Polarization Spectroscopy and Imaging of Pre-Cancer
Polarization Spectroscopy and Imaging of Pre-Cancer
批准号:
7187356
负责人:
Konstantin V Sokolov
金额:
$24.48万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-05-11 至 2009-02-28
关键词:
AddressAlgorithmsAreaBiochemicalBiopsyCancer DetectionCancerousCarcinomaCause of DeathCell NucleusCellsChemopreventionClinicalClinical ResearchClinical TrialsCollagen FiberCollectionConnective TissueDataDetectionDevelopmentDevicesDiagnosisDiagnostic Neoplasm StagingDiagnostic ProcedureDiseaseEPSTI1 geneEarly DiagnosisEndoscopesEpithelialEpithelial CellsEpithelial-Stromal CommunicationEpitheliumEquationEventFiberFiber OpticsGenus CapraGoalsGoatGoldHealth BenefitHealthcareHeart DiseasesHistologicHistopathologyHumanImageImaging DeviceIn SituIncidenceInflammatoryInvasiveLesionLightLightingMalignant - descriptorMalignant NeoplasmsMethodsMicroscopicModelingMolecularMonitorMorphologyMouth CarcinomaMucous MembraneNeoplasmsNon-Invasive Cancer DetectionNuclearNumbersOpticsOral cavityOrganPerformancePleomorphismPremalignantPropertyResearch PersonnelResolutionScreening for cancerScreening procedureSensitivity and SpecificitySimulateSiteSolutionsSpecificitySpectrum AnalysisStagingStandards of Weights and MeasuresStatistically SignificantStructureSuspension substanceSuspensionsSystemTechniquesTechnologyTestingTheoretical modelTherapeutic InterventionTimeTissue EngineeringTissue ModelTissuesTravelVisualbasecancer diagnosiscarcinogenesisclinical Diagnosisclinically significantcostdesign and constructionexperienceimprovedin vivoinstrumentmortalitynew technologyoptical imagingoptical sensoroutcome forecastpolarized lightprogramsresponsesimulationsizetheoriestooltumor progression
中文摘要
描述(由申请人提供):
癌症是美国第二大死因。大多数癌症是上皮起源的。浸润前上皮瘤变的早期诊断可以显着降低癌症的发病率和死亡率。因此,迫切需要高度灵敏且具有成本效益的筛查和诊断技术来识别可治愈的癌前病变。上皮癌前期的特征在于多种结构和形态学特征,包括核大小增加、核/细胞质比率增加、深染和多形性。此外,越来越多的证据表明,由于上皮-基质相互作用,在癌发生的最早阶段基质层发生了显着变化。当前临床诊断的一个主要限制是与早期癌发生相关的形态和分子变化只能在侵入性活检后才能评估。光学技术可以非侵入性地实时评估上皮组织的形态和生化变化。该提案的重点是开发一种基于偏振反射光谱和成像的新技术,以实现非侵入性实时检测和监测与癌发生相关的上皮和底层结缔组织的形态和结构变化。该提案的目的是:(1)开发上皮组织和基质偏振反射光谱的理论模型; (2) 在癌症进展不同阶段的人类上皮组织模型中检验理论预测; (3)利用理论模型确定偏振反射光谱对上皮细胞核形态和间质形态的敏感性; (4) 设计、构建和测试新型体内偏振反射光谱光纤内窥镜; (5)评价内窥镜在口腔粘膜临床研究中的应用。 (6)开发基于偏振照明和检测原理的成像仪器并进行临床试验。这里提出的廉价光学传感器可以通过减少不必要的活检数量、实现联合诊断和治疗以及减少对临床专业知识的需求,立即使医疗保健受益。
英文摘要
DESCRIPTION (provided by applicant):
Cancer is the second leading cause of death in the US. The majority of cancers are of epithelial origin. Early diagnosis of pre-invasive epithelial neoplasia can dramatically reduce the incidence and mortality of carcinoma. Thus, there is a desperate need for highly sensitive and cost-effective screening and diagnostic techniques to identify curable precancerous lesions. Epithelial pre-cancers are characterized by a variety of architectural and morphological features including increased nuclear size, increased nuclear/cytoplasmic ratio, hyperchromasia and pleomorphism. In addition, there is increasing evidence of significant changes occurring in the stromal layer at the earliest stages of carcinogenesis as a result of epithelial-stromal interactions. A major limitation of current clinical diagnosis is that morphological and molecular changes associated with early carcinogenesis can be assessed only after invasive biopsy. Optical techniques can assess morphologic and biochemical alterations in epithelial tissue, non-invasively and in real-time. The goat of this proposal is to develop a new technology based on polarized reflectance spectroscopy and imaging to enable non-invasive real-time detection and monitoring of morphological and architectural changes in epithelium and underlying connective tissue associated with carcinogenesis. The aims of this proposal are to: (1) develop theoretical models for polarized reflectance spectroscopy of epithelial tissue and stroma; (2) to test the theoretical predictions in tissue models of human epithelium at different stages of cancer progression; (3) to use the theoretical models to determine the sensitivity of polarized reflectance spectroscopy to morphology of epithelial nuclei and morphology of stroma; (4) to design, construct and test a new fiber optic endoscope for polarized reflectance spectroscopy in vivo; (5) to evaluate the endoscope in clinical studies of oral cavity mucosa. (6) to develop an imaging instrument based on the principles of polarized illumination and detection and to test this device in clinical trials. The inexpensive optical sensors proposed here can immediately benefit health care by reducing the number of unnecessary biopsies, enabling combined diagnosis and therapy, and reducing the need for clinical expertise.
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海外基金