Optics and Precision Engineering, Volume. 32, Issue 11, 1676(2024)
Daul-optical path observation system for tracking free-moving C. elegans
[1] WANG S J, WANG Z W. Track-a-worm, an open-source system for quantitative assessment of C. elegans locomotory and bending behavior[J]. PLoS One, 8(2013).
[2] KALETTA T, HENGARTNER M O. Finding function in novel targets: C. elegans as a model organism[J]. Nature Reviews Drug Discovery, 5, 387-399(2006).
[3] HUSSON S J, COSTA W S, SCHMITT C et al.
[4] GENG W, COSMAN P, BERRY C C et al. Automatic tracking, feature extraction and classification of C elegans phenotypes[J]. IEEE Transactions on Bio-Medical Engineering, 51, 1811-1820(2004).
[5] FENG Z Y, CRONIN C J, WITTIG J H et al. An imaging system for standardized quantitative analysis of C. elegans behavior[J]. BMC Bioinformatics, 5, 115(2004).
[6] MARU M, IGARASHI Y, ARAI S et al. Fluorescent microscope system to track a particular region of C. elegans[C], 21, 347-352(2010).
[7] KRAJNIAK J, LU H. Long-term high-resolution imaging and culture of C. elegans in chip-gel hybrid microfluidic device for developmental studies[J]. Lab on a Chip, 10, 1862(2010).
[8] [8] 李果. 自由运动线虫的快速光场三维成像[D]. 武汉: 华中科技大学, 2021.LIG. Fast Light Field Volumetric Imaging of Freely Moving C.elegans[D].Wuhan: Huazhong University of Science and Technology, 2021. (in Chinese)
[9] RAMOT D, JOHNSON B E, BERRY T L et al. The Parallel Worm Tracker: a platform for measuring average speed and drug-induced paralysis in nematodes[J]. PLoS One, 3(2008).
[10] YEMINI E, KERR R A, SCHAFER W R. Tracking movement behavior of multiple worms on food[J]. Cold Spring Harb Protoc, 1483-1487(2011).
[11] PUCHALT J C, SÁNCHEZ-SALMERÓN A J, IVORRA E et al. Small flexible automated system for monitoring Caenorhabditis elegans lifespan based on active vision and image processing techniques[J]. Scientific Reports, 11, 12289(2021).
[12] SWIERCZEK N A, GILES A C, RANKIN C H et al. High-throughput behavioral analysis in C. elegans[J]. Nature Methods, 8, 592-598(2011).
[13] [13] 张朋涛, 杨西斌, 周伟, 等. 双模切换显微内窥镜成像系统设计及应用[J]. 光学 精密工程, 2019, 27(6): 1335-1344. doi: 10.3788/ope.20192706.1335ZHANGP T, YANGX B, ZHOUW, et al. Design and applied research of dual-mode switching endomicroscopic imaging system[J]. Opt. Precision Eng., 2019, 27(6): 1335-1344.(in Chinese). doi: 10.3788/ope.20192706.1335
[14] [14] 徐敏, 殷高方, 赵南京, 等. 浮游植物明场与荧光双光路同步成像方法[J]. 光学 精密工程, 2023, 31(12): 1725-1734. doi: 10.37188/OPE.20233112.1725XUM, YING F, ZHAON J, et al. Simultaneous bright field and fluorescence dual optical path imaging of phytoplankton[J]. Opt. Precision Eng., 2023, 31(12): 1725-1734.(in Chinese). doi: 10.37188/OPE.20233112.1725
[15] HOPE I A.
[16] BARGMANN C I, AVERY L.
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Taoyuan YU, Xiping XU, Shaojun ZHANG, Ning ZHANG, Hongyuan LI, Xiaohui WANG. Daul-optical path observation system for tracking free-moving C. elegans[J]. Optics and Precision Engineering, 2024, 32(11): 1676
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Received: Nov. 30, 2023
Accepted: --
Published Online: Aug. 8, 2024
The Author Email: Xiping XU (xxp@cust.edu.cn)