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1 at diversity requires the ability to perform single cell analysis.
2 sis provides a robust solution to label-free single cell analysis.
3 is a core challenge that is well suited for single cell analysis.
4 ion; an approach to surmount this problem is single cell analysis.
5 potential of this method for high-throughput single cell analysis.
6 tems for the development of technologies for single cell analysis.
7 formats can be cumbersome to parallelize for single-cell analysis.
8 representing a major step forward in dynamic single-cell analysis.
9 nterventional therapies based on multiplexed single-cell analysis.
10 significantly from what one would derive by single-cell analysis.
11 ll cycle-dependent component identified from single-cell analysis.
12 and Fas-mediated apoptosis as determined by single-cell analysis.
13 le high-throughput capture of rare cells and single-cell analysis.
14 thods have spatial resolution inadequate for single-cell analysis.
15 analytical platforms frequently utilized for single-cell analysis.
16 encing methods have limitations that prevent single-cell analysis.
17 is developing as a means of multiparametric single-cell analysis.
18 combining padlock probe RNA labeling with a single-cell analysis, a new approach effectively capture
20 HRH mRNA content per cell was quantitated by single-cell analysis after transcription inhibition with
23 ighlight the challenge posed by quantitative single cell analysis and the implications to performing
25 ed mass cytometry, a technique that combines single cell analysis and time-of-flight mass spectrometr
26 Using a combination of time-lapse in vivo single-cell analysis and Caenorhabditis elegans genetics
27 lar emphasis is placed on tools suitable for single-cell analysis and especially live-cell imaging ap
28 development of this technology will include single-cell analysis and function-based cell sorting cap
31 ll genetic diseases, can be detected through single-cell analysis and next-generation sequencing.
32 may be useful for high-throughput screening, single-cell analysis and studies of cell-cell communicat
34 s the prototypical assay for multi-parameter single cell analysis, and is essential in vaccine and bi
36 In this paper, we use time-lapse imaging, single-cell analysis, and embryo staining to comprehensi
39 nd understanding how they cooperate requires single-cell analysis, but current single-cell analytic m
40 rophoresis (CE) is a promising technique for single-cell analysis, but its use in biological studies
43 ss the opportunities that microfluidic based single cell analysis can bring into the drug discovery p
44 posed of ECs of varying morphology, and that single-cell analysis can be used to quantitate alteratio
45 y applied to any malignancy, illustrates how single-cell analysis can identify subpopulations of ther
47 g an efficient, high-throughput microfluidic single-cell analysis chip in combination with high-resol
52 g, proteomic profiling of autoantibodies and single-cell analysis demonstrated highly diversified ASC
54 eSplice is tailored to the unique demands of single cell analysis, detecting isoform usage difference
55 his fiber optic bridge was integrated into a single cell analysis device to detect an intact cell jus
56 idics is emerging as a powerful platform for single cell analysis, directed evolution of enzymes, and
57 cularly attractive microfluidic platform for single cell analysis due to their scalability, cell capt
60 ofluidic devices have several advantages for single cell analysis, few papers have actually demonstra
61 of CD4, CXCR-4, and CCR-5, as documented by single-cell analysis for expression and function, was in
63 a fundamental principle of cell biology, but single cell analysis has been beyond the capability of '
68 microfluidics, imaging, and high-throughput single-cell analysis, however, have led to a flurry of w
69 Microfluidic systems show great promise for single-cell analysis; however, as these technologies mat
70 lly isolated compartments can be applied for single-cell analysis; however, to investigate encapsulat
72 del proposed by Cheng et al. using real-time single cell analysis in macrophages expressing EGFP-tagg
74 ug accumulation in single cells, termed same-single-cell analysis in the accumulation mode (SASCA-A).
76 sulted in a loss of tolerance; hybridoma and single-cell analysis indicated an FcgammaRIIB-independen
80 In these and similar cases, our method of single cell analysis is critical for elucidating the div
85 retion and MHC tetramer staining assays, but single-cell analysis is difficult or impossible using th
87 may yield insights into tumor heterogeneity; single cell analysis may provide a key foundation for th
88 loped a fluorescent cell cycle indicator and single cell analysis method, called CycleTrak, which all
90 t dPCR provides a new tool in the arsenal of single-cell analysis methods, with a unique combination
93 ed co-immunoprecipitations in P. aeruginosa, single cell analysis of contact-dependent transcriptiona
98 that nanosensor arrays can enable real-time, single-cell analysis of a broad range of protein product
109 wild-type mice after challenge with MOG35-55 Single-cell analysis of encephalitogenic T cells using t
110 an now be monitored using mass spectrometry, single-cell analysis of flow cytometry, or fluorescent r
118 (MAARS) provides automatic and quantitative single-cell analysis of mitotic progression on an open-s
124 rage total cellular content as determined by single-cell analysis of the corresponding cell types.
125 irradiation is a powerful tool for real-time single-cell analysis of the DNA damage response (DDR).
128 barcoding method that allows a simultaneous single-cell analysis of the tumor, non-involved lung, an
129 spermidine requirement in biofilm formation, single-cell analysis of this mutant indicated reduced ex
131 ent in microfluidics that are aimed at total single cell analysis on chip, that is, from an individua
134 results further emphasize the advantages of single cell analysis over studies of population averages
135 cancer have led to the realization of novel single cell analysis platforms focused on circulating tu
136 kinase activity assays, flow cytometry based single-cell analysis, protein microarrays and interactio
138 que set of intrinsic cellular biomarkers for single-cell analysis, providing better differentiation o
139 d in quantitative proteomics, in particular, single cell analysis requiring high sensitivity and ultr
157 view that bacterial populations are clonal, single-cell analysis reveals that phenotypic heterogenei
158 tep, as it had been previously proposed, our single-cell analysis reveals the presence of at least tw
160 IL-3 acted directly on progenitor cells; single cell analysis showed that short-term exposure of
169 In this study, we formally demonstrate by single cell analysis that CD4+ lymphocytes with a classi
170 chnology for high-dimensional multiparameter single cell analysis that overcomes many limitations of
172 optive transfer protocol in combination with single cell analysis to define the complementarity deter
173 receptor signaling specificity, we utilized single cell analysis to determine the cellular distribut
177 tracked during inflammatory responses using single-cell analysis to define functional attributes.
179 However, attempts to harness array-CGH for single-cell analysis to provide improved resolution have
185 ances are consistent with previous work, and single-cell analysis uniquely reveals single-cell hetero
186 spheres can be retrieved and dissociated for single-cell analysis using a custom 96-gene panel to pro
187 cular and recurring chromosome combinations, single-cell analysis using AneuFinder reveals copy numbe
189 ization of Wnt proteins can also be used for single-cell analysis using Wnt-coated microbeads (12-18
190 ssociated with the initiation of cell death) single cell analysis was performed to evaluate mobile Ca
191 irculating progenitors, together with RT-PCR single-cell analysis, was used to evaluate and compare m
194 , correlative light electron microscopy, and single-cell analysis, we found that after infection, a p
201 nd chemoattractants that were identified via single-cell analysis, were verified as macrophage-depend
202 ce coatings, demonstrating the importance of single cell analysis when studying NP-cell interactions.
203 riety of fields, including microanalysis and single-cell analysis, where the amount of sample is limi
204 vides the tools necessary for multiparameter single cell analysis which will be critical for understa
205 o enable quantitative time-lapse imaging and single-cell analysis, which would be useful for other mi
206 SERS) has been increasingly investigated for single cell analysis with its ability to provide informa
207 hould ideally combine the resolving power of single-cell analysis with a dynamic paradigm for making
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