Lukowiak K
J Neurobiol. 1979 May;10(3):255-71. doi: 10.1002/neu.480100306.
Repeated tactile stimulation of the siphon in Aphysia normally results in habituation of the gill withdrawal reflex and a concomitant decrease in the amplitude of the excitatory synaptic input ot gill motor neurons in the abdominal ganglion. It was found, however, that induced low-level tonic activity in motor neuron L9, which does not itself elicit a gill withdrawal movement, prevented habituation of the reflex from occurring. Further, in preparations already habituated, this tonic low-level activity brought about a reversal of habituation. Although tonic L9 activity prevented the occurrence of habituation or brought about its reversal, it did not interfere with the synaptic decremental process which normally accompanies gill reflex habituation. Motor neurons L7 and LDG1 were found not to possess this ability of L9 to modulate gill reflex habituation. Evidence suggests that L9's modulatory effect is mediated in the periphery, in the gill and not centrally in the abdominal ganglion.
在正常情况下,反复对海兔的虹吸管进行触觉刺激会导致鳃收缩反射产生习惯化,同时腹神经节中鳃运动神经元的兴奋性突触输入幅度也会相应降低。然而,研究发现,在运动神经元L9中诱导产生的低水平强直活动,虽然其本身不会引发鳃收缩运动,但却能阻止反射习惯化的发生。此外,在已经产生习惯化的标本中,这种低水平强直活动还能使习惯化发生逆转。虽然L9的强直活动阻止了习惯化的发生或使其逆转,但它并未干扰通常伴随鳃反射习惯化的突触递减过程。研究发现,运动神经元L7和LDG1不具备L9这种调节鳃反射习惯化的能力。有证据表明,L9的调节作用是在外周,即鳃中介导的,而非在腹神经节中进行中枢介导。