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Integration of visual and physical motion cues for postural control in bipedal stance.

机译:视觉和身体运动提示的整合,可用于双足姿势的姿势控制。

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摘要

Visual cues play an important role in controlling our body posture during bipedal stance. However, visual cues are inherently ambiguous. When we perceive movement between ourselves and the world, visual cues alone cannot determine if we moved or the world moved or both moved together. The nervous system, therefore, needs to combine visual cues with physical motion cues to resolve this ambiguity and control posture. Despite numerous investigations, it still remains unclear how the nervous system integrates visual and non-visual indicators of posture. This thesis presents empirical findings that characterize the influence of visual and mechanical perturbations on human postural behavior. This thesis also presents a Bayesian model that formalizes the ambiguity problem encountered by the nervous system when it receives discordant sensory cues. The results demonstrate that movement of the visual surround at velocities greater than those experienced during unperturbed stance exhibits significant influence on body posture. Even in the presence of veridical kinesthetic and vestibular cues, the nervous system utilizes misleading visual cues to regulate body posture. Furthermore, the level of sensory discordance affects the biomechanical strategy of segmental control suggesting that the nervous system recruits lower-limb joints for postural stabilization depending on the intensity of both visual and mechanical perturbations. The success of the Bayesian model in predicting postural reactions of healthy subjects and patients with bilateral vestibular loss tested in this thesis and in published studies suggests that the nervous system integrates visual and physical motion cues within a probabilistic framework in order to resolve ambiguity, estimate and control posture. Thus the results presented in this thesis provide new insights into the neural and biomechanical mechanisms governing postural control in bipedal stance.
机译:视觉提示在控制两足动物的姿势中起着重要的作用。但是,视觉提示本质上是模棱两可的。当我们感知到自己与世界之间的运动时,仅凭视觉提示就无法确定我们是在移动还是世界在移动,或者两者都一起移动。因此,神经系统需要将视觉提示与身体动作提示结合起来,以解决这种歧义并控制姿势。尽管进行了大量研究,但仍不清楚神经系统如何整合姿势的视觉和非视觉指示。本文提出了经验发现,这些发现表征了视觉和机械扰动对人体姿势行为的影响。本文还提出了一种贝叶斯模型,该模型将神经系统在收到不一致的感觉提示时遇到的歧义问题形式化。结果表明视觉周围运动的速度大于在不受干扰的姿势期间经历的速度,对身体姿势表现出显着影响。即使存在垂直的动觉和前庭提示,神经系统也会利用误导性的视觉提示来调节身体姿势。此外,感觉不一致的水平影响节段控制的生物力学策略,表明神经系统根据视觉和机械扰动的强度募集下肢关节以稳定姿势。在本论文和已发表的研究中,贝叶斯模型在预测健康受试者和双侧前庭丢失患者的姿势反应中的成功预测表明,神经系统将视觉和身体运动线索整合在概率框架内,以解决歧义,估计和控制姿势。因此,本文提出的结果为控制双足姿势中的姿势控制的神经和生物力学机制提供了新的见解。

著录项

  • 作者

    Dokka, Kalpana.;

  • 作者单位

    University of Illinois at Chicago.;

  • 授予单位 University of Illinois at Chicago.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

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