课题基金 / 基金详情

Real-Time Optical Diagnosis of Inflammatory Bowel Disease using SFDI

Real-Time Optical Diagnosis of Inflammatory Bowel Disease using SFDI
使用 SFDI 实时光学诊断炎症性肠病
批准号:
8850438
负责人:
Sylvain Gioux
金额:
$12.95万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-15 至 2015-09-18
关键词:
AffectAmerican College of Radiology Imaging NetworkAnimalsAppearanceAreaAttentionBenignBiological ModelsBiomedical EngineeringBiomedical TechnologyBiometryBiopsyClinicClinicalColonoscopesColonoscopyColorComplexCrohn&aposs diseaseDetectionDevelopmentDevelopment PlansDevicesDiagnosisDiffuseDiseaseDoctor of MedicineDoctor of PhilosophyEarly InterventionEducational process of instructingEnvironmentFamily suidaeFlareFrequenciesGastroenterologistGastroenterologyGastrointestinal tract structureGoalsGoldHemoglobinHistopathologyHydration statusImageImaging technologyInflammationInflammatoryInflammatory Bowel DiseasesInstitutesIntestinal MucosaIntestinesInvestigationLaboratoriesLaparoscopyLasersLearningLesionLightLightingLipidsMedicalMentorsMetabolismMetastatic breast cancerMonitorMorbidity - disease rateMulticenter TrialsNamesOperative Surgical ProceduresOptical Coherence TomographyOpticsOxygenOxyhemoglobinPainPatientsPatternPerformancePerfusionPolymersPrevalenceProductionPropertyResearch DesignResearch PersonnelResolutionRoleScientistSpectrum AnalysisStagingStructureSystemTechniquesTechnologyTestingTimeTissue ExtractsTissuesTrainingTranslationsTreatment EfficacyUlcerative ColitisUnited StatesValidationVisualWaterWaxesWorkabsorptionbaseburden of illnesscareercareer developmentchemotherapychromophoreclinical decision-makingclinically significantcollaborative environmentdeoxyhemoglobindesigndesign and constructiondiagnostic accuracydisease diagnosisexperienceimprovedindexingintraoperative imagingmalignant breast neoplasmmillimeterminimally invasivemouse modelnoveloptical imagingpreventresponsescreeningstandard of caretheoriestool

