Biomechanical Responses of Neonatal Brachial Plexus to Mechanical Stretch.

IF 1.1 Q4 CLINICAL NEUROLOGY Journal of Brachial Plexus and Peripheral Nerve Injury Pub Date : 2018-09-03 eCollection Date: 2018-01-01 DOI:10.1055/s-0038-1669405
Anita Singh, Shania Shaji, Maria Delivoria-Papadopoulos, Sriram Balasubramanian
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引用次数: 6

Abstract

This study investigated the biomechanical responses of neonatal piglet brachial plexus (BP) segments-root/trunk, chord, and nerve at two different rates, 0.01 mm/second (quasistatic) and 10 mm/second (dynamic)-and compared their response to another peripheral nerve (tibial). Comparisons of mechanical responses at two different rates reported a significantly higher maximum load, maximum stress, and Young's modulus (E) values when subjected to dynamic rate. Among various BP segments, maximum stress was significantly higher in the nerve segments, followed by chord and then the root/trunk segments except no differences between chord and root/trunk segments at quasistatic rate. E values exhibited similar behavior except no differences between the chord and root/trunk segments at both rates and no differences between chord and nerve segments at quasistatic rate. No differences were observed in the strain values. When compared with the tibial nerve, only mechanical properties of BP nerves were similar to the tibial nerve. Mechanical stresses and E values reported in BP root/trunk and chord segments were significantly lower than tibial nerve at both rates. When comparing the failure pattern, at quasistatic rate, necking was observed at maximum load, before a complete rupture occurred. At dynamic rate, partial rupture at maximum load, followed by a full rupture, was observed. Occurrence of the rate-dependent failure phenomenon was highest in the root/trunk segments followed by chord and nerve segments. Differences in the maximum stress, E values, and failure pattern of BP segments confirm variability in their anatomical structure and warrant future histological studies to better understand their stretch responses.

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新生儿臂丛机械拉伸的生物力学反应。
本研究以0.01 mm/秒(准静态)和10 mm/秒(动态)两种不同的速率研究了新生仔猪臂丛神经(BP)节段(根/干、弦和神经)的生物力学反应,并比较了它们与另一周围神经(胫骨)的反应。对比两种不同速率下的力学响应,动态速率下的最大载荷、最大应力和杨氏模量(E)值明显更高。在各BP节段中,神经节段的最大应力显著高于脊髓节段,其次是根/干节段,但在准静态速率下,弦节段与根/干节段之间无显著差异。除了在两种速率下,弦段和根/干段之间无差异,在准静态速率下,弦段和神经段之间无差异外,E值表现出相似的行为。在应变值上没有观察到差异。与胫神经相比,只有BP神经的力学性质与胫神经相似。在两种速率下,BP根/干和弦段的机械应力和E值均显著低于胫神经。当比较破坏模式时,在准静态速率下,在完全破裂发生之前,在最大载荷下观察到颈缩。在动态速率下,观察到最大载荷下的部分破裂,随后是完全破裂。失败率相关的失败率最高的是根/干节段,其次是弦和神经节段。最大应力、E值和BP节段失效模式的差异证实了其解剖结构的可变性,并为未来的组织学研究提供了依据,以更好地了解其拉伸反应。
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来源期刊
CiteScore
1.70
自引率
14.30%
发文量
6
审稿时长
12 weeks
期刊介绍: JBPPNI is an open access, peer-reviewed online journal that will encompass all aspects of basic and clinical research findings, in the area of brachial plexus and peripheral nerve injury. Injury in this context refers to congenital, inflammatory, traumatic, degenerative and neoplastic processes, including neurofibromatosis. Papers on diagnostic and imaging aspects of the peripheral nervous system are welcomed as well. The peripheral nervous system is unique in its complexity and scope of influence. There are areas of interest in the anatomy, physiology, metabolism, phylogeny, and limb growth tropism of peripheral nerves.
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