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A Systems Neuroscience Approach for the Study of General Anesthesia

A Systems Neuroscience Approach for the Study of General Anesthesia
用于研究全身麻醉的系统神经科学方法
批准号:
7906893
负责人:
EMERY N BROWN
金额:
$87.5万
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:
2007-09-30 至 2012-07-31
关键词:
Absence of pain sensationAdrenal GlandsAdrenergic ReceptorAdverse effectsAffectAlgorithmsAmericanAmnesiaAmygdaloid structureAnatomyAnesthesia proceduresAnesthesiologyAnestheticsAnimalsAnteriorApneaAreaArousalAuditoryAutonomic nervous systemAwardBeesBehavioralBehavioral ParadigmBindingBiological AssayBiological ModelsBloodBlood PressureBlood specimenBostonBrainBrain PartBrain StemBrain regionBreathingCardiovascular systemCharacteristicsClinicalClinical MedicineClinical Nursing ResearchClinical ServicesClonidineCollaborationsComaCommunitiesComplexConsciousConscious SedationCorpus striatum structureCouplingCritical CareCytoskeletonDataDentistryDevelopmentDevice DesignsDisciplineDiscipline of obstetricsDoseDrug CombinationsDrug Delivery SystemsDrug KineticsDrug effect disorderElectroencephalogramEngineeringEnvironmental air flowEsthesiaEuropeFailureFrightFunctional ImagingFunctional Magnetic Resonance ImagingFunding MechanismsFutureGastroenterologyGeneral AnesthesiaGeneral PopulationGeneral anesthetic drugsGoalsGuidelinesHandHealthHearingHeart RateHibernationHippocampus (Brain)HumanHuman VolunteersHypnosisHypotensionHypothalamic structureImageInfusion proceduresInsula of ReilInterdisciplinary StudyInternationalInterventionIntravenousIntubationIsofluraneKnowledgeLeadLearningLinkLipid AMacacaMaintenanceMalpracticeMeasurementMeasuresMedialMediatingMedicalMedicineMeditationMemoryMethodsMicrodialysisMicroinjectionsMicrotubulesModalityModelingModern MedicineMolecularMolecular BiologyMonitorMonkeysMorbidity - disease rateMotor CortexMovementMyocardial dysfunctionN-Methyl-D-Aspartate ReceptorsNatureNausea and VomitingNeuroanatomyNeurologyNeuromuscular JunctionNeuronsNeurosciencesNeurosciences ResearchNeurosecretory SystemsNeurotransmittersNucleus AccumbensOperative Surgical ProceduresPainPain ResearchParietalPathway interactionsPatientsPatternPediatricsPerceptionPeripheral NervesPharmaceutical PreparationsPharmacodynamicsPhysiologic MonitoringPhysiologicalPlayPositioning AttributePostoperative PeriodPrefrontal CortexPrimatesProceduresProcessPropertyPropofolProtein BindingProtocols documentationPsychiatryPsychologyPupilQualifyingRadiology SpecialtyRattusRecruitment ActivityReflex actionRegulationReportingResearchResearch DesignResearch Ethics CommitteesResearch PersonnelResourcesRiskRoleSafetySaimiriSiteSleepSocietiesSomatosensory CortexSourceSpecialistSpinal CordSpinal nerve structureStimulusStudentsStudy SubjectStudy modelsSystemTactileTechniquesTechnologyTestingThalamic structureTimeTracheostomy TubeTracheostomy procedureTrainingTranslatingUnconscious StateUnited StatesUnited States National Institutes of HealthUniversitiesVegetative StatesVentilatory DepressionWorkWorld War IIabstractingalpha-adrenergic receptorauditory pathwayawakebasal forebrainbasebiological adaptation to stressclinical practicecomputational neurosciencecomputerized data processingdesigndrug developmentfrontal lobegamma-Aminobutyric Acidgray matterhemodynamicshigh riskhuman subjecthypnoticimprovedinnovationinsightinterestlocus ceruleus structureloved onesmedical schoolsmeetingsmonitoring devicemortalitymotor controlnanoparticleneural circuitneuroimagingneuromechanismneurophysiologyneurosurgerynovelnovel strategiesprogramsquantumraphe nucleireceptorrelating to nervous systemresearch studyresponsesomatosensoryspinal tractsuccesstheoriesvolunteer

