monte carlo simulation matlab 2015b Search Results


99
Oxford Instruments biofilm images
PES UF membranes [unmodified and printed with RWRWRWA-(Bpa)] were subjected to P. aeruginosa under <t>biofilm</t> growth conditions for 96 h at a cross-flow velocity of 0.44 cm/min. The biovolume and average thickness of biofilm were quantified using CLSM, and the images below were simulated <t>by</t> <t>Imaris</t> software as the representative images of each sample (green: live cells, red: dead cells). * P = 0.022.
Biofilm Images, supplied by Oxford Instruments, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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96
MathWorks Inc 2015b
PES UF membranes [unmodified and printed with RWRWRWA-(Bpa)] were subjected to P. aeruginosa under <t>biofilm</t> growth conditions for 96 h at a cross-flow velocity of 0.44 cm/min. The biovolume and average thickness of biofilm were quantified using CLSM, and the images below were simulated <t>by</t> <t>Imaris</t> software as the representative images of each sample (green: live cells, red: dead cells). * P = 0.022.
2015b, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
ANSYS inc simulated antenna
PES UF membranes [unmodified and printed with RWRWRWA-(Bpa)] were subjected to P. aeruginosa under <t>biofilm</t> growth conditions for 96 h at a cross-flow velocity of 0.44 cm/min. The biovolume and average thickness of biofilm were quantified using CLSM, and the images below were simulated <t>by</t> <t>Imaris</t> software as the representative images of each sample (green: live cells, red: dead cells). * P = 0.022.
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96
MathWorks Inc trees toolbox
PES UF membranes [unmodified and printed with RWRWRWA-(Bpa)] were subjected to P. aeruginosa under <t>biofilm</t> growth conditions for 96 h at a cross-flow velocity of 0.44 cm/min. The biovolume and average thickness of biofilm were quantified using CLSM, and the images below were simulated <t>by</t> <t>Imaris</t> software as the representative images of each sample (green: live cells, red: dead cells). * P = 0.022.
Trees Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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97
MathWorks Inc optimization toolbox
PES UF membranes [unmodified and printed with RWRWRWA-(Bpa)] were subjected to P. aeruginosa under <t>biofilm</t> growth conditions for 96 h at a cross-flow velocity of 0.44 cm/min. The biovolume and average thickness of biofilm were quantified using CLSM, and the images below were simulated <t>by</t> <t>Imaris</t> software as the representative images of each sample (green: live cells, red: dead cells). * P = 0.022.
Optimization Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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99
Nikon elements ar 3 2 nikon instruments
PES UF membranes [unmodified and printed with RWRWRWA-(Bpa)] were subjected to P. aeruginosa under <t>biofilm</t> growth conditions for 96 h at a cross-flow velocity of 0.44 cm/min. The biovolume and average thickness of biofilm were quantified using CLSM, and the images below were simulated <t>by</t> <t>Imaris</t> software as the representative images of each sample (green: live cells, red: dead cells). * P = 0.022.
Elements Ar 3 2 Nikon Instruments, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


PES UF membranes [unmodified and printed with RWRWRWA-(Bpa)] were subjected to P. aeruginosa under biofilm growth conditions for 96 h at a cross-flow velocity of 0.44 cm/min. The biovolume and average thickness of biofilm were quantified using CLSM, and the images below were simulated by Imaris software as the representative images of each sample (green: live cells, red: dead cells). * P = 0.022.

Journal: ACS Omega

Article Title: Ink-Jet Printing-Assisted Modification on Polyethersulfone Membranes Using a UV-Reactive Antimicrobial Peptide for Fouling-Resistant Surfaces

doi: 10.1021/acsomega.8b00916

Figure Lengend Snippet: PES UF membranes [unmodified and printed with RWRWRWA-(Bpa)] were subjected to P. aeruginosa under biofilm growth conditions for 96 h at a cross-flow velocity of 0.44 cm/min. The biovolume and average thickness of biofilm were quantified using CLSM, and the images below were simulated by Imaris software as the representative images of each sample (green: live cells, red: dead cells). * P = 0.022.

Article Snippet: The volume and average thickness of the biofilm were quantitatively analyzed by Matlab 2015b with proprietary algorithms, and the simulated biofilm images were generated from Imaris 3D imaging software (Bitplane, Zurich, Switzerland).

Techniques: Software