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1 ated gelatin and observed with a multiphoton confocal microscope.
2 hat can perform optical sectioning without a confocal microscope.
3 icle level is obtained with a laser scanning confocal microscope.
4 vealed by Lucifer yellow fluorescence with a confocal microscope.
5 cut frog muscle fibers with a laser scanning confocal microscope.
6 all volume defined by a narrow aperture of a confocal microscope.
7 uorescent product, which was detected by the confocal microscope.
8 regon Green 488 BAPTA-1 AM and viewed with a confocal microscope.
9 vealed by Lucifer yellow fluorescence with a confocal microscope.
10 d eyes were stained for OX42 and examined by confocal microscope.
11 ts an axial selectivity similar to that of a confocal microscope.
12 escent-labeled phalloidin, and viewed with a confocal microscope.
13 cules diffusing across the probe volume of a confocal microscope.
14 tle effect, as did blurring of sparks by the confocal microscope.
15 ith rhodamine phalloidin and examined with a confocal microscope.
16 ages within a single optical section using a confocal microscope.
17 examined within the same period by light and confocal microscope.
18 tor nerve terminals using a rapidly scanning confocal microscope.
19 re scanned, processed and analyzed using the confocal microscope.
20  fluorescence was measured by laser scanning confocal microscope.
21 he primary tumor in situ on a laser scanning confocal microscope.
22 scent probes and optically sectioned using a confocal microscope.
23  seen by indirect immunofluorescence using a confocal microscope.
24  beads was determined using a laser scanning confocal microscope.
25 eously using the Ca2+ indicator fluo-3 and a confocal microscope.
26  measured fluorescence with a laser scanning confocal microscope.
27  of intracellular organisms by using a laser confocal microscope.
28  corneal whole-mounts using a laser scanning confocal microscope.
29 ctions of the animals and quantified using a confocal microscope.
30 S forms oligomers and appears granular under confocal microscope.
31 and proteoliposomes in the focal volume of a confocal microscope.
32 of the mouse hippocampus with a conventional confocal microscope.
33  in a liquid cell mounted on a spinning-disk confocal microscope.
34 on with subcellular resolution on a standard confocal microscope.
35 d cDNA amplicons and sequenced manually on a confocal microscope.
36 r mechanical loading using a high-resolution confocal microscope.
37 at anti-mouse antibody, and examined under a confocal microscope.
38 ofluidic channel, and interrogated by a line-confocal microscope.
39 stom-built O(3) exposure system coupled to a confocal microscope.
40 clonal antibody and visualized under a laser confocal microscope.
41 ing and observing fluorescent molecules by a confocal microscope.
42 performed in live cells using a conventional confocal microscope.
43 ions and cell morphology was examined with a confocal microscope.
44 rescence from Fluo-5F using a laser-scanning confocal microscope.
45 l cell nuclei in images from the ConfoScan 4 confocal microscope.
46 ted with three wavelengths and imaged with a confocal microscope.
47 test to check the chromatic alignment of the confocal microscope.
48 induced fluorescence detection by a scanning confocal microscope.
49 ion spectroscopy (FCS) using a spinning disk confocal microscope.
50  in a controlled manner, while inserted in a confocal microscope.
51 in cellular systems using any standard laser confocal microscope.
52 ive, and applicable to existing widefield or confocal microscopes.
53 sers, thereby hindering FRET imaging on many confocal microscopes.
54 the ciliary and apical membranes inherent to confocal microscopes.
55 lasm, on all serial coronal sections under a confocal microscope, a total of 685,673 cells in 56 mice
56 cially available laser scanning fluorescence confocal microscope after immersion in a 0.6 mM solution
57 retical Ca2+ spark) and image formation in a confocal microscope (after measurement of its point-spre
58 re recorded at 240 Hz using a laser scanning confocal microscope, allowing observation of a large are
59                                      Second, confocal microscope analyses of infected cells labeled w
60                Combined with the findings of confocal microscope analysis examining the extent to whi
61                                              Confocal microscope analysis of [Ca(2+)](i) and (45)Ca(2
62                                     Detailed confocal microscope analysis shows that 4% rods, 6% prin
63                                   By using a confocal microscope and a bipotentiostat for control of
64 ecutive images collected on a laser scanning confocal microscope and ANALYZE software.
65 ur mice were immunostained and imaged with a confocal microscope and analyzed with image-analysis sof
66  the ConfoScan 4 (Nidek, Inc., Freemont, CA) confocal microscope and compare the densities with those
67          Ca(2+) sparks were recorded using a confocal microscope and Fluo-3 and were quantified consi
68                       Using a laser scanning confocal microscope and fluorescence Ca2+ indicators, we
69 he purpose of this review is to describe the confocal microscope and illustrate its recent ophthalmic
70 t dsDNA molecules in the focal volume of the confocal microscope and PDL.
71 c-specific promoter Prox1 and a custom-built confocal microscope and performed intravital real-time v
72 eled taste cells were imaged with a scanning confocal microscope and superfused with glutamate (30 mi
73 e examined three dimensionally under a laser confocal microscope and the location of each BrdU-labele
74 mages of the laser excitation profile of the confocal microscope and the topography of the sample.
