Ultrathin Intraoral 3D Camera
Ultrathin Intraoral 3D Camera
批准号:
8195662
负责人:
Jason Geng
金额:
$14.98万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-07-01 至 2012-06-30
关键词:
AlgorithmsAppointmentAreaAttentionBusinessesCaliberClinicalCollaborationsCollectionColorComputational ScienceComputer-Aided DesignComputer-Assisted ManufacturingConfined SpacesDataDentalDental General PracticeDental InstrumentsDental LaboratoriesDental OfficesDental ProsthesisDental crownsDentistryDentistsDistalEndoscopesEyeFamily suidaeFiberHealth Services AccessibilityHousingHumanImageImaging technologyLasersLightLocationLungMarketingModelingPatientsPerformancePhasePriceProceduresProcessRecording of previous eventsResolutionScanningShapesShippingShipsSideSignal TransductionSiteSmall Business Innovation Research GrantSpeedStructureSurfaceSystemTechnologyTestingThree-Dimensional ImageThree-Dimensional ImagingThree-dimensional analysisTimeTooth structureUnited States National Institutes of HealthUniversitiesVisitWashingtonWorkbasedesigndigitaldigital modelsexperienceflexibilityimpressioninnovationnoveloptical imagingpreventprototypereconstructionresearch studyresponserestorationrestorative dentistrysensorthree-dimensional modelingtooluser-friendly
中文摘要
描述(由申请人提供):口内三维(3D)成像能力有望通过允许在不获取传统印模的情况下进行椅旁实时3D数字模型采集来彻底改变传统的牙科实践工作流程,从而促进牙科诊所或非现场实验室的牙科修复的快速准确的计算机辅助设计(CAD)和计算机辅助制造(CAM)。3D成像技术引领数字牙科的新时代。 然而,2D和3D口内摄像机产品的普遍缺点是体积庞大和缺乏灵活性:远端探头和手持单元的庞大尺寸限制了它们对整个治疗区域的访问;并且它们的设计通常具有刚性结构,阻止了它们在有限空间和难以访问区域中的使用。 该SBIR的主要目标是开发和演示一种新的3D成像方法,该方法基于光纤扫描概念实现口内相机的同时2D和3D表面成像能力。我们在此提出的口内3D摄像机(UT 3D)具有几个独特的功能,远远优于任何现有的口内摄像机:分辨率(~1 mm),灵活,高分辨率2D/3D(百万像素),准确和用户友好的口内成像。这种新颖的3D技术和产品将使CAD/CAM应用的成像能力、可访问性、患者舒适度和多用途达到新的水平。凭借其灵活的功能,这款新颖的3D相机也可以作为许多牙科器械的“尖端眼睛”。微小的远端和灵活性使双摄像头能够进入传统光学成像摄像头无法进入的底切、浮雕、剪力墙/侧面区域。我们的第一阶段具体目标是:目标1:设计和构建UI 3D相机的第一阶段原型;目标2:开发、验证和实施UI 3D相机的3D成像算法;目标3:对体模和真实的牙齿进行3D成像测试,以量化UI 3D相机的性能;目标4:根据第一阶段的结果确定需要改进的地方,并制定/优化第二阶段的工作计划。
英文摘要
DESCRIPTION (provided by applicant): Intraoral three-dimensional (3D) imaging capability promises to revolutionize traditional dental practice workflow by allowing chairside real-time 3D digital model acquisition without taking traditional impressions, thus facilitating speedy and accurate computer-aided-design (CAD) and computer-aided- manufacturing (CAM) of dental restorations at dentist's office or off-site labs. The 3D imaging technology leads to a new era of digital dentistry. However, bulky form factor and lack of flexibility are among general shortcomings for both 2D and 3D intraoral camera products: bulky sizes of distal probe and handheld units limit their access of entire treatment regions; and their designs usually have rigid structure, preventing their uses in confined spaces and difficult to access areas. The primary objective of this SBIR is to develop and demonstrate a novel 3D imaging approach that enables simultaneous 2D and 3D surface imaging capability for intraoral camera based on the ultrathin fiber scanning concept. The ultrathin intraoral 3D camera (UT3D) we propose herein has several unique features that are far-superior to any existing intraoral cameras: ultrathin (~1 mm), flexible, high resolution 2D/3D (megapixels), accurate and user-friendly for intraoral imaging. This novel 3D technology and product would enable a new level of imaging capability, accessibility, patient comfort, and versatile uses for CAD/CAM applications. With its ultrathin and flexible features, this novel 3D camera can also serve as the "Eye-On-The- Tip" for many dental instruments. The tiny distal end and flexibility allow the ultrathin camera to access areas of undercuts, relief, shear walls/sides that are impossible for traditional optical imaging cameras to access. Our Phase I specific aims are: Aim 1: Design and build a Phase 1 prototype of the ultrathin intraoral 3D camera; Aim 2: Develop, validate and implement the 3D imaging algorithms for the ultrathin intraoral 3D camera; Aim 3: Perform 3D imaging tests on phantom and real teeth to quantify UI3D camera's performance; Aim 4: Identify areas of improvement based on Phase 1 results, and develop/optimize Phase 2 work plan.
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