Martin C, Meissl H
Max-Planck-Institute for Physiological and Clinical Research, W. G. Kerckhoff-Institute, Bad Nauheim, Federal Republic of Germany.
J Neural Transm Gen Sect. 1990;79(1-2):81-91. doi: 10.1007/BF01251003.
Electrophysiological recordings were performed in the pineal gland of pigmented rats BD9 to investigate the possible contribution of a direct neural connection of the gland with the central nervous system in the transmission of photic information. Extracellular potentials were recorded during brief photic stimulation of the eyes before and after bilateral sympathectomy. Two types of responses could be distinguished in intact as well as in sympathectomized rats: spontaneously active units which were unresponsive to light flashes and units responding to photic stimulation with ON and ON/OFF discharges. Spectral sensitivity curves recorded from the pineal organ of dark adapted rats showed a maximum at 500 nm. Interruption of the sympathetic innervation by bilateral denervation or removal of the superior cervical ganglia did not alter the spectral properties of pineal units. Additionally, response-intensity curves and response threshold (about 0.0017 microW/cm2) were not changed after sympathectomy. These results suggest that the pineal gland of the rat receives projections from the visual system via a central pinealopetal innervation.
在有色大鼠BD9的松果体中进行电生理记录,以研究该腺体与中枢神经系统的直接神经连接在光信息传递中可能发挥的作用。在双侧交感神经切除术前和术后,对眼睛进行短暂光刺激期间记录细胞外电位。在完整大鼠和交感神经切除大鼠中均可区分出两种类型的反应:对闪光无反应的自发活动单位,以及对光刺激产生开和开/关放电反应的单位。从暗适应大鼠的松果体器官记录的光谱敏感性曲线在500nm处显示出最大值。双侧去神经支配或切除颈上神经节导致的交感神经支配中断,并未改变松果体单位的光谱特性。此外,交感神经切除术后,反应强度曲线和反应阈值(约0.0017微瓦/平方厘米)没有变化。这些结果表明,大鼠的松果体通过中枢松果体传入神经接受来自视觉系统的投射。