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下丘脑热刺激对支配猫后肢皮肤和骨骼肌的交感神经元的影响。

Effects of hypothalamic thermal stimuli on sympathetic neurones innervating skin and skeletal muscle of the cat hindlimb.

作者信息

Grewe W, Jänig W, Kümmel H

机构信息

Physiologisches Institut, Christian-Albrechts-Universität zu Kiel, Germany.

出版信息

J Physiol. 1995 Oct 1;488 ( Pt 1)(Pt 1):139-52. doi: 10.1113/jphysiol.1995.sp020952.

Abstract
  1. Postganglionic neurones supplying hairless and hairy skin of the cat hindlimb were analysed for their responses to thermal stimuli applied to the anterior hypothalamus and spinal cord in anaesthetized and artificially ventilated cats. Activity was recorded from multi- and single-unit bundles which were isolated from peripheral nerves. The neurones were functionally identified as cutaneous vasoconstrictor (CVC) and muscle vasoconstrictor (MVC) neurones. Activity in sudomotor (SM) neurones was either monitored indirectly by recording the phasic negative deflections of the skin potential from the surface of the hairless skin, or in some experiments additionally by recording activity directly from the SM axons. 2. The activity in forty-one out of forty-four multi-unit and six out of six single-unit CVC bundles was inhibited, in a graded manner, by hypothalamic warming. An increase in the temperature of the surface of hairless skin followed the decrease in activity of the CVC neurones supplying it. Large changes in skin temperature only followed decreases in CVC activity of more than 40%. Cooling of the hypothalamus had only weak transient effects on CVC neurones. 3. Simultaneous warming of hypothalamus and spinal cord had multiplicative effects on the activity in CVC neurones. Subthreshold warming of one structure increased the response to warming of the other one and reduced the threshold temperature. 4. SM neurones were not affected by hypothalamic warming, but activated during hypothalamic cooling. 5. MVC neurones were weakly activated during hypothalamic warming only if arterial blood pressure decreased, otherwise they were unaffected. It is likely that this activation was due to secondary unloading of arterial baroreceptors. 6. Two silent postganglionic neurones projecting to skin were activated during hypothalamic warming. These neurones may have had a vasodilatory function. 7. Rhythmicity of the activity in CVC neurones, related to the cycle of artificial ventilation, increased during hypothalamic warming whereas that of MVC neurones was unchanged. 8. The functionally highly specific responses to hypothalamic warming in CVC neurones indicate a pathway from the hypothalamus that is specific for CVC neurones, in contrast to MVC and SM neurones. This central pathway is integrated with other spinal and supraspinal reflex pathways that determine the characteristic reflex pattern of CVC neurones to somatic and visceral stimuli and possibly with pathways that generate other physiological changes during hypothalamic warming (e.g. increase in respiratory drive).
摘要
  1. 对支配猫后肢无毛和有毛皮肤的节后神经元进行了分析,观察它们在麻醉并人工通气的猫身上,对施加于下丘脑前部和脊髓的热刺激的反应。从外周神经分离出的多单位和单单位束记录活动。这些神经元在功能上被鉴定为皮肤血管收缩(CVC)神经元和肌肉血管收缩(MVC)神经元。对汗腺运动(SM)神经元的活动,要么通过记录无毛皮肤表面皮肤电位的相位负偏转间接监测,要么在一些实验中另外直接记录SM轴突的活动。2. 44个多单位CVC束中的41个以及6个单单位CVC束中的6个的活动,被下丘脑升温以分级方式抑制。无毛皮肤表面温度的升高跟随供应该皮肤的CVC神经元活动的降低。只有当CVC活动降低超过40%时,皮肤温度才会有较大变化。下丘脑冷却对CVC神经元只有微弱的短暂影响。3. 下丘脑和脊髓同时升温对CVC神经元的活动有相乘效应。一个结构的阈下升温增加了对另一个结构升温的反应并降低了阈值温度。4. SM神经元不受下丘脑升温影响,但在下丘脑冷却时被激活。5. 仅当动脉血压下降时,MVC神经元在下丘脑升温时才被微弱激活,否则不受影响。这种激活可能是由于动脉压力感受器的继发性卸载。6. 两个投射到皮肤的无活动节后神经元在下丘脑升温时被激活。这些神经元可能具有血管舒张功能。7. 与人工通气周期相关的CVC神经元活动的节律性在下丘脑升温时增加,而MVC神经元的节律性不变。8. CVC神经元对下丘脑升温的功能上高度特异的反应表明,存在一条来自下丘脑的、对CVC神经元特异的通路,这与MVC和SM神经元不同。这条中枢通路与其他脊髓和脊髓上反射通路整合在一起,这些反射通路决定了CVC神经元对躯体和内脏刺激的特征性反射模式,并且可能与在下丘脑升温期间产生其他生理变化的通路(例如呼吸驱动增加)相关。

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