首页> 美国卫生研究院文献>The Journal of Neuroscience >Reconstruction of Flexor/Extensor Alternation during Fictive Rostral Scratching by Two-Site Stimulation in the Spinal Turtle with a Transverse Spinal Hemisection
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Reconstruction of Flexor/Extensor Alternation during Fictive Rostral Scratching by Two-Site Stimulation in the Spinal Turtle with a Transverse Spinal Hemisection

机译:脊髓半横断的脊龟两点刺激在虚构有角鼻刮擦过程中的屈伸肌交替重建。

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摘要

Analyses of fictive scratching motor patterns in the spinal turtle with transverse hemisection provided support for the concept of bilateral shared spinal cord circuitry among neurons responsible for generating left- and right-side rostral, pocket, and caudal fictive scratching. Rhythmic bursts of hip flexor activity, the hip extensor deletion variation of fictive rostral scratching, were elicited by ipsilateral stimulation in the rostral scratch receptive field of a spinal turtle [transection at the segmental border between the second (D2) and third (D3) postcervical spinal segments] with a contralateral transverse hemisection one segment anterior to the hindlimb enlargement (at the D6–D7 segmental border). In addition, other sites were stimulated in this preparation: (1) contralateral sites in a rostral, pocket, or caudal scratch receptive field or (2) ipsilateral sites in a caudal scratch receptive field. A reconstructed fictive rostral scratch motor pattern of rhythmic alternation between hip flexor and hip extensor activation was produced by simultaneous stimulation of one site in the ipsilateral rostral scratch receptive field and another site in one of the other scratch receptive fields. This reconstructed rostral scratch motor pattern resembled the normal rostral scratch motor pattern produced by one-site rostral scratch stimulation of a spinal turtle (D2–D3 transection) with no additional transections. The observation of a reconstructed rostral scratch motor pattern produced by two-site stimulation in the spinal turtle with transverse hemisection supports the concept that hip extensor circuitry activated by stimulation of other scratch receptive fields is shared with circuitry activated by ipsilateral rostral scratch receptive field stimulation.
机译:对横侧半横断脊柱中的海龟进行虚构性抓挠运动模式的分析,为负责产生左侧和右侧眼部,口袋和尾部虚构性抓挠的神经元之间的双侧共享脊髓电路概念提供了支持。患侧脊柱屈曲活动的节律性爆发,即虚构的鼻侧划痕的髋部伸肌缺失变化,是通过同侧刺激在脊柱龟的鼻侧划痕接受区域[横切后第二(D2)和第三(D3)的节段边界处引起的”脊柱节段]在后肢扩大之前(在D6-D7节段边界处),有一个对侧横切半段。此外,在此制备方法中还刺激了其他部位:(1)在鼻尖,袋状或尾部挠性接受野中的对侧部位,或(2)在尾部挠性接受野中的同侧部位。通过同时刺激同侧眼部划痕感受野中的一个部位和另一个划伤感受性领域中的另一个部位,产生了髋屈肌和髋伸肌激活之间节律性交替的假想的念珠划痕运动模式。这种重建的眼部划痕运动模式类似于正常的经口划痕运动模式,该模式是由一处脊柱海龟(D2-D3横断)的单点眼部划痕刺激产生的,没有其他横断面。在具有横向半截的脊椎龟中通过两点刺激产生的重建的延缓性划痕运动模式的观察结果支持了这样的概念,即通过刺激其他划伤感受野而激活的髋伸肌电路与同侧的延缓划伤感受野而受到刺激的电路共享。

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