Quantitative ultrasound analysis of vascular morphology for cancer assessment
Quantitative ultrasound analysis of vascular morphology for cancer assessment
批准号:
8537393
负责人:
STEPHEN R AYLWARD
金额:
$14.14万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-01 至 2015-07-07
关键词:
AcademiaAlgorithmsAngiographyAnimalsAppearanceAsiaBlindedBlood VesselsBreast Cancer ModelClinicalCollaborationsCommunitiesComplexContrast MediaDataDetectionDevelopmentDiagnosisDiagnosticDiagnostic SensitivityDiseaseEmerging TechnologiesEuropeFrequenciesGleanGoalsGoldHeartHumanImageImage AnalysisImaging DeviceImaging TechniquesImplantIn VitroIndustryLow incomeMagnetic Resonance ImagingMalignant NeoplasmsManufacturer NameMapsMeasurementMeasuresMethodsMetricMicrobubblesModalityModelingMonitorMorphologyMusOutcomePathologyPatientsPatternPerformancePerfusionPhasePre-Clinical ModelRadialResearch PersonnelResolutionRuralSafetySamplingSeriesShapesSpeedStatistical ModelsStructureSystemTechniquesTechnologyTherapeuticTimeTissuesUltrasonicsUltrasonographyVariantWorkbaseblood flow measurementclinically relevantcostdensityimaging modalityimaging probein vivoinnovationmolecular imagingneoplastic cellnoveloncologyportabilitypre-clinicalpre-clinical researchpredictive modelingquantitative ultrasoundresponsetooltumor
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): There are several features of ultrasound as an imaging modality that make it attractive to clinicians and preclinical researchers today, including its relatively low cost, real-time imaging capability, safety, and portability. These facets make it a particularly accessible imaging technique for rural and lower-income communities, and thus ultrasonic diagnostic approaches have potential for broad reaching impact. Ultrasound imaging is widely used for anatomical imaging and blood flow measurements in the heart and large vessels; however this ubiquitous modality is underutilized as a diagnostic tool in oncology. One reason for this is that aside of assessment of tumor size, ultrasound has relatively poor quantitative capability with respect to tumor morphology or malignancy. New contrast enhanced ultrasound technologies are now enabling detailed images of tissue vascular structure; and the opportunity to interrogate vascular morphology as an indicator of malignancy based on ultrasound data is presented. Prior work by PI Aylward and Kitware has developed algorithms to glean quantifiable vascular morphology metrics from Magnetic Resonance Imaging data, which have then been shown to be reliable predictors of tumor malignancy and response to therapy in humans. In this project, Kitware will extend this diagnostic capability to the more widely available modality of contrast enhanced ultrasound. Co-PI Dayton has recently demonstrated ultrasonic microvascular mapping using a new type of ultrasound probe which enables the rapid acquisition of 3D high-contrast and high-resolution images of blood vessel structure. Proposed herein is a collaboration between these two leaders in industry and academia, combining their expertise to create a robust platform for disease assessment using non-invasive ultrasound imaging. If successful, this project will provide a novel and efficient method for clinical ultrasound system manufacturers to implement to assess tumor response to therapy.
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海外基金