Chang Weipang, Hale Melina E
Organismal Biology and Anatomy, University of Chicago, Chicago, IL 60637, USA.
iScience. 2023 Apr 24;26(5):106722. doi: 10.1016/j.isci.2023.106722. eCollection 2023 May 19.
Octopuses coordinate their arms in a range of complex behaviors. In addition to brain-based sensorimotor integration and control, interarm coordination also occurs through a nerve ring at the arms' base. Here, we examine responses to mechanosensory stimulation of the arms by recording neural activity in the stimulated arm, the nerve ring, and other arms in a preparation of only the ring and arms. Arm axial nerve cords show graded responses to mechanosensory input and activity is transmitted proximally and distally in the arm. Mechanostimulation of one arm generates spiking in the nerve ring and in other arms. Activity in the nerve ring decreases with distance from the stimulated arm. Spontaneous activity with a range of spiking patterns occurs in the axial nerve cords and the nerve ring. These data show rich interarm signaling that supports arm control and coordination occurring outside of the brain.
章鱼在一系列复杂行为中协调它们的手臂。除了基于大脑的感觉运动整合与控制外,手臂间的协调也通过手臂基部的神经环发生。在这里,我们通过记录仅包含神经环和手臂的标本中受刺激手臂、神经环及其他手臂的神经活动,来研究对手臂机械感觉刺激的反应。手臂轴向神经索对机械感觉输入呈现分级反应,并且活动在手臂中向近端和远端传递。对一只手臂的机械刺激会在神经环和其他手臂中产生尖峰信号。神经环中的活动随着与受刺激手臂距离的增加而减少。轴向神经索和神经环中会出现具有一系列尖峰模式的自发活动。这些数据表明存在丰富的手臂间信号传递,支持大脑之外发生的手臂控制与协调。