首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Neurotransmitters and Motoneuron Contacts of Multifunctional and Behaviorally Specialized Turtle Spinal Cord Interneurons
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Neurotransmitters and Motoneuron Contacts of Multifunctional and Behaviorally Specialized Turtle Spinal Cord Interneurons

机译:多功能和行为专用龟脊髓内核的神经递质和Motoneuron联系人

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摘要

The spinal cord can appropriately generate diverse movements, even without brain input and movement-related sensory feedback, using a combination of multifunctional and behaviorally specialized interneurons. The adult turtle spinal cord can generate motor patterns underlying forward swimming, three forms of scratching, and limb withdrawal (flexion reflex). We previously described turtle spinal interneurons activated during both scratching and swimming (multifunctional interneurons), interneurons activated during scratching but not swimming (scratch-specialized interneurons), and interneurons activated during flexion reflex but not scratching or swimming (flexion reflex-selective interneurons). How multifunctional and behaviorally specialized turtle spinal interneurons affect downstream neurons was unknown. Here, we recorded intracellularly from spinal interneurons activated during these motor patterns in turtles of both sexes in vivo and filled each with dyes. We labeled motoneurons using choline acetyltransferase antibodies or earlier intraperitoneal FluoroGold injection and used immunocytochemistry of interneuron axon terminals to identify their neurotransmitter(s) and putative synaptic contacts with motoneurons. We found that multifunctional interneurons are heterogeneous with respect to neurotransmitter, with some glutamatergic and others GABAergic or glycinergic, and can directly contact motoneurons. Also, scratch-specialized interneurons are heterogeneous with respect to neurotransm itter and some directly contact motoneurons. Thus, scratch-specialized interneurons might directly excite motoneurons that are more strongly activated during scratching than forward swimming, such as hip-flexor motoneurons. Finally,and surprisingly, we found that some motoneurons are behaviorally specialized, for scratching or flexion reflex. Thus, either some limb muscles are only used for a subset of limb behaviors or some limb motoneurons are only recruited during certain limb behaviors.
机译:脊髓可以适当地产生多样化的运动,即使没有大脑投入和运动相关的感官反馈,也可以使用多功能和行为专用的中间核的组合。成人龟脊髓可以产生向前游泳的电动机图案,三种形式的划痕,肢体撤离(屈曲反射)。我们以前描述了在刮伤和游泳(多功能的型核心)期间激活的龟脊柱椎间型,在刮伤但不游泳(刮擦专用的内部)和屈曲反射期间激活的中间核素,但不刮伤或游泳(屈曲反射选择性的内核)。多功能和行为专门的龟脊髓性纯属如何影响下游神经元未知。在这里,我们从体内两性龟的这些电动机图案中的脊柱内核记录在这些电动机图案中,并用染料填充。我们使用胆碱乙酰转移酶抗体或早期腹膜内氟化物注射和使用的Interouron Axon终端使用的免疫细胞和推定突触接触与运动神经元的免疫细胞化学。我们发现多功能的中间核对神经递质是异质的,具有一些谷氨酸和其他Gabaergic或甘油能,并且可以直接接触运动神经元。此外,划痕专用的内核对于神经递质射床和一些直接联系Motoneurons是异质的。因此,划伤专用的内核可能直接激发在划伤期间比前向游泳更强烈激活的运动神经元,例如髋关节屈肌运动神经元。最后,令人惊讶的是,我们发现一些运动神经元是行为专门的,用于刮擦或屈曲反射。因此,一些肢体肌肉仅用于肢体行为的子集,或者在某些肢体行为期间仅招募一些肢体运动元。

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