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System Design for 3D Wound Imaging Using Low-Cost Mobile Devices

机译:使用低成本移动设备进行3D伤口成像的系统设计

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The state-of-the art method of wound assessment is a manual, imprecise and time-consuming procedure. Performed by clinicians, it has limited reproducibility and accuracy, large time consumption and high costs. Novel technologies such as laser scanning microscopy, multi-photon microscopy, optical coherence tomography and hyper-spectral imaging, as well as devices relying on the structured light sensors, make accurate wound assessment possible. However, such methods have limitations due to high costs and may lack portability and availability. In this paper, we present a low-cost wound assessment system and architecture for fast and accurate cutaneous wound assessment using inexpensive consumer smartphone devices. Computer vision techniques are applied either on the device or the server to reconstruct wounds in 3D as dense models, which are generated from images taken with a built-in single camera of a smartphone device. The system architecture includes imaging (smartphone), processing (smartphone or PACS) and storage (PACS) devices. It supports tracking over time by alignment of 3D models, color correction using a reference color card placed into the scene and automatic segmentation of wound regions. Using our system, we are able to detect and document quantitative characteristics of chronic wounds, including size, depth, volume, rate of healing, as well as qualitative characteristics as color, presence of necrosis and type of involved tissue.
机译:最新的伤口评估方法是手动,不精确且耗时的过程。由临床医生执行,它的可重复性和准确性有限,耗时长且成本高。激光扫描显微镜,多光子显微镜,光学相干断层扫描和高光谱成像等新技术以及依靠结构化光传感器的设备使准确的伤口评估成为可能。但是,这种方法由于成本高而受到限制,并且可能缺乏便携性和可用性。在本文中,我们介绍了一种低成本的伤口评估系统和架构,可使用廉价的消费类智能手机设备进行快速准确的皮肤伤口评估。在设备或服务器上应用计算机视觉技术以将3D伤口重建为密集模型,这些伤口是由使用智能手机设备的内置单个摄像头拍摄的图像生成的。系统架构包括成像(智能手机),处理(智能手机或PACS)和存储(PACS)设备。它支持通过对齐3D模型随时间进行跟踪,使用放置在场景中的参考色卡进行颜色校正以及自动分割伤口区域。使用我们的系统,我们能够检测并记录慢性伤口的定量特征,包括大小,深度,体积,愈合率,以及定性特征,例如颜色,坏死的存在和受累组织的类型。

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