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L P Ponferrada

Publications and source records attributed to L P Ponferrada.

5 recordsLinked to original sources

Financial effect of clinical decisions: case study of a dialysis center.

The purpose of this study was to specify the financial effect of clinical decisions in a dialysis center. A consecutive sample of 14,343 outpatient hemodialysis treatments (OHD), 16,111 continuous ambulatory peritoneal dialysis (CAPD), and 4,513 chronic cycler-assisted peritoneal dialysis (CCPD) days of treatment was analyzed. An activity-based cost calculation method was applied to the analysis of alternative treatments (service bundles). The weekly cost of OHD was higher ($338 versus $241/$242), and the contribution margin (reimbursement minus total cost) of CAPD/CCPD was much greater ($.48 versus $148/$147 per patient week). Clinical decision-making had an influence on less than 6.8% of OHD and 45.4%/46.6% of CAPD/CCPD related expenses. In comparison to activity-based cost calculation, conventional methods overestimated the overhead expense of CAPD by 3-48%. This study documented that most cost control opportunities reside in the usual process of care and less can be influenced by a direct interference with the patient-physician contacts. Paying for 1 week of renal replacement (capitation) could simplify the process of reimbursement and cost tracking.

Ambulatory Care Facilities↗

Peritoneal dialysis kinetics.

Traditionally, for patients maintained with peritoneal dialysis (PD), the level of blood urea nitrogen (BUN), creatinine, and other clinical and laboratory data have been used to judge the adequacy of treatment. Because of the relatively high mortality rates in patients maintained with continuous PD, in the United States and the high failure rate of PD itself, concern has been raised about both the adequacy of PD and its measurement. Underdialysis could be a cause of morbidity and mortality that may be masked by a reduction in protein intake that also lowers the BUN, giving a false sense of security. The peritoneal equilibration test (PET) is widely applied to classify an individual patient's peritoneal membrane permeability but when used alone, the PET is not a measure of adequacy. Currently, for both hemodialysis and PD, the near universally accepted method of quantification is Kt/Vurea, an index of small molecule clearance also known as the fractional urea clearance per dialysis. The continuous or near continuous nature of PD requires a different interpretation of Kt/V, which is usually expressed on a weekly basis using a different set of standards. The currently accepted minimum is 1.7 per week for continuous dialysis (CAPD) with somewhat higher values for intermittent PD. Measurement of Kt/V for PD patients is more direct than for hemodialyzed patients but also more tedious and subject to some pitfalls. A representative clearance must be obtained from dialysate collected preferably over a 24-hour period, and an independent measure of the patient's urea volume or total body water is required. The latter is usually estimated from anthropometric data. The average rate of net protein catabolism, an index of protein nutrition, can be calculated from the urea generation rate obtained from the same 24-hour dialysate collection and normalized to the patient's urea volume, similar to PCRn measured in hemodialyzed patients. An allowance for loss of protein in the dialysate is accomplished by application of the Randerson equation, which is similar to the Borah equation used for hemodialysis. Prospective controlled trials are necessary to examine the relationship between nutrition and dialysis dosage. The hope of the future is that prospective studies of dialysis adequacy, including a full clinical assessment of each patient, will help to establish the optimal dose of PD that will eliminate both the short-term and the long-term complications of uremia and allow a proper focus on other common causes of morbidity and mortality that are associated with the loss of kidney function.

Glucose↗

Do peritoneal dialysis providers experience burnout?

The Maslach Burnout Inventory (MBI) was used to determine whether peritoneal dialysis (PD) providers experience burnout. The questionnaire was completed by 55 physicians, 277 nurses and 4 other PD providers who attended the 9th Annual Conference on Peritoneal Dialysis. Our results show that burnout experienced by PD providers is comparable to that experienced by other providers in the medical field. Specific variables such as single martial status, full time employment and additional hemodialysis responsibilities were also identified as factors that may be associated with high degree of burnout.

Adult↗

Tidal peritoneal dialysis with racemic or L-lactate solutions.

UNLABELLED: To see if rapid lactate absorption on tidal peritoneal dialysis (TPD) would overwhelm D-lactate metabolism using racemic lactate and/or L-lactate metabolism using all L-lactate, five patients underwent 8-h TPD treatments with racemic lactate solution one day and with L-lactate another. Lactate concentrations (total) were 40 mmole/L, flow rates 27.3 L/8 h, tidal and reservoir volumes each 1.5L, tidal cycles 24-26 min, and net ultrafiltration per tidal cycle 70 to 99 mL. RESULTS: Mean absorptions of D and L-lactate were 24.2 and 25.1%, respectively, compared to glucose at 14.6%. Urea clearances averaged 21.4 mL/min. Mean blood D-lactates at baseline were 0.6 +/- 0.5 SD mmole/L and after 8 h of TPD were 0.6 +/- 0.4 and 0.7 +/- 0.3 using L-lactate and racemic solutions, respectively; similar values for L-lactate were 1.2 +/- 0.3 at baseline and 1.2 +/- 0.3 and 1.2 +/- 0.5 after 8 h with L-lactate and racemic solutions. delta blood pH values were + 0.02 +/- 0.01 and + 0.04 +/- 0.03, while delta bicarbonate values were + 1.7 +/- 0.9 and + 0.7 +/- 1.0 for the all L and racemic studies, respectively. The total mmoles of L-lactate absorbed per 8 h of TPD with all L solution (greater than 300 mmoles) are greater than ever reported for peritoneal dialysis, but did not increase blood lactate levels. It would seem that either type of solution is suitable for TPD. Absorptions and metabolic rates are similar for L-Lactate and D-Lactate.

Adult↗