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MRI Resource for Physiologic, Metabolic and Anatomic Biomarkers

MRI Resource for Physiologic, Metabolic and Anatomic Biomarkers
生理、代谢和解剖生物标志物的 MRI 资源
批准号:
10270096
负责人:
Hanzhang Lu
金额:
$159.81万
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-07-01 至 2026-04-30
关键词:
AcademiaAddressAgingAnatomyAnemiaAreaBayesian MethodBiological MarkersBiometryBiopsyBrain DiseasesCerebrovascular DisordersClinicClinicalClinical ResearchClinical TrialsComplexComputer softwareConsensusContrast MediaCountryCritical PathwaysDataData AnalysesData SetDecision MakingDementiaDetectionDevelopmentDiagnosisDiagnosticDiseaseEngineeringEnsureEvaluationFailureFingerprintFoundationsFutureGoalsHospitalsImageIn SituIndustryInjectionsInjuryInstitutesIschemiaJointsLesionLibrariesMachine LearningMagnetic ResonanceMagnetic Resonance ImagingMagnetic Resonance SpectroscopyManufacturer NameMeasuresMedicalMedical TechnologyMetabolicMethodsMonitorPainPatient CarePatientsPharmaceutical PreparationsPharmacodynamicsPhysiologic pulsePhysiologicalProcessPrognosisPropertyPublic Health SchoolsRadiology SpecialtyReadinessReportingReproducibilityResearchResearch PersonnelResourcesSamplingSchoolsScienceServicesSiteSpeedStandardizationTechniquesTechnologyTerminologyTestingTherapeuticTissuesTrainingTranslatingTranslational ResearchTraumatic Brain InjuryUnited States National Institutes of HealthUniversitiesValidationVocabularyWaterWhite Matter Hyperintensityaddictionbasebiomarker validationcandidate markercandidate validationclinical careclinical outcome assessmentclinical practicecomputerized data processingdata acquisitiondeep learningdesigndrug developmentglymphatic functionimaging biomarkerimprovedinnovationinvestigator trainingmagnetic resonance imaging biomarkermedical schoolsmultimodalitymultiscale datanoveloutcome predictionprecision medicineproduct developmentprognosticpublic-private partnershipquantitative imagingresponse biomarkersuccesstoolworking group

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SUMMARY The importance of biomarkers in clinical practice and regulatory science is difficult to overstate. The ultimate goal for clinical care of the future is to determine the most appropriate therapy for each patient’s unique version of a particular disease. This concept of precision medicine has been identified as a national priority in the USA, leading to a need for biomarkers that can provide objective and reproducible information. In addition, regulatory science for the approval of new qualified drugs and medical technologies has an urgent need for qualified biomarkers to report on the success or failure of these drugs and technologies. Imaging biomarkers, providing in situ “biopsies”, have the potential to provide such specific information and, ultimately, to improve routine clinical care and speed up development of new treatments. The overall goal of this Resource therefore is to develop novel noninvasive MRI candidate biomarkers that can ultimately be used for: (i) personalized assessment of patients for diagnosis, prognosis, and treatment monitoring; (ii) monitoring of the development of new medical technologies and drugs, i.e. for better guiding of clinical trials. The significance of our proposed developments lies in providing the fundamental design and initial testing (i.e. not clinical trials itself) of new MRI candidate biomarkers with the potential to provide surrogate quantitative imaging endpoints that are as close as possible to clinical endpoints. As such, this Resource will focus on designing, calibrating and standardizing new magnetic resonance (MR) technologies to provide reliable measures across sessions, scanners, and raters. This technology will then be disseminated for larger scale patient studies to allow clinical validation. The MRI Resource for Physiologic, Metabolic and Anatomic Biomarkers is an interdepartmental and interdisciplinary consortium combining facilities and expertise of the F.M. Kirby Research Center at Kennedy Krieger Institute (KKI), the Department of Radiology at Johns Hopkins University (JHU) School of Medicine, the Center for Imaging Science at the JHU Whiting School of Engineering, and the Department of Biostatistics at the JHU Bloomberg School of Public Health. We propose 4 TRD projects, 3 on MR acquisition approaches and one bringing them together with advanced multi-scale data analysis methods that include machine learning. To assure a proper choice of technologies, we will interact closely with a group of clinical and research experts in a push-pull relationship through collaborative projects (CPs) that focus on brain diseases, disorders, and injuries that have a need for new quantitative MR technology to better and noninvasively assess them. These include anemia/ischemia and related white matter hyperintensity lesions (CPs 1,5), aging, cerebrovascular disease, and dementia (CPs 2,7,10), traumatic brain injury (CP4), glymphatic function (CP6), pain (CP8) and addiction (CP9). As an initial testbed for our methods, we also have a group of service projects (SPs) to which we will provide both data acquisition methods and data analysis software. Finally, we will train investigators in their use and disseminate methods nationwide and to MRI manufacturers for even broader application.
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会议论文
ISMRM Workshop on Perfusion MRI: From Head to Toe
  • 批准号:
    10391735
  • 项目类别:
  • 资助金额:
    $1.0万
  • 财政年份:
    2022
  • 负责人:
    Hanzhang Lu
  • 依托单位:
TRD1: Quantitative Imaging of Physiological Markers
MRI Resource for Physiologic, Metabolic and Anatomic Biomarkers
MRI Resource for Physiologic, Metabolic and Anatomic Biomarkers
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