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Highly efficient isolation and release of circulating tumor cells based on size-dependent filtration and degradable ZnO nanorods substrate in a wedge-shaped microfluidic chip
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Highly efficient isolation and release of circulating tumor cells based on size-dependent filtration and degradable ZnO nanorods substrate in a wedge-shaped microfluidic chip

Li, Songzhan ; Gao, Yifan ; Chen, Xiran ; Qin, Luman ; Cheng, Boran ; Wang, Shubin ; Wang, Shengxiang ; Zhao, Guangxin ; Liu, Kan ; Zhang, Nangang

Biomedical microdevices, 2017-12, Vol.19 (4), p.93-9, Article 93 [Periódico revisado por pares]

New York: Springer US

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Rapid prototyping of Nanoroughened polydimethylsiloxane surfaces for the enhancement of immunomagnetic isolation and recovery of rare tumor cells
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Rapid prototyping of Nanoroughened polydimethylsiloxane surfaces for the enhancement of immunomagnetic isolation and recovery of rare tumor cells

Zhang, Lei ; Li, Qian ; Yang, Ruihao ; Xu, Zhigang ; Kang, Yuejun ; Xue, Peng

Biomedical microdevices, 2019-09, Vol.21 (3), p.58-11, Article 58 [Periódico revisado por pares]

New York: Springer US

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Target capturing performance of microfluidic channel surface immobilized aptamers: the effects of spacer lengths
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Target capturing performance of microfluidic channel surface immobilized aptamers: the effects of spacer lengths

Qin, Yubo ; Yang, Xiuying ; Zhang, Jingchang ; Cao, Xudong

Biomedical microdevices, 2019-09, Vol.21 (3), p.54-15, Article 54 [Periódico revisado por pares]

New York: Springer US

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4
Biocompatible TiO2 nanoparticle-based cell immunoassay for circulating tumor cells capture and identification from cancer patients
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Biocompatible TiO2 nanoparticle-based cell immunoassay for circulating tumor cells capture and identification from cancer patients

He, Rongxiang ; Zhao, Libo ; Liu, Yumin ; Zhang, Nangang ; Cheng, Boran ; He, Zhaobo ; Cai, Bo ; Li, Sizhe ; Liu, Wei ; Guo, Shishang ; Chen, Yong ; Xiong, Bin ; Zhao, Xing-Zhong

Biomedical microdevices, 2013-08, Vol.15 (4), p.617-626 [Periódico revisado por pares]

New York: Springer US

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5
Combination of antibody-coated, physical-based microfluidic chip with wave-shaped arrays for isolating circulating tumor cells
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Combination of antibody-coated, physical-based microfluidic chip with wave-shaped arrays for isolating circulating tumor cells

Chen, Hongmei ; Cao, Baoshan ; Chen, Hongda ; Lin, Yu-Sheng ; Zhang, Jingjing

Biomedical microdevices, 2017-09, Vol.19 (3), p.66-66, Article 66 [Periódico revisado por pares]

New York: Springer US

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6
Polymeric microfluidic devices exhibiting sufficient capture of cancer cell line for isolation of circulating tumor cells
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Polymeric microfluidic devices exhibiting sufficient capture of cancer cell line for isolation of circulating tumor cells

Ohnaga, Takashi ; Shimada, Yutaka ; Moriyama, Makoto ; Kishi, Hiroyuki ; Obata, Tsutomu ; Takata, Koji ; Okumura, Tomoyuki ; Nagata, Takuya ; Muraguchi, Atsushi ; Tsukada, Kazuhiro

Biomedical microdevices, 2013-08, Vol.15 (4), p.611-616 [Periódico revisado por pares]

New York: Springer US

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7
Rheologically biomimetic cell suspensions for decreased cell settling in microfluidic devices
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Rheologically biomimetic cell suspensions for decreased cell settling in microfluidic devices

Launiere, Cari A. ; Czaplewski, Gregory J. ; Myung, Ja Hye ; Hong, Seungpyo ; Eddington, David T.

Biomedical microdevices, 2011-06, Vol.13 (3), p.549-557 [Periódico revisado por pares]

Boston: Springer US

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8
mesofluidic multiplex immunosensor for detection of circulating cytokeratin-positive cells in the blood of breast cancer patients
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mesofluidic multiplex immunosensor for detection of circulating cytokeratin-positive cells in the blood of breast cancer patients

Breton, François ; Bennetau, Bernard ; Lidereau, Rosette ; Thomas, Laurent ; Regnier, Gilles ; Ehrhart, Jean-Claude ; Tauc, Patrick ; Tran, Phuong-Lan

Biomedical microdevices, 2011-02, Vol.13 (1), p.1-9 [Periódico revisado por pares]

Boston: Boston : Springer US

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