55 research outputs found
Preface : âPractical Research on Gamification in Education (2)â
<p>(A) Areas under the curves (AUC) of receiver operating characteristics (ROC) in 746 patients for pentosidine in relation to all-cause mortality.(B) Areas under the curves (AUC) of receiver operating characteristics (ROC) in 746 patients for pentosidine in relation to CVD-mortality.</p
Diffusive and convective protein transport.
<p>Diffusive flow (continuous line) and convective flow (dashed line) through large pores (top panel), small pores with radius 45 Ă
, and small pores with radius 55 Ă
(bottom panels). Note the different scale of the vertical axes in the upper graph.</p
Information on the samples of patients.
<p>Age and vintage values are shown as median (range). No statistical differences were found in the parameters described.</p
Effects of changing R<sub>0</sub>.
<p>Left panel) linear correlation between different values of R<sub>0</sub> and calculated capillary hydraulic pressure. Median values of P<sub>c</sub> (continuous line) and quartiles (dotted lines). Right panel) values of lymphatic flow obtained with different R<sub>0</sub> (dashed lines), compared to the total refilling flow (line with squares).</p
Characteristics of the patients measured before each HD session expressed as median [quartiles].
<p>Characteristics of the patients measured before each HD session expressed as median [quartiles].</p
Operative conditions of the HD treatment before each session.
<p>* p-value < 0.05 when compared to the other groups.</p
General structure of the two-compartments model.
<p>Plasma and interstitial compartments are separated by the porous capillary membrane, in which 3 types of pores are present, LP, SP, UP (large, small and ultrasmall pores). Bi-directional transport of fluid and proteins happens across the membrane through the pore system (but UP are not permeable to proteins), and is complemented by a reabsorption of fluid and solute through the lymphatic vessels. Water is removed from vascular compartment by the HD machine.</p
Median values of the simulated protein flows between vascular and interstitial spaces during HD.
<p>Line with squares: net flow through pores; line with diamonds: lymphatic flow; dot and dash line: convection through large pores; continuous line: convection through small pores; dashed line: total diffusion. * = p < 0.05 for HD1 vs. HD3.</p
Median values of fluid flow through small pores calculated for different versions of the model.
<p>Continuous line: baseline model (r<sub>SP</sub>: 45Ă
, α<sub>SP</sub>: 0.6, R<sub>0</sub>: 0.4, LS: 0.4); line with squares: r<sub>SP</sub> 55Ă
; dashed line: α<sub>SP</sub> 0.8; dot and dash line: R<sub>0</sub> 0.6; dotted line: LS = 1.0. * = p < 0.01 against baseline value (only initial and final points tested).</p
Median values of the simulated fluid flows between vascular and interstitial space during HD.
<p>Line with squares: net filtration through pores; line with diamonds: lymphatic flow; dot and dash line: large pores; continuous line: small pores; dashed line: ultrasmall pores.</p
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