项目摘要

项目成果

Sylvain Gioux的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供):炎症性肠病(IBD)诊断和管理的一个基本问题是实时识别可能发生在大面积胃肠道(GI)上的病变。目前的护理标准包括通过彩色视频内窥镜进行目视检查,组织外观和彩色引导活检以及临床决策。鉴于IBD仅在美国就有超过140万患者患病,并且在病程早期进行干预可以预防发病,因此迫切需要新的工具来提高诊断准确性,量化疾病负担并监测治疗效果。 指导这项研究的假设是,近红外(NIR)光,穿透几毫米到肠粘膜,结合结构化照明的最新进展,将允许实时量化组织的光学特性,包括灌注,水合作用和结肠镜检查期间的代谢,从而提高IBD检测。虽然其他光学技术,如光学相干断层扫描(OCT),散射光谱和吸收光谱已经被应用到IBD的识别,没有提供量化的光学特性在一个宽的领域(几十平方厘米)和非接触式配置。 导师和共同导师实验室的最新发展提供了开放手术期间组织光学特性的超快速,非接触式成像。使用多光谱空间频域成像(SFDI),减少散射和吸收参数的量化,以及发色团氧合血红蛋白,脱氧血红蛋白,水和脂质,现在是可能的。然而,由于在组织弯曲的校正和具有适当空间频率内容的纤维镜兼容结构化照明的产生方面存在巨大的技术挑战,因此尚未尝试将SFDI应用于结肠镜和腹腔镜等微创技术。该K 01申请的具体目标集中于:1)开发从简化的光图案中提取发色团浓度所需的光学理论,2)设计针对同时彩色视频成像优化的结肠镜投影和采集系统(即,护理标准)和SFDI,以及3)开发由各种组织光学性质组成的光学度量,其预测疾病的小鼠模型中的IBD。候选人/导师/环境:候选人的长期职业目标是开发用于临床的新型生物医学技术和设备,以改善患者管理。BIDMC在Frangioni博士的指导下提供的学术环境,以及Beckman Laser Institute在Tromberg博士的指导下提供的学术环境,是实现这一目标的理想选择。为了更好地满足临床医生的需求,候选人需要更多地了解临床工作环境,为了扩大他的专业知识,需要在生物医学光学理论方面进行高级培训。K 01项目旨在解决IBD诊断中的一个长期存在的问题,同时培训候选人成为独立的研究者。为了实现这一具有挑战性的目标,我们组建了一个强大而专注的指导团队,具体如下:姓名角色对项目的贡献摘要John V. Frangioni,M.D.,博士导师Frangioni教授将提供临床翻译和生物医学工程方面的具体教学。他 还将提供实验室管理和职业发展方面的教学。布鲁斯J.特罗姆伯格博士Tromberg教授将提供生物医学光学理论的具体教学,特别关注结构照明和光谱学等先进技术。Ram Chuttani,医学博士 临床顾问Chuttani博士将提供胃肠病学临床工作流程的具体教学,IBD筛查和视频内窥镜/纤维内窥镜检查的当前护理标准。Robert D. Odze,医学博士 临床顾问教授Odze将提供IBD组织病理学和疾病发展的具体教学。他还将帮助将光学结果与组织学发现相关联。Long Ngo博士顾问Ngo博士将 提供生物统计学和研究设计方面的具体教学。特别是,他将帮助进行差热分析,以创建和验证拟议的光学IBD指数。 总之,该K 01申请描述了一种培训工具,适用于在术中成像方面具有较强背景但在内源性漫射光学、动物研究和临床纤维镜检查方面经验相对较少的申请人。导师的实验室在光学技术的临床转化方面有着良好的记录。共同导师的实验室具有生物医学光学理论的专业知识。在这种学术环境中,K 01申请描述了职业发展计划和机构承诺,这将允许候选人在五年内过渡到独立,同时他也为具有深远临床意义的调查领域做出贡献。
英文摘要
DESCRIPTION (provided by applicant): A fundamental problem in the diagnosis and management of inflammatory bowel disease (IBD) is the real-time identification of lesions that can occur over large areas of the gastrointestinal (GI) tract. The standard of care presently consists of visual examination through a color videoscope, with tissue appearance and color guiding biopsy and clinical decision making. Given that IBD has a prevalence of over 1.4 million patients in the US alone, and intervention early in the disease course prevents morbidity, new tools to improve diagnostic accuracy, quantify disease burden, and monitor treatment efficacy are desperately needed. The hypothesis guiding this study is that near-infrared (NIR) light, which penetrates several millimeters into the intestinal mucosa, combined with recent advances in structured illumination, will permit real-time quantification of tissue optical properties, inclding perfusion, hydration, and metabolism during colonoscopy, thus improving IBD detection. Although other optical techniques such as optical coherence tomography (OCT), scattering spectroscopy, and absorption spectroscopy have already been applied to the identification of IBD, none provide quantification of optical properties in a wide field (tens of cm2) and non-contact configuration. Recent developments in the mentor's and co-mentor's laboratories provide ultra-fast, non-contact imaging of tissue optical properties during open surgery. Using multispectral spatial frequency domain imaging (SFDI), quantification of reduced scattering and absorption parameters, as well as the chromophores oxyhemoglobin, deoxyhemoglobin, water, and lipid, is now possible. Application of SFDI to minimally invasive techniques, such as colonoscopy and laparoscopy, however, has not yet been attempted because of formidable technical challenges in the correction of tissue curvature and in the production of fiberscope- compatible structured illumination having the proper spatial frequency content. The Specific Aims of this K01 application focus on: 1) developing the optical theory necessary for extracting chromophore concentration from simplified patterns of light, 2) designing a colonoscope projection and acquisition system optimized for simultaneous color video imaging (i.e., the standard of care) and SFDI, and 3) developing an optical metric comprised of various tissue optical properties that is predictive of IBD in a mouse model of the disease. Candidate / Mentors / Environment: The candidate's long-term career goal is to develop novel biomedical technologies and devices that are used in the clinic to improve patient management. The academic environment available at the BIDMC under Dr. Frangioni's guidance, and at the Beckman Laser Institute under Dr. Tromberg's guidance, are ideal for reaching this goal. In order to better respond to needs of clinicians, the candidate needs to learn more about the clinical work environment, and in order to expand his expertise, needs advanced training in biomedical optics theory. The K01 project aims at solving a longstanding problem in IBD diagnosis while training the candidate to become an independent investigator. To achieve this challenging goal, a strong and dedicated mentoring team has been assembled as follows: Name role Summary of the contributions to the project John V. Frangioni, M.D., Ph.D. Mentor Prof. Frangioni will provide specific teaching in clinical translation & biomedical engineering. He will also provide teaching in laboratory management and career development. Bruce J. Tromberg, Ph.D. Co-Mentor Prof. Tromberg will provide specific teaching in biomedical optics theory with a particular focus on advanced techniques such as structured illumination and spectroscopy. Ram Chuttani, M.D. Clinical Consultant Dr. Chuttani will provide specific teaching in gastroenterology clinical workflow, current standard of care in IBD screening and videoendoscopy/fiberoscopy. Robert D. Odze, M.D. Clinical Consultant Prof. Odze will provide specific teaching in IBD histopathology and disease development. He will also help in correlating the optical results with histological findings. Long Ngo, Ph.D. Consultant Dr. Ngo will provide specific teaching in biostatistics and study design. In particular, he will help with the dta analysis for creating and validating the proposed optical IBD index. In summary, this K01 application describes a training vehicle for an applicant with a strong background in intraoperative imaging but with relatively little experience in endogenous diffuse optics, animal studies, and clinical fiberoscopy. The mentor's laboratory has a proven track record in clinical translation of optical technology. The co-mentor's laboratory has expertise in biomedical optics theory. Within this academic environment, the K01 application describes a career development plan and institutional commitment that will permit the transition of the candidate to independence over a period of five years, while he simultaneously contributes to an area of investigation with profound clinical significance.
期刊论文(4)
专著(0)
科研奖励(0)
会议论文
Intraoperative Hemifacial Composite Flap Perfusion Assessment Using Spatial Frequency Domain Imaging: A Pilot Study in Preparation for Facial Transplantation.
使用空间频域成像进行术中半面部复合皮瓣灌注评估:面部移植准备的初步研究。
DOI: 10.1097/sap.0000000000000631
发表时间: 2016
期刊: Annals of plastic surgery
影响因子: 1.5
作者: [Vargas,ChristinaR, Nguyen,JohnT, Ashitate,Yoshitomo, Angelo,Joseph, Venugopal,Vivek, Kettenring,Frank, Neacsu,Florin, Frangioni,JohnV, Gioux,Sylvain, Lee,BernardT]
通讯作者: Lee,BernardT
Real-Time Optical Diagnosis of Inflammatory Bowel Disease using SFDI
Real-Time Optical Diagnosis of Inflammatory Bowel Disease using SFDI
Real-Time Optical Diagnosis of Inflammatory Bowel Disease using SFDI
海外基金