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首页> 外文期刊>Current Directions in Biomedical Engineering >Image acquisition and planimetry systems to develop wounding techniques in 3D wound model
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Image acquisition and planimetry systems to develop wounding techniques in 3D wound model

机译:图像采集和平面测量系统,以开发3D伤口模型中的伤口技术

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Wound healing represents a complex biological repair process. Established 2D monolayers and wounding techniques investigate cell migration, but do not represent coordinated multi-cellular systems. We aim to use wound surface area measurements obtained from image acquisition and planimetry systems to establish our wounding technique and in vitro organotypic tissue. These systems will be used in our future wound healing treatment studies to assess the rate of wound closure in response to wound healing treatment with light therapy (photobiomodulation). The image acquisition and planimetry systems were developed, calibrated, and verified to measure wound surface area in vitro. The system consists of a recording system (Sony DSC HX60, 20.4 M Pixel, 1/2.3″ CMOS sensor) and calibrated with 1mm scale paper. Macro photography with an optical zoom magnification of 2:1 achieves sufficient resolution to evaluate the 3mm wound size and healing growth. The camera system was leveled with an aluminum construction to ensure constant distance and orientation of the images. The JPG-format images were processed with a planimetry system in MATLAB. Edge detection enables definition of the wounded area. Wound area can be calculated with surface integrals. To separate the wounded area from the background, the image was filtered in several steps. Agar models, injured through several test persons with different levels of experience, were used as pilot data to test the planimetry software. These image acquisition and planimetry systems support the development of our wound healing research. The reproducibility of our wounding technique can be assessed by the variability in initial wound surface area. Also, wound healing treatment effects can be assessed by the change in rate of wound closure. These techniques represent the foundations of our wound model, wounding technique, and analysis systems in our ongoing studies in wound healing and therapy.
机译:伤口愈合代表了复杂的生物修复过程。已建立的2D单层和创伤技术研究了细胞迁移,但并不代表协同的多细胞系统。我们旨在使用从图像采集和平面测量系统获得的伤口表面积测量值来建立我们的伤口处理技术和体外器官型组织。这些系统将用于我们未来的伤口愈合治疗研究中,以评估对光疗(光生物调节)伤口愈合治疗的伤口闭合率。开发,校准和验证了图像采集和平面测量系统,以在体外测量伤口表面积。该系统由一个记录系统(Sony DSC HX60、20.4 M像素,1 / 2.3英寸CMOS传感器)组成,并使用1mm刻度纸进行校准。光学变焦放大率为2:1的微距摄影可获得足够的分辨率来评估3mm的伤口大小和愈合情况。相机系统用铝结构调平,以确保图像的距离和方向恒定。 JPG格式的图像是使用MATLAB中的平面仪系统处理的。边缘检测可以确定受伤部位。伤口面积可用表面积分计算。为了将受伤区域与背景区分开,分几步对图像进行过滤。通过数名经验不同的测试人员受伤的琼脂模型被用作试验数据来测试平面测量软件。这些图像采集和平面测量系统支持我们伤口愈合研究的发展。我们伤口技术的可重复性可以通过初始伤口表面积的变化来评估。同样,可以通过伤口闭合率的变化来评估伤口愈合的治疗效果。这些技术代表了我们正在进行的伤口愈合和治疗研究中伤口模型,伤口技术和分析系统的基础。

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