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1 by scanning electron microscopy and confocal laser microscopy.
2 ometry, as well as fluorescence and confocal laser microscopy.
3 e contrast microscopy, and confocal scanning laser microscopy.
4 area was monitored by spinning disc confocal laser microscopy.
5 telet aggregate) was measured using confocal laser microscopy.
6 e simultaneously evaluated by using confocal laser microscopy.
7 y muscle was determined by confocal scanning laser microscopy.
8 ing the cells in situ with confocal scanning laser microscopy.
9 and quantified by fluorescence and confocal laser microscopy.
10 ling microscopy coupled to confocal scanning laser microscopy.
11 dynamic light scattering (DLS) and confocal laser microscopy.
17 detection, but is effective (as are confocal laser microscopy and endocytoscopy) for diagnosis of pol
18 nges on the application of confocal scanning laser microscopy and other advanced microscopic techniqu
19 ponse to hypoxia were determined by confocal laser microscopy and quantitative measurements of NF-kap
20 tum Dot conjugates was monitored by confocal laser microscopy, and colocalization within the endoplas
21 chromoendoscopy with magnification, confocal laser microscopy, and endocytoscopy) allow accurate real
22 aging technologies (cholangioscopy, confocal laser microscopy, and narrow band imaging) have been des
23 d fluorescence microscopy, confocal scanning laser microscopy, and transmission and scanning electron
24 ng high-speed videography, confocal scanning laser microscopy (CSLM), and scanning electron microscop
25 hat TLX1 directly binds to CBP, and confocal laser microscopy demonstrated that the two proteins part
26 xpression of the bovine gene was detected in laser microscopy-dissected lymph node lesions from an M.
27 including cell viability studies by confocal laser microscopy, electron microscopy, and measurements
28 sical characteristics that empower nonlinear laser microscopy for biological imaging are described.
29 a novel application of 3D confocal scanning laser microscopy for visualizing the architecture, depos
32 In particular, when combined with two-photon laser microscopy, intravital imaging of surgically expos
37 rcome the limitations of histology, confocal laser microscopy of microdissected whole crypts was used
38 n-responsive PC12 cells, as well as confocal laser microscopy of PC12 immunostained for surface alpha
41 we present a method termed oblique scanning laser microscopy (OSLM) to combine optical coherence tom
43 Using light, electron, and confocal scanning laser microscopy, P. aeruginosa biofilms were visualized
47 der the latter conditions, confocal scanning laser microscopy revealed large clusters of dead P. aeru
49 immunohistofluorescence followed by confocal laser microscopy revealed that subsets of prepubertal LH
50 ventional fluorescence and confocal scanning laser microscopy revealed that the brush border is suppo
51 ectrometry (ATR/FT-IR) and scanning confocal laser microscopy (SCLM) were used to study the role of a
55 sing scanning electron and confocal scanning laser microscopy showed that the presence of PBMCs enhan
57 annexin II antibodies and second by confocal laser microscopy showing co-localization of CEACAM1 with
60 of triple-fluorescence labeling and confocal laser microscopy, terminal fields of the greater superfi
61 these questions, we used two-photon scanning-laser microscopy to examine neutrophil migration in inta
63 ntisera to mGluR1a and mGluR2/3 and confocal laser microscopy to investigate the localization of thes
64 ubtilis were analyzed with confocal scanning laser microscopy to reveal a three-dimensional B. subtil
65 e used two-color flow cytometry and confocal laser microscopy to study bacterial uptake by Madin-Darb
67 sing bromouridine incorporation and confocal laser microscopy, we demonstrated that newly synthesized
68 Using an intact cortical mantle and confocal laser microscopy, we examined the spatiotemporal pattern
71 itative biofilm assays and confocal scanning laser microscopy, we observed that glucose inhibited bio
72 ng electron microscopy and confocal scanning laser microscopy were used to further characterize C. du
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