Stationary Breast Tomosynthesis
Stationary Breast Tomosynthesis
批准号:
8540383
负责人:
OTTO Z ZHOU
金额:
$12.22万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-08-01 至 2015-07-31
关键词:
AlgorithmsAnodesBreastCCNE1 geneCancer CenterCarbon NanotubesClinicClinicalClinical ResearchClinical TrialsCollaborationsDetectionDevelopmentDevicesDigital MammographyDiseaseEarly DiagnosisElectron BeamElectronsEvaluationExperimental DesignsGoalsGoldHealthcareHeatingHumanImageImage AnalysisImaging PhantomsInstructionMalignant NeoplasmsMammary NeoplasmsMarketingMeasurementMechanicsModificationMotionNanotechnologyOpticsPatientsPerformanceReaderResearchResearch DesignResolutionScanningSourceSpeedStagingSystemSystems IntegrationTechniquesTechnologyTestingThree-Dimensional ImagingTimeValidationVendorWomanWomen&aposs Healthbasecalcificationcancer typedesigndigitalimage processingimprovedmalignant breast neoplasmmortalitynext generationnovelprogramsprototypereconstructionscreeningsimulationsuccess
中文摘要
点击翻译按钮获取中文摘要
英文摘要
PROJECT SUMMARY (See instructions);
Project 5: Stationary Breast Tomosynthesis
Breast cancer is the second most common cancer type among women. Over 10% of women develop breast
cancer during their lifetimes and 30% to 40% of these patients die from the disease, Early detection is
viewed as the best hope to decrease mortality. Full-field digital mammography (FFDM) is the current gold
standard for early detection but has it limitations. Digital breast tomosynthesis (DBT), a 3-D imaging
technique. Is generally considered to be the next generation screening device with the potential for improved
performance compared to FFDM. In the U.S., DBT scanners from 3 leading commercial vendors are in
advanced stages of clinical trials. Recent clinical studies have shown that DBT, while having better detection
capability for masses compared to FFDM, suffers from lower sensitivity for micro-calcifications (MC) which is
critical for early cancer identification. The low MC detectability is attributed mainly to the low image
resolution due to motion blurring of both the patient and the x-ray source during the relatively long scanning
time. The goal of this project is to develop a novel stationary DBT (s-DBT) technology that has the potential
to improve our capability for early detection of human breast tumors. The key enabling technology is the
carbon nanotube (CNT) based multi-beam field emission x-ray (MBFEX) that was pioneered by our team.
During the first CCNE program, we proposed the s-DBT concept and demonstrated the possibility of
constructing a s-DBT scanner with significantly increased scanning speed and spatial resolution compared
to the current DBT technology. Our hypothesis is that the high spatial resolution will improve the sensitivity
for both masses and micro-calcifications. In addition, the fast scanning speed will reduce patient discomfort
due to prolonged compression. For this project we will develop a clinical-test ready prototype s-DBT system
and validate its performance through phantom measurements and reader studies. The research will be
carried out in close collaboration with Hologic, a market leader in women's healthcare and one of the major
developers of the DBT technology.
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财政年份:--
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负责人:OTTO Z ZHOU
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依托单位:
Stationary Breast Tomosynthesis
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项目类别:
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财政年份:--
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负责人:OTTO Z ZHOU
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依托单位:
海外基金