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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Biomaterial characteristics and application of silicone rubber and PVA hydrogels mimicked in organ groups for prostate brachytherapy
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Biomaterial characteristics and application of silicone rubber and PVA hydrogels mimicked in organ groups for prostate brachytherapy

机译:模拟器官组中的硅橡胶和PVA水凝胶的生物材料特性及其应用在前列腺近距离放射治疗中

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It is definite that transparent material with similar structural characteristics and mechanical properties to human tissue is favorable for experimental study of prostate brachytherapy. In this paper, a kind of transparent polyvinyl alcohol (PVA) hydrogel and silicone rubber are developed as suitable substitutions for human soft tissue. Segmentation and 3D reconstruction of medical image are performed to manufacture the mould of organ groups through rapid prototyping technology. Micro-structure observation, force test and CCD deformation test have been conducted to investigate the structure and mechanical properties of PVA hydrogel used in organ group mockup. Scanning electron microscope (SEM) image comparison results show that PVA hydrogel consisting of 3 g PVA, 17 g deionized water, 80 g dimethyl-sulfoxide (DMSO), 4 g NaCl, 1.5 g NaOH, 3 g epichlorohydrin (ECH) and 7 freeze/thaw cycles reveals similar micro-structure to human prostate tissue. Through the insertion force comparison between organ group mockup and clinical prostate brachytherapy, PVA hydrogel and silicone rubber are found to have the same mechanical properties as prostate tissue and muscle. CCD deformation test results show that insertion force suffers a sharp decrease and a relaxation of tissue deformation appears when needle punctures the capsule of prostate model. The results exhibit that organ group mockup consisting of PVA hydrogel, silicone rubber, membrane and agarose satisfies the needs of prostate brachytherapy simulation in general and can be used to mimic the soft tissues in pelvic structure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:可以肯定的是,具有与人体组织相似的结构特征和机械性能的透明材料对于前列腺近距离放射治疗的实验研究是有利的。本文开发了一种透明的聚乙烯醇(PVA)水凝胶和硅橡胶作为人体软组织的合适替代品。通过快速原型技术对医学图像进行分割和3D重建,以制造器官组的模具。进行了微结构观察,力试验和CCD变形试验,以研究用于器官组模型的PVA水凝胶的结构和力学性能。扫描电镜(SEM)图像比较结果显示,PVA水凝胶由3 g PVA,17 g去离子水,80 g二甲基亚砜(DMSO),4 g NaCl,1.5 g NaOH,3 g表氯醇(ECH)和7种冷冻剂组成融化循环显示出与人类前列腺组织相似的微观结构。通过器官组模型与临床前列腺近距离放射疗法之间的插入力比较,发现PVA水凝胶和硅橡胶具有与前列腺组织和肌肉相同的机械性能。 CCD变形测试结果表明,当针刺入前列腺模型的胶囊时,插入力会急剧下降,并且组织变形会松弛。结果表明,由PVA水凝胶,硅橡胶,膜和琼脂糖组成的器官组样机总体上可以满足前列腺近距离放疗模拟的需求,可用于模拟骨盆结构中的软组织。 (C)2015 Elsevier Ltd.保留所有权利。

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