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The aims of this study were therefore to develop an equation that could be used to estimate the percentage water content of cartilage tissue based on T1-weighted MR images, and to assess the performance of this equation in vivo.
MDRD formula was derived from a population predominantly with CKD and the efficient performance of this equation in general population is open to question [ 34].
Khajuria and Krahn (30) investigated the predictive capacity of coefficients for glucose, which may explain the good performance of this equation in our population and the maintenance of accuracy in both diabetic and non-diabetic patients.
The performance of this equation was compared with a previously published equation (adjusted [Ca](mmol/L) = total [Ca](mmol/L) + 0.02 (40 - [albumin] (g/L)) in 343 subjects with albumin < 33 g/L (below reference range).
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The rG-CystC equation showed a marked bias and our findings suggest that myocardial infarction alters the performance of the equation and other pathophysiological mechanisms are probably involved in the rise of cystatin C. According to our results, MDRD and CKD EPI should be the formulas used for estimation of GFR in the acute phase of STEMI as they showed a good overall performance.
However, the recent article by Inker (10) for the CKD-EPI Investigators suggests that the combined equation may perform better than the individual equations, although they did not specifically address performance of the equations in type 1 diabetes.
The performance of these equations in kidney transplant recipients is unclear, with conflicting results between studies.
However, the inclusion of Ĥ as predictor variable did not improve the performance of the equations significantly.
The performance of these equations is evaluated, and the limitations of their use are discussed, thus providing useful insights into hydrocyclone design.
Simulation results show that the performance of the equation-based adaptive search is significantly better than the non-adaptive random walk and other straight-forward adaptive mechanisms.
The performance of these equations is fairly good but none has been established for general use.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com