Which Predictive Equation Of Resting Energy Expenditure Has The Best Agreement With Indirect Calorimetry In Elderly Patients On Hemodialysis?

As the incidence of elderly patients initiating dialysis has been increasing, there is a need to develop specialized care to them. According to the European Best Practice Guideline, the energy needs of hemodialysis (HD) patients should be estimated by multiplying the resting energy expenditure (REE)...

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Main Authors: Juliana Rodrigues, Fernando Lamarca, Renata Fetter, Fernanda Bigogno, Cecilia Oliveira, Maria Kamimura, Flavia Baria, Lilian Cuppari, Carla Avesani
Format: Article
Language:English
Published: The Korean Society of Nephrology 2012-06-01
Series:Kidney Research and Clinical Practice
Online Access:http://www.sciencedirect.com/science/article/pii/S2211913212006535
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author Juliana Rodrigues
Fernando Lamarca
Renata Fetter
Fernanda Bigogno
Cecilia Oliveira
Maria Kamimura
Flavia Baria
Lilian Cuppari
Carla Avesani
author_facet Juliana Rodrigues
Fernando Lamarca
Renata Fetter
Fernanda Bigogno
Cecilia Oliveira
Maria Kamimura
Flavia Baria
Lilian Cuppari
Carla Avesani
author_sort Juliana Rodrigues
collection DOAJ
description As the incidence of elderly patients initiating dialysis has been increasing, there is a need to develop specialized care to them. According to the European Best Practice Guideline, the energy needs of hemodialysis (HD) patients should be estimated by multiplying the resting energy expenditure (REE), obtained by predictive equations, for the physical activity factor. The predictive equation that yields better agreement to the indirect calorimetry in elderly patients on HD has not been rated yet. We aimed to evaluate the agreement between indirect calorimetry (IC) and the predictive equations of Harris&Benedict (HB), Schofield and WHO/FAO 1985. Fifty-seven elderly patients (38 males (67%); 69±6 years) on HD were included. The REE (kcal/day) estimated by the equations were higher than that measured by IC: IC (1246 ±288); HB (1443 ±279); Schofield (1357 ±232); WHO 1985 (1384 ±226) (P<0.05). The HB equation had the lowest intraclass correlation coefficient (ICC), the highest mean difference from the REE measured by IC and a high frequency of overestimation (Table). Intraclass CC (r; 95% CI) Bland-Altman* REE overestimation (%[n]) HB x REE 0.53(0.31;0.69) 188(-331; 709 59.6 [34] Schofield x REE 0.72(0.57;0.83) 112(-248; 472) 56.1 [32] WHO 1985 x REE 0.74(0.60;0.84) 139(-222; 499) 59.6 [34] ⁎ Mean difference and interquartile range; CI: confidence interval In conclusion, all predicted equations overestimated the REE in elderly HD patients. Among them, the HB equation had the worse agreement with IC.
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spelling doaj.art-5936eb8170be48c1bcd8153e80be35ea2022-12-22T01:48:45ZengThe Korean Society of NephrologyKidney Research and Clinical Practice2211-91322012-06-01312A9110.1016/j.krcp.2012.04.620Which Predictive Equation Of Resting Energy Expenditure Has The Best Agreement With Indirect Calorimetry In Elderly Patients On Hemodialysis?Juliana RodriguesFernando LamarcaRenata FetterFernanda BigognoCecilia OliveiraMaria KamimuraFlavia BariaLilian CuppariCarla AvesaniAs the incidence of elderly patients initiating dialysis has been increasing, there is a need to develop specialized care to them. According to the European Best Practice Guideline, the energy needs of hemodialysis (HD) patients should be estimated by multiplying the resting energy expenditure (REE), obtained by predictive equations, for the physical activity factor. The predictive equation that yields better agreement to the indirect calorimetry in elderly patients on HD has not been rated yet. We aimed to evaluate the agreement between indirect calorimetry (IC) and the predictive equations of Harris&Benedict (HB), Schofield and WHO/FAO 1985. Fifty-seven elderly patients (38 males (67%); 69±6 years) on HD were included. The REE (kcal/day) estimated by the equations were higher than that measured by IC: IC (1246 ±288); HB (1443 ±279); Schofield (1357 ±232); WHO 1985 (1384 ±226) (P<0.05). The HB equation had the lowest intraclass correlation coefficient (ICC), the highest mean difference from the REE measured by IC and a high frequency of overestimation (Table). