Tribukait Arne, Eiken Ola
Department of Environmental Physiology, Swedish Aerospace Physiology Centre, School of Technology and Health, Royal Institute of Technology, KTH, Berzelius väg 13, 171 65 Solna, Sweden.
Cogn Neurodyn. 2016 Feb;10(1):7-22. doi: 10.1007/s11571-015-9362-0. Epub 2015 Nov 7.
The primary aim of this study was to establish whether the decline of the memory of an angular displacement, detected by the semicircular canals, is best characterized by an exponential function or by a power function. In 27 subjects a conflict was created between the semicircular canals and the graviceptive systems. Subjects were seated, facing forwards, in the gondola of a large centrifuge. The centrifuge was accelerated from stationary to 2.5Gz. While the swing out of the gondola (66°) during acceleration constitutes a frontal plane angular-displacement stimulus to the semicircular canals, the graviceptive systems persistently signal that the subject is upright. During 6 min at 2.5Gz the perceived head and body position was recorded; in darkness the subject repeatedly adjusted the orientation of a luminous line so that it appeared to be horizontal. Acceleration of the centrifuge induced a sensation of tilt which declined with time in a characteristic way. A three-parameter exponential function (Y = Ae(-bt) + C) and a power function (Y = At(-b) + C) were fitted to the data points. The inter-individual variability was considerable. In the vast majority of cases, however, the exponential function provided a better fit (in terms of RMS error) than the power function. The mean exponential function was: y = 27.8e(-0.018t) + 0.5°, where t is time in seconds. Findings are discussed with connection to possible underlying neural mechanisms; in particular, the head-direction system and short-term potentiation and persistent action potential firing in the hippocampus are considered.
本研究的主要目的是确定由半规管检测到的角位移记忆衰退,用指数函数还是幂函数来描述最为合适。在27名受试者中,半规管与重力感受系统之间产生了冲突。受试者面向前方坐在大型离心机的吊篮中。离心机从静止加速到2.5Gz。在加速过程中,吊篮向外摆动(66°),这对半规管构成了额平面角位移刺激,而重力感受系统持续发出信号表明受试者是直立的。在2.5Gz下持续6分钟,记录受试者对头部和身体位置的感知;在黑暗中,受试者反复调整一条光线的方向,使其看起来是水平的。离心机的加速引起了一种倾斜感,这种感觉会随着时间以一种特定的方式下降。将一个三参数指数函数(Y = Ae^(-bt) + C)和一个幂函数(Y = At^(-b) + C)拟合到数据点上。个体间的变异性相当大。然而,在绝大多数情况下,指数函数(就均方根误差而言)比幂函数拟合得更好。平均指数函数为:y = 27.8e^(-0.018t) + 0.5°,其中t是以秒为单位的时间。结合可能的潜在神经机制对研究结果进行了讨论;特别考虑了头部方向系统以及海马体中的短期增强和持续动作电位发放。