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Calibration Is Both Functional and Anatomical

机译:校准既功能又解剖

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Bingham and Pagano (1998) described calibration as a mapping from embodied perceptual units to an embodied action unit and suggested that it is an inherent component of perception/action that yields accurate targeted actions. We tested two predictions of this "Mapping Theory." First, calibration should transfer between limbs, because it involves a mapping from perceptual units to an action unit, and thus is functionally specific to the action (Pan, Coats, and Bingham, 2014). We used distorted haptic feedback to calibrate feedforward right hand reaches and tested right and left hand reaches after calibration. The calibration transferred. Second, the Mapping Theory predicts that limb specific calibration should be possible because the units are embodied and anatomy contributes to their scaling. Limbs must be calibrated to one another given potential anatomical differences among limbs. We used distorted haptic feedback to calibrate feedforward reaches with right and left arms simultaneously in opposite directions relative to a visually specified target. Reaches tested after calibration revealed reliable limb specific calibration. Both predictions were confirmed. This resolves a prevailing controversy as to whether calibration is functional (Bruggeman & Warren, 2010; Rieser, Pick, Ashmead, & Garing, 1995) or anatomical (Durgin et al., 2003; Durgin & Pelah, 1999). Necessarily, it is both.
机译:Bingham和Pagano(1998)将校准描述为从具体的感性单位到具体的动作单位的映射,并建议它是感知/动作的固有组成部分,可以产生准确的目标动作。我们测试了此“映射理论”的两个预测。首先,校准应该在四肢之间转移,因为它涉及从感知单位到动作单位的映射,因此在功能上是针对动作的(Pan,Coats和Bingham,2014)。我们使用失真的触觉反馈来校准前馈右手触及范围,并在校准后测试左右手触及范围。校准已转移。其次,制图理论预测应该进行肢体特定校准,因为这些单元被具体化并且解剖结构有助于其缩放。给定四肢之间潜在的解剖学差异,必须将四肢彼此校准。我们使用了变形的触觉反馈,以相对于视觉指定目标的相反方向同时校准了左右臂的前馈距离。校准后测试的范围显示可靠的肢体特定校准。两项预测均得到确认。这解决了关于标定是功能性的(Bruggeman&Warren,2010年; Rieser,Pick,Ashmead和Garing,1995年)还是解剖学上的(Durgin等人,2003年; Durgin&Pelah,1999年)争议。必然两者兼而有之。

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