Department of Biomedical Engineering, Stony Brook University, Stony Brook, NY, 11794, USA.
Department of Emergency Medicine, Stony Brook University, Stony Brook, NY, 11794, USA.
Sci Rep. 2022 Mar 24;12(1):5096. doi: 10.1038/s41598-022-08940-4.
We present an automatic classification strategy for early and accurate assessment of burn injuries using terahertz (THz) time-domain spectroscopic imaging. Burn injuries of different severity grades, representing superficial partial-thickness (SPT), deep partial-thickness (DPT), and full-thickness (FT) wounds, were created by a standardized porcine scald model. THz spectroscopic imaging was performed using our new fiber-coupled Portable HAndheld Spectral Reflection Scanner, incorporating a telecentric beam steering configuration and an f-[Formula: see text] scanning lens. ASynchronous Optical Sampling in a dual-fiber-laser THz spectrometer with 100 MHz repetition rate enabled high-speed spectroscopic measurements. Given twenty-four different samples composed of ten scald and ten contact burns and four healthy samples, supervised machine learning algorithms using THz-TDS spectra achieved areas under the receiver operating characteristic curves of 0.88, 0.93, and 0.93 when differentiating between SPT, DPT, and FT burns, respectively, as determined by independent histological assessments. These results show the potential utility of our new broadband THz PHASR Scanner for early and accurate triage of burn injuries.
我们提出了一种使用太赫兹(THz)时域光谱成像技术对烧伤进行早期、准确分类的自动分类策略。采用标准化猪烫伤模型制作了不同严重程度等级的烧伤,包括浅Ⅱ度(SPT)、深Ⅱ度(DPT)和Ⅲ度(FT)伤口。THz 光谱成像采用我们新的光纤耦合便携式手扫光谱反射扫描仪进行,该扫描仪采用远心光束转向配置和 f-[Formula: see text]扫描透镜。具有 100 MHz 重复率的双光纤激光太赫兹光谱仪中的异步光采样实现了高速光谱测量。对于由十个烫伤和十个接触烫伤以及四个健康样本组成的二十四种不同样本,使用 THz-TDS 光谱的监督机器学习算法在分别区分 SPT、DPT 和 FT 烧伤时,其受试者工作特征曲线下的面积分别为 0.88、0.93 和 0.93,这是通过独立的组织学评估确定的。这些结果表明,我们新的宽带 THz PHASR 扫描仪在烧伤的早期、准确分诊方面具有潜在的应用价值。