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Monitoring combat wound healing by IR hyperspectral imaging

机译:通过红外高光谱成像监测战斗伤口愈合

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摘要

In recent conflicts, battlefield injuries consist largely of extensive soft injuries from blasts and high energy projectiles, including gunshot wounds. Repair of these large, traumatic wounds requires aggressive surgical treatment, including multiple surgical debridements to remove devitalised tissue and to reduce bacterial load. Identifying those patients with wound complications, such as infection and impaired healing, could greatly assist health care teams in providing the most appropriate and personalised care for combat casualties. Candidate technologies to enable this benefit include the fusion of imaging and optical spectroscopy to enable rapid identification of key markers. Hence, a novel system based on IR negative contrast imaging (NCI) is presented mat employs an optical parametric oscillator (OPO) source comprising a periodically-poled LiNbO_3 (PPLN) crystal. The crystal operates in the shortwave and midwave IR spectral regions (ca. 1.5-1.9 μm and 2.4 - 3.8 μm, respectively). Wavelength tuning is achieved by translating the crystal within the pump beam. System size and complexity are minimised by the use of single element detectors and the intracaviry OPO design. Images are composed by raster scanning the monochromatic beam over the scene of interest; the reflection and/or absorption of the incident radiation by target materials and their surrounding environment provide a method for spatial location. Initial results using the NCI system to characterise wound biopsies are presented here.
机译:在最近的冲突中,战场伤害主要包括爆炸和高能弹丸造成的广泛的软伤,包括枪伤。这些大的创伤性伤口的修复需要积极的外科手术治疗,包括多次外科清创术以去除失活的组织并减少细菌负荷。确定那些具有伤口并发症(例如感染和康复受损)的患者,可以极大地帮助医疗团队为战斗人员提供最适当和个性化的护理。实现此优势的候选技术包括成像和光谱学的融合,以快速识别关键标记。因此,提出了一种基于IR负对比度成像(NCI)的新颖系统,其采用了包括周期性极化的LiNbO_3(PPLN)晶体的光学参量振荡器(OPO)源。晶体在短波和中波红外光谱区域(分别约为1.5-1.9μm和2.4-3.8μm)中工作。通过在泵浦光束内平移晶体来实现波长调谐。通过使用单元素检测器和机舱内OPO设计,可将系统大小和复杂性降至最低。通过光栅扫描感兴趣的场景上的单色光束来组成图像;目标材料及其周围环境对入射辐射的反射和/或吸收为空间定位提供了一种方法。本文介绍了使用NCI系统表征伤口活检的初步结果。

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  • 会议地点 San Francisco CA(US)
  • 作者单位

    Defence Science and Technology Laboratory, Porton Down, Salisbury, Wiltshire, SP4 0JQ, U.K.;

    Defence Science and Technology Laboratory, Porton Down, Salisbury, Wiltshire, SP4 0JQ, U.K.;

    Defence Science and Technology Laboratory, Porton Down, Salisbury, Wiltshire, SP4 0JQ, U.K.;

    Degenerative Medicine Department, Naval Medical Research Center, Silver Spring, MD, USA ,Department of Surgery, Uniformed Services University of Health Sciences, Bethesda, MD, USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-26 13:44:37

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