Mechanisms of Deep Brain Stimulation: Joule Heating and Electroporation
Mechanisms of Deep Brain Stimulation: Joule Heating and Electroporation
批准号:
7197377
负责人:
MAROM BIKSON
金额:
$7.65万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-03-07 至 2009-02-28
关键词:
AddressAffectAreaAutopsyBackBasic ScienceBathingBehavioralBloodBlood - brain barrier anatomyBlood VesselsBrainCell membraneCellsChronicClassClinicalClinical ResearchClinical TreatmentConditionDeep Brain StimulationDevelopmentElectric StimulationElectrodesElectroporationEndothelial CellsEnvironmentFutureGoalsHeatingIndividualInvestigationLeadLocalizedMapsMeasurementMediatingMembraneModelingModificationMovement DisordersNecrosisNeurologicNeuronsParkinson DiseasePatientsPermeabilityPersonal SatisfactionPhysiologicalPropertyProtocols documentationPublic HealthRangeRefractoryRoleSafetySystemTechnologyTemperatureThermal ConductivityTight JunctionsTissuesTracerTremorWorkbasecomputer studiesdensitydesignelectric fieldfeedingimprovedin vitro Modelin vivoinsightinterestmonolayernervous system disordernovelresearch studysensorsuccesstool
中文摘要
描述(申请人提供):人们对使用慢性脑深部刺激(DBS)治疗难治性运动障碍和其他神经和精神疾病越来越感兴趣。关于星展银行的生理效应,基本问题仍然存在。目前也不清楚哪些刺激参数对DBS目前或未来的使用是最佳的。以往的基础研究主要集中在电刺激对神经细胞膜的直接极化作用。该提案旨在确定DBS是否可以通过以下方式间接影响大脑功能(神经元极化):1)组织的焦耳加热;或2)血脑屏障的电渗透。众所周知,电流可以诱导组织加热和膜电穿孔;然而,目前尚不清楚临床DBS过程中产生的电场是否足以诱导这些效应。该提案的总体目标是分别使用生物传热模型和体外内皮屏障模型来确定DBS引起的温度和通透性变化的潜在范围。即使是脑温或血脑屏障通透性的微小和瞬时变化也会对神经元功能产生深远影响,从而影响DBS的疗效或安全性。这项研究将首次深入了解这些新的“间接”DBS机制的作用,从而推动临床DBS方案/技术的改进。与公共健康相关:深部脑刺激(DBS)是一种非常有前途的治疗帕金森氏症和震颤等神经疾病的技术。这项提议将确定深部脑刺激是否通过提高局部温度或改变血脑屏障的通透性来影响大脑功能。这些结果将提高星展银行的成功和安全性。
英文摘要
DESCRIPTION (provided by applicant): There is a growing interest in the use of chronic deep brain stimulation (DBS) for the treatment of medically refractory movement disorders and other neurological and psychiatric conditions. Fundamental questions remain about the physiologic effects of DBS. It is also unclear what stimulation parameters are optimal for the present or future uses of DBS. Previous basic research studies have focused on the direct polarization of neuronal membranes by electrical stimulation. The proposal aims to determine if DBS can indirectly affect brain function (neuronal polarization) through: 1) joule heating of tissue; or 2) electro-permeation of the blood-brain barrier. It is well established that electric current can induce tissue heating and membrane electroporation; however, it remains unclear if the electric fields induced during clinical DBS are sufficient to induce these effects. The overall goal of the proposal is to determine the potential scale of DBS induced temperature and permeability changes by using a bio-heat transfer model and an in vitro endothelial barrier model, respectively. Even small and transient changes in brain temperature or blood-brain barrier permeability can have profound effects on neuronal function and hence on DBS efficacy or safety. This study will provide the-first insight into the role of these novel 'indirect' DBS mechanisms and thus advance improvements in clinical DBS protocols/technology. Relevance to Public Health: Deep Brain Stimulation (DBS) is a highly promising technology for the treatment of neurological disorders such as Parkinson's disease and tremor. This proposal will determine if Deep Brain Stimulation is affecting brain function by raising local temperature or changing the permeability of the blood- brain barrier. These results will improve the success and safety of DBS.
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