Svetlolobov D Yu, Luzanova I S, Zorin Yu V, Makarov I Yu, Lorents A S
Bureau of Forensic Medical Expertisem Moscow Health Department, Moscow, Russia, 107023.
Federal state budgetary institution 'Russian Federal Centre of Forensic Medical Expertise', Ministry of Health of the Russia, Moscow, Russia, 125284.
Sud Med Ekspert. 2017;60(3):9-12. doi: 10.17116/sudmed20176039-12.
The objective of the present study was to evaluate the possibilities for determining the shooting distance for the MR-79-9 Makarych non-lethal pistol (diameter 9 mm, rubber bullet, shot energy 50 J) by means of inductively coupled plasma optical emission spectrometry. The experiments were carried under the conditions of a ballistic shooting range making the shots from a distance of 0 to 120 cm. The 15×15 cm pieces of muslin fabric and biomaterials (leather) were used as the targets. The morphological signs of the damages inflicted to the targets were evaluated either with the unassisted eye, a criminalistical magnifying glass or the SMT-4 binocular stereoscopic microscope (Germany). The shot products, the area and boundaries of their dispersion were determined in reflected IR and filtered UV rays. Inductively coupled plasma optical emission spectrometry was applied for the qualitative and quantitative analysis of various shot products from the entry hole zone with the contamination (wipedown) bands and contusion collars being 0.2-0.5 cm (group 1) and 2-3 cm (group 2) in width, with special reference to the identification of Ba, Cu, Cr, Fe, K, Ni, Pb, Sb, Sn and Zn. The results of the study give evidence that the detection of Ba, Pb, and Sb among the products of a shot fired from the MR-79-9 Makarych non-lethal pistol is of especially high informative value for determining the shooting distance whereas the detection of Cr, K, Sn and Ni is of a minimum value for this purpose.
本研究的目的是评估通过电感耦合等离子体发射光谱法确定MR - 79 - 9马卡里奇非致命手枪(直径9毫米,橡皮子弹,射击能量50焦耳)射击距离的可能性。实验在弹道靶场条件下进行,射击距离为0至120厘米。使用15×15厘米的平纹细布片和生物材料(皮革)作为靶标。用肉眼、刑事放大镜或SMT - 4双目立体显微镜(德国)评估靶标所受损伤的形态学特征。在反射红外光和过滤紫外光下确定射击产物及其散布区域和边界。电感耦合等离子体发射光谱法用于对来自入口孔区域的各种射击产物进行定性和定量分析,污染(擦拭)带和挫伤环的宽度分别为0.2 - 0.5厘米(第1组)和2 - 3厘米(第2组),特别关注对钡、铜、铬、铁、钾、镍、铅、锑、锡和锌的鉴定。研究结果表明,在MR - 79 - 9马卡里奇非致命手枪射击产物中检测钡、铅和锑对于确定射击距离具有特别高的信息价值,而检测铬、钾、锡和镍对于此目的的价值最小。