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Time-Gated Orthogonal Scanning Automated Microscopy (OSAM) for High-speed Cell Detection and Analysis

机译:时控正交扫描自动显微镜(OSAM)用于高速细胞检测和分析

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摘要

We report a new development of orthogonal scanning automated microscopy (OSAM) incorporating time-gated detection to locate rare-event organisms regardless of autofluorescent background. The necessity of using long-lifetime (hundreds of microseconds) luminescent biolabels for time-gated detection implies long integration (dwell) time, resulting in slow scan speed. However, here we achieve high scan speed using a new 2-step orthogonal scanning strategy to realise on-the-fly time-gated detection and precise location of 1-μm lanthanide-doped microspheres with signal-to-background ratio of 8.9. This enables analysis of a 15 mm × 15 mm slide area in only 3.3 minutes. We demonstrate that detection of only a few hundred photoelectrons within 100 μs is sufficient to distinguish a target event in a prototype system using ultraviolet LED excitation. Cytometric analysis of lanthanide labelled Giardia cysts achieved a signal-to-background ratio of two orders of magnitude. Results suggest that time-gated OSAM represents a new opportunity for high-throughput background-free biosensing applications.
机译:我们报告了正交扫描自动显微镜(OSAM)的新进展,该技术结合了时间门控检测技术,可定位稀有事件生物,而无需考虑自身荧光背景。使用长寿命(几百微秒)的发光生物标记物进行时间门控检测的必要性意味着长积分(驻留)时间,导致扫描速度慢。但是,在这里,我们使用新的两步正交扫描策略实现了高扫描速度,从而实现了动态时间门控检测和1微米掺杂镧系元素的微球的精确定位,信噪比为8.9。这样仅需3.3分钟即可分析15mm×15mm的滑动区域。我们证明,在100μs内仅检测数百个光电子就足以区分使用紫外线LED激发的原型系统中的目标事件。镧系标记的贾第鞭毛虫囊肿的细胞计数分析实现了两个数量级的信噪比。结果表明,时间门控OSAM代表了高通量无背景生物传感应用的新机遇。

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