3D-modeling in forensic medicine: a tutorial

Author:

Shakiryanova Yuliya1,Leonov Sergey12,Korabelnikov Daniil3

Affiliation:

1. 111 Main State Center of the Forensic and Criminalistics Examination of the Ministry of Defence of the Russian Federation

2. A.I.Yevdokimov Moscow State University of Medicine and Dentistry

3. Moscow Medical - Social Institute named after Friedrich Haass

Abstract

The tutorial provides an overview of the main methods of creating three-dimensional (3D) models of objects and their applications. A step-by-step algorithm for creating virtual copies of objects based on digital photos and video frames using modern computer programs "AgisoftPhotoscan" and "ContextCapture" is described. Details of the necessary conditions for obtaining high-quality digital photos and models, especially the process of photography, the requirements for the resulting digital photos. Recommendations are given for obtaining digital photographs suitable for creating three-dimensional models in various fields of research. The theoretical foundations of the method of creating three-dimensional models using digital photographs are described in detail, the basic concepts used in three-dimensional modeling are defined. The areas of application of three-dimensional models in forensic medicine, as well as problems that can be solved with the help of the created models are determined. Established criteria, which may affect the accuracy of the models, the reproduction of the qualitative and quantitative characteristics of the research object. Illustrative examples from their own practice.

Publisher

Moscow Medical - Social Institute named after Friedrich Haass

Reference39 articles.

1. Абрамов С.С., Болдырев Н.И., Ляховец А.О. Оптимизация метода наложения при идентификации личности по черепу и прижизненным фотоснимкам. Лабораторные методы исследования в судебной медицине и задачи судебно-медицинской науки и практики по их совершенствованию: Материалы VIII Всероссийского пленума судебных медиков. Москва-Астрахань, Ижевск, 1994. С. 96-99., Abramov SS, Boldyrev NI, Lyahoves AO. Ortimizasiya metoda nalozheniya rri identifikasii lishnosti ro shereru i rrizhiznennym fotosnimkam [Optimization of the overlay method for identifying a person by skull and intravital photographs]. Laboratornye metody issledovaniya v sudebnoj medisine i zadashi sudebno-medisinskoj nauki i rraktiki ro ih sovershenstvovaniyu: Materialy VIII Vserossijskogo rlenuma sudebnyh medikov [VIII All-Russian Plenum of Forensic Medicine: Laboratory research methods in forensic medicine and the tasks of forensic science and practice for their improvement]. [Abstract]. Moscow-Astrahan', Izhevsk; 1994:96-99. (In Russ)].

2. Абрамов С.С. Компьютеризация краниофациальной идентификации (методология и практика): автореф. дис. … д-ра. мед. наук. М. 1998., Abramov SS. Komr'yuterizasiya kraniofasial'noj identifikasii (metodologiya i rraktika) [Computerization of craniofacial identification (methodology and practice)]. [PhD thesis]. Moscow; 1998. (In Russ)].

3. Горшенев В.Н., Мураев А.А., Телешев А.Т., Ивашкевич С.Г. Композиции для 3D-печати на основе биосовместимых полимеров и паст наноразмерного гидроксилапатита. Актуальные вопросы тканевой и клеточной трансплантологии. Сборник тезисов VII Всероссийского симпозиума с международным участием. Москва. 2017. С. 42-45., Gorshenev VN, Muraev AA, Teleshev AT, Ivashkevish SG. Komrozisii dlya 3D-reshati na osnove biosovmestimyh rolimerov i rast nanorazmernogo gidroksilaratita [Compositions for 3D printing based on biocompatible polymers and nano-sized hydroxyapatite pastes]. [Abstract]. Aktual'nye vorrosy tkanevoj i kletoshnoj transrlantologii. Sbornik tezisov VII Vserossijskogo simroziuma s mezhdunarodnym ushastiem [VII All-Russian Symposium with international participation Actual issues of tissue and cell transplantology]. Moscow; 2017:42-45. (In Russ).

4. Гридин В.Н., Пиголкин Ю.И., Труфанов М.И., Леонов С.В., Мосоян А.С., Дубровин И.А. Построение трехмерной модели повреждения костной ткани по рентгенограмме. Судебно-медицинская экспертиза. 2018. N 1. С. 45-48. httрs://doi.org/10.17116/sudmed201861145-48., Gridin VN, Rigolkin YuI, Trufanov MI, Leonov SV, Mosoyan AS, Dubrovin IA. The sonstrustion of the three-dimensional model of the damaged bone tissue based on its roentgenogram. Forensis medisal exrertise. 2018;1:45-48. doi: 10.17116/sudmed201861145-48. (In Russ).

5. Гусаров А.А., Макаров И.Ю., Емелин В.В., Фетисов В.А. Возможности и перспективы использования трехмерных моделей в судебной медицине. Медицинская экспертиза и право. 2017. N 4. С. 13-18., Gusarov AA, Makarov IYu, Emelin VV, Fetisov VA. Rossibilities and rersrestive of using three-dimensional models in forensis medisine. Medisal Exrertise and Law. 2017;4:13-18. (In Russ).

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