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Vision-Based Sensor for Three-Dimensional Vibrational Motion Detection in Biological Cell Injection

机译:基于视觉的生物细胞注射中三维振动运动检测传感器

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摘要

Intracytoplasmic sperm injection (ICSI) is an infertility treatment where a single sperm is immobilised and injected into the egg using a glass injection pipette. Minimising vibration in three orthogonal axes is essential to have precise injector motion and full control during the egg injection procedure. Vibration displacement sensing using physical sensors in ICSI operation is challenging since the sensor interfacing is not practically feasible. This study proposes a non-invasive technique to measure the three-dimensional vibrational motion of the injection pipette by a single microscope camera during egg injection. The contrast-limited adaptive histogram equalization (CHALE) method and blob analyses technique were employed to measure the vibration displacement in axial and lateral axes, while the actual dimension of the focal axis was directly measured using the Brenner gradient algorithm as a focus measurement algorithm. The proposed algorithm operates between the magnifications range of 4× to 40× with a resolution of half a pixel. Experiments using the proposed vision-based algorithm were conducted to measure and verify the vibration displacement in axial and lateral axes at various magnifications. The results were compared against manual procedures and the differences in measurements were up to 2% among all magnifications. Additionally, the effect of injection speed on lateral vibration displacement was measured experimentally and was used to determine the values for egg deformation, force fluctuation, and penetration force. It was shown that increases in injection speed significantly increases the lateral vibration displacement of the injection pipette by as much as 54%. It has been demonstrated successfully that visual sensing has played a key role in identifying the limitation of the egg injection speed created by lateral vibration displacement of the injection pipette tip.
机译:胞浆内精子注射(ICSI)是不育治疗,其中固定了单个精子,并使用玻璃移液管将其注射到卵中。为了在注射器注射过程中实现精确的注射器运动和完全控制,必须使三个正交轴上的振动最小。由于传感器接口实际上不可行,因此在ICSI操作中使用物理传感器进行振动位移传感具有挑战性。这项研究提出了一种非侵入性技术,可以在单个鸡蛋注射过程中通过单个显微镜摄像机来测量注射吸管的三维振动运动。对比限制自适应直方图均衡化(CHALE)方法和斑点分析技术用于测量轴向和横向轴的振动位移,而焦距轴的实际尺寸直接使用Brenner梯度算法作为焦点测量算法进行测量。所提出的算法在4倍至40倍放大倍率范围内工作,分辨率为半像素。使用所提出的基于视觉的算法进行了实验,以测量和验证各种放大倍数下轴向和横向轴的振动位移。将结果与手动程序进行比较,并且所有放大倍数之间的测量差异最大为2%。另外,实验测量了注射速度对横向振动位移的影响,并用于确定卵形变形,力波动和穿透力的值。结果表明,注射速度的提高显着增加了移液器的横向振动位移多达54%。已经成功地证明了视觉感测在识别由注射移液器吸头的横向振动位移产生的卵注射速度的限制中起着关键作用。

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