id todo:paper_19343639_v_nSUPPL100_p_Bush
record_format dspace
spelling todo:paper_19343639_v_nSUPPL100_p_Bush2023-10-03T16:36:13Z Using cell-ID 1.4 with R for microscope-based cytometry Bush, A. Chernomoretz, A. Yu, R. Gordon, A. Colman-Lerner, A. Cell-ID Fluorescence microscopy Image processing R article cell structure cell tracking cellular distribution clinical protocol computer system confocal microscopy data analysis epifluorescence microscopy experimental study fluorescence imaging image cytometry image processing immunohistochemistry in situ hybridization microscope based cytometry microscope image priority journal statistical analysis biology cell tracking fluorescence microscopy fluorescence resonance energy transfer image processing instrumentation methodology Article bright field microscopy cell membrane cytometry data extraction fluorescence microscopy human imaging software mammal cell microscope nonhuman quantitative analysis yeast cell Cell Tracking Computational Biology Fluorescence Resonance Energy Transfer Image Cytometry Image Processing, Computer-Assisted Microscopy, Fluorescence Fil:Bush, A. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Chernomoretz, A. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Colman-Lerner, A. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_19343639_v_nSUPPL100_p_Bush
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Cell-ID
Fluorescence microscopy
Image processing
R
article
cell structure
cell tracking
cellular distribution
clinical protocol
computer system
confocal microscopy
data analysis
epifluorescence microscopy
experimental study
fluorescence imaging
image cytometry
image processing
immunohistochemistry
in situ hybridization
microscope based cytometry
microscope image
priority journal
statistical analysis
biology
cell tracking
fluorescence microscopy
fluorescence resonance energy transfer
image processing
instrumentation
methodology
Article
bright field microscopy
cell membrane
cytometry
data extraction
fluorescence microscopy
human
imaging software
mammal cell
microscope
nonhuman
quantitative analysis
yeast cell
Cell Tracking
Computational Biology
Fluorescence Resonance Energy Transfer
Image Cytometry
Image Processing, Computer-Assisted
Microscopy, Fluorescence
spellingShingle Cell-ID
Fluorescence microscopy
Image processing
R
article
cell structure
cell tracking
cellular distribution
clinical protocol
computer system
confocal microscopy
data analysis
epifluorescence microscopy
experimental study
fluorescence imaging
image cytometry
image processing
immunohistochemistry
in situ hybridization
microscope based cytometry
microscope image
priority journal
statistical analysis
biology
cell tracking
fluorescence microscopy
fluorescence resonance energy transfer
image processing
instrumentation
methodology
Article
bright field microscopy
cell membrane
cytometry
data extraction
fluorescence microscopy
human
imaging software
mammal cell
microscope
nonhuman
quantitative analysis
yeast cell
Cell Tracking
Computational Biology
Fluorescence Resonance Energy Transfer
Image Cytometry
Image Processing, Computer-Assisted
Microscopy, Fluorescence
Bush, A.
Chernomoretz, A.
Yu, R.
Gordon, A.
Colman-Lerner, A.
Using cell-ID 1.4 with R for microscope-based cytometry
topic_facet Cell-ID
Fluorescence microscopy
Image processing
R
article
cell structure
cell tracking
cellular distribution
clinical protocol
computer system
confocal microscopy
data analysis
epifluorescence microscopy
experimental study
fluorescence imaging
image cytometry
image processing
immunohistochemistry
in situ hybridization
microscope based cytometry
microscope image
priority journal
statistical analysis
biology
cell tracking
fluorescence microscopy
fluorescence resonance energy transfer
image processing
instrumentation
methodology
Article
bright field microscopy
cell membrane
cytometry
data extraction
fluorescence microscopy
human
imaging software
mammal cell
microscope
nonhuman
quantitative analysis
yeast cell
Cell Tracking
Computational Biology
Fluorescence Resonance Energy Transfer
Image Cytometry
Image Processing, Computer-Assisted
Microscopy, Fluorescence
description Fil:Bush, A. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina.
format JOUR
author Bush, A.
Chernomoretz, A.
Yu, R.
Gordon, A.
Colman-Lerner, A.
author_facet Bush, A.
Chernomoretz, A.
Yu, R.
Gordon, A.
Colman-Lerner, A.
author_sort Bush, A.
title Using cell-ID 1.4 with R for microscope-based cytometry
title_short Using cell-ID 1.4 with R for microscope-based cytometry
title_full Using cell-ID 1.4 with R for microscope-based cytometry
title_fullStr Using cell-ID 1.4 with R for microscope-based cytometry
title_full_unstemmed Using cell-ID 1.4 with R for microscope-based cytometry
title_sort using cell-id 1.4 with r for microscope-based cytometry
url http://hdl.handle.net/20.500.12110/paper_19343639_v_nSUPPL100_p_Bush
work_keys_str_mv AT busha usingcellid14withrformicroscopebasedcytometry
AT chernomoretza usingcellid14withrformicroscopebasedcytometry
AT yur usingcellid14withrformicroscopebasedcytometry
AT gordona usingcellid14withrformicroscopebasedcytometry
AT colmanlernera usingcellid14withrformicroscopebasedcytometry
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