Godde B, Stauffenberg B, Spengler F, Dinse H R
Institute of Medical Psychology, University of Tübingen, 72074 Tübingen, Germany.
J Neurosci. 2000 Feb 15;20(4):1597-604. doi: 10.1523/JNEUROSCI.20-04-01597.2000.
We studied coactivation-based cortical plasticity at a psychophysical level in humans. For induction of plasticity, we used a protocol of simultaneous pairing of tactile stimulation to follow as closely as possible the idea of Hebbian learning. We reported previously that a few hours of tactile coactivation resulted in selective and reversible reorganization of receptive fields and cortical maps of the hindpaw representation of the somatosensory cortex of adult rats (Godde et al., 1996). In the present study, simultaneous spatial two-point discrimination was tested on the tip of the right index finger in human subjects as a marker of plastic changes. After 2 hr of coactivation we found a significant improvement in discrimination performance that was reversible within 8 hr. Reduction of the duration of the coactivation protocol revealed that 30 min was not sufficient to drive plastic changes. Repeated application of coactivation over 3 consecutive days resulted in a delayed recovery indicating stabilization of the improvement over time. Perceptual changes were highly selective because no transfer of improved performance to fingers that were not stimulated was found. The results demonstrate the potential role of sensory input statistics (i.e., their probability of occurrence and spatiotemporal relationships) in the induction of cortical plasticity without involving cognitive factors such as attention or reinforcement.
我们在人类的心理物理学层面研究了基于共同激活的皮质可塑性。为了诱导可塑性,我们采用了一种触觉刺激同时配对的方案,以尽可能紧密地遵循赫布学习的理念。我们之前报道过,几个小时的触觉共同激活导致成年大鼠体感皮层后爪表征的感受野和皮质图谱发生选择性且可逆的重组(戈德等人,1996年)。在本研究中,对人类受试者右手食指指尖进行了同时空间两点辨别测试,作为可塑性变化的标志。共同激活2小时后,我们发现辨别性能有显著改善,且在8小时内是可逆的。缩短共同激活方案的持续时间表明,30分钟不足以驱动可塑性变化。连续3天重复进行共同激活导致恢复延迟,表明随着时间推移改善情况趋于稳定。感知变化具有高度选择性,因为未发现改善后的表现转移到未受刺激的手指上。结果表明,感觉输入统计信息(即它们的发生概率和时空关系)在不涉及注意力或强化等认知因素的情况下,对诱导皮质可塑性具有潜在作用。