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猫脊髓腹外侧和背外侧上升通路对丘脑痛觉感受的影响

Ventrolateral and dorsolateral ascending spinal cord pathway influence on thalamic nociception in cat.

作者信息

Martin R J, Apkarian A V, Hodge C J

机构信息

Department of Neurosurgery, State University of New York Health Science Center, Syracuse 13210.

出版信息

J Neurophysiol. 1990 Nov;64(5):1400-12. doi: 10.1152/jn.1990.64.5.1400.

Abstract
  1. In cat there are two portions of the spinothalamic tract (STT)--a ventral component, the ventral spinothalamic tract (VSTT) made up of axons of cells of spinal cord laminae IV-X, and a dorsolateral component, the dorsolateral spinothalamic tract (DSTT) made up of axons of cells in lamina I of the spinal cord dorsal horn. This study was designed to evaluate thalamic neuronal responses to cutaneous noxious thermal stimuli and to determine the functional importance of pathways ascending in the ventral and dorsolateral portions of the spinal cord, ipsilateral to the thalamic recording site and contralateral to the hindlimb stimulation region, for transmission of nociceptive information to the thalamus. 2. Extracellular single-unit recordings were made from 45 neurons in the ventrobasal complex (VBX) of cat thalamus. Thirty-five of these units responded either exclusively or preferentially to noxious cutaneous stimuli. Responses to noxious thermal stimuli applied to the unit's receptive fields were obtained, and then the effects on these responses of blocking conduction through the dorsolateral funiculus (DLF) and the ventrolateral quadrant (VQ) of the thoracic spinal cord ipsilateral to the thalamic recording site were determined. DLF and VQ conduction blocks were accomplished with the use of a cold probe technique and, at times, surgical lesions of the appropriate portion of the spinal cord. 3. The nociceptive units were located in the periphery of the ventral posterior lateral nucleus (VPL) of the thalamus. Their locations corresponded to the somatotopic organization of VPL. Nociceptive thermal responses were found in both high-threshold (HT) (10 cells) and wide-dynamic-range (WDR) (22 cells) units. The receptive fields of these units were generally small and were located on the hindlimb contralateral to the recording site. The thermoreceptive units had thresholds between 44 and 48 degrees C and were able to code for stimulus intensity. 4. Nine of the 35 nociceptive units demonstrated a decrease in response and two units an increase in response to noxious cutaneous stimulation during DLF block ipsilateral to the recording site and contralateral to the cutaneous stimulation site, whereas four units demonstrated a decrease in response and one unit an increase in response to noxious thermal cutaneous stimulation during VQ block ipsilateral to the recording site and contralateral to the cutaneous stimulation site.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在猫中,脊髓丘脑束(STT)有两个部分——腹侧部分,即腹侧脊髓丘脑束(VSTT),由脊髓板层IV - X的细胞轴突组成;以及背外侧部分,即背外侧脊髓丘脑束(DSTT),由脊髓背角板层I的细胞轴突组成。本研究旨在评估丘脑神经元对皮肤有害热刺激的反应,并确定在脊髓腹侧和背外侧部分上行的通路(与丘脑记录部位同侧且与后肢刺激区域对侧)对于将伤害性信息传递至丘脑的功能重要性。2. 从猫丘脑腹侧基底复合体(VBX)的45个神经元进行了细胞外单单位记录。其中35个单位对有害皮肤刺激有单独或优先反应。获得了对施加于单位感受野的有害热刺激的反应,然后确定了阻断通过与丘脑记录部位同侧的胸段脊髓背外侧索(DLF)和腹外侧象限(VQ)传导对这些反应的影响。DLF和VQ传导阻滞通过使用冷探针技术以及有时对脊髓适当部位进行手术损伤来实现。3. 伤害性单位位于丘脑腹后外侧核(VPL)的周边。它们的位置与VPL的躯体定位组织相对应。在高阈值(HT)(10个细胞)和广动力范围(WDR)(22个细胞)单位中均发现了伤害性热反应。这些单位 的感受野通常较小,位于与记录部位对侧的后肢上。温度感受单位的阈值在44至48摄氏度之间,并且能够编码刺激强度。4. 35个伤害性单位中的9个在记录部位同侧且皮肤刺激部位对侧的DLF阻滞期间,对有害皮肤刺激的反应降低,2个单位的反应增加;而在记录部位同侧且皮肤刺激部位对侧的VQ阻滞期间,4个单位对有害热皮肤刺激的反应降低,1个单位的反应增加。(摘要截断于整400词)

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