Automated Assessment of Leptomeningeal Collaterals on CT Angiograms
Automated Assessment of Leptomeningeal Collaterals on CT Angiograms
批准号:
9622038
负责人:
STEPHEN R AYLWARD
金额:
$49.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-06-01 至 2020-08-31
关键词:
AcademiaAcuteAddressAlgorithmsAngiographyBlood PressureBlood VesselsBlood flowBrainCharacteristicsClinicClinicalClinical ResearchClinical TrialsComputer softwareDataDevelopmentDiagnosticDiffusionDistalDoctor of MedicineEffectivenessEvaluationFeedbackFutureGoalsGoldHemorrhageHourHumanHypertensionImageIndustryInfarctionInterventionIntraobserver VariabilityIntravenousIschemic StrokeLinkLiteratureManualsMeasuresMethodsModalityOdds RatioOnline SystemsOutcomePatient riskPatient-Focused OutcomesPatientsPatternPerfusionPersonsPhasePlayPrivatizationProceduresProcessPropertyProtocols documentationRadiology SpecialtyRecurrenceResearchRiskRoleRunningSecurityServicesSiteSmall Business Technology Transfer ResearchStandardizationStrokeSystemTechniquesTestingThrombolytic TherapyTissuesTrainingTreatment EfficacyTreesTriageVisualization softwareWorkX-Ray Computed Tomographyacute strokebasecomputer sciencecost effectivedeep learningdesigndigitalexperimental studyimprovedinnovationopen sourceoutcome predictionpost strokeproduct developmentprospectiveprototyperesearch clinical testingresearch studystatisticsstroke outcomestroke patientthrombolysistooltreatment armweb services
中文摘要
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英文摘要
Abstract
The primary goal of this study is to develop an automated scoring system of leptomeningeal collaterals
based on CT angiography (CTA) as a quantitative assessment of acute ischemic stroke. Leptomeningeal
collaterals provide an alternate path of blood flow in the setting of a proximal vessel occlusion. The presence
and effectiveness of leptomeningeal collaterals (i.e., “collateral status”) varies significantly from patient to
patient. Collateral status has been shown to be correlated with both patient outcome and risk of hemorrhagic
transformation, suggesting that rapid and accurate assessment of the collaterals would provide a powerful tool
for treatment evaluation. The current gold standard for collateral scoring is performed by subjective analysis of
retrograde filling in invasive digital subtraction angiograms (DSA). Though CTA is more limited than DSA in the
direct evaluation of collaterals, the presence of collaterals may also be evaluated in CTA by the tree-pattern of
vessel filling around the site of occlusion. Several manual assessment techniques based on CTA have been
proposed in the literature, but all are subjective and require significant human intervention.
During Phase I, we deployed a web-based system for automated assessment of stroke collaterals based
on CTA, and we used it in a preliminary study of collateral status for stroke assessment.
In this Phase II STTR proposal, the specific aims are (1) to improve the integration of our system with
clinical workflows; (2) expand the system to also compute CT perfusion stroke measures, so as to provide a
unified platform for comparing and combining CTA collateral and CT perfusion assessment metrics; and (3)
test the hypotheses that the combined use of CTA collateral and CT perfusion measures outperforms either
method independently for treatment efficacy prediction in stroke patients.
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