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[193] Cronin CJ, Feng Z, Schafer WR. Automated imaging of C. ele-
gans behavior. Methods Mol Biol 2006;351:241
[203] Albrecht DR, Bargmann CI. High-content behavioral analysis of
Caenorhabditis elegans in precise spatiotemporal chemical envi-
ronments. Nat Methods 2011;8:599
51.
[194] Feng Z, Cronin CJ, Wittig Jr JH, Sternberg PW, Schafer WR. An
imaging system for standardized quantitative analysis of C. ele-
gans behavior. BMC bioinformatics 2004;5:115.
[195] Stephens GJ, Bueno de Mesquita M, Ryu WS, Bialek W.
Emergence of long timescales and stereotyped behaviors in
Caenorhabditis elegans. Proc Natl Acad Sci U S A
2011;108:7286 e 9.
[196] Stephens GJ, Johnson-Kerner B, Bialek W, Ryu WS. Dimen-
sionality and dynamics in the behavior of C. elegans. PLoS
Comput Biol 2008;4:e1000028.
[197] Stephens GJ, Johnson-Kerner B, Bialek W, Ryu WS. From modes
to movement in the behavior of Caenorhabditis elegans. PLoS
One 2010;5:e13914.
[198] Murray JI, Bao Z, Boyle TJ, Waterston RH. The lineaging of
fluorescently-labeled Caenorhabditis elegans embryos with Star-
ryNite and AceTree. Nat Protoc 2006;1:1468 e 76.
[199] Elvin M, Snoek LB, Frejno M, Klemstein U, Kammenga JE,
Poulin GB. A fitness assay for comparing RNAi effects across
multiple C. elegans genotypes. BMC Genomics 2011;12:510.
[200] Chronis N. Worm chips: microtools for C. elegans biology. Lab
chip 2010;10:432 e 7.
[201] Chung K, Crane MM, Lu H. Automated on-chip rapid micros-
copy, phenotyping and sorting of C. elegans. Nat Methods
2008;5:637
e
605.
[204] Faumont S, Rondeau G, Thiele TR, Lawton KJ, McCormick KE,
Sottile M, et al. An image-free opto-mechanical system for
creating virtual environments and imaging neuronal activity in
freely moving Caenorhabditis elegans. PLoS One 2011;6:e24666.
[205] Haspel G, O'Donovan MJ, Hart AC. Motoneurons dedicated to
either forward or backward locomotion in the nematode Caeno-
rhabditis elegans. J Neurosci 2010;30:11151 e 6.
[206] Kerr RA, Schafer WR. Intracellular Ca2 รพ imaging in C. elegans.
Methods Mol Biol 2006;351:253 e 64.
[207] Santos SI, Mathew M, Loza-Alvarez P. Real time imaging of
femtosecond laser
e
induced nano-neurosurgery dynamics
in
C. elegans. Optics express 2010;18:364 e 77.
[208] Zhao Z, Flibotte S, Murray JI, Blick D, Boyle TJ, Gupta B, et al.
New tools for investigating the comparative biology of Caeno-
rhabditis briggsae and C. elegans. Genetics 2010;184:853 e 63.
[209] Felix MA, Barkoulas M. Robustness and flexibility in nematode
vulva development. Genetics 2012;28(4):185 e 95.
[210] Hill RC, de Carvalho CE, Salogiannis J, Schlager B, Pilgrim D,
Haag ES. Genetic flexibility in the convergent evolution of
hermaphroditism in Caenorhabditis nematodes. Dev Cell
2006;10:531
8.
[211] Brauchle M, Kiontke K, MacMenamin P, Fitch DH, Piano F.
Evolution of early embryogenesis in rhabditid nematodes. Dev
biol 2009;335:253
e
43.
[202] Heng X, Erickson D, Baugh LR, Yaqoob Z, Sternberg PW,
Psaltis D, et al. Optofluidic microscopy
e
62.
[212] Boveri T. Die Entwicklung von Ascaris megalocephala mit
besonderer Rucksicht auf die Kernverhaltnisse. Gustav Fischer;
1899.
e
a method for imple-
menting a high resolution optical microscope on a chip. Lab chip
2006;6:1274 e 6.
e
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