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1 mic capillary diameter: 5.1 +/- 0.1 microns (bright field, 39 capillaries in 10 animals) and 5.1 +/-
2 ization methodology composed of quantitative bright-field absorbance microscopy (QBAM) and deep neura
3 on the human expert analysis of conventional bright-field and birefringence images were performed.
4 res was confirmed by particle size analysis, bright-field and cryogenic transmission electron microsc
6 havior are identified for further study from bright-field and dark-field light-microscopy modes, resp
7 ce expressing only human HbC were studied by bright-field and differential interference contrast vide
10 opically as follows: (i) in wet mounts (with bright-field and epifluorescence microscopy), (ii) in mo
16 gh-spatial-resolution ex vivo MR imaging and bright-field and immunofluorescent histologic examinatio
17 the ATX1 catalytic domain (atx1setm) through bright-field and long-term time-lapse confocal microscop
18 icrovasculature was imaged non-invasively by bright-field and multi-photon laser microscopy, and opti
19 h complementary studies also performed using bright-field and polarised light microscopy, small-angle
23 lt microscope to record large field-of-view, bright-field, and fluorescence images of samples that ar
24 the cost of targeting the N-terminus, while bright field APP C-terminus studies were performed for 1
27 in situ hybridization represents a promising bright-field assay for the assessment of HER-2/neu gene
33 lysis of cellular processes with microscopic bright field defocused imaging has the advantage of low
34 We present an integrative method combining bright-field dual-colour chromogenic and silver ISH assa
35 algorithm through simulated and experimental bright-field electron tomography data, showing significa
37 e is successfully applied to phase contrast, bright field, fluorescence microscopy and binary images.
38 ns: multimodal FACED imaging flow cytometry (bright-field, fluorescence and second-harmonic generatio
39 irmed using 3 different types of microscopy (bright-field, fluorescence, and electron), 2 additional
40 nsemble learning model to detect whether any bright-field frame showed an embryo before or after onse
41 Streptavidin-Nanogold was used to generate bright-field gene copy signals using GoldEnhance gold-ba
42 th high-angle annular dark-field and annular bright-field (HAADF and ABF) imaging and nanoscale compo
44 ., intrinsic UV fluorescence, birefringence, bright-field image analysis, etc.) is often complicated
51 sistent with those of Bragg fringe widths in bright-field images obtained at lower magnification.
52 tions into images that are equivalent to the bright-field images of histologically stained versions o
53 D archives multi-wavelength fluorescence and bright-field images of tissue microarrays for scoring an
55 e flow cytometer can extract high-resolution bright-field images with a spatial resolution <700 nm us
56 , and is applicable to both fluorescence and bright-field images, and requires little to no prior kno
57 subdermal blood vessels by using intravital bright-field images, hyperspectral imaging, fluorescence
61 ble automated identification of particles by bright field imaging, followed by classification by SHG.
64 ply, as the only experimental step comprises bright-field imaging of culture-media samples followed b
65 Specifically, we performed high-throughput bright-field imaging of numerous drug-treated and -untre
67 mples in the presence of aberrations using a bright-field imaging setup operating with a source of sp
68 itative mathematical analysis of the dynamic bright-field imaging shows that defect clusters preferen
70 lular drug responses only by high-throughput bright-field imaging with the aid of machine learning al
71 copy (e.g., multicolor fluorescence imaging, bright-field imaging), cell focusing, cell sorting, and
72 rtilization wild-type embryos, and uses only bright-field imaging, circumventing requirement for anes
73 , using fluorescence-activated cell sorting, bright-field imaging, immunofluorescence, and RNA analys
76 mple experimental setup, based on a standard bright-field inverted microscope (no fluorescence requir
78 n and the concomitant aggregation of LDLs by bright-field light microscopy and cryogenic transmission
79 e molecular binding events under an ordinary bright-field microscope and serve as a diffraction grati
82 e parameters per sample, using a traditional bright-field microscope-based flow assay allows only one
83 n can expand the functionality of commercial bright field microscopes, provide easy field detection o
85 roduce the XFEL DFXM setup with simultaneous bright field microscopy to probe density changes within
86 severe to mild lymphocytic infiltrations by bright field microscopy were examined in parallel with i
87 ion, (e) distorted posterior suture lines by bright field microscopy, and (f) development of a mild a
88 l immunofluorescent microscopy, single label bright field microscopy, and electron microscopy (EM).
90 small angle neutron scattering, rheology and bright field microscopy, we identify the coexistence of
95 Schaub and colleagues combined quantitative bright-field microscopy and artificial intelligence (dee
96 -positive cells were counted by conventional bright-field microscopy and confirmed by confocal micros
97 This method is based on fluorescence and bright-field microscopy and on a custom MATLAB program t
98 methods to trace impregnated dendrites from bright-field microscopy images that enabled accurate 3-d
101 is using clinical histopathology is based on bright-field microscopy of thinly sliced tissue specimen
104 om an aqueous stream into plugs, (iii) using bright-field microscopy to detect the formation of a fib
105 ective under different recording conditions (bright-field microscopy with simultaneous patch-clamp re
106 bserving wound closure with fluorescence and bright-field microscopy, (2) histology to quantify infla
107 s, which is currently performed manually via bright-field microscopy, and toward the development of a
109 vide a means of locating single molecules by bright-field microscopy, prior to single-molecule detect
115 llows switching between epifluorescence/TIRF/bright field modes without adjustments or objective repl
120 g a diverse range of microscopic techniques (bright field, phase contrast, differential interference
121 ening drug discovery platforms, for example, bright-field, phase contrast, and fluorescence microscop
122 the contributions of light microscopy, i.e., bright-field, polarization, differential interference co
123 introduce quantitative image restoration in bright field (QRBF), a digital image processing method t
124 d magnetite by employing a strain-sensitive, bright-field scanning transmission electron microscopy a
125 ls and large organelles using tilt-corrected bright-field scanning transmission electron microscopy c
126 can be rapidly obtained using tilt-corrected bright-field scanning transmission electron microscopy d
134 ively, is discussed as well as comparison to bright field transmission electron microscopy imaging th
135 rganization of the crystals were examined by bright-field transmission electron microscopy and electr
137 a much higher contrast than that achieved in bright-field transmission electron microscopy imaging of