Modeling of inflicted head injury by shaking trauma in children: what can we learn? : Update to parts I&II: A systematic review of animal, mathematical and physical models.

IF 1.5 4区 医学 Q2 MEDICINE, LEGAL
Forensic Science, Medicine and Pathology Pub Date : 2025-03-01 Epub Date: 2024-01-18 DOI:10.1007/s12024-023-00765-5
Kim Hutchinson, Jan Peter van Zandwijk, Marloes E M Vester, Ajay Seth, Rob A C Bilo, Rick R van Rijn, Arjo J Loeve
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引用次数: 0

Abstract

Inflicted shaking trauma can cause injury in infants, but exact injury mechanisms remain unclear. Controversy exists, particularly in courts, whether additional causes such as impact are required to produce injuries found in cases of (suspected) shaking. Publication rates of studies on animal and biomechanical models of inflicted head injury by shaking trauma (IHI-ST) in infants continue rising. Dissention on the topic, combined with its legal relevance, makes maintaining an up-to-date, clear and accessible overview of the current knowledge-base on IHI-ST essential. The current work reviews recent (2017-2023) studies using models of IHI-ST, serving as an update to two previously published reviews. A systematic review was conducted in Scopus and PubMed for articles using animal, physical and mathematical models for IHI-ST. Using the PRISMA methodology, two researchers independently screened the publications. Two, five, and ten publications were included on animal, physical, and mathematical models of IHI-ST, respectively. Both animal model studies used rodents. It is unknown to what degree these can accurately represent IHI-ST. Physical models were used mostly to investigate gross head-kinematics during shaking. Most mathematical models were used to study local effects on the eye and the head's internal structures. All injury thresholds and material properties used were based on scaled adult or animal data. Shaking motions used as inputs for animal, physical and mathematical models were mostly greatly simplified. Future research should focus on using more accurate shaking inputs for models, and on developing or and validating accurate injury thresholds applicable for shaking.

儿童头部震动创伤模型:我们能学到什么? 第一和第二部分的更新:动物、数学和物理模型的系统回顾。
摇晃创伤可对婴儿造成伤害,但确切的伤害机制仍不清楚。特别是在法庭上,对于(疑似)摇晃造成的伤害是否还需要撞击等其他原因,还存在争议。有关婴儿摇晃致头部损伤(IHI-ST)的动物模型和生物力学模型研究的发表率持续上升。对这一主题的分歧,再加上其法律相关性,使得对当前有关 IHI-ST 的知识库保持最新、清晰和易懂的概述至关重要。本研究回顾了近期(2017-2023 年)使用 IHI-ST 模型进行的研究,是对之前发表的两篇综述的更新。我们在 Scopus 和 PubMed 上对使用动物、物理和数学模型进行 IHI-ST 的文章进行了系统性回顾。两名研究人员采用 PRISMA 方法对出版物进行了独立筛选。其中分别收录了两篇、五篇和十篇关于 IHI-ST 动物模型、物理模型和数学模型的文章。这两项动物模型研究都使用了啮齿类动物。目前还不清楚这些模型能在多大程度上准确代表 IHI-ST。物理模型主要用于研究摇晃时头部的总体运动学。大多数数学模型用于研究对眼睛和头部内部结构的局部影响。所使用的所有伤害阈值和材料属性都是基于成人或动物的比例数据。作为动物、物理和数学模型输入的摇晃运动大多被大大简化。今后的研究应侧重于使用更精确的晃动输入模型,以及开发或验证适用于晃动的精确伤害阈值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Forensic Science, Medicine and Pathology
Forensic Science, Medicine and Pathology MEDICINE, LEGAL-PATHOLOGY
CiteScore
3.90
自引率
5.60%
发文量
114
审稿时长
6-12 weeks
期刊介绍: Forensic Science, Medicine and Pathology encompasses all aspects of modern day forensics, equally applying to children or adults, either living or the deceased. This includes forensic science, medicine, nursing, and pathology, as well as toxicology, human identification, mass disasters/mass war graves, profiling, imaging, policing, wound assessment, sexual assault, anthropology, archeology, forensic search, entomology, botany, biology, veterinary pathology, and DNA. Forensic Science, Medicine, and Pathology presents a balance of forensic research and reviews from around the world to reflect modern advances through peer-reviewed papers, short communications, meeting proceedings and case reports.
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