Effect of Contralateral Leg on Motor Output Post Stroke
Effect of Contralateral Leg on Motor Output Post Stroke
批准号:
7216860
负责人:
Susanne M Morton
金额:
$10.7万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-04-01 至 2011-03-31
关键词:
3-DimensionalAffectAnkleAreaBehaviorBehavioralBilateralBrainContralateralCouplingDevelopmentDisruptionElectromyographyExhibitsGaitGenderGenerationsGoalsHumanImageIndividualIpsilateralJointsLeadLegLesionLimb structureLocomotionLocomotor RecoveryLoveMaintenanceMeasuresMechanicsMedicalMentored Research Scientist Development AwardMentorshipModificationMotorMotor CortexMotor outputMovementMuscleNervous System TraumaParesisPathway interactionsPatternPerformancePublic HealthPurposeReaction TimeRecoveryRehabilitation therapyResearchResearch PersonnelScientistSensorySideSilverSpinalStrokeStructureSumTechniquesThinkingTrainingTranscranial magnetic stimulationWalkingWristbasecareerdisability leavehealthy aginghemiparesiskinematicsmotor controlneurophysiologyneuroregulationnovelpost strokeresponsestroke rehabilitationtool
中文摘要
描述(由申请者提供):这个指导性研究科学家发展奖的目的是为候选人在医学康复研究中成功的长期职业生涯做准备。候选人将得到一名高级科学家的初步支持,该科学家将为候选人提供一段时间的强化、集中培训,内容涉及运动皮质神经生理学、中风后运动皮质可塑性,以及使用经颅磁刺激作为测量皮质兴奋性的研究工具。本研究的目的是确定卒中后偏瘫患者双侧腿控制的机制,特别是确定一条腿的感觉运动状态对另一条腿的运动行为的影响。将进行三项研究以确定:1)运动皮质的损伤是否比单侧周期性踝关节运动更能导致双侧特定的功能障碍?2)同侧非交叉皮质脊髓通路在多大程度上对运动性皮质卒中患者的单侧和双侧周期性踝关节运动有贡献?3)在行走过程中,运动皮质受损是否会损害双腿对新的单侧扰动的运动反应?为了回答这些问题,将记录由运动性皮质中风引起的偏瘫受试者的3-D运动运动学和肌电图,以及年龄和性别匹配的健康对照组受试者进行脚踝运动任务和行走。研究结果将有助于解释运动皮质和皮质脊髓通路的具体功能,并将为开发新的康复技术以恢复中风后偏瘫患者的正常运动功能提供依据。该计划中提供的指导将有助于指导候选人作为一名研究人员走向独立,并为候选人的长期研究目标带来重大进展,即了解人类运动过程中的肢体间协调以及神经损伤后运动功能恢复的机制。相关性:这项研究将对公共卫生产生广泛影响,因为中风是导致长期残疾的主要原因,并使许多患者在没有帮助的情况下无法行走(AHA 2005)。这些研究的结果有望帮助开发新的治疗方法,旨在全面恢复中风,特别是步态恢复。
英文摘要
DESCRIPTION (provided by applicant): The purpose of this Mentored Research Scientist Development Award is to prepare the candidate for a successful long-term career in medical rehabilitative research. The candidate will receive primary sponsorship from a senior-level scientist who will provide the candidate with a period of intensive, focused training in the areas of motor cortical neurophysiology, motor cortical plasticity following stroke, and the use of transcranial magnetic stimulation as a research tool to measure cortical excitability. The purpose of the research proposed here is to determine mechanisms of bilateral leg control in individuals with post stroke hemi paresis; specifically, to determine the effects of the sensorimotor state of one leg on the motor behavior of the opposite leg. Three studies will be undertaken to determine: 1) does damage to the motor cortex cause specific deficits in bilateral more than unilateral cyclical ankle movements? 2) to what extent do ipsilateral uncrossed corticospinal pathways contribute to unilateral and bilateral cyclical ankle movements in individuals with motor cortical stroke? and 3) does damage to the motor cortex impair bilateral leg motor responses to a novel unilateral perturbation during walking? To answer these questions, 3-D movement kinematics and electromyography will be recorded from subjects with hemi paresis caused by motor cortical stroke and healthy age- and gender-matched control subjects performing ankle movement tasks and walking. Results will help explain the specific function of the motor cortex and corticospinal pathway and will provide a basis for the development of novel rehabilitation techniques to recover normal locomotor's function in individuals with post-stroke hemi paresis. The mentorship provided in this plan will help direct the candidate toward independence as an investigator and lend significant progress toward the candidate's long-term research goal of understanding interlimb coordination during human locomotion and mechanisms for recovery of locomotor's function following neurological damage. RELEVANCE: This research will have broad impact on public health, as stroke is a leading cause of long-term disability and leaves many of its victims unable to walk without assistance (AHA 2005). Findings from these studies are expected to help lead to the development of new treatments aimed at stroke rehabilitation generally and gait recovery specifically.
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会议论文
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Effect of Contralateral Leg on Motor Output Post Stroke
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Effect of Contralateral Leg on Motor Output Post Stroke
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Effect of Contralateral Leg on Motor Output Post Stroke
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批准号:7099190
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资助金额:$10.47万
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依托单位:
Effect of Contralateral Leg on Motor Output Post Stroke
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批准号:7792252
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资助金额:$11.44万
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依托单位:
Effect of Contralateral Leg on Motor Output Post Stroke
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批准号:7657213
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资助金额:$7.71万
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负责人:Susanne M Morton
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依托单位:
海外基金