Focused Ultrasound Activation of Vestibular Otolith Organs
Focused Ultrasound Activation of Vestibular Otolith Organs
批准号:
9372395
负责人:
RICHARD D RABBITT
金额:
$30.3万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-07-01 至 2019-06-30
关键词:
AccelerationAcousticsAction PotentialsAddressAfferent NeuronsAirAnimal ModelBatrachoidiformesBiologicalBiophysicsBrainCochleaCrista ampullarisDataDevelopmentElectrodesEndolymphEvaluationFocused UltrasoundFrequenciesGlassGoalsHairHair CellsHeadImageIndividualLabyrinthMeasuresMethodsMicroelectrodesMusNeural PathwaysOrganOrgan of CortiPerilymphPhasePhysiologicalProcessPropertyRadiationReporterSaccule structureSafetySemicircular canal structureSignal TransductionStimulusTechnologyTemporal bone structureTestingTissuesUltrasonic TherapyUltrasonic TransducerUltrasonic waveUltrasonographyUtricle structureVestibular Function Testsabsorptionbioimagingbonedesignelectric impedanceextracellularneural circuitneuroregulationnovel strategiesotoconiapressurerate of changeresponsescreeningsoundvectorvibration
中文摘要
常规生物医学成像应用中使用的超声波具有动量并对物体施加较小的力
英文摘要
Ultrasound waves used in conventional biomedical imaging applications carry momentum and impart small forces to
tissue during the imaging process. This nonlinear acoustic radiation force acts in the direction of the ultrasound beam and
grows in magnitude with the square of the incident ultrasound pressure. In most biological tissues the momentum transfer
arises from absorption of the ultrasound energy by the tissue, but if there is a large discontinuity in the tissue impedance
additional force arises from reflection. In preliminary studies we examined physiological effects of ultrasound acoustic
radiation force in the inner ear. When low intensity ultrasound was focused on the inner ear otolith organs, a relatively
large acoustic radiation force was generated, pushing the otolith in the direction of the ultrasound beam, deflecting hair
bundles in the direction of the beam, and modulating action potential discharge rate of afferent neurons. The force was
generated primarily because of the acoustic impedance mismatch between endolymph and the otoconial mass, a mismatch
that is not present in the semicircular canals or the cochlea. This property can be used to selectively activate individual
otolith organs in prescribed directions using a remote noninvasive ultrasound transducer. The present R21 application is
designed to develop ultrasound as controlled stimulus for otolith organs, and to examine physiological responses of
vestibular organs and the cochlea. The technology has potential as a stimulus for testing the function of otolith organs and
compensatory neural circuits, as a highly controlled stimulus for modulating individual otolith inputs to the brain, and as a
noninvasive method for vestibular neuromodulation.
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依托单位:
海外基金