Aix Marseille Univ, CNRS, LNC, Marseille, France.
Exp Brain Res. 2022 Jan;240(1):189-198. doi: 10.1007/s00221-021-06246-x. Epub 2021 Oct 23.
We tested the hypothesis that the inability to move a pen accurately in a graphic task is partly due to a decrease of afferent somatosensory information resulting from overpressure on the tactile receptors of the fingers holding the pen. To disentangle the depressed somatosensory origin from an altered motor command, we compared a condition in which the participant actively produces pressure on the pen (active grip) with a condition in which pressure is passively applied (passive grip, no grip-related motor command). We expected that the response of the somatosensory cortex to electric stimulation of the wrist's tactile nerve (i.e., SEP) would be greater in the natural pen grip (baseline condition) than in the two overpressure conditions (actively or passively induced). Fifteen adults were required to trace a geometrical shape in the three grip conditions. The SEP amplitude was not significantly different between the baseline and both overpressure conditions. However, behavioral results showed that drawing accuracy is impaired when the pressure on the pen is increased (passively or actively). Cortical source analyses revealed that the activity of the superior parietal areas (SPL) increased in both overpressure conditions. Our findings suggest that the SPL is critical for sensorimotor integration, by maintaining an internal representation of pen holding. These cortical changes might witness the impaired updating of the finger-pen interaction force for such drawing actions under visual guidance.
我们检验了这样一个假设,即在图形任务中无法准确移动笔的部分原因是由于手指对笔的过度压力导致感觉传入的触觉信息减少。为了将压抑的感觉来源与改变的运动指令分开,我们比较了参与者主动对笔施加压力(主动握持)和被动施加压力(被动握持,没有与握持相关的运动指令)的情况。我们预计,腕部触觉神经(即 SEP)电刺激引起的感觉皮层反应在自然握笔(基线条件)下会比在两种过压条件(主动或被动引起)下更大。15 名成年人被要求在三种握持条件下追踪一个几何形状。SEP 幅度在基线和两种过压条件之间没有显著差异。然而,行为结果表明,当笔上的压力增加时(主动或被动),绘图精度会受到影响。皮质源分析显示,在两种过压条件下,顶叶上区(SPL)的活动增加。我们的发现表明,SPL 通过保持对笔握持的内部表示,对于感觉运动整合至关重要。这些皮质变化可能见证了在视觉引导下进行此类绘图动作时,手指与笔之间的相互作用力的更新受到了损害。