Quantitative Estimation of Periodontal Inflammation and Tissue Destruction with High-Resolution Ultrasound-Based Imaging
Quantitative Estimation of Periodontal Inflammation and Tissue Destruction with High-Resolution Ultrasound-Based Imaging
批准号:
9982549
负责人:
Hsun-Liang Chan
金额:
$19.5万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-04-01 至 2022-03-31
关键词:
AdultAffectAlveolar Bone LossAutomobile DrivingBacterial InfectionsBiologicalBiological MarkersBlood VesselsBlood VolumeBreastClassificationClinicalClinical MarkersClinical ResearchCollagenColorCross-Sectional StudiesDentalDiagnosisDiagnosticDiseaseEarly DiagnosisEducational workshopElasticityElementsFamily suidaeFatty LiverFeedbackGuidelinesHealthHemorrhageHistologyHumanImageImaging technologyImmune responseImplantIndividualInflammationInflammatory ResponseIntercellular FluidInterventionInvestigationLeadLightLinkLongitudinal StudiesManualsMeasuresMedicineMethodsMicrocirculationModelingMolecular BiologyMonitorNoiseOral cavityOrganOutcomePatientsPerformancePerfusionPeriodontitisPopulationPre-Clinical ModelPropertyProtocols documentationResolutionSalivaryScanningSeveritiesSignal TransductionSystemTestingTimeTissuesTooth LossUltrasonographyVisualbasebone lossclinical imagingcost effectivedysbiosishigh resolution imagingimaging biomarkerimprovedinnovationnoveloral carepre-clinicalpreclinical studyprototypequantitative ultrasoundsoft tissuetargeted imagingtoolwelfare
中文摘要
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英文摘要
ABSTRACT
Periodontitis, initiated by bacterial infection and compounded by host inflammatory response, is a leading
cause of tooth loss affecting welfare of 65 million US adults. Mounting evidence suggests periodontitis is also
associated with systemic health, mostly through a common link, inflammation. Therefore, diagnosis and
treatment of periodontal inflammation would potentially improve general health. Current clinical measures of
periodontal inflammation are visual inspection and “bleeding on probing (BOP)”. Unfortunately, they are
subjective and insensitive to detect disease activity. Targeted imaging of subclinical signs of inflammation, e.g.
increased vascularity, interstitial fluid and tissue loss, etc., would shed light on precise diagnosis and timely
treatment of this deliberating disease non-invasively at chairside. Some quantitative ultrasound biomarkers,
e.g. backscatter, elasticity, color flow, and power Doppler have been investigated extensively in medicine in
recent years and have been recognized as validated for evaluating inflammation of specific body organs. They
would be potential candidates to measure periodontal inflammation objectively. A miniature sized (16.2 mm),
high-imaging resolution (~60 µm) ultrasound probe prototype was developed by our group specifically for use
in the constrainted oral cavity and has been validated for accurately imaging periodontal tissues. It is ready for
use on a commercially available ultrasound system for collecting the above-mentioned quantitative ultrasound
parameters. The hypothesis driving this proposal is that non-invasive and quantitative ultrasound can be used
to estimate degree/extent of periodontal inflammation that could eventually lead to early detection of
periodontal attachment and bone loss. The aims of this proposal are two folds: (1) Establish quantitative
ultrasound based imaging biomarkers, i.e., B-mode (Quantitative Ultrasound, QUS), tissue strain as well as
fractional blood volume using phantoms with known properties and (2) Perform correlation testing for
determining inflammation extent/severity between the non-invasive ultrasound imaging biomarkers and the
invasive histology/molecular biology, using an established preclinical porcine model. Successful outcomes of
this investigation will lead to novel, objective and precise ultrasound biomarkers that can estimate
severity/extent of periodontal inflammation. Subsequently, the predictability of detecting disease activity
individually and collectively will be evaluated through longitudinal preclinical and human studies. Ultimately,
we intend to develop clinical guidelines and a clinical imaging protocol for routine oral care to alleviate the
tremendous burden of periodontitis affecting millions of US adults.
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Ultrasonic Imaging of Bone Graft Healing in Extraction Sockets for Precise and Personalized Implant Therapy
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批准号:10698055
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项目类别:
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资助金额:$68.08万
-
财政年份:2022
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负责人:Hsun-Liang Chan
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依托单位:
Ultrasonic Imaging of Bone Graft Healing in Extraction Sockets for Precise and Personalized Implant Therapy
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批准号:10586344
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项目类别:
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资助金额:$68.93万
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财政年份:2022
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负责人:Hsun-Liang Chan
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依托单位:
Ultrasonic Imaging of Bone Graft Healing in Extraction Sockets for Precise and Personalized Implant Therapy
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批准号:10427073
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项目类别:
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资助金额:$64.24万
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财政年份:2021
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负责人:Hsun-Liang Chan
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依托单位:
Quantitative Estimation of Periodontal Inflammation and Tissue Destruction with High-Resolution Ultrasound-Based Imaging - Admin Supp
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批准号:10358923
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项目类别:
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资助金额:$3.68万
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财政年份:2021
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负责人:Hsun-Liang Chan
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依托单位:
Point of Care, High Resolution and 3-Dimensional Ultrasonography for Diagnosing Peri-Implant Bone Loss
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批准号:9899974
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项目类别:
-
资助金额:$19.5万
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财政年份:2019
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负责人:Hsun-Liang Chan
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依托单位:
海外基金