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对牙齿温度变化有反应的猫初级体感皮层神经元的分布及反应特性

Distribution and response properties of cat SI neurons responsive to changes in tooth temperature.

作者信息

Iwata K, Tsuboi Y, Muramatsu H, Sumino R

机构信息

Department of Physiology, School of Dentistry, Nihon University, Tokyo, Japan.

出版信息

J Neurophysiol. 1990 Sep;64(3):822-34. doi: 10.1152/jn.1990.64.3.822.

Abstract
  1. The activity of 214 tooth pulp-driven neurons (TPNs) in the primary somatosensory cortex (SI) activated by electrical stimulation of the canine tooth pulp was studied in anesthetized cats. These neurons were tested for their responses to thermal stimulation of the tooth pulp. 2. One hundred fifty-five TPNs were not responsive to changes in tooth temperature (thermally insensitive, TINS-TPNs) and 59 TPNs were responsive (thermally sensitive, TS-TPNs: 38 TS-TPNs were heat sensitive and 21 were cold sensitive). TS-TPNs were also tested for responsiveness to mechanical and thermal stimulation of the skin, mucosa, or periodontal membrane. Each TS-TPN was classified on the basis of cutaneous, mucosal, or periodontal mechanical receptive-field properties as either low-threshold mechanoreceptive (LTM: 57%), wide dynamic range (WDR: 25%), nociceptive specific (NS: 10%) or pulp specific (PS: 8%). 3. TS-TPNs were distributed in an upper bank of the orbital sulcus of SI. The majority were located in laminae III (32%) and IV (60%) of area 3b. 4. Heat-sensitive LTM, WDR, PS TS-TPNs, and cold-sensitive LTM TS-TPNs were characterized by a rapid rise in firing rate during thermal stimulation of the tooth pulp. In contrast, heat-sensitive NS and cold-sensitive NS and PS TS-TPNs responded with a slow rise in firing frequency during thermal stimuli delivered to the tooth pulp. 5. A linear regression analysis was applied to the stimulus-response functions of neuronal discharges of TS-TPNs. Fifty-six percent of heat-sensitive LTM, WDR, and cold-sensitive LTM TS-TPNs showed statistically significant relation (P less than 0.5) between peak firing frequency and stimulus temperature and increasing firing frequency after increases in stimulus temperature, whereas heat-sensitive and cold-sensitive NS and PS TS-TPNs did not show a clear increase in firing frequency during the thermal stimulus. 6. These findings suggest that heat-sensitive LTM and WDR TS-TPNs and cold-sensitive LTM TS-TPNs that showed high regression coefficients in stimulus-response function may be involved in encoding the intensity of noxious thermal stimulation of the tooth pulp.
摘要
  1. 在麻醉猫身上研究了通过电刺激犬牙髓激活的初级体感皮层(SI)中214个牙髓驱动神经元(TPN)的活动。对这些神经元进行了牙髓热刺激反应测试。

  2. 155个TPN对牙齿温度变化无反应(热不敏感,TINS - TPN),59个TPN有反应(热敏感,TS - TPN:38个TS - TPN对热敏感,21个对冷敏感)。还对TS - TPN进行了皮肤、黏膜或牙周膜机械和热刺激反应测试。每个TS - TPN根据皮肤、黏膜或牙周机械感受野特性分为低阈值机械感受性(LTM:57%)、广动力范围(WDR:25%)、伤害性特异性(NS:10%)或牙髓特异性(PS:8%)。

  3. TS - TPN分布在SI眶沟的上缘。大多数位于3b区的III层(32%)和IV层(60%)。

  4. 热敏感的LTM、WDR、PS TS - TPN和冷敏感的LTM TS - TPN的特征是在牙髓热刺激期间放电频率迅速上升。相比之下,热敏感的NS和冷敏感的NS及PS TS - TPN在牙髓热刺激期间放电频率缓慢上升。

  5. 对TS - TPN神经元放电的刺激 - 反应函数进行线性回归分析。56%的热敏感LTM、WDR和冷敏感LTM TS - TPN在峰值放电频率与刺激温度之间以及刺激温度升高后放电频率增加之间显示出统计学显著关系(P小于0.5),而热敏感和冷敏感的NS及PS TS - TPN在热刺激期间未显示出放电频率的明显增加。

  6. 这些发现表明,在刺激 - 反应函数中显示高回归系数的热敏感LTM和WDR TS - TPN以及冷敏感LTM TS - TPN可能参与编码牙髓有害热刺激的强度。

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