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Identification and characterization of neurons initiating patterned neural activity in the buccal ganglia of Aplysia

机译:鉴定和表征海床颊神经节中启动模式神经活动的神经元

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摘要

Two patterns of neural activity were identified in excised buccal ganglia of Aplysia californica. Both are expressed in many cells, and each can be expressed independently. Using cells B4 and B5 as monitors of the activity patterns, we searched the buccal ganglia for cells initiating the patterns. Two electrically coupled cells, B31 and B32, can initiate what we termed pattern 2. The cells are active before pattern 2 is expressed. Stimuli initiating pattern 2 excite B31/B32. Depolarizing B31/B32 induces the pattern, while hyperpolarizing them can prevent its expression. The cells have unusual features. Their somata do not sustain conventional action potentials, and depolarization causes a regenerative response. B33 differs from B31/B32 in that its soma sustains conventional action potentials but otherwise has similar features. B34 also seems to be inexcitable but has weaker synaptic input than B31/B32 and appears unable to induce pattern 2. B35 and B36 have prominent regenerative capabilities. B35 is also able to initiate pattern 2. B37 is presynaptic to B31/B32 and can initiate pattern 2 via its effects on them. The newly identified cells provide a starting point for investigating factors that initiate and control different patterns of neural activity in the buccal ganglia. Since the buccal ganglia are involved in generating feeding behavior, further studies on the newly identified cells may provide insights into the neural control of feeding behavior, and provide a neural substrate for studying modulation of the feeding patterns by associative learning.
机译:在加利福尼亚州海螺切除的颊神经节中发现了两种神经活动模式。两者都在许多单元格中表达,并且每个都可以独立表达。使用细胞B4和B5作为活动模式的监测者,我们在颊神经节中搜索了引发该模式的细胞。两个电耦合的单元B31和B32可以启动我们称为模式2的过程。这些单元在模式2被表达之前是活动的。刺激启动模式2激发B31 / B32。对B31 / B32进行去极化可诱导该模式,而对其进行超极化则可以阻止其表达。电池具有不同寻常的功能。它们的躯体不能维持常规的动作电位,去极化会导致再生反应。 B33与B31 / B32的不同之处在于,它的躯体维持了常规的动作电位,但在其他方面具有相似的功能。 B34似乎也不令人兴奋,但突触输入比B31 / B32弱,并且似乎无法诱导模式2。B35和B36具有显着的再生能力。 B35也能够启动模式2。B37与B31 / B32突触,并可通过其对模式的影响而启动模式2。新近鉴定出的细胞为研究引发和控制颊神经节中不同神经活动模式的因子提供了一个起点。由于颊神经节参与进食行为的产生,因此对新近鉴定的细胞的进一步研究可能会为进食行为的神经控制提供见识,并为通过联想学习研究进食模式的调节提供神经基础。

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