dic microscopy Search Results


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Hamamatsu hbdnf-anti-htfr antibody fusion protein (hbdnf-anti-htfr antibody (3n) 1 and 2, and hbdnf-anti-htfr antibody (3n) abd
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Hamamatsu dic microscopy
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Evident Corporation dic light microscopy
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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SAS institute differential interference contrast (dic) microscopy-based rnai screen
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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Hamamatsu vec-dic microscopy
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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Bemis Inc differential interference contrast (dic) microscopy
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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Hamamatsu ir-dic video microscopy hamamatsu orca-er
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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Evident Corporation epifluorescence nomarski dic microscopy
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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Evident Corporation dic microscopy (olympus-bl53
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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NanoImaging Services Inc dic (differential interferance contrast) microscopy
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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Evident Corporation vec-dic/fl microscopy
Morphological appearance of erythrocytes visualized by <t>DIC</t> light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. <t>C:</t> <t>RBC</t> in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.
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CellTool Inc dic microscopy
C. jejuni wild type 81–176 and ΔkpsM show cell straightening in the presence of inhibitor 1. <t>DIC</t> <t>microscopy</t> images of C. jejuni 81–176 (A) and the acapsular ΔkpsM (D) without inhibitor (left) and treated with 2.3 mM inhibitor for 24h (right). Scatter plots arraying cell length (x-axis, µm) and side curvature (y-axis, arbitrary units) for 81–176 (B) and ΔkpsM (E) grown for 24 h with and without inhibitor 1. Each contour represents the morphology of a single cell from a 1000× DIC image as determined using CellTool software. Smooth histograms displaying population side curvature (x-axis, arbitrary units) as a density function (y-axis) for 81–176 (C) and ΔkpsM (F) grown for 24 h with and without inhibitor 1. Kolmogorov–Smirnov statistical comparisons of population cell side curvature distributions indicate that treated cells have significantly lower side curvatures than untreated cells (81–176, p<0.00001; ΔkpsM, p<0.00001, with p<0.05 indicating significance).
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Image Search Results


Morphological appearance of erythrocytes visualized by DIC light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. C: RBC in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.

Journal: Clinical hemorheology and microcirculation

Article Title: Effects of ethanol on red blood cell rheological behavior

doi: 10.3233/CH-2012-1632

Figure Lengend Snippet: Morphological appearance of erythrocytes visualized by DIC light microscopy. A: Untreated cells in PBS. B: Erythrocytes in PBS with 2% ethanol concentration. C: RBC in the LORCA viscous medium (dextran). D: Erythrocytes in dextran containing 2% ethanol.

Article Snippet: RBC shape was evaluated by DIC light microscopy (model BX50F; Olympus, Tokyo, Japan).

Techniques: Light Microscopy, Concentration Assay

C. jejuni wild type 81–176 and ΔkpsM show cell straightening in the presence of inhibitor 1. DIC microscopy images of C. jejuni 81–176 (A) and the acapsular ΔkpsM (D) without inhibitor (left) and treated with 2.3 mM inhibitor for 24h (right). Scatter plots arraying cell length (x-axis, µm) and side curvature (y-axis, arbitrary units) for 81–176 (B) and ΔkpsM (E) grown for 24 h with and without inhibitor 1. Each contour represents the morphology of a single cell from a 1000× DIC image as determined using CellTool software. Smooth histograms displaying population side curvature (x-axis, arbitrary units) as a density function (y-axis) for 81–176 (C) and ΔkpsM (F) grown for 24 h with and without inhibitor 1. Kolmogorov–Smirnov statistical comparisons of population cell side curvature distributions indicate that treated cells have significantly lower side curvatures than untreated cells (81–176, p<0.00001; ΔkpsM, p<0.00001, with p<0.05 indicating significance).

Journal: ACS chemical biology

Article Title: A Bacterial Cell Shape-Determining Inhibitor

doi: 10.1021/acschembio.5b01039

Figure Lengend Snippet: C. jejuni wild type 81–176 and ΔkpsM show cell straightening in the presence of inhibitor 1. DIC microscopy images of C. jejuni 81–176 (A) and the acapsular ΔkpsM (D) without inhibitor (left) and treated with 2.3 mM inhibitor for 24h (right). Scatter plots arraying cell length (x-axis, µm) and side curvature (y-axis, arbitrary units) for 81–176 (B) and ΔkpsM (E) grown for 24 h with and without inhibitor 1. Each contour represents the morphology of a single cell from a 1000× DIC image as determined using CellTool software. Smooth histograms displaying population side curvature (x-axis, arbitrary units) as a density function (y-axis) for 81–176 (C) and ΔkpsM (F) grown for 24 h with and without inhibitor 1. Kolmogorov–Smirnov statistical comparisons of population cell side curvature distributions indicate that treated cells have significantly lower side curvatures than untreated cells (81–176, p<0.00001; ΔkpsM, p<0.00001, with p<0.05 indicating significance).

Article Snippet: Cell morphology was monitored by DIC microscopy (described below) over 24 h. At 24 h, changes in cell morphology were quantified by CellTool analysis on images from DIC microscopy (described below).

Techniques: Microscopy, Software