Roy L, Durand V, Delbos M, Sorokine-Durm I, Soussaline F, Voisin P
Institut de Protection et de Sûreté Nucléaire, Département de Protection de la santé de I'Homme et de Dosimétrie, IPSN, Fontenay-aux-Roses, France.
J Radiat Res. 2001 Jun;42(2):165-77. doi: 10.1269/jrr.42.165.
Because of the large number of cells to be analyzed in cases of overexposure to ionizing radiation, an automated imaging system is desirable for scoring both translocations and dicentrics. This system should include three essential steps: automatic metaphase finding, automatic image capture at high magnification, and, finally, optimized data analysis for aberration interpretation. We evaluated a new image analysis system (CYTOGEN, IMSTAR, France) and found that its metaphase finder saved time, as much as quadrupling the speed of scoring chromosomal aberrations. Automatic metaphase selection did not appear to induce bias. We confirmed the equivalence of observing aberrations on a screen after automatic image capture and direct observation under a microscope. This work validated all of the steps necessary for obtaining images for automatic chromosomal aberration detection. The protocols for the detection of translocations may now be applied for biological dosimetry. This step will be validated in a future study.
由于在电离辐射过度暴露的情况下需要分析大量细胞,因此需要一个自动化成像系统来对易位和双着丝粒进行评分。该系统应包括三个基本步骤:自动寻找中期分裂相、高倍自动图像采集,以及最后用于畸变解读的优化数据分析。我们评估了一种新的图像分析系统(CYTOGEN,IMSTAR,法国),发现其中期分裂相查找器节省了时间,对染色体畸变的评分速度提高了多达四倍。自动中期分裂相选择似乎不会产生偏差。我们证实了自动图像采集后在屏幕上观察畸变与在显微镜下直接观察的等效性。这项工作验证了自动染色体畸变检测获取图像所需的所有步骤。易位检测方案现在可应用于生物剂量测定。这一步骤将在未来的研究中得到验证。