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A relationship between slide quality and image quality in whole slide imaging (WSI)

机译:整个幻灯片成像(WSI)中幻灯片质量与图像质量之间的关系

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摘要

This study examined the effect of tissue section thickness and consistency – parameters outside the direct control of the imaging devices themselves – on WSI capture speed and image quality. Preliminary data indicates that thinner, more consistent tissue sectioning (such as those produced by automated tissue sectioning robots) result in significantly faster WSI capture times and better image quality.A variety of tissue types (including human breast, mouse embryo, mouse brain, etc.) were sectioned using an (AS-200) Automated Tissue Sectioning System (Kurabo Industries, Osaka Japan) at thicknesses from 2 – 9 μm (at one μm intervals) and stained with H&E by a standard method. The resulting slides were imaged with 5 different WSI devices (ScanScope CS, Aperio, CA, iScan, BioImagene, CA, DX40, DMetrix, AZ, NanoZoomer, Hamamatsu Photonics K.K., Japan, Mirax Scan, Carl Zeiss Inc., Germany) with sampling periods of 0.43 – 0.69 μm/pixel. Slides with different tissue thicknesses were compared for image quality, appropriate number of focus points, and overall scanning speed.Thinner sections (ie 3 μm sections versus 7 μm) required significantly fewer focus points and had significantly lower (10–15%) capture times. Improvement was seen with all devices and tissues tested. Furthermore, a panel of experienced pathologist judged image quality to be significantly better (for example, with better apparent resolution of nucleoli) with the thinner sections.Automated tissue sectioning is a very new technology; however, the AS-200 seems to be able to produce thinner, more consistent, flatter sections than manual methods at reasonably high throughput. The resulting tissue sections seem to be easier for a WSI system's focusing systems to deal with (compared to manually cut slides). Teaming an automated tissue-sectioning device with a WSI device shows promise in producing faster WSI throughput with better image quality.
机译:这项研究检查了组织切片厚度和一致性(成像设备本身无法直接控制的参数)对WSI捕获速度和图像质量的影响。初步数据表明,更薄,更一致的组织切片(例如由自动组织切片机器人生产的组织切片)可显着加快WSI捕获时间并提高图像质量。各种组织类型(包括人乳腺,小鼠胚胎,小鼠脑等) 。)使用(AS-200)自动组织切片系统(日本大阪仓久保工业公司)切片,厚度为2 – 9μm(间隔为1μm),并通过标准方法用H&E染色。用5种不同的WSI设备(ScanScope CS,Aperio,CA,iScan,BioImagene,CA,DX40,DMetrix,AZ,NanoZoomer,Hamamatsu Photonics KK,日本,Miram Scan,Carl Zeiss Inc.,德国)对生成的幻灯片进行成像。周期为0.43 – 0.69μm/像素。比较了具有不同组织厚度的载玻片的图像质量,适当的焦点数量和整体扫描速度。较薄的切片(即3μm的切片与7μm的切片)所需的焦点明显更少,并且捕获时间明显较短(10-15%) 。在所有测试的设备和组织中都看到了改善。此外,由经验丰富的病理学家组成的专家组认为,切片越薄,图像质量就越好(例如,核仁具有更好的表观分辨率)。但是,与手动方法相比,AS-200似乎能够以相当高的通量生产出更薄,更一致,更平坦的型材。对于WSI系统的聚焦系统而言,所得到的组织切片似乎更易于处理(与手动切割的玻片相比)。将自动组织切片设备与WSI设备结合使用,有望在产生更快的WSI吞吐率和更好的图像质量方面表现出希望。

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