs in both motor systems. Interneurons which produced fictive extension or flexion of the abdomen or inhibition of abdominal movement were also able to modulate a variety of swimmeret behavior including cyclic beating and excitation or inhibition of episodic outputs. Although interneurons were discovered that evoked each of the possible classes of dual-output combinations, those that evoked combinations frequently observed in the freely behaving animal were more common than those that evoked infrequently observed combinations. Evidence also indicated that abdominal positioning inhibitors are present in greater numbers than previously suspected and that many are closely associated with the swimmeret circuitry. Interneurons with the ability to start and stop swimmeret cyclic outputs with current injections of opposite polarity are proposed to be higher-order cells, and some are shown to have the properties of trigger neurons. It is proposed that most dual-output cells are presynaptic to single-output cells and that groups of related dual-output cells may function together as command elements.
小龙虾的许多行为模式都涉及到强直运动系统对腹部的定位。游泳足的运动和定位与这些腹部运动相互协调。细胞外分析的证据表明,腹神经索中的单个中间神经元能够在游泳足和腹部定位系统中产生运动输出。我们的细胞内研究表明,许多单个细胞能够在两个运动系统中引发输出。那些能引起腹部假伸展或假屈曲或抑制腹部运动的中间神经元,也能够调节多种游泳足行为,包括周期性摆动以及对间歇性输出的兴奋或抑制。尽管发现了能引发每种可能的双输出组合类型的中间神经元,但那些能引发在自由活动动物中经常观察到的组合的中间神经元,比那些引发不常观察到的组合的中间神经元更为常见。证据还表明,腹部定位抑制神经元的数量比之前推测的更多,而且许多与游泳足神经回路密切相关。那些通过注入相反极性电流就能启动和停止游泳足周期性输出的中间神经元被认为是高阶细胞,并且其中一些显示出具有触发神经元的特性。有人提出,大多数双输出细胞是单输出细胞的突触前细胞,并且相关的双输出细胞群可能共同作为指令元件发挥作用。