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中文摘要
翻译
全身麻醉是一种药物诱导的可逆状态,由五种行为状态组成:催眠(失眠 意识丧失)、失忆(记忆丧失)、止痛(痛觉丧失)、行动不便(静止),以及 血液动力学稳定,控制应激反应。麻醉药物诱导的机制 全身麻醉的状态仍然是现代医学最大的谜团之一。关于神经学的研究 负责全身麻醉五种行为状态中每一种状态的回路是一个基本问题 正在进行系统神经科学的研究,但不是为了了解麻醉。我提议 使用系统神经科学范式建立一个跨学科的计划,以解开一般 麻醉。该计划将包括一套在人类、猴子和大鼠身上进行的协调研究,使用 同样的麻醉剂,除了使用动态系统模型研究麻醉效果外, 神经电路和新信号处理算法的发展,以实时跟踪动态 全身麻醉下的大脑状态。动物研究将使用既定的行为范式,功能磁共振成像, 和多电极方法来跟踪大脑活动,以及微注射和新的纳米颗粒方法来现场- 麻醉药物的特定递送。人体研究将使用功能磁共振成像跟踪麻醉下的大脑状态 同时记录脑电。调查人员将合作将这些信息整合到 不同的系统和规模。这个项目将导致更精确的,以神经生理学为基础的 对全身麻醉的了解,麻醉药物开发的更安全的方案,特定部位的方法 用于麻醉药物输送和设计更好的、基于神经生理学的深度测量方法 麻醉剂的作用。因此,这项研究将通过降低麻醉相关风险来改善人类健康 外科或内科治疗需要全身麻醉的患者的发病率。这项研究还将 通过更多地强调系统神经科学,对麻醉师的培训产生广泛影响。
英文摘要
General anesthesia is a drug-induced, reversible condition comprised of five behavioral states: hypnosis (loss of consciousness), amnesia (loss of memory), analgesia (loss of pain sensation), akinesia (immobility), and hemodynamic stability with control of the stress response. The mechanisms by which anesthetic drugs induce the state of general anesthesia remain one of the biggest mysteries of modern medicine. Study of the neural circuitry responsible for each of the five behavioral states of general anesthesia is a fundamental question being investigated in systems neuroscience but not for the purpose of understanding anesthesia. I propose to use systems neuroscience paradigms to establish an interdisciplinary program to solve the mystery of general anesthesia. The program will consist of a set of coordinated studies in humans, monkeys and rats using the same anesthetic agents, in addition to use of dynamical systems modeling studies of anesthetic effects on neural circuits and the development of new signal processing algorithms to track in real-time the dynamics of brain states under general anesthesia. The animal studies will use established behavioral paradigms, fMRI, and multielectrode methods to track brain activity, and microinjection and novel nanoparticle methods for site- specific delivery of anesthetic drugs. The human studies will track brain states under anesthesia using fMRI and simultaneously recorded EEG. The investigators will collaborate to integrate this information across the different systems and scales. This project will lead to a more precise, neurophysiologically-based understanding of general anesthesia, safer protocols for anesthetic drug-development, site-specific methods for anesthetic drug delivery and the design of better, neurophysiologically-based methods for measuring depth of anesthesia. Therefore, this research will improve human health by reducing the risk of anesthesia-related morbidity for patients whose surgical or medical therapies require general anesthesia. This research will also have broad impact on the training of anesthesiologists by placing greater emphasis on systems neuroscience.
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Investigating the neurophysiological basis of circuit-specific laminar rs-fMRI
  • 批准号:
    10518479
  • 项目类别:
  • 资助金额:
    $214.12万
  • 财政年份:
    2022
  • 负责人:
    EMERY N BROWN
  • 依托单位:
Non-Human Primate Model for Developing Closed-Loop Anesthesia Delivery Systems
Non-Human Primate Model for Developing Closed-Loop Anesthesia Delivery Systems
Core B: Administrative Core
  • 批准号:
    9209575
  • 项目类别:
  • 资助金额:
    $7.47万
  • 财政年份:
    2017
  • 负责人:
    EMERY N BROWN
  • 依托单位:
海外基金