摘要: Three-dimensional (3D) image cytometers may significantly improve the cell
analysis accuracy to facilitate biological discoveries and clinical diagnosis,
but their development is curbed by the low imaging throughput. Here we report
SIngle-frame LAbel-free Cell Tomography (SILACT) with diffraction-limited
resolution and unprecedented imaging speed of over 10,000 volumes/second.
SILACT is built on a unique interferometric microscope with angle-multiplexing
illumination and a pre-trained physics-incorporating Deep Neural Network for
efficient 3D Refractive Index (RI) reconstruction, from which 3D morphological
and biophysical parameters of cells are extracted. With microfluidics and a
high-speed camera, SILACT is capable of imaging over 20,000 cells/second and
distinguishing different cell species during rapid measurements of large cell
quantities, as well as visualizing shear-induced 3D transient deformation of
red blood cells on a sub-millisecond scale.
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分类:
光学
>>
量子光学
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引用:
ChinaXiv:202303.02244
(或此版本
ChinaXiv:202303.02244V1)
DOI:10.12074/202303.02244V1
CSTR:32003.36.ChinaXiv.202303.02244.V1
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科创链TXID:
e76fc625-c30d-49d0-8ea7-63a1efa815d9
- 推荐引用方式:
Baoliang Ge,Yanping He,Mo Deng,Md Habibur Rahman,Yijin Wang,Ziling Wu,Chung Hong N. Wong,Michael K. Chan,Yi-Ping Ho,Liting Duan,Zahid Yaqoob,Peter T. C. So,George Barbastathis,Renjie Zhou.Single-frame label-free cell tomography at speed of more than 10,000
volumes per second.null.[ChinaXiv:202303.02244V1]
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