Multi-Modal Stimulus Interaction and Optimization in a Vestibular Prosthesis
Multi-Modal Stimulus Interaction and Optimization in a Vestibular Prosthesis
批准号:
8071087
负责人:
Natan Simcha Davidovics
金额:
$2.76万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-07-01 至 2012-03-31
关键词:
3-DimensionalAccelerationAccountingAddressAdvanced DevelopmentAffectAnatomyAnteriorBehaviorBilateralBiological AssayCharacteristicsChargeChinchilla (genus)ChronicClinicalCochlear ImplantsCochlear NerveCochlear implant procedureComplexComputer SimulationContralateralDataData SetDependenceDevicesDisabled PersonsElectric StimulationElectrodesEsthesiaExhibitsEyeEye MovementsFailureFutureGeneticGentamicinsGoalsHeadHead MovementsHearingHumanHybridsImplantIndividualInjuryIpsilateralLabyrinthLeadLeftMechanicsMeniere&aposs DiseaseModalityModelingMotionNerveNervous system structureNeuraxisOperative Surgical ProceduresPeripheralPharmaceutical PreparationsPhasePhysiologic pulsePhysiologicalProceduresProsthesisProsthesis DesignProsthesis ImplantationProtocols documentationPulse RatesResidual stateRestRotationSemicircular canal structureSimulateSiteSpeech IntelligibilityStimulusStructureSymptomsSyndromeSystemTechniquesTestingTimeTrainingVestibular NerveVestibular lossdesignfall riskfunctional restorationgazeimplantationimprovedinsightneurophysiologynovelotoconiaprogramsprototyperelating to nervous systemresearch studyresponserestorationsensory integrationsoundspeech recognitionvectorvestibular prosthesisvestibulo-ocular reflexvirtualvisual image movement
中文摘要
描述(由申请人提供):双侧前庭功能衰竭(BVF)由于耳毒性药物,梅尼埃病,遗传综合征的影响和其他内耳损伤可导致致残症状。受影响的个体患有慢性失衡和示波器症,那些不能补偿损失的人摔倒和其他伤害的风险增加。目前没有足够的治疗方案来治疗BVF。为了满足这些人的需求,我们开发了一种前庭假体原型,它通过3个陀螺仪编码3D头部运动,并电刺激前庭神经的相应分支。这种装置在龙猫身上的初步测试很有希望,但刺激编码的进一步改进将需要可靠地编码所有头部运动,这些运动通常是由前庭眼角反射稳定凝视的。为每个假体通道定义刺激编码特征的十个主要参数的试错优化是不切实际的。为了在临床环境中成功应用,需要一种更有效的刺激方案规划方法。该项目的第一部分将建立一个稳健有效的方法来优化刺激参数,然后使用优化过程中获得的数据来完善前庭神经和中枢神经系统对假肢电刺激的反应模型。虽然第一批人类前庭植入接受者将是双侧严重丧失的个体,但扩大植入候选标准可能导致植入具有残余机械敏感性的受试者。了解自然输入和假体输入是否以及如何集中集成,将有助于设计电极和刺激方案,最大限度地利用剩余的机械灵敏度。同时,检查对自然和人工刺激的反应的相互作用,为使用其他不可能的实验范式研究感觉统合的神经生理学提供了一个机会。拟议项目的第二部分将描述角前庭-眼反射(aVOR)对电和自然刺激单独或联合的反应。相关性:前庭假体可以恢复由于BVF而丧失的功能,就像人工耳蜗可以恢复听力一样。该项目将直接影响人类前庭假体刺激方案的设计,明确植入迷宫中假体与残余机械感觉之间的相互作用,并完善“虚拟鼠鼠迷宫”计算模型,该模型一旦验证,就可以很容易地适应人体解剖学,用于优化设计植入人类迷宫的电极。
英文摘要
DESCRIPTION (provided by applicant): Bilateral vestibular failure (BVF) due to ototoxic medications, Meniere's disease, effects of genetic syndromes and other insults to the inner ear can cause disabling symptoms. Affected individuals suffer chronic disequilibrium and oscillopsia, and those who fail to compensate for their loss are at increased risk of falls and other injuries. There are currently no adequate treatment options for BVF. Striving to address the needs of these individuals, we have developed a prototype vestibular prosthesis that encodes 3D head movement via 3 gyroscopes and electrically stimulates the corresponding branches of the vestibular nerve. Initial tests of this device in chinchillas have been promising, but further improvement in stimulus encoding will be required to reliably encode the full range of head movements for which the angular vestibulo-ocular reflex normally stabilizes gaze. Trial and error optimization of the ten principal parameters that define stimulus encoding characteristics for each prosthesis channel is impractical. For successful application in a clinical setting, a more efficient approach to stimulus protocol programming will be needed. The first part of the proposed project will establish a robust and efficient approach to optimization of the stimulus parameters, then use data acquired during optimization to refine a model of how the vestibular nerve and central nervous system respond to prosthetic electrical stimuli. While the first human vestibular implant recipients will be individuals with profound bilateral loss, expanding implantation candidacy criteria may lead to implantation of subjects with residual mechanical sensitivity. Understanding whether and how natural and prosthetic inputs are integrated centrally will facilitate design of electrodes and stimulus protocols that make maximal use of residual mechanical sensitivity. At the same time, examining the interplay of responses to natural and prosthetic stimuli offers an opportunity to study the neurophysiology of sensory integration using otherwise impossible experimental paradigms. The second part of the proposed project will characterize the angular vestibulo-ocular reflex (aVOR) in response to electrical and natural stimulation alone and in combination. RELEVANCE: A vestibular prosthesis could restore lost function due to BVF, much as a cochlear implant restores hearing. This project will directly impact the design of stimulus protocols for a vestibular prosthesis for human use, clarify the interaction between prosthetic and residual mechanical sensation in the implanted labyrinth, and refine a "virtual chinchilla labyrinth" computational model which, once validated, can be readily adapted to human anatomy for use in optimal design of electrodes for implantation in the human labyrinth.
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会议论文
Multi-Modal Stimulus Interaction and Optimization in a Vestibular Prosthesis
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批准号:7879981
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项目类别:
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资助金额:$3.48万
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财政年份:2009
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负责人:Natan Simcha Davidovics
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依托单位:
海外基金