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胎鼠(褐家鼠)周期性运动活动的神经控制。

The neural control of cyclic motor activity in the fetal rat (Rattus norvegicus).

作者信息

Robertson S S, Smotherman W P

机构信息

Department of Human Development and Family Studies, Cornell University, Ithaca, NY 14853.

出版信息

Physiol Behav. 1990 Jan;47(1):121-6. doi: 10.1016/0031-9384(90)90049-a.

Abstract

The spontaneous behavior of rat fetuses (in a saline bath with fetal-placental-uterine connections intact) was observed directly for 30 minutes on Day 20 of gestation. Rearleg and nonrearleg movements from fetuses with a mid-thoracic spinal cord transection or sham operation were analyzed for cyclic organization. Oscillations in rearleg activity occurred at the same frequency in fetuses with spinal cord transections (0.74 cycle/min) and sham-operated fetuses (0.72 cycle/min). However, oscillations in nonrearleg activity were much slower in the fetuses with spinal cord transections (0.30 vs. 0.77 cycle/min). Other characteristics of the cyclic patterns in motor activity were unaffected. The findings demonstrate 1) the caudal half of the spinal cord can generate cyclic output in the absence of descending input from the brain, 2) there is no single timing center, and 3) rostral sources are slower.

摘要

在妊娠第20天,直接观察大鼠胎儿(置于盐水浴中,胎儿 - 胎盘 - 子宫连接完整)的自发行为30分钟。对胸段脊髓横断或假手术胎儿的后腿和非后腿运动进行循环组织分析。脊髓横断胎儿(0.74次/分钟)和假手术胎儿(0.72次/分钟)的后腿活动振荡频率相同。然而,脊髓横断胎儿的非后腿活动振荡要慢得多(0.30次/分钟对0.77次/分钟)。运动活动循环模式的其他特征未受影响。研究结果表明:1)脊髓后半部分在没有来自大脑下行输入的情况下可以产生循环输出;2)不存在单一的定时中心;3)脑源的速度较慢。

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