Orienting Gaze Toward a Visual Target: Neurophysiological Synthesis with Epistemological Considerations.

IF 1.8 Q2 Medicine Vision (Switzerland) Pub Date : 2025-01-14 DOI:10.3390/vision9010006
Laurent Goffart
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Abstract

The appearance of an object triggers an orienting gaze movement toward its location. The movement consists of a rapid rotation of the eyes, the saccade, which is accompanied by a head rotation if the target eccentricity exceeds the oculomotor range and by a slow eye movement if the target moves. Completing a previous report, we explain the numerous points that lead to questioning the validity of a one-to-one correspondence relation between measured physical values of gaze or head orientation and neuronal activity. Comparing the sole kinematic (or dynamic) numerical values with neurophysiological recordings carries the risk of believing that the activity of central neurons directly encodes gaze or head physical orientation rather than mediating changes in extraocular and neck muscle contraction, not to mention possible changes happening elsewhere (in posture, in the autonomous nervous system and more centrally). Rather than reducing mismatches between extrinsic physical parameters (such as position or velocity errors), eye and head movements are behavioral expressions of intrinsic processes that restore a poly-equilibrium, i.e., balances of activities opposing antagonistic visuomotor channels. Past results obtained in cats and monkeys left a treasure of data allowing a synthesis, which illustrates the formidable complexity underlying the small changes in the orientations of the eyes and head. The aim of this synthesis is to serve as a new guide for further investigations or for comparison with other species.

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朝向视觉目标的凝视:与认识论考虑的神经生理学综合。
一个物体的出现触发了一个指向它所在位置的凝视运动。这种运动包括眼睛的快速转动,即扫视,如果目标的偏心率超过眼球运动范围,则伴随着头部转动,如果目标移动,则伴随着缓慢的眼球运动。在完成之前的报告后,我们解释了导致质疑凝视或头部方向的测量物理值与神经元活动之间一对一对应关系的有效性的许多点。将唯一的运动学(或动态)数值与神经生理学记录进行比较,有可能会认为中枢神经元的活动直接编码凝视或头部的物理方向,而不是介导眼外和颈部肌肉收缩的变化,更不用说其他地方(姿势、自主神经系统和更集中的地方)可能发生的变化。而不是减少外部物理参数(如位置或速度误差)之间的不匹配,眼睛和头部运动是恢复多元平衡的内在过程的行为表达,即对抗对抗性视觉运动通道的活动平衡。过去在猫和猴子身上获得的结果留下了宝贵的数据,可以进行综合,这说明了眼睛和头部方向的微小变化背后的巨大复杂性。该合成的目的是为进一步的研究或与其他物种的比较提供新的指导。
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来源期刊
Vision (Switzerland)
Vision (Switzerland) Health Professions-Optometry
CiteScore
2.30
自引率
0.00%
发文量
62
审稿时长
11 weeks
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