Automation of slide staining for large tissue sections.

Prabhakar Sithambaram, Ramdayalan Kumarasami, Sathish Pandidurai, Selvadurai Sekar, Jayaraman Kiruthi Vasan, Mohanasankar Sivaprakasam, Jayaraj Joseph
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Abstract

Staining is a critical step in tissue analysis as it enhances the visibility and contrast of tissue structures for microscopic examination. Large tissue sections such as the human brain, heart, and liver are becoming increasingly important in studying complex tissue structures, providing critical information about the tissue's normal or abnormal development, function, and disease processes. Manual staining methods are still widely used and are prone to inconsistencies and inaccuracies, leading to unreliable results. Commercially available automated staining systems offer a more efficient alternative, but currently, these systems are only available for smaller 1" x 3" slides which are ill-suited for examining larger tissue sections. To address this challenge, we present a custom-designed Large format Automated Slide Stainer that can handle various glass slides, from the standard 1" x 3" slides to the custom-sized 2" x 3", 5" x 7", and 6" x 8" glass slides. The system uses a Cartesian robotic arm to stain the slides and has a user-friendly and intuitive interface for creating and modifying custom staining protocols. Safety features include chemical isolation, a ventilation system, an emergency shutdown, and a protective shield to minimize hazards from handling chemicals and biological materials. The automated stainer showed little variability in positioning with a mean offset error of 1.65 ± 0.65 mm and 1.73 ± 0.76 mm in the X and Y axes, respectively. In addition, the automated staining process showed better uniformity than manual staining. A pairwise distance was used to evaluate how well image histograms matched within a batch. The automated staining had a mean pairwise distance of 0.0070 ± 0.0017 (Nissl) and 0.0060 ± 0.0003 (Hematoxylin and Eosin(H&E)), which were far superior to the manual staining distances (Nissl: 0.0173 ± 0.0107 and H&E: 0.0185 ± 0.0067). This system represents a substantial advancement in tissue staining and has the potential to improve the reliability of tissue analysis significantly.Clinical relevance - Automated system for providing accurate, reproducible, and high-throughput staining of large tissue sections for use in histopathology and research.

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大面积组织切片染色自动化。
染色是组织分析的一个关键步骤,因为它能提高组织结构的可见度和对比度,便于显微镜检查。人脑、心脏和肝脏等大型组织切片在研究复杂组织结构方面变得越来越重要,可提供有关组织正常或异常发育、功能和疾病过程的重要信息。手动染色方法仍在广泛使用,但容易出现不一致和不准确的情况,导致结果不可靠。市场上销售的自动染色系统提供了一种更有效的替代方法,但目前这些系统只能用于较小的 1" x 3" 切片,不适合检查较大的组织切片。为解决这一难题,我们推出了一款定制设计的大幅面自动玻片染色机,可处理各种玻璃玻片,从标准的 1" x 3" 玻片到定制尺寸的 2" x 3"、5" x 7" 和 6" x 8" 玻片。该系统使用直角坐标机械臂对玻片进行染色,具有用户友好的直观界面,可用于创建和修改定制染色方案。安全功能包括化学隔离、通风系统、紧急停机和保护罩,以最大限度地减少处理化学物质和生物材料的危害。自动染色机的定位变异性很小,X 轴和 Y 轴的平均偏移误差分别为 1.65 ± 0.65 毫米和 1.73 ± 0.76 毫米。此外,与手动染色相比,自动染色过程显示出更好的均匀性。配对距离用于评估批次内图像直方图的匹配程度。自动染色的平均配对距离为 0.0070 ± 0.0017(Nissl)和 0.0060 ± 0.0003(Hematoxylin and Eosin(H&E)),远远优于人工染色的距离(Nissl:0.0173 ± 0.0107,H&E:0.0185 ± 0.0067)。该系统代表了组织染色技术的一大进步,有可能显著提高组织分析的可靠性。临床意义 - 自动化系统可为组织病理学和研究中使用的大型组织切片提供准确、可重复和高通量的染色。
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