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Lensfree Fluorescent On-Chip Imaging of Transgenic Caenorhabditis elegans Over an Ultra-Wide Field-of-View

机译:超宽视野中的转基因秀丽隐杆线虫的无透镜荧光芯片成像。

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摘要

We demonstrate lensfree on-chip fluorescent imaging of transgenic Caenorhabditis elegans (C. elegans) over an ultra-wide field-of-view (FOV) of e.g., >2–8 cm2 with a spatial resolution of ∼10µm. This is the first time that a lensfree on-chip platform has successfully imaged fluorescent C. elegans samples. In our wide-field lensfree imaging platform, the transgenic samples are excited using a prism interface from the side, where the pump light is rejected through total internal reflection occurring at the bottom facet of the substrate. The emitted fluorescent signal from C. elegans samples is then recorded on a large area opto-electronic sensor-array over an FOV of e.g., >2–8 cm2, without the use of any lenses, thin-film interference filters or mechanical scanners. Because fluorescent emission rapidly diverges, such lensfree fluorescent images recorded on a chip look blurred due to broad point-spread-function of our platform. To combat this resolution challenge, we use a compressive sampling algorithm to uniquely decode the recorded lensfree fluorescent patterns into higher resolution images, demonstrating ∼10 µm resolution. We tested the efficacy of this compressive decoding approach with different types of opto-electronic sensors to achieve a similar resolution level, independent of the imaging chip. We further demonstrate that this wide FOV lensfree fluorescent imaging platform can also perform sequential bright-field imaging of the same samples using partially-coherent lensfree digital in-line holography that is coupled from the top facet of the same prism used in fluorescent excitation. This unique combination permits ultra-wide field dual-mode imaging of C. elegans on a chip which could especially provide a useful tool for high-throughput screening applications in biomedical research.
机译:我们展示了转基因秀丽隐杆线虫(C. elegans)的无透镜片上荧光成像,其空间分辨率为例如> 2-8 cm 2 的超宽视野(FOV)约10μm。这是无透镜芯片上平台首次成功对荧光秀丽隐杆线虫样品进行成像。在我们的无透镜全视场成像平台中,使用棱镜接口从侧面激发转基因样品,在该处,泵浦光通过在基板底面发生的全内反射被抑制。然后,秀丽隐杆线虫样品发出的荧光信号被记录在大面积光电传感器阵列上,其视场角大于2-8 cm 2 ,而无需使用任何薄的透镜胶片干涉滤光片或机械扫描仪。由于荧光发射迅速发散,由于我们平台的广泛点扩展功能,这种记录在芯片上的无透镜荧光图像看起来模糊。为了应对这一分辨率挑战,我们使用压缩采样算法将记录的无透镜荧光图案独特地解码为更高分辨率的图像,显​​示出约10 µm的分辨率。我们使用不同类型的光电传感器测试了这种压缩解码方法的功效,以达到相似的分辨率级别,而与成像芯片无关。我们进一步证明,这种宽FOV无透镜荧光成像平台还可以使用从荧光激发中使用的同一棱镜的顶面耦合的部分相干的无透镜数字在线全息术,对相同样品执行顺序的明场成像。这种独特的组合允许在芯片上对秀丽隐杆线虫进行超广域双模成像,这尤其可以为生物医学研究中的高通量筛选应用提供有用的工具。

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