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The number of diatoms recovered from the lungs and other organs in drowning deaths in bathwater.

机译:在溺水死亡时从肺和其他器官中恢复的硅藻数量。

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We assessed the plankton levels using the diatom test in the lungs and organs of the circulatory system of nine postmortem cases of bathwater drowning and one case of death due to ischemic heart disease (IHD) while bathing, as well as in the associated bathwater. The number of planktons detected in the lungs was not related to the postmortem period or the process of drowning, but was related to the plankton levels detected in the bathwater taken from the scene. In one case of bathwater drowning, the diatom distribution of the four pulmonary lobes (165.0-280.0planktons/100g sample) and other organs (3.6-13.6/100g) highly corresponded to the pattern of 'usual' drowning in water which contains a lot of diatoms. In this case, the bathwater taken from the scene contained a considerable amount of planktons (16.3/100ml water), which suggests that, when the bathwater is relatively 'dirty', the diatom test may be helpful in reaching a diagnosis of drowning. In another case of drowning, a considerable number of diatoms was detected relatively evenly in all four pulmonary lobes (58.3-141.7/100g), although no planktons were detected in distant organs. In this case, the bathwater also contained a substantial number of planktons (18.8/100ml), which suggests that a relatively even distribution of planktons in each pulmonary lobe may also support a diagnosis of drowning based on the autopsy findings when the bathwater is relatively 'dirty'. In the other seven cases of drowning, few planktons were detected in the lungs (0-18.2/100g) and other organs (0-9.1/100g) as well as in the associated bathwater (0-3.1/100ml). These cases suggest that if autopsy findings indicate drowning, the low levels of diatoms detected in both the pulmonary lobes and the bathwater may indicate drowning in clean water. In contrast, in one case of death due to IHD while bathing, no planktons were detected in the organs except for the lower lobe of the right lung (11.8/100g) and the left kidney (9.1/100g), although the bathwater contained a sufficient number of planktons by the diatom test (21.3/100ml). This case suggests that the diatom test may be helpful in distinguishing drowning and other causes of death in bathwater by comparison of the diatom levels in the organs and the bathwater. All of these results indicate that the diatom test may be helpful to differentiate ambiguous cases of drowning in bathwater. However, in this study, although special care and precautions were undertaken, contamination with some planktons could not be prevented. For accurate interpretation and diagnosis, examination and comparison of test results from all four pulmonary lobes, at least four distant organs, and the associated bathwater from the scene of death are necessary together with careful consideration of autopsy findings.
机译:我们使用硅藻测试评估了9例死于尸体的沐浴水淹死和1例死于缺血性心脏病(IHD)的死于尸体的循环系统的肺和循环系统中以及相关沐浴水中的浮游生物水平。肺中检测到的浮游生物的数量与死后或溺水的过程无关,但与从现场采集的沐浴水中检测到的浮游生物的水平有关。在一个溺水的案例中,四个肺叶(165.0-280.0浮游生物/ 100 g样品)和其他器官(3.6-13.6 / 100g)的硅藻分布与水中“正常”溺水的模式高度对应,其中淹没了很多硅藻。在这种情况下,从现场获取的沐浴水中含有大量浮游生物(16.3 / 100ml水),这表明,当沐浴水相对“肮脏”时,硅藻测试可能有助于诊断溺水。在另一例溺水事件中,尽管在远处的器官中均未检测到浮游生物,但在所有四个肺叶中均检出了相当数量的硅藻(58.3-141.7 / 100g)。在这种情况下,浴水中还含有大量的浮游生物(18.8 / 100ml),这表明当浴水中相对“浮游生物”时,根据尸检结果,每个肺叶中浮游生物的相对均匀分布也可以支持溺水的诊断。脏'。在其他七个溺水案例中,在肺脏(0-18.2 / 100g)和其他器官(0-9.1 / 100g)以及相关的沐浴水中(0-3.1 / 100ml)中几乎没有检测到浮游生物。这些情况表明,如果尸检结果表明溺水,则在肺叶和沐浴水中检测到的硅藻含量低可能表明在干净的水中溺水。相比之下,在1例因沐浴中IHD死亡的病例中,除了右肺下叶(11.8 / 100g)和左肾(9.1 / 100g)外,在器官中均未检测到浮游生物,尽管沐浴水中含有通过硅藻测试获得足够数量的浮游生物(21.3 / 100ml)。该案例表明,硅藻测试可能有助于通过比较器官和沐浴水中硅藻的含量来区分溺水和其他死因。所有这些结果表明,硅藻试验可能有助于区分模棱两可的溺水案例。然而,在这项研究中,尽管采取了特殊的护理和预防措施,但仍无法防止某些浮游生物的污染。为了准确解释和诊断,必须对所有四个肺叶,至少四个远处器官以及死亡现场的相关沐浴水进行检查和比较,并仔细考虑尸检结果。

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