4.3 Review

Cortical control of postural responses

Journal

JOURNAL OF NEURAL TRANSMISSION
Volume 114, Issue 10, Pages 1339-1348

Publisher

SPRINGER WIEN
DOI: 10.1007/s00702-007-0657-0

Keywords

cerebral cortex; automatic postural responses; posture; balance

Funding

  1. NIA NIH HHS [AG-06457, R01 AG006457] Funding Source: Medline
  2. NINDS NIH HHS [F31NS048800, F31 NS048800] Funding Source: Medline

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This article reviews the evidence for cortical involvement in shaping postural responses evoked by external postural perturbations. Although responses to postural perturbations occur more quickly than the fastest voluntary movements, they have longer latencies than spinal stretch reflexes, suggesting greater potential for modification by the cortex. Postural responses include short, medium and long latency components of muscle activation with increasing involvement of the cerebral cortex as latencies increase. Evidence suggests that the cortex is also involved in changing postural responses with alterations in cognitive state, initial sensory-motor conditions, prior experience, and prior warning of a perturbation, all representing changes in central set. Studies suggest that the cerebellar-cortical loop is responsible for adapting postural responses based on prior experience and the basal ganglia-cortical loop is responsible for pre-selecting and optimizing postural responses based on current context. Thus, the cerebral cortex likely influences longer latency postural responses both directly via corticospinal loops and shorter latency postural responses indirectly via communication with the brainstem centers that harbor the synergies for postural responses, thereby providing both speed and flexibility for pre-selecting and modifying environmentally appropriate responses to a loss of balance.

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