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Electronic p-Chip-based system for identification of glass slides and tissue cassettes in histopathology laboratories

机译:基于电子p-Chip的系统可在组织病理学实验室中识别载玻片和组织盒

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Background: The tagging system is based on a small, electronic, wireless, laser-light-activated microtransponder named “p-Chip.” The p-Chip is a silicon integrated circuit, the size of which is 600 μm × 600 μm × 100 μm. Each p-Chip contains a unique identification code stored within its electronic memory that can be retrieved with a custom reader. These features allow the p-Chip to be used as an unobtrusive and scarcely noticeable ID tag on glass slides and tissue cassettes. Methods: The system is comprised of p-Chip-tagged sample carriers, a dedicated benchtop p-Chip ID reader that can accommodate both objects, and an additional reader (the Wand), with an adapter for reading IDs of glass slides stored vertically in drawers. On slides, p-Chips are attached with adhesive to the center of the short edge, and on cassettes – embedded directly into the plastic. ID readout is performed by bringing the reader to the proximity of the chip. Standard histopathology laboratory protocols were used for testing. Results: Very good ID reading efficiency was observed for both glass slides and cassettes. When processed slides are stored in vertical filing drawers, p-Chips remain readable without the need to remove them from the storage location, thereby improving the speed of searches in collections. On the cassettes, the ID continues to be readable through a thin layer of paraffin. Both slides and tissue cassettes can be read with the same reader, reducing the need for redundant equipment. Conclusions: The p-Chip is stable to all chemical challenges commonly used in the histopathology laboratory, tolerates temperature extremes, and remains durable in long-term storage. The technology is compatible with laboratory information management systems software systems. The p-Chip system is very well suited for identification of glass slides and cassettes in the histopathology laboratory.
机译:背景:标记系统基于名为“ p-Chip”的小型电子无线激光激活微应答器。 p芯片是硅集成电路,尺寸为600μm×600μm×100μm。每个p芯片都包含一个唯一的识别码,该识别码存储在其电子存储器中,可以使用定制阅读器进行检索。这些功能使p-Chip可以用作载玻片和组织盒上的醒目且几乎不显眼的ID标签。方法:该系统由带有p-Chip标签的样品架,专用的台式p-Chip ID读取器(可容纳两个物体)和附加的读取器(魔杖)组成,该读取器带有一个适配器,用于读取垂直存放在其中的载玻片的ID。抽屉。在载玻片上,p型芯片通过粘合剂附着在短边的中心,在盒式磁带上–直接嵌入塑料中。通过将读取器带到芯片附近来执行ID读取。使用标准组织病理学实验室规程进行测试。结果:载玻片和暗盒都具有非常好的ID读取效率。将已处理的幻灯片存储在垂直归档抽屉中时,p-Chips仍可读取,而无需将其从存储位置中删除,从而提高了馆藏搜索的速度。在卡匣上,ID仍可通过石蜡薄层继续读取。载玻片和组织盒都可以使用同一读取器读取,从而减少了对冗余设备的需求。结论:p-Chip对组织病理学实验室中常用的所有化学挑战均具有稳定性,可以耐受极端温度,并且在长期存储中仍具有持久性。该技术与实验室信息管理系统软件系统兼容。 p-Chip系统非常适合在组织病理学实验室中鉴定载玻片和暗盒。

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