상세 보기
An optofluidic system with integrated microlens arrays for parallel imaging flow cytometry
- Holzner, Gregor;
- Du, Ying;
- Cao, Xiaobao;
- Choo, Jaebum;
- deMello, Andrew J.;
- 외 1명
WEB OF SCIENCE
48SCOPUS
50초록
In recent years, high-speed imaging has become increasingly effective for the rapid analysis of single cells in flowing environments. Single cell imaging methods typically incorporate a minimum magnification of 10x when extracting sizing and morphological information. Although information content may be significantly enhanced by increasing magnification, this is accompanied by a corresponding reduction in field of view, and thus a decrease in the number of cells assayed per unit time. Accordingly, the acquisition of high resolution data from wide field views remains an unsolved challenge. To address this issue, we present an optofluidic flow cytometer integrating a refractive, microlens array (MLA) for imaging cells at high linear velocities, whilst maximizing the number of cells per field of view. To achieve this, we adopt an elasto-inertial approach for cell focusing within an array of parallel microfluidic channels, each equipped with a microlens. We characterize the optical performance of the microlenses in terms of image formation, magnification and resolution using both ray-tracing simulations and experimental measurements. Results demonstrate that the optofluidic platform can efficiently count and magnify micron-sized objects up to 4 times. Finally, we demonstrate the capabilities of the platform as an imaging flow cyclometer, demonstrating the efficient discrimination of hB and Jurkat cells at throughputs up to 50000 cells per second.
키워드
- 제목
- An optofluidic system with integrated microlens arrays for parallel imaging flow cytometry
- 저자
- Holzner, Gregor; Du, Ying; Cao, Xiaobao; Choo, Jaebum; deMello, Andrew J.; Stavrakis, Stavros
- 발행일
- 2018-12-07
- 유형
- Article
- 저널명
- Lab on a Chip
- 권
- 18
- 호
- 23
- 페이지
- 3631 ~ 3637
- 언어
- ENG
- 출판사
- ROYAL SOC CHEMISTRY
- 발행국가
- 영국
- 분량
- 7 페이지
- ISSN
- E 1473-0189
P 1473-0197