Dauvergne Céline, Evinger Craig
Department of Neurobiology and Behavior, State University of New York at Stony Brook, Stony Brook, New York 11794-5230, USA.
J Neurosci. 2007 Sep 26;27(39):10414-22. doi: 10.1523/JNEUROSCI.1152-07.2007.
To characterize the organization and plasticity of the trigeminal reflex blink circuit, we interacted blink-evoking supraorbital (SO) and infraorbital (IO) nerve stimuli in alert rats. Stimulation of either trigeminal branch produced a short-lasting inhibition followed by a longer-lasting facilitation of blinks evoked by stimulating the other nerve. When IO stimulation evoked a smaller blink than SO stimulation (IO < SO), SO stimulation facilitated subsequent IO-evoked blinks more than IO stimulation facilitated SO-evoked blinks. When IO > SO, IO and SO stimulation exerted equivalent facilitation of subsequent reflex blinks. To investigate whether the blink circuit obeyed rules analogous to those governing the associative and spike timing-dependent plasticity exhibited by individual synapses, we compared the effects of 3600 simultaneous IO and SO pairings, asynchronous IO and SO pairings, or synchronous IO and SO pairings separated by 20 ms on temporal interactions between IO and SO inputs to the blink circuit. Simultaneous pairing of a weak IO and a strong SO strengthened the IO input to the blink circuit, whereas asynchronous pairing weakened the stronger input. When the pairing pattern made an afferent input arrive after blink circuit activity, it weakened that afferent input. Analogous to synaptic modifiability, the results revealed that blink-evoking stimuli acted as a "presynaptic input" and blink circuit activity acted as a "postsynaptic spike." These mechanisms may create the maladaptive reorganization of trigeminal inputs in diseases such as hemifacial spasm.
为了描述三叉神经反射眨眼回路的组织和可塑性,我们在清醒的大鼠中对引起眨眼的眶上(SO)和眶下(IO)神经刺激进行了相互作用研究。刺激任何一支三叉神经分支都会产生短暂的抑制,随后对刺激另一支神经诱发的眨眼产生更持久的易化作用。当IO刺激诱发的眨眼比SO刺激小时(IO < SO),SO刺激对随后IO诱发眨眼的易化作用大于IO刺激对SO诱发眨眼的易化作用。当IO > SO时,IO和SO刺激对随后的反射性眨眼产生同等程度的易化作用。为了研究眨眼回路是否遵循类似于单个突触所表现出的联想性和依赖于尖峰时间的可塑性规则,我们比较了3600次同时进行的IO和SO配对、异步IO和SO配对或间隔20毫秒的同步IO和SO配对对眨眼回路中IO和SO输入之间时间相互作用的影响。弱IO和强SO的同时配对增强了眨眼回路的IO输入,而异步配对则削弱了较强的输入。当配对模式使传入输入在眨眼回路活动之后到达时,它会削弱该传入输入。类似于突触的可修饰性,结果表明引起眨眼的刺激充当“突触前输入”,而眨眼回路活动充当“突触后尖峰”。这些机制可能在诸如半面痉挛等疾病中造成三叉神经输入的适应性不良重组。