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Automated Counting of Airborne Asbestos Fibers by a High-Throughput Microscopy (HTM) Method

机译:高通量显微镜(HTM)方法自动计数空气中的石棉纤维

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摘要

Inhalation of airborne asbestos causes serious health problems such as lung cancer and malignant mesothelioma. The phase-contrast microscopy (PCM) method has been widely used for estimating airborne asbestos concentrations because it does not require complicated processes or high-priced equipment. However, the PCM method is time-consuming and laborious as it is manually performed off-site by an expert. We have developed a high-throughput microscopy (HTM) method that can detect fibers distinguishable from other spherical particles in a sample slide by image processing both automatically and quantitatively. A set of parameters for processing and analysis of asbestos fiber images was adjusted for standard asbestos samples with known concentrations. We analyzed sample slides containing airborne asbestos fibers collected at 11 different workplaces following PCM and HTM methods, and found a reasonably good agreement in the asbestos concentration. Image acquisition synchronized with the movement of the robotic sample stages followed by an automated batch processing of a stack of sample images enabled us to count asbestos fibers with greatly reduced time and labors. HTM should be a potential alternative to conventional PCM, moving a step closer to realization of on-site monitoring of asbestos fibers in air.
机译:吸入空气中的石棉会导致严重的健康问题,例如肺癌和恶性间皮瘤。相差显微镜(PCM)方法由于不需要复杂的过程或昂贵的设备而被广泛用于估算空气中的石棉浓度。然而,PCM方法是费时且费力的,因为它是由专家在现场异地执行的。我们已经开发出一种高通量显微镜(HTM)方法,该方法可以通过自动和定量图像处理来检测样品载玻片中与其他球形颗粒不同的纤维。对于具有已知浓度的标准石棉样品,调整了一组用于处理和分析石棉纤维图像的参数。我们根据PCM和HTM方法分析了在11个不同工作场所收集的包含空气中石棉纤维的样品载玻片,发现石棉浓度相当合理。图像采集与机器人样品台的移动同步,然后对一批样品图像进行自动批处理,这使我们能够在减少时间和人工的情况下对石棉纤维进行计数。 HTM应该是传统PCM的潜在替代品,使实现对空气中石棉纤维的现场监测更近一步。

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