首页> 外文期刊>Clinical Interventions in Aging >Improvement of sensorimotor functions in old age by passive sensory stimulation
【24h】

Improvement of sensorimotor functions in old age by passive sensory stimulation

机译:被动感觉刺激改善老年感觉运动功能

获取原文
       

摘要

Abstract: Sensorimotor functions decrease in old age. The well-documented loss of tactile acuity in elderly is accompanied by deterioration of haptic performance and fine manipulative movements. Physical training and exercise can maintain sensorimotor fitness into high age. However, regular schedules of training require discipline and physical fitness. We here present an alternative interventional paradigm to enhance tactile, haptic, and fine motor performance based on passive, sensory stimulation by means of tactile coactivation. This approach is based on patterned, synchronous tactile stimulation applied to the fingertips for 3 hours. The stimulation drives plastic reorganizational changes in somatosensory cortex that affect perception and behavior: We demonstrate that following 3 hours of coactivation tactile acuity as well as haptic object exploration and fine motor performance are improved for at least 96 hours. Because this kind of intervention does not require active participation or attention of the subjects, we anticipate that coactivation is a prime candidate for future therapeutic interventions in patients with impaired sensorimotor abilities. It can be assumed that the maintenance and restoration of sensorimotor functions can ensure and preserve independence of daily living. Further optimizing of the stimulation protocol can be assumed to strengthen both the range and durability of its efficacy.
机译:摘要:感觉运动功能随着年龄的增长而下降。有据可查的老年人的触觉敏锐度下降伴随着触觉表现的恶化和精细的操纵动作。体育锻炼和锻炼可以保持感觉运动的健康,直到高龄。但是,定期的培训计划要求纪律和身体健康。我们在这里提出了一种替代的干预范例,通过基于触觉共激活的被动感官刺激来增强触觉,触觉和精细运动性能。该方法基于施加到指尖3个小时的图案化同步触觉刺激。刺激驱动体感皮层中的塑料重组变化,从而影响感知和行为:我们证明,共激活3个小时后,触觉敏锐度以及触觉对象探索和精细运动性能至少改善了96个小时。因为这种干预不需要受试者的积极参与或关注,所以我们预计,共激活是未来对于感觉运动能力受损的患者进行治疗干预的主要候选者。可以假定,感觉运动功能的维持和恢复可以确保和维持日常生活的独立性。可以假设进一步优化刺激方案以增强其效力的范围和持久性。

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