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首页> 外文期刊>Frontiers in Surgery >3D Printing Improved Testicular Prostheses: Using Lattice Infill Structure to Modify Mechanical Properties
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3D Printing Improved Testicular Prostheses: Using Lattice Infill Structure to Modify Mechanical Properties

机译:3D打印改进睾丸假体:使用格子填充结构来修改机械性能

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Patients often opt for implantation of testicular prostheses following orchidectomy for cancer or torsion. Recipients of testicular prostheses report issues regarding firmness, shape, size, and position, aspects of which relate to current limitations of silicone materials used and manufacturing methods for soft prostheses. We aim to create a 3D printable testicular prosthesis which mimics the natural shape and stiffness of a human testicle using a lattice infill structure. Porous testicular prostheses were engineered with relative densities from 0.1 to 0.9 using a repeating cubic unit cell lattice inside an anatomically accurate testicle 3D model. These models were printed using a multi-jetting process with an elastomeric material and compared with current market prostheses using shore hardness tests. Additionally, standard sized porous specimens were printed for compression testing to verify and match the stiffness to human testicle elastic modulus (E-modulus) values from literature. The resulting 3D printed testicular prosthesis of relative density between 0.3 and 0.4 successfully achieved a reduction of its bulk compressive E-modulus from 360 KPa to a human testicle at 28 Kpa. Additionally, this is the first study to quantitatively show that current commercial testicular prostheses are too firm compared to native tissue. 3D printing allows us to create metamaterials that match the properties of human tissue to create customisable patient specific prostheses. This method expands the use cases for existing biomaterials by tuning their properties and could be applied to other implants mimicking native tissues.
机译:患者通常选择植入睾丸切除术后睾丸或扭转的睾丸假体。睾丸假肢的接受者报告关于坚定,形状,大小和位置的问题,其方面涉及所用硅胶材料的电流限制和软假肢的制造方法。我们的目标是使用晶格填充结构模拟人体睾丸的自然形状和刚度的3D可打印睾丸假体。在解剖学上精确的睾丸3D模型内使用重复的立方单元单元格子,在0.1至0.9的相对密度设计多孔睾丸假体。使用具有弹性体材料的多喷射过程印刷这些模型,并与使用岸硬度测试的当前市场假体进行比较。另外,印刷标准尺寸的多孔样本以进行压缩测试以验证和匹配文献中的人睾丸弹性模量(E-Modulus)值的刚度。所得的3D印刷的相对密度的睾丸假体在0.3和0.4之间成功地实现了其在28kPa的360kPa中的将其散装压缩E-模量降低到人睾丸。另外,这是第一学习,以定量表明,与天然组织相比,目前的商业睾丸假体过于坚固。 3D打印允许我们创建与人类组织属性匹配的超材料,以创造可定制的患者特异性假肢。该方法通过调整其性质来扩展现有生物材料的用例,并且可以应用于模仿本地组织的其他植入物。

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