22 research outputs found
Protection factors over time per volunteer by type of mask worn.
<p>Please note different scale on Y-axis!</p
Median (IQR) protection factor by mask, by activity, by age category.
<p>IQR = interquartile range</p
Outward protection factors at a range of breathing flows for a mechanical head with different types of masks, with two meaurements per mask at each breathing flow.
<p>PFs for teacloth did not differ during the repeated measurement at each breathing flow, so light blue triangles overlap in figure.</p
Protection factor of home-made mask being measured by Portacount in volunteer.
<p>Volunteer with home-made mask made of tea cloth. Note the candles in the foreground and the other mask types in the background.</p
Median (IQR) protection factors at start and end of long term-experiment, by mask, by activity.
<p>IQR = interquartile range</p
Additional file 3: of Efficacy, effectiveness and safety of vaccination against human papillomavirus in males: a systematic review
GRADE evidence profile. (DOCX 24 kb
Additional file 5: of Herpes simplex virus type 1 and type 2 in the Netherlands: seroprevalence, risk factors and changes during a 12-year period
The effect of converting the number of partners in the past year to the number of partners in the past 6Â months. (DOC 50 kb
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原著和名: [記載なし]科名: トウダイグサ科 = Euphorbiaceae採集地: 岡山県 和気郡 日生町 (備前 和気郡 日生町)採集日: 1988/8/25採集者: 萩庭丈壽整理番号: JH026672国立科学博物館整理番号: TNS-VS-97667
Tetramer<sup>+</sup> CD8 T-cells are more activated than the overall CD8 T-cell population, but no more so at 24 than 12 months post-diagnosis.
<p>A histograms of the expression of Ki-67 in the overall CD8 T-cell population and tetramer<sup>+</sup> subpopulation of a representative sample collected 24 months post-diagnosis, with individual value plots indicating proportions of Ki-67<sup>+</sup>. B scatter plots of the expression of CD45R0 and CD45RA in the overall CD8 T-cell population and tetramer<sup>+</sup> subpopulation of a representative sample collected 24 months post-diagnosis, with individual value plots indicating proportions of CD45R0<sup>+</sup> cells and the CD45 ratio derived from all samples. C scatter plots of the expression of CD45R0 and HLA-D in the overall CD8 T-cell population and tetramer<sup>+</sup> subpopulation of a representative sample collected 24 months post-diagnosis, with individual value plots indicating proportions of HLA-D<sup>+</sup> and CD45R0<sup>+</sup>HLA-D<sup>+</sup> cells and the CD45 ratio derived from all samples. Significances indicate differences between both overall and tetramer<sup>+</sup> subpopulations. Grey bars indicate means. Significant differences between tetramer<sup>+</sup> and overall CD8 T-cell populations are indicated by *p<0.05, **p<0.005 or ***p<0.0005.</p
The CD8 T-cells of CMV-infected infants were more differentiated but no more activated than those of CMV-uninfected infants at 24 months of age.
<p>A Scatter plots of expression of CD27 and CD28 in representative samples and relative sizes of the three defined subpopulations in all infants sampled at 24 months of age. B Scatter plots of expression of CD62L and CD95 in representative samples and relative sizes of the CD62L<sup>+</sup> subpopulation in all infants sampled at 24 months of age. C Scatter plots of expression of CD45R0 and CD45RA in representative samples and relative sizes of the CD45RA<sup>bright</sup>CD45R0<sup>−</sup> subpopulation in all infants sampled at 24 months of age. D Scatter plots of expression of CD45R0 and HLA-D in representative samples and relative sizes of the HLA-D<sup>+</sup> subpopulation in all infants sampled at 24 months of age. Representative scatter plots are selected as those with the lower proportion of cells in the subpopulation of interest, or the CD27<sup>+</sup>CD28<sup>+</sup> subpopulation for part A, among CMV-uninfected infants and the median proportion for CMV-infected infants.</p