Postural responses to unexpected perturbations of balance during reaching

被引:0
作者
Hari Trivedi
Julia A. Leonard
Lena H. Ting
Paul J. Stapley
机构
[1] Emory University,WH Coulter Department of Biomedical Engineering, Georgia Institute of Technology
[2] McGill University,Balance and Voluntary Movement Laboratory, Department of Kinesiology and Physical Education
来源
Experimental Brain Research | 2010年 / 202卷
关键词
Human; Posture; Feedforward; Feedback; Reaching;
D O I
暂无
中图分类号
学科分类号
摘要
To study the interaction between feedforward and feedback modes of postural control, we investigated postural responses during unexpected perturbations of the support surface that occurred during forward reaching in a standing position. We examined postural responses in lower limb muscles of nine human subjects. Baseline measures were obtained when subjects executed reaching movements to a target placed in front of them (R condition) and during postural responses to forward and backward support-surface perturbations (no reaching, P condition) during quiet stance. Perturbations were also given at different delays after the onset of reaching movements (RP conditions) as well as with the arm extended in the direction of the target, but not reaching (P/AE condition). Results showed that during perturbations to reaching (RP), the initial automatic postural response, occurring around 100 ms after the onset of perturbations, was relatively unchanged in latency or amplitude compared to control conditions (P and P/AE). However, longer latency postural responses were modulated to aid in the reaching movements during forward perturbations but not during backward perturbations. Our results suggest that the nervous system prioritizes the maintenance of a stable postural base during reaching, and that later components of the postural responses can be modulated to ensure the performance of the voluntary task.
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页码:485 / 491
页数:6
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  • [21] Nashner LM(2000)Muscular responses and movement strategies during stumbling over obstacles J Neurophysiol 83 2093-2102
  • [22] Horak FB(2009)The pontomedullary reticular formation contributes to the compensatory postural responses observed following removal of the support surface in the standing cat J Neurophysiol 101 1334-1350
  • [23] Diener HC(2008)A feedback model reproduces muscle activity during human postural responses to support-surface translations J Neurophysiol 99 1032-1038
  • [24] Nashner LM(2009)A feedback model explains the differential scaling of human postural responses to perturbation acceleration and velocity J Neurophysiol 101 3294-3309
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