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Non-centralized and functionally localized nervous system of ophiuroids: evidence from topical anesthetic experiments

机译:蛇类的非集中式和功能性局部神经系统:局部麻醉实验的证据

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Ophiuroids locomote along the seafloor by coordinated rhythmic movements of multi-segmented arms. The mechanisms by which such coordinated movements are achieved are a focus of interest from the standpoints of neurobiology and robotics, because ophiuroids appear to lack a central nervous system that could exert centralized control over five arms. To explore the underlying mechanism of arm coordination, we examined the effects of selective anesthesia to various parts of the body of ophiuroids on locomotion. We observed the following: (1) anesthesia of the circumoral nerve ring completely blocked the initiation of locomotion; however, initiation of single arm movement, such as occurs during the retrieval of food, was unaffected, indicating that the inability to initiate locomotion was not due to the spread of the anesthetic agent. (2) During locomotion, the midsegments of the arms periodically made contact with the floor to elevate the disc. In contrast, the distal segments of the arms were pointed aborally and did not make contact with the floor. (3) When the midsegments of all arms were anesthetized, arm movements were rendered completely uncoordinated. In contrast, even when only one arm was left intact, inter-arm coordination was preserved. (4) Locomotion was unaffected by anesthesia of the distal arms. (5) A radial nerve block to the proximal region of an arm abolished coordination among the segments of that arm, rendering it motionless. These findings indicate that the circumoral nerve ring and radial nerves play different roles in intra- and inter-arm coordination in ophiuroids.
机译:阿片类化合物通过多节臂的协调节律运动沿着海底运动。从神经生物学和机器人学的角度来看,实现这种协调运动的机制是人们关注的焦点,因为类iu虫似乎缺乏可以集中控制五个手臂的中枢神经系统。为了探索手臂协调的潜在机制,我们研究了选择性麻醉对类固醇对运动的影响。我们观察到以下情况:(1)周围神经环的麻醉完全阻止了运动的开始;但是,单臂运动的开始(例如在食物回收期间发生的运动)不受影响,这表明无法开始运动不是由于麻醉剂的扩散。 (2)在运动过程中,手臂的中段会定期与地板接触以抬起椎间盘。相比之下,手臂的远端部分朝下指向末端,并且不与地板接触。 (3)当麻醉所有手臂的中段时,手臂的运动变得完全不协调。相反,即使只保留一只手臂,也可以保持手臂间的协调。 (4)运动不受远端手臂麻醉的影响。 (5)手臂近端区域的A神经阻滞消除了该手臂各节之间的协调性,使其静止不动。这些发现表明,环神经环和radial神经在类痔的臂内和臂间协调中起着不同的作用。

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