Hajnal Alen, Fonseca Sergio, Kinsella-Shaw Jeffrey M, Silva Paula, Carello Claudia, Turvey M T
Center for the Ecological Study of Perception and Action, University of Connecticut, Storrs, CT 06269-1020, USA.
Neurosci Lett. 2007 May 23;419(1):5-9. doi: 10.1016/j.neulet.2007.03.042. Epub 2007 Mar 23.
Nonvisual perceptions of a wielded object's spatial properties are based on the quantities expressing the object's mass distribution, quantities that are invariant during the wielding. The mechanoreceptors underlying the kind of haptic perception involved in wielding - referred to as effortful, kinesthetic, or dynamic touch - are those embedded in the muscles, tendons, and ligaments. The present experiment's focus was the selectivity of this muscle-based form of haptic perception. For an occluded rod grasped by the hand at some intermediate position along its length, participants can attend to and report selectively the rod's full length, its partial lengths (fore or aft of the hand), and the position of the grip. The present experiment evaluated whether participants could similarly attend selectively when wielding by foot. For a given rod attached to and wielded by foot or attached to (i.e. grasped) and wielded by hand, participants reported (by magnitude production) the rod's whole length or fractional length leftward of the point of attachment. On measures of mean perceived length, accuracy, and reliability, the degree of differentiation of partial from full extent achieved by means of the foot matched that achieved by means of the hand. Despite their neural, anatomical, and experiential differences, the lower and upper limbs seem to abide by the same principles of selective muscle-based perception and seem to express this perceptual function with equal facility.
对被操纵物体空间属性的非视觉感知基于表示物体质量分布的量,这些量在操纵过程中是不变的。操纵过程中涉及的那种触觉感知(称为费力的、动觉的或动态触觉)背后的机械感受器是那些嵌入肌肉、肌腱和韧带中的感受器。本实验的重点是这种基于肌肉的触觉感知的选择性。对于在其长度上的某个中间位置被手握住的遮挡杆,参与者可以选择性地关注并报告杆的全长、其部分长度(手的前方或后方)以及握持位置。本实验评估了参与者在通过脚进行操纵时是否也能类似地进行选择性关注。对于一根固定在脚上并由脚操纵的给定杆,或者固定在(即握住)手上并由手操纵的杆,参与者(通过量级产生)报告杆在附着点左侧的全长或分数长度。在平均感知长度、准确性和可靠性的测量上,通过脚实现的部分与整体范围的区分程度与通过手实现的程度相当。尽管上下肢在神经、解剖和经验上存在差异,但它们似乎遵循相同的基于肌肉的选择性感知原则,并且似乎以同样的能力表达这种感知功能。