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大鼠腰膨大处脊髓下丘脑束神经元的生理学特征

Physiological characterization of spinohypothalamic tract neurons in the lumbar enlargement of rats.

作者信息

Burstein R, Dado R J, Cliffer K D, Giesler G J

机构信息

Department of Cell Biology and Neuroanatomy, University of Minnesota, Minneapolis 55455.

出版信息

J Neurophysiol. 1991 Jul;66(1):261-84. doi: 10.1152/jn.1991.66.1.261.

Abstract
  1. Ninety-six neurons in the lumbar enlargement of urethananesthetized rats were antidromically activated from the contralateral hypothalamus. The antidromic stimulating electrode was moved systematically within the hypothalamus until antidromic activation could be produced with currents of less than or equal to 50 microA (18.6 +/- 10.8 microA; mean +/- SD). The points at which antidromic activation thresholds were lowest were found in several regions of the hypothalamus but were concentrated in the optic tract and the supraoptic decussation. 2. The recording locations of 79 spinohypothalamic tract (SHT) neurons were marked and recovered. Twenty-nine were located in the superficial dorsal horn (SDH), 42 in the deep dorsal horn (DDH), 4 in the intermediate zone, and 2 in the gray matter surrounding the central canal. Two additional marks were located in the dorsal lateral funiculus (DLF). 3. The responses of 46 SHT neurons were examined during innocuous and noxious mechanical stimulation of their receptive fields. Forty-eight percent of recorded SHT neurons responded to both innocuous and noxious stimuli (wide dynamic range, WDR) and 39% responded only to noxious stimuli (high threshold, HT). Therefore 87% of SHT neurons responded preferentially or exclusively to noxious mechanical stimulation. Nine percent of SHT neurons responded exclusively to innocuous manipulation of joints and muscles. Four percent of SHT neurons responded only to innocuous tactile stimul (low threshold, LT). WDR, HT, and LT neurons were recorded widely throughout the dorsal horn; no relationship was found between the locations of recording sites in the dorsal horn and the response types of the neurons. SHT neurons that responded to stimulation of muscle, tendon, or joint were recorded deep in the gray matter. 4. The effects of heating the receptive fields were determined for 25 SHT neurons. Fourteen (56%) responded to thermal stimuli. Six (43%) of the responsive neurons responded at low frequencies to innocuous warming (38-41 degrees C) but more vigorously to noxious (greater than or equal to 45 degrees C) heating. The other eight responded only to noxious heat. Eighteen percent (3/17) of tested SHT neurons were activated by noxious cooling of their receptive fields. 5. Cutaneous receptive fields of most recorded SHT neurons were small, typically involving areas as small as two or three toes on the ipsilateral hindlimb; the largest receptive fields covered the entire paw. These findings indicate that relatively precise information about the location of innocuous and noxious stimuli is conveyed directly to the hypothalamus by SHT neurons.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 对经乌拉坦麻醉的大鼠腰膨大处的96个神经元进行了逆向激活实验,刺激电极来自对侧下丘脑。电极在下丘脑内系统移动,直至用小于或等于50微安(18.6±10.8微安;平均值±标准差)的电流即可产生逆向激活。在下丘脑的几个区域发现了逆向激活阈值最低的点,但集中在视束和视上交叉处。2. 标记并回收了79个脊髓下丘脑束(SHT)神经元的记录位置。29个位于浅背角(SDH),42个位于深背角(DDH),4个位于中间带,2个位于围绕中央管的灰质中。另外两个标记位于背外侧索(DLF)。3. 在对46个SHT神经元的感受野进行无害和有害机械刺激时,检测了它们的反应。48%的记录SHT神经元对无害和有害刺激均有反应(广动力范围,WDR),39%仅对有害刺激有反应(高阈值,HT)。因此,87%的SHT神经元优先或仅对有害机械刺激有反应。9%的SHT神经元仅对关节和肌肉的无害操作有反应。4%的SHT神经元仅对无害触觉刺激有反应(低阈值,LT)。WDR、HT和LT神经元在整个背角广泛记录;背角记录位点的位置与神经元的反应类型之间未发现相关性。对肌肉、肌腱或关节刺激有反应的SHT神经元记录于灰质深部。4. 对25个SHT神经元测定了加热其感受野的效应。14个(56%)对热刺激有反应。6个(43%)有反应的神经元对无害温热(38 - 41摄氏度)低频反应,但对有害(大于或等于45摄氏度)加热反应更强烈。另外8个仅对有害热有反应。18%(3/17)的受试SHT神经元被其感受野的有害冷却激活。5. 大多数记录的SHT神经元的皮肤感受野较小,通常只涉及同侧后肢两三个脚趾那么小的区域;最大的感受野覆盖整个爪子。这些发现表明,关于无害和有害刺激位置的相对精确信息由SHT神经元直接传递至下丘脑。(摘要截选至400字)

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