Vanegas H, Barbaro N M, Fields H L
Brain Res. 1984 Oct 29;321(1):135-41. doi: 10.1016/0006-8993(84)90689-9.
Using the classification system of Fields et al. 131 neurons in the rostral ventromedial medulla (RVM) of lightly anesthetized rats were divided into 3 groups according to their response during tail-flick (TF) testing: those with an abrupt increase in activity prior to TF (on-cells); those with a sudden pause in activity prior to TF (off-cells); those with no change in activity prior to TF (neutral cells). Collision testing was performed using a cervical spinal cord stimulating electrode to determine whether these neurons projected to the cord. Conduction velocities were determined for all cord-projecting neurons. All 3 cell types projected to the cord and approximately 38% of cord-projecting neurons were flick-related (off-or on-cells). All projecting neurons were within or immediately adjacent to the nucleus raphe magnus. The mean conduction velocity of on-cell axons (17.7 m/s) was significantly greater than that of off-cell axons (10.7 m/s) and neutral cell axons (12.4 m/s). Conduction velocities for all cells were within the range for myelinated axons. These findings support the hypothesis that off-and on-cells in the RVM play a significant role in pain modulation at the spinal cord level.
根据菲尔兹等人的分类系统,将轻度麻醉大鼠延髓头端腹内侧(RVM)中的131个神经元,根据其在甩尾(TF)测试中的反应分为3组:在TF之前活动突然增加的神经元(开细胞);在TF之前活动突然暂停的神经元(关细胞);在TF之前活动没有变化的神经元(中性细胞)。使用颈脊髓刺激电极进行碰撞测试,以确定这些神经元是否投射到脊髓。测定所有投射到脊髓的神经元的传导速度。所有3种细胞类型都投射到脊髓,约38%投射到脊髓的神经元与甩尾相关(关细胞或开细胞)。所有投射神经元都在中缝大核内或紧邻中缝大核。开细胞轴突的平均传导速度(17.7米/秒)显著高于关细胞轴突(10.7米/秒)和中性细胞轴突(12.4米/秒)。所有细胞的传导速度都在有髓轴突的范围内。这些发现支持了这样的假说,即RVM中的关细胞和开细胞在脊髓水平的疼痛调制中起重要作用。