75 lassical extensometers, ACME is mounted on a confocal microscope and uses confocal images to compute
76             We describe the core concepts of confocal microscopes and important variables that advers
77 ability of high-speed, two-dimensional (2-D) confocal microscopes and the expanding armamentarium of
78 using a spectrofluorometer, a laser scanning confocal microscope, and an inverted fluorescence micros
79 fluorescent dye; images were captured with a confocal microscope, and data were quantified using NIH
80               Image stacks were taken with a confocal microscope, and densities of cell populations w
81 ging (MRI), three-dimensional laser-scanning confocal microscope, and functional neurological tests,
82 ired with the laser scanning in vivo corneal confocal microscope, and peripapillary RNFL thickness wa
83 ebrain region was sectioned, scanned using a confocal microscope, and scored for the number of single
84 tained with propidium iodide, imaged using a confocal microscope, and stereologically analyzed.
85  three-dimensional optical sectioning with a confocal microscope, and the detailed optical characteri
86 red from the glass-fractal's surface using a confocal microscope, and the images were compared to the
87 the ventral stomach wall were scanned with a confocal microscope, and vagal axon bundles, single axon
88 on of image formation of the Ca2+ spark by a confocal microscope; and 3) using a novel automatic Ca2+
89 al system and the source of aberrations in a confocal microscope are considerably different and requi
90 in imaging experiments, however conventional confocal microscopes are limited in their field of view,
91 ements of the cornea, using a laser-scanning confocal microscope, are a valuable tool for the assessm
92 uo-4-loaded ICC using a Nipkow spinning disc confocal microscope at fast acquisition rates (50 fps).
93 mpatible with the standard configurations of confocal microscopes available to many researchers.
94                                      Using a confocal microscope, both hCNT1-CFP and hENT1-YFP were f
95 d the large volume of data produced by these confocal microscopes call for the need to develop algori
96 ween the ConfoScan 4 and the Tandem Scanning confocal microscope can be explained by the different op
97                          We present a unique confocal microscope capable of measuring the Raman and B
98                                       A spot-confocal microscope, capable of detecting single fluorop
99                                      Under a confocal microscope, cellular Sfhex exhibited punctate s
100              Serial optical sections using a confocal microscope confirmed that spores did not inheri
101                                       In the confocal microscope, DB3 bipolars costratified with OFF
102  complexes was interrogated using a scanning confocal microscope equipped with a 635-nm laser.
103                                            A confocal microscope equipped with a femtosecond-pulsed n
104       Live cells were imaged with a scanning confocal microscope equipped with a low-energy 980 nm la
105       Emission spectra were collected with a confocal microscope equipped with a spectrophotometric d
106 rotocol uses widely available laser-scanning confocal microscopes equipped with a conventional STED l
107 reened en masse on inoculated leaves using a confocal microscope fitted with water-dipping lenses.
108 subsequently imaged in three dimensions on a confocal microscope followed by morphometric analysis of
109  construction of a video-rate scanning laser confocal microscope for imaging human skin in vivo.
110 SM) doubles the resolution of a conventional confocal microscope for super-resolution imaging.
111 iI crystals and imaged with a laser-scanning confocal microscope for up to 8 hr.
112 rticle, we report a new type of fluorescence confocal microscope: frequency division multiplexed mult
113  Retina Tomograph III Rostock Corneal Module Confocal Microscope from 2010 to 2014 were analyzed.
114  great resolving power of the laser scanning confocal microscope has not been utilized to capture the
115 ecialized microscopes to commercial scanning confocal microscopes has led to widespread use of the te
116 onal variations in live human skin viewed by confocal microscope have not been studied so far.
117                                              Confocal microscopes have previously used either a singl
118                                              Confocal microscope image analysis of control S phase ce
119 n, total length, and area were measured from confocal microscope image stacks.
120  neuron recognition by using high-resolution confocal microscope images from human brain tissue, we p
121 loped to numerically simulate laser scanning confocal microscope images of Ca(2+) "sparks" in skeleta
122 sity distribution analysis to laser scanning confocal microscope images of cells stably expressing ei
123                                              Confocal microscope images show that AVE cells migrate a
124                                          The confocal microscope images were taken with each sample s
125 canning electron microscope (SEM) images and confocal microscope images were taken.
126  intracellularly distributed fluorescence in confocal microscope images.
127 tructure and distribution were obtained from confocal microscope images.
128 issue-scale measurements are quantified from confocal microscope images.
129                         V(c) was measured by confocal microscope imaging of fibres through their tran
130                                              Confocal microscope imaging shows that the surface expre
131                                        Using confocal microscope imaging techniques to obtain detaile
132 fluorescence staining, optical clearing, and confocal microscope imaging.
133 4 agreed with those from the Tandem Scanning confocal microscope in all regions of the stroma except
134         Intracellular Ca2+ was imaged with a confocal microscope in hair cells filled with the indica
135 and to those in scans by the Tandem Scanning confocal microscope in the same corneas.
