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Proposal of Minimal Invasive Shape Memory Alloy Double-Transducer Unit for Blood Analysis or Drug Delivery

机译:用于血液分析或药物输送的最小侵入性形状记忆合金双传感器单元的建议

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References(7) The purpose of this research is to develop minimally invasive medical devices by applying heated actuations of Shape Memory Alloy (SMA) transducers using a medical Ti-Ni alloy in order to enable minimal hypodermic invasive microvolume for either blood suction or drug delivery through the use of a nontoxic and minimal edged microneedle to be created in the author's laboratory. The author has focused on lymphocytes for immunotoxin and erythrocytes for the glucose level in blood. This paper reports the double-action mechanisms of the compact unit during its development and its actions by low DC inputs. Joule's heating of an SMA coil spring transducer might be useful for indenting blood vessels whose diameter is larger than the microneedle as a result of generating an indentation stroke of 2.0 mm and recovery force of 0.25 N 0.23 s following the start of moving when applied to DC 2.0 V and 0.5 A. An octagonal-pyramidal foil transducer for blood suction recovered its plane condition as before octagonal-pyramidal forming 8.3 s following the start of moving when applied to DC 1.5 V and 2.0 A.
机译:参考文献(7)这项研究的目的是通过使用医用Ti-Ni合金对形状记忆合金(SMA)换能器进行加热驱动来开发微创医疗设备,以实现最小的皮下侵入性微容积,以实现血液抽吸或药物输送通过使用在作者的实验室中创建的无毒且最小边缘的微针。作者主要研究了淋巴细胞中的免疫毒素和红细胞中的血糖水平。本文报告了紧凑型装置在其开发过程中的双重作用机理以及其低直流输入的作用。焦耳加热SMA螺旋弹簧换能器可能有助于压入直径大于微针的血管,因为施加到DC时开始移动后会产生2.0 mm的压痕行程和0.25 N 0.23 s的恢复力2.0 V和0.5A。用于吸血的八角锥箔传感器在移动到DC 1.5 V和2.0 A时,开始运动后恢复了八角锥形成之前8.3 s的平面状态。

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