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Thin Film Magnetic Sensors for Ultrathin Bronchoscope Navigation

Thin Film Magnetic Sensors for Ultrathin Bronchoscope Navigation
用于超薄支气管镜导航的薄膜磁传感器
批准号:
7481722
负责人:
Timothy H. Riehle
金额:
$58.34万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-25 至 2010-06-30
关键词:
3-DimensionalAcuteAnimalsAreaAsthmaBiomedical TechnologyBiopsyBronchiBronchoscopesBronchoscopyBusinessesCaliberCancer EtiologyCaringCategoriesCessation of lifeChargeChronic Obstructive Airway DiseaseChronic lung diseaseCitiesClinicalClinics and HospitalsComplexComputer SimulationComputer softwareComputersControl AnimalData Storage and RetrievalDetectionDevelopmentDevicesDiagnosticDimensionsDistalEffectivenessElectronicsElectronsFilmFrequenciesFundingFutureGenerationsImageIndustryInterstitial Lung DiseasesInvasiveIowaLesionLettersLocalizedLungLung diseasesMagnetismMalignant NeoplasmsMalignant neoplasm of lungManufacturer NameMarketingMeasurementMeasuresMechanicsMedical TechnologyMiniaturizationNanotechnologyNavigation SystemOperative Surgical ProceduresPatientsPerformancePeripheralPhasePhysiciansProbabilityProceduresProcessPublic HealthPulmonary Coin LesionPulmonary EmphysemaPulmonologyPuncture biopsyRadiology SpecialtyReaderRelative (related person)ReportingReproducibilityResearchResearch PersonnelScienceSemiconductorsServicesSignal TransductionSiteSliceSolutionsSourceStagingStandards of Weights and MeasuresStereotaxisSystemTechniquesTechnologyTestingTimeTravelUnited States National Institutes of HealthUniversitiesVisualVisualization softwareWestern WorldX-Ray Computed Tomographybasecommercializationcostdesignexperiencefollow-upimprovedinnovationinstrumentmagnetic fieldmembermortalityprofessorprogramsprototypequantumresponseretinal rodssensorsizeskillssolid statesuccesstechnological innovationtooltreatment planningtwo-dimensionalwound

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DESCRIPTION (provided by applicant): Koronis Biomedical Technology Corporation (KBT) proposes to develop a navigation system for ultra-thin bronchoscopes using advanced thin-film magnetic sensor technology. Recent technological innovations in the semiconductor processing industry make this program technically achievable at this time. The use of advanced magnetic-based localization technology to provide real-time navigation imaging without fluoroscopic guidance is highly desirable. Such a localization system in an ultra-thin bronchoscope allows an operator to navigate within the periphery of the lung and track the path of a biopsy tool as it approaches a peripheral lesion. PUBLIC HEALTH RELEVANCE: The proposed project relates to the navigation of ultra-thin bronchoscopes. More than 150,000 solitary pulmonary nodules are reported annually in the US, each of which may indicate the presence of lung cancer. Bronchoscopy is used to locate anomalies in a patient's bronchus and if necessary, take a biopsy. Over 3,000,000 bronchoscopies are performed annually worldwide. The majority of target lung lesions are located in the peripheral areas of the lungs where large bronchoscopes cannot reach.
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