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光学相干断层扫描:对近邻丽蝇蛹进行活体年龄估计?

Optical coherence tomography: age estimation of Calliphora vicina pupae in vivo?

作者信息

Brown Katherine, Harvey Michelle

机构信息

School of Biological Sciences, University of Portsmouth, King Henry Building, King Henry I Street, Portsmouth PO1 2DY, England.

School of Life and Environmental Sciences, Deakin University, Waurn Ponds, VIC, Australia.

出版信息

Forensic Sci Int. 2014 Sep;242:157-161. doi: 10.1016/j.forsciint.2014.07.001. Epub 2014 Jul 10.

Abstract

Necrophagous blowfly pupae are valuable contributors to the estimation of post-mortem interval, should an accurate age estimate be obtained. At present, this is reliant on a combination of rearing and destructive methods conducted on preserved samples, including morphological observation and gene expression analyses. This study demonstrates the use of optical coherence tomography (OCT) as a tool for in vivo morphological observation and pupal age estimation. Using a Michelson OCT microscope, alive and preserved four and ten-day old Calliphora vicina pupae were scanned in different orientations. Two and three-dimensional images were created. Morphological characteristics such as the brain, mouthparts and legs were identifiable in both living and preserved samples, with distinct differences noted between the two ages. Absorption of light by the puparium results in a vertical resolution of 1-2 mm, preventing observation of deeper tissues. The use of contrast agents or a longer wavelength laser would improve the images obtainable. At present, the data suggests OCT provides a primary view of external and internal morphology, which can be used to distinguish younger and older pupae for further analysis of age and PMI estimation.

摘要

如果能够获得准确的年龄估计,食尸性丽蝇蛹对于死后间隔时间的估计具有重要价值。目前,这依赖于对保存样本进行饲养和破坏性方法的组合,包括形态学观察和基因表达分析。本研究展示了使用光学相干断层扫描(OCT)作为体内形态学观察和蛹龄估计的工具。使用迈克尔逊OCT显微镜,对存活的以及保存的4日龄和10日龄的红头丽蝇蛹进行了不同方向的扫描。创建了二维和三维图像。在活体和保存样本中均可识别出大脑、口器和腿部等形态特征,两个年龄段之间存在明显差异。蛹壳对光的吸收导致垂直分辨率为1-2毫米,妨碍了对更深层组织的观察。使用造影剂或更长波长的激光将改善可获得的图像。目前,数据表明OCT提供了外部和内部形态的初步视图,可用于区分较年轻和较年长的蛹,以便进一步分析年龄和死后间隔时间估计。

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