23Na MRI定量测定浸泡在盐水和淡水途中猪眼内钠含量。

IF 3.7 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Tobias Lindner, Adrian Konstantin Luyken, Chris Lappe, Oliver Stachs, Thoralf Niendorf, Matthias Lütgens, Stefan Polei, Brigitte Vollmar, Andreas Buettner, Sönke Langner, Marc-André Weber, Ebba Beller
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引用次数: 0

摘要

背景:区分盐水和淡水浸泡以及估计尸体在水中的时间可能具有挑战性。我们的目的是建立和研究一种基于眼钠磁共振成像(23Na MRI)的新方法的可行性,以促进无创钠定量。方法:将去核猪眼按不同时间间隔浸泡在NaCl 0.9%、NaCl 3.0%、NaCl 5.85%、蒸馏水(DW)或湖水(LW)中,然后进行23Na - 7-T MRI钠定量。结果:浸泡6 h后,NaCl 5.85%与DW、LW的玻璃体钠浓度有显著差异(p≤0.019)。浸泡24和48 h后,NaCl 5.85%与DW、LW、NaCl 3.0%或NaCl 0.9%, NaCl 3.0%与DW、LW或NaCl 0.9%,以及NaCl 3.0%与DW、LW或NaCl 0.9%的VB钠浓度差异显著(p≤0.001)。浸泡24 h后,NaCl 5.85%与DW、LW、NaCl 3.0%、NaCl 0.9%的晶体钠浓度差异显著(p≤0.009);浸泡48 h后,NaCl 5.85%相对于DW、LW、NaCl 3.0%或NaCl 0.9% (p≤0.001),NaCl 3.0%相对于DW、LW或NaCl 0.9% (p≤0.007)。对于VB,钠浓度随浸泡时间的变化,并拟合指数曲线。结论:利用23Na MRI对猪眼进行不同浸泡时间、不同盐水浓度和淡水等量水浸泡,可以无创定量测定VB和晶状体钠浓度。相关性声明:虽然不能替代尸检,但23Na MRI对VB和晶状体钠浓度的评估可以为疑似溺水提供生化支持,特别是在未授权对身体进行内部检查或反对尸检的情况下。重点:死后猪眼在盐水和淡水中浸泡时间不同。23Na MRI无创定量玻璃体和晶状体钠浓度。盐水和淡水中玻璃体钠浓度的指数时间过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
23Na MRI quantification of sodium content in porcine eyes after immersion in saltwater and freshwater en route to time in water estimation.

Background: Differentiation between saltwater and freshwater immersion as well as estimating the corpse's time in water can be challenging. We aimed to establish and examine the feasibility of a novel approach based on sodium magnetic resonance imaging (23Na MRI) of the eye to facilitate noninvasive sodium quantification.

Methods: Enucleated porcine eyes were immersed in NaCl 0.9%, NaCl 3.0%, NaCl 5.85%, distilled water (DW) or lake water (LW) at different time intervals, followed by 23Na 7-T MRI sodium quantification.

Results: After 6 h of immersion, a significant difference in vitreous body (VB) sodium concentration was found for NaCl 5.85% versus DW or LW (p ≤ 0.019). After 24 and 48 h of immersion, a significant difference in VB sodium concentration was found for NaCl 5.85% versus DW, LW, NaCl 3.0% or NaCl 0.9%, as well as for NaCl 3.0% versus DW, LW or NaCl 0.9% (p ≤ 0.001). After 24 h of immersion, lens sodium concentration showed a significant difference for NaCl 5.85% versus DW, LW, NaCl 3.0% or NaCl 0.9% (p ≤ 0.009); after 48 h of immersion, for NaCl 5.85% versus DW, LW, NaCl 3.0% or NaCl 0.9% (p ≤ 0.001), as well as for NaCl 3.0% versus DW, LW or NaCl 0.9% (p ≤ 0.007). For VB, sodium concentration changes over immersion time, and exponential curves were fitted to the data.

Conclusion: Using 23Na MRI in ex vivo porcine eyes with different immersion times in various saltwater concentrations and freshwater equivalents allowed noninvasive quantification of VB and lens sodium concentrations.

Relevance statement: Although not a substitute for autopsy, 23Na MRI assessment of VB and lens sodium concentrations may provide biochemical support in suspected drowning, especially in cases where an internal examination of the body is not authorized or where objections to autopsy are upheld.

Key points: Postmortem porcine eyes with different immersion times in saltwater and freshwater. Noninvasive quantification of vitreous body and lens sodium concentrations with 23Na MRI. Exponential time course of vitreous body sodium concentration in saltwater and freshwater.

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来源期刊
European Radiology Experimental
European Radiology Experimental Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
6.70
自引率
2.60%
发文量
56
审稿时长
18 weeks
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