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触屏手机用户指尖的使用依赖型皮层处理

Use-dependent cortical processing from fingertips in touchscreen phone users.

作者信息

Gindrat Anne-Dominique, Chytiris Magali, Balerna Myriam, Rouiller Eric M, Ghosh Arko

机构信息

Domain of Physiology, Fribourg Cognition Center, Department of Medicine, University of Fribourg, Chemin du Musée 5, Fribourg 1700, Switzerland.

Domain of Physiology, Fribourg Cognition Center, Department of Medicine, University of Fribourg, Chemin du Musée 5, Fribourg 1700, Switzerland; Institute of Neuroinformatics, University of Zurich and ETH Zurich, Winterthurerstrasse 190, Zurich 8057, Switzerland.

出版信息

Curr Biol. 2015 Jan 5;25(1):109-16. doi: 10.1016/j.cub.2014.11.026. Epub 2014 Dec 23.

Abstract

Cortical activity allotted to the tactile receptors on fingertips conforms to skilful use of the hand. For instance, in string instrument players, the somatosensory cortical activity in response to touch on the little fingertip is larger than that in control subjects. Such plasticity of the fingertip sensory representation is not limited to extraordinary skills and occurs in monkeys trained to repetitively grasp and release a handle as well. Touchscreen phones also require repetitive finger movements, but whether and how the cortex conforms to this is unknown. By using electroencephalography (EEG), we measured the cortical potentials in response to mechanical touch on the thumb, index, and middle fingertips of touchscreen phone users and nonusers (owning only old-technology mobile phones). Although the thumb interacted predominantly with the screen, the potentials associated with the three fingertips were enhanced in touchscreen users compared to nonusers. Within the touchscreen users, the cortical potentials from the thumb and index fingertips were directly proportional to the intensity of use quantified with built-in battery logs. Remarkably, the thumb tip was sensitive to the day-to-day fluctuations in phone use: the shorter the time elapsed from an episode of intense phone use, the larger the cortical potential associated with it. Our results suggest that repetitive movements on the smooth touchscreen reshaped sensory processing from the hand and that the thumb representation was updated daily depending on its use. We propose that cortical sensory processing in the contemporary brain is continuously shaped by the use of personal digital technology.

摘要

分配给指尖触觉感受器的皮层活动与手部的熟练使用情况相符。例如,对于弦乐器演奏者,小指尖受到触摸时体感皮层的活动比对照组受试者更大。指尖感觉表征的这种可塑性并不局限于非凡技能,在经过训练可反复抓握和松开手柄的猴子身上也会出现。触屏手机也需要重复性的手指动作,但大脑皮层是否以及如何适应这一点尚不清楚。我们通过脑电图(EEG)测量了触屏手机用户和非用户(仅拥有旧技术手机)的拇指、食指和中指指尖受到机械触摸时的皮层电位。尽管拇指与屏幕的交互最为频繁,但与非用户相比,触屏手机用户的三个指尖相关电位增强。在触屏手机用户中,拇指和食指指尖的皮层电位与通过内置电池记录量化的使用强度成正比。值得注意的是,拇指尖对手机使用的日常波动很敏感:距一次高强度手机使用的时间越短,与之相关的皮层电位就越大。我们的研究结果表明,在光滑触屏上的重复性动作重塑了手部的感觉处理,并且拇指的表征会根据其使用情况每日更新。我们提出,当代大脑中的皮层感觉处理会受到个人数字技术使用的持续影响。

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