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一种用于穿透哺乳动物卵母细胞透明带的挠曲引导式压电钻。

A Flexure-Guided Piezo Drill for Penetrating the Zona Pellucida of Mammalian Oocytes.

出版信息

IEEE Trans Biomed Eng. 2018 Mar;65(3):678-686. doi: 10.1109/TBME.2017.2713302. Epub 2017 Jun 7.

Abstract

Mammalian oocytes such as mouse oocytes have a highly elastic outer membrane, zona pellucida (ZP) that cannot be penetrated without significantly deforming the oocyte, even with a sharp micropipette. Piezo drill devices leverage lateral and axial vibration of the micropipette to accomplish ZP penetration with greatly reduced oocyte deformation. However, existing piezo drills all rely on a large lateral micropipette vibration amplitude ( 20 ) and a small axial vibration amplitude (0.1 ). The very large lateral vibration amplitude has been deemed to be necessary for ZP penetration although it also induces larger oocyte deformation and more oocyte damage. This paper reports on a new piezo drill device that uses a flexure guidance mechanism and a systematically designed pulse train with an appropriate base frequency. Both simulation and experimental results demonstrate that a small lateral vibration amplitude (e.g., 2 ) and an axial vibration amplitude as large as 1.2 were achieved. Besides achieving 100% effectiveness in the penetration of mouse oocytes (n = 45), the new piezo device during ZP penetration induced a small oocyte deformation of 3.4 versus larger than 10 using existing piezo drill devices.

摘要

哺乳动物卵母细胞(如小鼠卵母细胞)具有高度弹性的外膜,透明带(ZP),即使使用锋利的微管,也无法在不显著变形卵母细胞的情况下穿透,而 Piezo 钻头设备利用微管的侧向和轴向振动来完成 ZP 穿透,同时大大减少卵母细胞的变形。然而,现有的 Piezo 钻头都依赖于较大的侧向微管振动幅度(20 )和较小的轴向振动幅度(0.1 )。尽管较大的侧向振动幅度会导致更大的卵母细胞变形和更多的卵母细胞损伤,但它被认为是穿透 ZP 所必需的。本文介绍了一种新的 Piezo 钻头设备,它使用挠性导向机构和系统设计的脉冲序列,具有适当的基频。模拟和实验结果均表明,可实现小的侧向振动幅度(例如 2 )和轴向振动幅度可达 1.2 。除了在穿透小鼠卵母细胞(n = 45)方面达到 100%的有效性外,新的 Piezo 设备在穿透 ZP 时引起的卵母细胞变形为 3.4 ,而使用现有的 Piezo 钻头设备时则大于 10 。

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