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Sensorimotor cortical representation in the rat and the role of the cortex in the production of sensory myoclonic jerks.

机译:大鼠的感觉运动皮质表征以及皮质在感觉肌阵挛性抽搐的产生中的作用。

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摘要

1. After administration of 1,2-dihydroxybenzene (catechol) to anaesthetized rats, rabbits and cats, a reflex jerk consisting of three distinct components was evoked in the limb muscles by peripheral stimulation. The second component of the jerk in the forelimb muscles of all three animals was specifically abolished by lesions confined to the contralateral forelimb sensorimotor cortex. 2. These lesions had no effect on the second response in either the hind limbs or in the forelimb ipsilateral to the lesion. The first and third responses were also unaffected. 3. Lesions in the cat hind-limb cortex abolished the contralateral hind-limb second response, but not the ipsilateral hind-limb or forelimb response. 4. In the rat and rabbit, unilateral hind-limb sensorimotor lesions were ineffective in completely abolishing the second response in the contralateral hind-leg muscles, and in addition, reduced the probability of occurrence of the response in the ipsilateral hind leg. Bilateral lesions abolished the response. 5. Re-investigation of the sensory and motor representation of the hind limb in the rat cortex revealed that this is bilateral in nature. Short-latency cortical responses (ca. 7-0 msec) could be evoked in one cortex by stimulation of either hind paw. The geometric centre of the cortical area from which these responses could be recorded was identical for each hind paw. 6. After catechol injection, stimulation of the cortical surface with single anodal shocks of threshold strength produced responses at similar latency (ca. 8-0 msec) in both hind limbs. 7. The behaviour of the second response after cortical lesions corresponds closely with the pattern of the somatosensorimotor cortical representation. The latency of the response is such as to allow its production by a long-loop cortical reflex, and this possibility is discussed.
机译:1.在麻醉的大鼠,家兔和猫中施用1,2-二羟基苯(儿茶酚)后,通过周围刺激在肢体肌肉中引起由三种不同成分组成的反射性混动。局限在对侧前肢感觉运动皮层的病变专门消除了所有三只动物的前肢肌肉的混动的第二部分。 2.这些病变对患肢的后肢或前肢的第二反应没有影响。第一和第三响应也未受影响。 3.猫后肢皮层病变消除了对侧后肢的第二反应,但没有消除同侧后肢或前肢的反应。 4.在大鼠和兔子中,单侧后肢感觉运动损害不能完全消除对侧后腿肌肉的第二反应,并且降低了在同侧后腿中发生反应的可能性。双边病变消除了反应。 5.对大鼠皮质后肢的感觉和运动表征的重新研究表明,这是自然的双侧行为。通过刺激任一后爪,可以在一个皮质中诱发短时皮质反应(约7-0毫秒)。对于每个后爪,可以从中记录这些反应的皮质区域的几何中心是相同的。 6.注射邻苯二酚后,用一次阳极强度的阈值电击刺激皮质表面在两个后肢中产生了相似的潜伏期(约8-0毫秒)。 7.皮层损伤后的第二反应行为与体感运动皮层表征的模式密切相关。响应的潜伏期使得可以通过长循环皮层反射产生响应,并讨论了这种可能性。

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