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A Novel Spectral Imaging System for Quantitative Analysis of Hypertrophic Scar

机译:新型光谱成像系统用于肥厚性瘢痕的定量分析

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Scarring can lead to significant cosmetic, psychosocial, and functional consequences in patients with hypertrophic scars from burn and trauma injuries. Therefore, quantitative assessment of scar is needed in clinical diagnosis and treatment. The Vancouver Scar Scale (VSS), the accepted clinical scar assessment tool, was introduced in the nineties and relies only on the physician subjective evaluation of skin pliability, height, vascularity, and pigmentation. To date, no entirely objective method has been available for scar assessment. So, there is a continued need for better techniques to monitor patients with scars. We introduce a new spectral imaging system combining out-of-plane Stokes polarimetry, Spatial Frequency Domain Imaging (SFDI), and three-dimensional (3D) reconstruction. The main idea behind this system is to estimate hemoglobin and melanin contents of scar using SFDI technique, roughness and directional anisotropy features with Stokes polarimetry, and height and general shape with 3D reconstruction. Our proposed tool has several advantages compared to current methodologies. First and foremost, it is non-contact and non-invasive and thus can be used at any stage in wound healing without causing harm to the patient. Secondarily, the height, pigmentation, and hemoglobin assessments are co-registered and are based on imaging and not point measurement, allowing for more meaningful interpretation of the data. Finally, the algorithms used in the data analysis are physics based which will be very beneficial in the standardization of the technique. A swine model has also been developed for hypertrophic scarring and an ongoing pre-clinical evaluation of the technique is being conducted.
机译:对于因烧伤和外伤造成的肥厚性瘢痕患者,瘢痕形成可导致重大的美容,社会心理和功能后果。因此,在临床诊断和治疗中需要对疤痕进行定量评估。于90年代引入了温哥华疤痕量表(VSS),这是公认的临床疤痕评估工具,它仅依靠医师对皮肤柔韧性,身高,血管分布和色素沉着的主观评估。迄今为止,还没有完全客观的方法可用于疤痕评估。因此,持续需要更好的技术来监测疤痕患者。我们介绍了一种新的光谱成像系统,该系统结合了平面外斯托克斯偏振法,空间频域成像(SFDI)和三维(3D)重建。该系统的主要思想是使用SFDI技术估算疤痕的血红蛋白和黑色素含量,使用Stokes旋光仪估算粗糙度和方向各向异性,并使用3D重建估算高度和总体形状。与目前的方法相比,我们提出的工具具有多个优势。首先,它是非接触性和非侵入性的,因此可以在伤口愈合的任何阶段使用,而不会对患者造成伤害。其次,身高,色素沉着和血红蛋白评估是相互注册的,并且基于成像而不是点测量,从而可以更有意义地解释数据。最后,数据分析中使用的算法是基于物理的,这将对技术的标准化非常有益。还开发了用于肥大性瘢痕的猪模型,并且正在进行对该技术的临床前评估。

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