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Improvement of a Shape Memory Alloy Fibered Aortic Pulsation Device

机译:形状记忆合金纤维主动脉脉动装置的改进

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Aim: We have been developing a new aortic blood flow support device using shape memory alloy (SMA) fibers as an actuator. The special features of the device were as follows: a) totally implantable design, b) small and foldable structure with actuators. The system could represent similar function of the aortomyoplasty and the extra aortic balloon pump at the ascending or descending installation. The purpose of this study was to improve the device as a non-blood contacting pulsation system, aiming at the application for the physiologically effective assistance in the artery. Material & Methods: We have designed the prototype by using covalent-type Ni-Ti SMA fibers which is capable of contracting around the aorta circumferentially. In this study, we developed a new structural design with oblique fiber orientations. The device consisted of rubber silicone wall plates, serially connected for radial contraction by the SMA fibers. We reduced the diameter of the contraction by the device. Then we tested the new structural design in the mock system, and examined its functional changes to optimize the mechanical structural design with SMA fibers. We demonstrated the radial deformation effect by using 150 micron Ni-Ti SMA fibers in a multiple circumferential oblique patterns. The orientation and length of the fibers were evaluated by the changes in oblique angles against the longitudinal axis. The fibers were secured circumferentially by using a pair of plastic grooved chambers, where the changes and contractile function was examined for each fiber Result: We could sandwich the aortic tubing of which the diameter was smaller than 30mm, under the constant pressure condition of the aortic tubing at 100mmHg Conclusion: we successfully achieved the improvement of the contraction effects of the SMA fibered device for aortic compression for smaller diameter vessels by the circumferential alignment by oblique angle of fibers.
机译:目的:我们已经使用形状记忆合金(SMA)纤维作为致动器一直在开发新的主动脉血流支撑装置。该装置的特殊功能如下:1)完全植入式设计,b)中的小并可折叠的结构与致动器。该系统可以代表aortomyoplasty和升序或降序安装额外的主动脉内球囊反搏的类似功能。这项研究的目的是为了提高设备的非接触血液的脉动系统,旨在为在动脉生理有效的援助申请。材料与方法:我们设计的原型使用的共价型镍钛SMA纤维,它能够围绕主动脉周向承包。在这项研究中,我们开发了斜纤维取向了新的结构设计。该器件包括硅橡胶基壁板,由SMA纤维串联连接为径向收缩。我们通过设备减少收缩的直径。然后我们测试在模拟系统中的新的结构设计,并检测其功能性改变,以优化与SMA纤维的机械结构设计。我们通过在多个周向倾斜图案使用150微米镍 - 钛形状记忆合金的纤维表现出的径向变形的效果。的纤维的取向和长度通过在抵靠纵向轴线倾斜的角度的变化进行评价。将纤维通过使用对塑料开槽腔室,其中,所述改变和收缩功能检查为每个纤维结果周边固定:我们可以夹住主动脉管道其直径为小于30mm,主动脉的压力恒定的条件下在100mmHg结论管:我们成功地实现的SMA的收缩效应的改进,用于通过纤维的倾斜角的周向对准较小直径的血管主动脉压缩纤维质的设备。

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