Biological Mechanism of Fast Near-Infrared Signals in Peripheral Nerves
Biological Mechanism of Fast Near-Infrared Signals in Peripheral Nerves
批准号:
8073020
负责人:
PETER R BERGETHON
金额:
$34.03万
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:
2008-06-01 至 2012-05-31
关键词:
AccountingAdenosineAdrenergic AgentsAffectAgingAgonistAlgorithmsAnatomyAnimal ModelApplications GrantsBasic ScienceBiologicalBiological MarkersBiological Neural NetworksBiopsyBloodBlood GlucoseBlood VesselsBlood VolumeBlood flowBrainClinicalCouplingData AnalysesDetectionDiabetes MellitusDiagnosisDiagnosticDiseaseEnvironmentEvaluationExcisionExperimental DesignsFiberFiltrationFingerprintFrequenciesGaitGoalsHealthHemoglobinHomeostasisHumanImageIndividualIndocyanine GreenInjuryInterventionKineticsKnowledgeLaboratoriesLightLinkLiteratureMammary NeoplasmsMeasurementMeasuresMedicalMetabolicMethodsModelingMorbidity - disease rateMorphologic artifactsMotionMuscarinicsMuscleNatureNear-Infrared SpectroscopyNerveNerve TissueNeural ConductionNeuraxisNeuronsNeuropathyNicotinic ReceptorsNitric OxideNutrientOpticsOrganellesOxygenPainPathogenesisPathway interactionsPatient CarePerfusionPeripheral NervesPeripheral Nervous SystemPeripheral Nervous System DiseasesPhysiciansPhysiologicalPhysiologyPlayPopulationPreparationProcessPropertyRattusRegulationResearchResearch MethodologyResponse to stimulus physiologyRodentRodent ModelRoleSchwann CellsSeriesSignal PathwaySignal TransductionSkeletal MuscleSocietiesSprague-Dawley RatsTechniquesTechnologyTestingTimeTissuesToxic Environmental SubstancesTranslationsValidationVasa Nervorumadrenergicchemotherapycholinergicclinical Diagnosisclinical caredesigndisease diagnosisfallshemodynamicshuman subjectin vivoinstrumentinstrumentationlight scatteringloss of functionmeetingsmillisecondmortalitynerve supplynervous system disordernew technologynoradrenergicnoveloptical imagingreceptorrelating to nervous systemresearch studysciatic nervesuccess
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Recently we have been successful in the detection and validation of a novel optical signal associated with peripheral nerve activation in the human. The evidence collected to date supports the hypothesis that the origin of this optical signal is derived from a novel and surprisingly fast-acting neurovascular coupling process associated with the peripheral nerve. The existence of neurovascular coupling in the peripheral nerve is potentially important clinically because it represents a homeostatic process whose disruption may underlie the pathobiology of nerve disease in aging, diabetes and toxic injury. In this proposal we will test the central hypothesis that the near-infrared spectrophotometric (NIRS) signal measured in the peripheral nerve is a result of an intrinsic and normal physiological neurovascular coupling mechanism. First we will adapt our current NIRS instrumentation, probe design, test paradigms and data analysis algorithms to a rat model and using an in vivo sciatic nerve preparation carry out experiments to determine the nature of the anatomical compartment and the stimulus-response relationship coupling to metabolic demand in NIRS. Second we will test the hemodynamic origin of the signal by examining the full spectral fingerprint of the signal and tagging blood with an optical imaging agent. Finally we will establish which component of the NCS-NIRS signal originates from adrenergic, cholinergic or from local signaling pathways by infusing specific agonists and antagonists of 1, 2 , muscarinic, nicotinic receptors and by activating and blocking nitric oxide and adenosine in local pathways. PUBLIC HEALTH RELEVANCE: This research is a translational in bringing new technology and knowledge to the care of patients with nervous system disease especially involving the disease and aging of the peripheral nervous system. This research may help physicians diagnose and treat the nerve damage from diabetes, chemotherapy and environmental toxins that cause significant pain and loss of function and are a burden on individuals and society. This new signal may be a useful target for early clinical diagnosis and potentially intervention of diseases that affect the peripheral nervous system disease.
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Phasor representation of oxy- and deoxyhemoglobin concentrations: what is the meaning of out-of-phase oscillations as measured by near-infrared spectroscopy?
氧合血红蛋白和脱氧血红蛋白浓度的相量表示:近红外光谱测量的异相振荡的含义是什么?
DOI:
10.1117/1.3483466
发表时间:
2010
期刊:
Journal of biomedical optics
影响因子:
3.5
作者:
[Zheng,Feng, Sassaroli,Angelo, Fantini,Sergio]
通讯作者:
Fantini,Sergio
DOI:
10.1016/j.neuroimage.2012.07.015
发表时间:
2012-11-15
期刊:
NEUROIMAGE
影响因子:
5.7
作者:
[Pierro, Michele L., Sassaroli, Angelo, Bergethon, Peter R., Ehrenberg, Bruce L., Fantini, Sergio]
通讯作者:
Fantini, Sergio
Near-infrared signals associated with electrical stimulation of peripheral nerves.
与周围神经电刺激相关的近红外信号。
DOI:
10.1117/12.809428
发表时间:
2009
期刊:
Proceedings of SPIE--the International Society for Optical Engineering
影响因子:
--
作者:
[Fantini,Sergio, Chen,DebbieK, Martin,JeffreyM, Sassaroli,Angelo, Bergethon,PeterR]
通讯作者:
Bergethon,PeterR
Fast perturbation Monte Carlo method for photon migration in heterogeneous turbid media.
异质混浊介质中光子迁移的快速扰动蒙特卡罗方法。
DOI:
10.1364/ol.36.002095
发表时间:
2011
期刊:
Optics letters
影响因子:
3.6
作者:
[Sassaroli,Angelo]
通讯作者:
Sassaroli,Angelo
PHASE DIFFERENCE BETWEEN LOW-FREQUENCY OSCILLATIONS OF CEREBRAL DEOXY- AND OXY-HEMOGLOBIN CONCENTRATIONS DURING A MENTAL TASK.
脑力任务期间大脑脱氧血红蛋白和氧合血红蛋白浓度低频振荡之间的相位差。
DOI:
10.1142/s1793545811001332
发表时间:
2011
期刊:
Journal of innovative optical health sciences
影响因子:
2.5
作者:
[Sassaroli,Angelo, Zheng,Feng, Pierro,Michele, Bergethon,PeterR, Fantini,Sergio]
通讯作者:
Fantini,Sergio
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