Adaptive High Intensity Electrical Stimulation for Post-Surgical Rehabilitation
Adaptive High Intensity Electrical Stimulation for Post-Surgical Rehabilitation
批准号:
7615130
负责人:
Eric C Hartman
金额:
$36.86万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-04-15 至 2012-03-31
关键词:
Activities of Daily LivingAlgorithmsBiomechanicsBraces-Orthopedic appliancesClientClinicClinicalDatabasesDegenerative polyarthritisDelawareDevelopmentDevicesElectric StimulationExerciseGaitGoalsImmobilizationIndividualIsometric ContractionIsometric ExerciseKneeKnee jointLaboratoriesLeadLegMarketingMeasurementMethodsMuscleOperative Surgical ProceduresOutcomeOutputPatientsPatternPerformancePhasePhysical therapyPilot ProjectsPostoperative PeriodPriceProtocols documentationPublic HealthRampRecoveryRecruitment ActivityRegulationRehabilitation therapyReportingResearchSafetySignal TransductionSmall Business Innovation Research GrantSpeedStagingSystemTechniquesTherapeuticTimeTorqueTrainingTransducersUnited StatesUniversitiesWorkanaloganterior cruciate ligament reconstructionbasecostimprovedinstrumentknee replacement arthroplastyneuromuscularnovelprogramsprototypetool
中文摘要
描述(由申请人提供):术后膝关节固定后股四头肌力量的恢复是一个重要的治疗目标,这与步态质量和日常生活活动的能力有关。来自不同研究小组的几项研究表明,神经肌肉电刺激(NMES)与综合术后康复计划相结合,是一种安全有效的增强股四头肌的方法。使用高强度NMES技术已经证明了最深刻的结果,在物理治疗期间,患者坐在生物力学测力计上,每周进行几次非常强烈的股四头肌等距收缩。这项技术的有效性已被证明是在前交叉韧带(ACLR)手术重建后进行康复的个体;然而,广泛的临床接受的技术是有限的。我们断言,这种高强度电刺激技术将得到更广泛的应用:1)如果一个低成本、实用、有凝聚力的系统可用来取代昂贵且连接松散的研究型设备,2)如果该系统包含一个NMES单元,该单元使用基于结果的范式自动控制刺激,不需要治疗师不断参与。我们提出了一种新的康复系统,用于术后膝关节固定期间的股四头肌强化,其中膝关节将使用器械式术后膝关节支架稳定,刺激由具有自主、自适应刺激控制能力的高输出、便携式NMES装置提供。该设备的目标市场是为ACLR或全膝关节置换术(TKA)后接受康复治疗的患者提供服务的诊所。该系统的目标价格将是4000美元。因此,FastTrack SBIR项目的目标是在第一阶段使用实验室设备证明自适应增产控制方法的可行性。我们将把我们的自适应刺激器连接到KinCom测力仪,并证明刺激器可以引起足够强度的收缩,从而达到预期的功能结果,并证明自适应控制器可以为这种低周期计数应用开发适当的刺激模式。第二阶段的目标将是:1)开发一种能够在接近最大的等距收缩时稳定膝盖的器械式膝托,并获得由此产生的扭矩的测量;2)实现我们的自适应刺激控制器的快速训练版本,适合在这种低循环计数应用中使用;3)实施对某些用户可能更舒适的替代基本刺激波形;4)证明拟议系统在ACLR或TKA后增强股四头肌的有效性。这项工作可能会通过开发一种电刺激运动装置,用于前交叉韧带(ACLR)手术修复或全膝关节置换术(TKA)术后固定期间的股四头肌强化,从而有益于公众健康。股四头肌强化已被证明可以改善步态和改善日常生活活动(ADLs)的表现。在美国,每年大约有10万例ACLR和40万例TKA手术。
英文摘要
DESCRIPTION (provided by applicant): Recovery of quadriceps muscle force following post-surgical knee immobilization is a significant therapeutic aim which is associated with quality of gait and the ability to perform activities of daily living. Several studies from various research groups have shown that neuromuscular electrical stimulation (NMES), used in conjunction with a comprehensive post-surgical rehabilitation program, is a safe and highly effective method for achieving quadriceps strengthening. The most profound results have been demonstrated with use of high intensity NMES technique in which a few very strong isometric contractions of the quadriceps muscle were performed several times per week during a physical therapy session in which the patient was seated on a biomechanical dynamometer. Efficacy of this technique has been demonstrated for individuals undergoing rehabilitation following surgical reconstruction of the anterior cruciate ligament (ACLR); however, widespread clinical acceptance of the technique has been limited. We assert that this high intensity electrical stimulation technique would be more widely practiced: 1) if a low cost, practical, cohesive system were available to replace costly and loosely connected research-based apparatus, and 2) if the system involved an NMES unit that controlled stimulation automatically using an outcome-based paradigm that did not require incessant involvement of the therapist. We propose a novel rehabilitation system indicated for quadriceps strengthening during post-surgical knee immobilization in which the knee joint will be stabilized using an instrumented post-surgical knee brace and stimulation is delivered by a high output, portable NMES unit with autonomous, adaptive stimulation control capabilities. The target markets for this device would be clinics who serve patients undergoing rehabilitation following ACLR or total knee arthroplasty (TKA). The target price for the system will be $4000. The goals of this FastTrack SBIR project are therefore to demonstrate feasibility of the adaptive stimulation control approach in Phase I using laboratory-based apparatus. We will interface our adaptive stimulator to the KinCom dynamometer and show that the stimulator can elicit a contraction of sufficient strength that function outcomes could be expected, and demonstrate that the adaptive controller can develop appropriate stimulation patterns for use in this low-cycle count application. The Phase II goals will be: 1) to develop an instrumented knee brace capable of stabilizing the knee during near maximal isometric contractions and obtaining measurements of the resulting torque; 2) to implement a rapid training version of our adaptive stimulation controller that is suited for use in this low cycle count application; 3) to implement an alternate fundamental stimulation waveform that may be more comfortable to some users; and 4) to demonstrate efficacy of the proposed system for quadriceps strengthening following ACLR or TKA. / Relevance The proposed work may benefit public health through development of an electrical stimulation exercise device indicated for quadriceps strengthening during post-surgical immobilization following surgical repair of the anterior cruciate ligament (ACLR) or total knee arthroplasty (TKA). Quadriceps strengthening has been shown to improve gait and improve performance of activities of daily living (ADLs). There are approximately 100,000 ACLR and 400,000 TKA surgeries per year in the United States.
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