136 vision multiplexed multichannel fluorescence confocal microscope, in which we encode the spatial loca
137 Cellular uptake of C-NE3TA, examined using a confocal microscope, indicates that the chelator is take
138 a staining by anti-pS609 as observed under a confocal microscope, indicating that a subpopulation of
139                        We report advances in confocal microscope instrumentation and methods, an opti
140                                          The confocal microscope is a unique diagnostic instrument th
141                      A sample scanning laser confocal microscope is operated in the customary way whi
142  major advantage of this unique fluorescence confocal microscope is that it not only has a high sensi
143 nmodified commercial Raman spectrometer in a confocal microscope mode of operation.
144  carry out this study, we developed a custom confocal microscope-mounted tensile testing device and s
145                                     Using 3D confocal microscope movies of GFP-tagged T cells undergo
146              In the present study, we used a confocal microscope on acute cerebellar slice preparatio
147 rotocol uses widely available laser-scanning confocal microscopes, open-source software, graphing sof
148 immobilized with blebbistatin using either a confocal microscope or an optical mapping system.
149                        The main advantage of confocal microscopes over their conventional counterpart
150                        The main advantage of confocal microscopes over their conventional counterpart
151 mulated and imaged on a horizontally mounted confocal microscope, pH(c) changes were only apparent wi
152    We have customized a Nipkow spinning disk confocal microscope (SDCM) to acquire three-dimensional
153                           Here, we develop a confocal microscope setup for vertical sample mounting a
154 d calcium with fluo-4 using a laser scanning confocal microscope showed local or global calcium trans
155                                  Through the confocal microscope, SOM-positive boutons were observed
156                       Cell fractionation and confocal microscope studies reveal that Trax is predomin
157 ed in images obtained by the Tandem Scanning confocal microscope (Tandem Scanning Corp., Reston, VA).
158 lamp and Lucifer yellow fluorescence (with a confocal microscope) techniques.
159 ults, we built a small, portable, and robust confocal microscope that is capable of imaging normal an
160 fluorescence microscope in contrast with the confocal microscope that is required for the current thr
161 ects simultaneously but independently, and a confocal microscope that provides fast three-dimensional
162 ecule spectroscopy by means of a two-channel confocal microscope that records transient fluorescence
163 we describe the multi-photon adaptation of a confocal microscope that uses an acoustic optical deflec
164                        Using a spinning-disk confocal microscope, the entire concentration field is c
165 P fusion protein to label cells/nuclei and a confocal microscope, the imaging protocol captures embry
166 EL assay and evaluated with a laser scanning confocal microscope to determine the percentage of apopt
167 ge of the optical sectioning properties of a confocal microscope to enable measurement of both absolu
168 integration and operation of the probes in a confocal microscope to enable visualization of fluoresce
169                            Using an inverted confocal microscope to examine living eggs, however, we
170              In the present study, we used a confocal microscope to examine morphogenetic changes and
171      We demonstrate the utility of the Raman confocal microscope to generate a spectral profile from
172 ough the lens of the eye or a laser scanning confocal microscope to image through the hypopigmented i
173 y after photobleaching (FRAP) technique on a confocal microscope to measure in situ and at the micros
174 re fluorescent microsphere samples, set up a confocal microscope to properly collect 3D confocal imag
175 ery after photobleaching in a laser-scanning confocal microscope to visualize in real time the exchan
176                                    Using the confocal microscope together with markers for the cellul
177                            A tandem scanning confocal microscope (TSCM) was used for corneal imaging.
178                                            A confocal microscope was adopted for morphologic observat
179                 A multicolor sample-scanning confocal microscope was constructed that allows one to i
180                                          The confocal microscope was modified to measure the anisotro
181 tion of line-scan images on a laser scanning confocal microscope was synchronized with measurement of
182                                            A confocal microscope was used to detect a laser-induced f
183                                            A confocal microscope was used to evaluate flatmounted spe
184 ustom-built second harmonic generation (SHG) confocal microscope was used to study dynamic sarcomeric
185      The system, integrated into a Nikon A1R confocal microscope, was used to uncage Ca(2)(+) or IP3
186 the large region of the cell surveyed by the confocal microscope, we can detect a large enough number
187                                Using a laser confocal microscope, we found that the majority of viabl
188 the feasibility of the proposed multichannel confocal microscope, we have developed a two-channel con
189 nimally invasive endoscope integrated into a confocal microscope, we performed fluorescence cellular
190 a straightforward addition to a conventional confocal microscope, we show confined primed conversion
191                                      Using a confocal microscope, we triggered local bursts of Ca2+-r
192              Fibre volumes (V) determined by confocal microscope x z - scanning of cutaneous pectoris
193                                              Confocal microscope xz-scanning monitored the changes in
194 ively, and effects on Vc were measured using confocal microscope xz-scanning.
195 ar microscopy (SP-2000P) and the Confoscan 4 confocal microscope (z-ring CS4) in measuring endothelia

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