...
首页> 外文期刊>The Journal of Experimental Biology >OCTOPAMINERGIC INNERVATION AND MODULATION OF A LOCUST FLIGHT STEERING MUSCLE
【24h】

OCTOPAMINERGIC INNERVATION AND MODULATION OF A LOCUST FLIGHT STEERING MUSCLE

机译:蝗虫飞行转向肌的八能神经调节和调节

获取原文
获取原文并翻译 | 示例

摘要

We demonstrate that the meso- and metathoracic pleuroaxillary flight steering muscle (M85 mesothorax, M114 metathorax) of the migratory locust are each innervated by a single dorsal unpaired median neurone (DUM3,4,5a), The soma of this neurone can be localized by retrograde staining of the motor nerve with Neurobiotin, but not with cobalt salts, The primary neurite projects in the superficial DUM cell tract, and the axons run in nerve roots 3, 4 and 5 and in all their secondary branches, Other muscle targets include the second tergal remoter coxa (M120) and the posterior rotator coxae (M122, M123, M124), but not the first tergal remoter coxa (M119) and subalar (M129) flight muscles. Octopamine-like immunoreactive varicosities occur on the pleuroaxillary muscles, Stimulation of DUM3,4,5a and octopamine (10(-6) mol l(-1)) superfusion increased the amplitude and the relaxation velocity of neurally evoked twitch contractions of this muscle, Octopamine also significantly reduced the tonic tension that this muscle develops when stimulated at flight frequency (20 Hz), while increasing the amplitude of each phasic twitch, A catch-like tension is also reduced in the presence of octopamine. Simulations of the motor pattern experienced by the pleuroaxillary muscles during roll manoeuvres suggest that transient changes in tension underlying corrective steering could be doubled in the presence of octopamine. [References: 44]
机译:我们证明了游蝗的中胸和胸胸腔胸膜飞行操纵肌(M85 mesothorax,M114胸胸)均受单个背对不成对中神经元(DUM3,4,5a)的支配,该神经元的躯体可以通过用Neurobiotin而不是钴盐对运动神经进行逆行染色,初级神经突突在浅表DUM细胞道中,轴突在神经根3、4和5及其所有次级分支中运行,其他肌肉目标包括第2足总远端遥控(M120)和后旋转肌(M122,M123,M124),但第1足总远端遥控(M119)和sub下(M129)飞行肌肉没有。胸膜腋下肌上会出现章鱼胺样免疫反应性静脉曲张,刺激DUM3,4,5a和章鱼胺(10(-6)mol l(-1))融合会增加该肌肉的神经诱发的抽搐收缩的幅度和松弛速度,八爪胺还可以显着降低在飞行频率(20 Hz)刺激时该肌肉发育所产生的紧张张力,同时增加每个阶段性抽搐的幅度。在存在章鱼胺的情况下,类似捕获的张力也会降低。翻滚动作期间胸膜腋下肌肉所经历的运动模式的模拟表明,在存在章鱼胺的情况下,基于矫正转向的张力的瞬时变化可以加倍。 [参考:44]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号