首页> 外文期刊>Human movement science >Effects of plantar cutaneo-muscular and tendon vibration on posture and balance during quiet and perturbed stance.
【24h】

Effects of plantar cutaneo-muscular and tendon vibration on posture and balance during quiet and perturbed stance.

机译:安静和摄动姿势时during肌和肌腱振动对姿势和平衡的影响。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Modulation of lower limb somatosensory information by tendon or plantar vibration produces directionally specific, vibration-induced falling reactions that depend on the tendon or the region of the sole that is vibrated. This study characterized the effects of different patterns of plantar cutaneo-muscular vibration and bilateral Achilles tendon vibration (ATV) on the postural strategies observed during quiet and perturbed stance. Twelve healthy young participants stood barefooted, with their vision blocked, on two sets of plantar vibrators placed on two AMTI force plates embedded in a moveable support surface. Two other vibrators were positioned over the Achilles tendons. Participants were randomly exposed to different patterns of plantar cutaneo-muscular and ATV. Tilts of the support surface in the toes-up (TU) and toes-down (TD) directions were given 5-8s after the beginning of vibration. Body kinematics in 3D and ground reaction forces were recorded. Bilateral ATV applied with or without rearfoot vibration (RFV) during quiet stance resulted in a whole-body backward leaning accompanied by an increase in trunk extension and hip and knee flexion. RFV alone produced a forward whole-body tilt with increased flexion in trunk, hip, and ankle. When stance was perturbed by TU tilts, the center of mass (CoM) and center of pressure (CoP) displacements were larger in the presence of RFV or ATV and associated with increased peak trunk flexion. TD tilts with or without ATV resulted in no significant difference in CoM and CoP displacements, while larger trunk extension and smaller distal angular displacements were observed during ATV. RFV altered the magnitude of the balance reactions, as observed by an increase in CoP displacements and variable response in trunk displacement. Significant interactions between ATV and RFV were obtained for the peak angular excursions for both directions of perturbations, where ATV either enhanced (for TU tilts) or attenuated (for TD tilts) the influence of RFV. Manipulating somatosensory information from the plantar cutaneo-muscular and muscle spindle Ia afferents thus results in altered and widespread postural responses, as shown by profound changes in body kinematics and CoM and CoP displacements. This suggests that the CNS uses plantar cutaneo-muscular and ankle spindle afferent inputs to build an appropriate reference of verticality that influences the control of equilibrium during quiet and perturbed stance.
机译:肌腱或足底振动对下肢体感信息的调节会产生特定于方向的,由振动引起的跌倒反应,具体取决于肌腱或被振动的脚底区域。这项研究的特点是在安静和摄动的姿势期间观察到的足底角膜肌振动和双侧跟腱振动(ATV)的不同模式对姿势策略的影响。十二名健康的年轻参与者赤脚站立在两组脚底振动器上,他们的视线受到阻滞,这两组脚底振动器被放置在嵌入可移动支撑表面的两个AMTI推力板上。另外两个振动器置于跟腱上。参与者被随机暴露于足底角质肌和ATV的不同模式。振动开始后的5-8s内,支撑表面沿脚尖向上(TU)和脚尖向下(TD)的方向倾斜。记录了3D人体运动学和地面反作用力。安静状态下,有或没有后足振动(RFV)的情况下应用双边ATV会导致全身向后倾斜,并伴有躯干伸展以及臀部和膝盖屈曲增加。单独的RFV会导致全身向前倾斜,躯干,臀部和脚踝的弯曲度会增加。当姿态受到TU倾斜的干扰时,在存在RFV或ATV的情况下,质心(CoM)和压力中心(CoP)的位移较大,并且与躯干的最大屈曲峰值有关。有或没有ATV的TD倾斜导致CoM和CoP位移无明显差异,而在ATV期间观察到较大的躯干伸展和较小的远端角位移。 RFV改变了平衡反应的强度,如CoP位移的增加和躯干位移的可变响应所观察到的。对于两个摄动方向的峰值角偏移,获得了ATV和RFV之间的显着交互作用,其中ATV增强了RFV的影响(对于TU倾斜)或减弱了(对于TD倾斜)。因此,操纵来自足底皮肤肌肉和肌肉梭动Ia传入的体感信息会导致姿势反应的改变和广泛分布,这在人体运动学以及CoM和CoP位移的深刻变化中可以看出。这表明中枢神经系统使用足底皮肤肌肉和脚踝纺锤传入的输入来建立适当的垂直度参考,从而影响安静和摄动姿势时平衡的控制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号