Advanced MR Imaging and Image Analytics as a Precision Medicine Tool to Manage ADPKD
Advanced MR Imaging and Image Analytics as a Precision Medicine Tool to Manage ADPKD
批准号:
10011565
负责人:
Timothy Lee Kline
金额:
$15.49万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-09-15 至 2022-09-14
关键词:
3-DimensionalAbdomenAffectAgeAnatomyAnimalsArchitectureAreaAutosomal Dominant Polycystic KidneyBasic ScienceBiological MarkersBiologyBiometryBlood VesselsClassificationClinicClinicalClinical ManagementClinical ResearchConsumptionCystDataDatabasesDiseaseDisease MarkerDisease ProgressionEducational workshopEffectiveness of InterventionsEnd stage renal failureEnvironmentFarGoFibrosisGeneticGenetic ProgrammingGeometryGoalsGoldGrantHepatic CystImageImage AnalysisImaging TechniquesImaging technologyInformaticsInstitutionInterventionK-Series Research Career ProgramsKidneyKnowledgeLiverMagnetic ResonanceMagnetic Resonance ImagingMeasurementMeasuresMedicalMedical ImagingMendelian disorderMentored Research Scientist Development AwardMentorsMentorshipMicroscopicMonitorNational Institute of Diabetes and Digestive and Kidney DiseasesNephrologyOrganPathologyPatient CarePatient imagingPatientsPatternPattern RecognitionPerformancePerfusionPhasePhenotypePhysicsPhysiologic pulsePhysiologyPolycystic Kidney DiseasesProcessProtocols documentationPublicationsRadiology SpecialtyRenal Blood FlowRenal TissueRenal functionReproducibilityResearchResearch PersonnelResearch ProposalsResolutionSpin LabelsStandardizationStructureStudy modelsSuggestionTechniquesTestingTextureTimeTrainingTranslatingTreatment EffectivenessWritingautomated segmentationbasebioimagingcareerclinical practicecostdeep learningdisease diagnosiseducational atmospherefunctional declinehuman modelimage processingimaging biomarkerimaging modalityimprovedinsightinterestkidney vascular structureknowledge basenovel imaging technologyoutcome forecastoutcome predictionprecision medicinepressureprognostic valueradiological imagingrenal arteryresearch studyshear stresssymposiumtool
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英文摘要
ABSTRACT
The goal of this NIDDK Mentored Research Scientist Development Award is to provide an organized scientific
and educational environment for Dr. Timothy Kline to begin his transition into an independent research career
focused on developing novel imaging technologies and image analysis techniques for abdominal organ
pathologies. This proposal outlines a five-year training plan at Mayo Clinic under the primary mentorship of Dr.
Bradley Erickson and a Mentoring Team comprised of accomplished researchers in the fields of: biology,
nephrology, genetics, radiology, informatics; medical physics, biostatistics, image processing, and physiology.
The focus of this proposal is to improve both research studies and disease prognosis for autosomal dominant
polycystic kidney disease (ADPKD) patients through biomedical imaging techniques. It is well understood that
imaging is essential for ADPKD diagnosis, monitoring, and outcome prediction. Clinical studies utilize total
kidney volume (TKV) (as measured by MRI as an image-based biomarker) to follow the progression of
ADPKD, as larger TKVs have been shown to correlate with worse prognosis in both human and animal-model
studies. However, there are challenges with using TKV as a marker of disease progression. For one, it is a
simplification of the disease state and does not inform on microscopic disease processes that are involved with
piecemeal destruction of healthy renal tissue. In addition, measurements of TKVs are time consuming, costly,
and poorly standardized. The introduction of automated approaches for measuring TKV will: greatly improve
measurement throughput, significantly reduce costs associated with performing research studies, allow
accurate and reproducible measurements to be obtained both within and across institutions; facilitate the
search for new imaging biomarkers. The specific aims of this project are to: (i) develop and validate automated
tools to characterize renal structure, such as TKV and cystic burden; (ii) explore new imaging biomarkers by
image texture feature analysis and pattern recognition techniques; and (iii) develop a new technique to
measure renal blood flow. This research will be facilitated by Mayo Clinic's outstanding clinical and research
environment dedicated to improving patient care, as well as the Mayo Clinic Translational PKD Center, which
focuses on translating basic science research into improvements in the management and treatment of ADPKD
patients. Dr. Kline's background in imaging technologies and image processing makes him particularly suited
to perform this research. In addition to the above aims, Dr. Kline will: 1) develop a strong knowledge base in
both nephrology and radiology by attending relevant rounds, seminars, and national conferences; 2) enhance
his knowledge of medical imaging, biology, physiology, genetics, and programming through coursework and
mentoring; 3) attend workshops focused on grant and publication writing; and 4) submit a highly competitive
R01 application expanding upon the findings from this research proposal. This proposal will lead to vast
improvements to current analysis workflows, as well as an improved understanding of the prognostic power of
new imaging biomarkers of ADPKD. Obtaining this K Award will greatly facilitate Dr. Kline's transition into a
prosperous independent research career.
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会议论文
Artificial Intelligence-Based Approaches for Renal Structure Characterization in Computed Tomography Images
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批准号:10224190
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项目类别:
-
资助金额:$11.93万
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财政年份:2020
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负责人:Timothy Lee Kline
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依托单位:
Artificial Intelligence-Based Approaches for Renal Structure Characterization in Computed Tomography Images
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批准号:10040835
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项目类别:
-
资助金额:$11.34万
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财政年份:2020
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负责人:Timothy Lee Kline
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依托单位:
Advanced MR Imaging and Image Analytics as a Precision Medicine Tool to Manage ADPKD
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批准号:10259833
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项目类别:
-
资助金额:$11.23万
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财政年份:2017
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负责人:Timothy Lee Kline
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依托单位:
海外基金