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颅内压影响视神经乳头的行为。

Intracranial Pressure Influences the Behavior of the Optic Nerve Head.

作者信息

Hua Yi, Tong Junfei, Ghate Deepta, Kedar Sachin, Gu Linxia

机构信息

Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588-0656.

Stanley Truhlsen Eye Institute, University of Nebraska Medical Center, Omaha, NE 68105-1119;Center for Advanced Surgical Technology, University of Nebraska Medical Center, Omaha, NE 68198-6245.

出版信息

J Biomech Eng. 2017 Mar 1;139(3). doi: 10.1115/1.4035406.

Abstract

In this work, the biomechanical responses of the optic nerve head (ONH) to acute elevations in intracranial pressure (ICP) were systematically investigated through numerical modeling. An orthogonal experimental design was developed to quantify the influence of ten input factors that govern the anatomy and material properties of the ONH on the peak maximum principal strain (MPS) in the lamina cribrosa (LC) and postlaminar neural tissue (PLNT). Results showed that the sensitivity of ONH responses to various input factors was region-specific. In the LC, the peak MPS was most strongly dependent on the sclera thickness, LC modulus, and scleral canal size, whereas in the PLNT, the peak MPS was more sensitive to the scleral canal size, neural tissue modulus, and pia mater modulus. The enforcement of clinically relevant ICP in the retro-orbital subarachnoid space influenced the sensitivity analysis. It also induced much larger strains in the PLNT than in the LC. Moreover, acute elevation of ICP leads to dramatic strain distribution changes in the PLNT, but had minimal impact on the LC. This work could help to better understand patient-specific responses, to provide guidance on biomechanical factors resulting in optic nerve diseases, such as glaucoma, papilledema, and ischemic optic neuropathy, and to illuminate the possibilities for exploiting their potential to treat and prevent ONH diseases.

摘要

在本研究中,通过数值模拟系统地研究了视神经乳头(ONH)对颅内压(ICP)急性升高的生物力学响应。开发了一种正交实验设计,以量化控制ONH解剖结构和材料特性的十个输入因素对筛板(LC)和板后神经组织(PLNT)中最大主应变峰值(MPS)的影响。结果表明,ONH对各种输入因素的响应敏感性具有区域特异性。在LC中,MPS峰值对巩膜厚度、LC模量和巩膜管大小的依赖性最强,而在PLNT中,MPS峰值对巩膜管大小、神经组织模量和软脑膜模量更为敏感。眼眶后蛛网膜下腔中临床相关ICP的施加影响了敏感性分析。它还在PLNT中引起了比LC中更大的应变。此外,ICP的急性升高导致PLNT中的应变分布发生显著变化,但对LC的影响最小。这项工作有助于更好地理解患者特异性反应,为导致青光眼、视乳头水肿和缺血性视神经病变等视神经疾病的生物力学因素提供指导,并阐明利用其潜力治疗和预防ONH疾病的可能性。

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