BibSLEIGH
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Used together with:
cell (8)
imag (6)
track (3)
applic (3)
autom (3)

Stem microscopi$ (all stems)

18 papers:

CASECASE-2014-RenfrewHHC #automation #image #segmentation
Automated segmentation and characterization of ion-abrasion scanning electron microscopy fuel cell images (MR, NH, AH, MCC), pp. 56–60.
ICPRICPR-2014-DongSFBC #3d
Three-Dimensional Deconvolution of Wide Field Microscopy with Sparse Priors: Application to Zebrafish Imagery (BD, LS, AFF, OB, MDC), pp. 865–870.
ICPRICPR-2014-IshaqEW #evaluation #performance
An Evaluation of the Faster STORM Method for Super-resolution Microscopy (OI, JE, CW), pp. 4435–4440.
ICPRICPR-2014-MajtnerSS #image #named #performance
RSURF — The Efficient Texture-Based Descriptor for Fluorescence Microscopy Images of HEP-2 Cells (TM, RS, DS), pp. 1194–1199.
ICMLICML-c1-2013-SznitmanLFJF #locality #policy
An Optimal Policy for Target Localization with Application to Electron Microscopy (RS, AL, PIF, BJ, PF), pp. 1–9.
ICPRICPR-2012-LiuJSET #classification #image #segmentation
Watershed merge tree classification for electron microscopy image segmentation (TL, EJ, MS, MHE, TT), pp. 133–137.
KDIRKDIR-2011-DAcuntoBDLPPS #3d #mining #re-engineering
Inferential Mining for Reconstruction of 3D Cell Structures in Atomic Force Microscopy Imaging (MD, SB, SD, ML, MP, AP, OS), pp. 348–353.
ICPRICPR-2010-ChowdhuryCGR #graph #using #video
Cell Tracking in Video Microscopy Using Bipartite Graph Matching (ASC, RC, MG, NR), pp. 2456–2459.
ICPRICPR-2010-JagerPCC #3d #analysis #using
Dual Channel Colocalization for Cell Cycle Analysis Using 3D Confocal Microscopy (SJ, KP, CSCD, MCC), pp. 2580–2583.
ICPRICPR-2010-LeskoKNGTVV #graph #segmentation
Live Cell Segmentation in Fluorescence Microscopy via Graph Cut (ML, ZK, AN, IG, ZT, LVJ, LV), pp. 1485–1488.
ICPRICPR-2010-UsenikVPL #automation #image
Automated Tracking of Vesicles in Phase Contrast Microscopy Images (PU, TV, FP, BL), pp. 2520–2523.
ICPRICPR-2008-MartinezFRS #3d
Three-dimensional cell counting for in-situ microscopy (GM, JGF, GR, TS), pp. 1–4.
ICPRICPR-2008-TauberRLCDO #automation #image #multi #performance #re-engineering
Fast and automatic reconstruction of structured illumination microscopy images with multiscale products (CT, PFGR, VL, NC, BD, JCOM), pp. 1–4.
CASECASE-2006-ChaoSZJM #analysis #automation #information management #using
Single-cell information extraction and viability analysis using automated microscopy (ShC, TJS, SZ, KAJI, DRM), pp. 33–38.
ICPRICPR-v1-2004-ZhuRL #3d #algorithm
A Landweber Algorithm for 3D Confocal Microscopy Restoration (DZ, MR, RAL), pp. 552–555.
ICPRICPR-v3-2000-Pech-PachecoCCF #case study #comparative
Diatom Autofocusing in Brightfield Microscopy: a Comparative Study (JLPP, GC, JCM, JFV), pp. 3318–3321.
ICPRICPR-v4-2000-ShottonRGT #biology #recognition
Object Tracking and Event Recognition in Biological Microscopy Videos (DMS, ARM, NG, OT), pp. 4226–4229.
ICPRICPR-1996-BoddekeSGY
Fluorescence lifetime determination for application in microscopy (FRB, VMES, LKvG, ITY), pp. 854–858.

Bibliography of Software Language Engineering in Generated Hypertext (BibSLEIGH) is created and maintained by Dr. Vadim Zaytsev.
Hosted as a part of SLEBOK on GitHub.