Localizing a needle tip using 2D microscope images and detecting vertical approach of a needle based on focus measures for intracellular microneedle insertion

S. Park, W. Chung
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Abstract

Microneedle insertion is useful for elucidating the processes in living cells and their organelles. However, mechanical puncture by the needle causes traumatic damage to the cell. As a less invasive process, we have developed intracellular needle insertion using femtosecond laser cell ablation. To quickly and precisely position the spot ablated by the laser, we accurately located the needle tip in a 2D image plane. When the needle approaches the cell surface, the only accessible information is the microscope image; the vertical approach of the needle is unknown and must be detected. To this end, we propose an image process that integrates needle recognition, needle-tip localization, image focus measure, and vertical approach detection. The proposed image process was tested in 15 experimental sessions at various locations. The needle tip was reasonably and consistently positioned in the image, and the vertical approach was detected within the safe and plausible ranges.
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利用二维显微镜图像定位针尖,并基于聚焦测量检测细胞内微针插入的针头垂直方向
微针插入对于阐明活细胞及其细胞器的过程是有用的。然而,机械穿刺针会对细胞造成创伤性损伤。作为一种侵入性较小的治疗方法,我们已经开发出了使用飞秒激光细胞消融的细胞内针插入。为了快速准确地定位激光烧蚀的光斑,我们在二维图像平面上精确地定位了针尖。当针头接近细胞表面时,唯一可获得的信息是显微镜图像;针的垂直方向是未知的,必须检测。为此,我们提出了一种集针尖识别、针尖定位、图像焦点测量和垂直接近检测于一体的图像处理方法。所提出的图像处理过程在不同地点进行了15次实验。针尖在图像中的位置合理一致,垂直入路在安全合理的范围内。
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