Rossi M L, Martini M
Exp Brain Res. 1986;62(2):312-20. doi: 10.1007/BF00238850.
EPSPs and spikes were recorded at rest and during rotation from single fibres of the posterior nerve in the isolated frog labyrinth. The spike discharge properties of 57 units were examined at rest and during repetitive acceleratory-velocity steps. Forty of these units were subjected to excitatory steps of 5-12 s duration and 45% displayed an evident discharge adaptation. In the non-adapting units, the excitatory response also deviated from that expected on the basis of the torsion-pendulum model and exhibited an exponential time-course in only 36% of the fibres examined. The time constant T2 of the response rising phase was significantly longer than that of the decay (2.5 s versus 1.7 s). When all the 57 units were considered, a linear behaviour was found in 67%. The average gain in these linear units was 1.9 +/- 1.4 spikes X s-1/deg X s-1. Adaptive fibres exhibited a lower resting firing rate and a higher gain (3.8 spikes/s and 2.3 spikes X s-1/deg X s-2, respectively) when compared with the non-adapting ones (7.1 spikes/s and 1.5 spikes X s-1/deg X s-2). An undershoot was present in 57% of the units; it increased with acceleration and was not strictly related to adaptation. Fifteen of the 40 units tested with the 5-12 s duration excitatory steps survived repeated inhibitory accelerations of the same duration. In these units a marked response asymmetry was evident since their resting activity could be abolished by accelerations not larger than 10 deg/s2.(ABSTRACT TRUNCATED AT 250 WORDS)
在分离的青蛙迷路中,记录了后神经单纤维在静止和旋转过程中的兴奋性突触后电位(EPSPs)和动作电位。在静止和重复的加速 - 速度步骤期间,检查了57个单位的动作电位发放特性。其中40个单位接受了持续5 - 12秒的兴奋性步骤,45%表现出明显的放电适应性。在非适应性单位中,兴奋性反应也偏离了基于扭摆模型预期的反应,并且在所检查的纤维中只有36%表现出指数时间进程。反应上升阶段的时间常数T2明显长于衰减阶段(2.5秒对1.7秒)。当考虑所有57个单位时,67%表现出线性行为。这些线性单位的平均增益为1.9±1.4个动作电位×秒⁻¹/度×秒⁻¹。与非适应性纤维相比,适应性纤维的静息发放率较低,增益较高(分别为3.8个动作电位/秒和2.3个动作电位×秒⁻¹/度×秒⁻²,而非适应性纤维为7.1个动作电位/秒和1.5个动作电位×秒⁻¹/度×秒⁻²)。57%的单位存在负后电位;它随加速度增加,并且与适应性没有严格关系。在40个接受5 - 12秒持续时间兴奋性步骤测试的单位中,有15个在相同持续时间的重复抑制性加速下存活。在这些单位中,明显的反应不对称很明显,因为不大于10度/秒²的加速度就可以消除它们的静息活动。(摘要截断于250字)