Chapple W D
Department of Physiology and Neurobiology, University of Connecticut, Storrs, CT 06269-4156, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2002 Nov;188(10):753-66. doi: 10.1007/s00359-002-0362-2. Epub 2002 Oct 26.
Mechanoreceptors in the soft cuticle of the 4th abdominal segment of the hermit crab, Pagurus pollicarus, that are associated with reflex activation of abdominal postural motoneuron, were studied to determine whether their properties are consistent with a feedback control of abdominal stiffness. Three classes of receptors were identified: (1) setal dome receptors, (2) hypodermal receptors, and (3) funnel-canal receptors. The hypodermal receptors, which have the largest extracellular action potentials, were selected for further study. Their axons innervate the entire ipsilateral half of a segment; receptive fields of receptors with different amplitudes show extensive overlap. They are phasic and show significant adaptation; at higher frequencies they signal displacement rather than velocity. Although they are activated by changing muscle tension, their threshold for cuticular displacement is much lower than for forces generated by postural muscles. These features suggest that they are primarily involved in signaling cuticular displacement and shearing forces as they contact the columella of the shell in which the hermit crab lives.
对与寄居蟹(Pagurus pollicarus)腹部姿势运动神经元反射激活相关的第四腹节软角质层中的机械感受器进行了研究,以确定其特性是否与腹部僵硬的反馈控制一致。确定了三类感受器:(1)刚毛穹顶感受器,(2)皮下感受器,(3)漏斗管感受器。选择具有最大细胞外动作电位的皮下感受器进行进一步研究。它们的轴突支配一个节段的整个同侧半侧;不同幅度感受器的感受野显示出广泛的重叠。它们是相位性的,表现出明显的适应性;在较高频率下,它们信号的是位移而非速度。尽管它们由变化的肌肉张力激活,但其对表皮位移的阈值远低于姿势肌肉产生的力的阈值。这些特征表明,当它们接触寄居蟹所居住的壳的小柱时,它们主要参与传递表皮位移和剪切力的信号。