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Design of a system combining narrow band illuminants and a color camera for early diagnosis of skin flap necrosis

机译:结合窄带光源和彩色摄像机的系统设计,用于早期诊断皮瓣坏死

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In plastic surgery, free tissue graft procedures are an essential part of fixing tissue-lack injuries or diseases. However, tissue necrosis caused by vascular occlusions or poor vascular anastomosis is a severe problem for prognosis. Follow-up surgery in the early-stage of necrosis caused by congestion or ischemia is essential to salvage the tissue, but making a diagnosis is difficult because of the slight features of these states. Therefore, a diagnosis support system that can capture the features of blood circulation of the skin flap is required to improve prognosis. We focused on system design and analysis by using spectral characteristics of blood circulation of a skin flap for this purpose. The system to be constructed is composed of a two-channel narrow-band illuminant and a color camera and can capture six-channel spectral signals. The narrow-band illuminant is designed by combining 13 kinds of light-emitting diode (LED) spectra. In this study, we first measured reflectance spectra of the early-stage skin flap necrosis of the rat model to design the narrow-band illuminant spectra. We blocked the flow of the target vessel and observed necrosis progression. A prototyped skin flap chamber was used for stable observation of spectral reflectance measurements. An evaluation experiment was conducted, using a color camera and the spectrally tunable light source. Skin flap images were captured under the designed-illuminants and a conventional illuminant reproduced by the spectrally tunable light source. We confirmed the effectiveness of the designed system by improvements in necrosis region detection.
机译:在整形手术中,自由组织移植程序是固定组织缺乏伤害或疾病的重要组成部分。然而,由血管闭合或血管吻合差引起的组织坏死是预后的严重问题。由于拥塞或缺血引起的坏死早期的随访手术对于挽救组织至关重要,但由于这些状态的轻微特征,使诊断困难。因此,需要捕获皮瓣血液循环特征的诊断支持系统,以改善预后。我们专注于系统设计和分析,通过使用皮肤翻盖的血液循环的光谱特性为此目的。要构造的系统由双通道窄带光源和彩色相机组成,并且可以捕获六通道光谱信号。通过组合13种发光二极管(LED)光谱来设计窄带光源。在这项研究中,我们首先测量了大鼠模型的早期皮瓣坏死的反射光谱来设计窄带光源光谱。我们阻止了目标血管的流动并观察了坏死进展。原型皮瓣室用于稳定观察光谱反射率测量。使用彩色相机和光谱可调光源进行评估实验。在设计的光照层下捕获皮瓣图像和由光谱可调光源再现的常规光源。我们通过改进坏死区检测证实了设计系统的有效性。

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