Forensic Science Undergraduate Program, Ontario Tech University, Oshawa, Canada.
Environmental and Life Sciences Graduate Program, Trent University, Peterborough, Canada.
Microsc Res Tech. 2023 Oct;86(10):1401-1408. doi: 10.1002/jemt.24338. Epub 2023 May 3.
Understanding the physical, chemical and biological changes that occur during the drying of a bloodstain is important in many aspects of forensic science including bloodstain pattern analysis and time since deposition estimation. This research assesses the use of optical profilometry to analyze changes in the surface morphology of degrading bloodstains created using three different volumes (4, 11, and 20 μL) up to 4 weeks after deposition. We analyzed six surface characteristics, including surface average roughness, kurtosis, skewness, maximum height, number of cracks and pits, and height distributions from the topographical scans obtained from bloodstains. Full and partial optical profiles were obtained to examine long-term (minimum of 1.5-h intervals) and short-term (5-min intervals) changes. The majority of the changes in surface characteristics occurred within the first 35 min after bloodstain deposition, in agreement with current research in bloodstain drying. Optical profilometry is a nondestructive and efficient method to obtain surface profiles of bloodstains, and can be integrated easily into additional research workflows including but not limited to time since deposition estimation. Optical profilometry is a non-contact tool to scan bloodstains in ambient conditions Drying phases are observable in small drip bloodstains Significant surface morphology changes occur within 35 min after deposition.
理解血斑干燥过程中发生的物理、化学和生物变化,在法医科学的许多方面都很重要,包括血斑形态分析和沉积时间估计。本研究评估了使用光学轮廓术分析使用三种不同体积(4、11 和 20 μL)创建的降解血斑的表面形貌变化,直到沉积后 4 周。我们分析了六个表面特征,包括表面平均粗糙度、峰度、偏度、最大高度、裂缝和凹坑数量以及从血斑形貌扫描获得的高度分布。获得了完整和部分光学轮廓,以检查长期(最小 1.5 小时间隔)和短期(5 分钟间隔)变化。与当前的血斑干燥研究一致,大多数表面特征变化发生在血斑沉积后的前 35 分钟内。光学轮廓术是一种非破坏性且高效的获取血斑表面轮廓的方法,可以很容易地集成到其他研究工作流程中,包括但不限于沉积时间估计。光学轮廓术是一种非接触式工具,可以在环境条件下扫描血斑。可以观察到干燥阶段。在沉积后 35 分钟内,会发生显著的表面形貌变化。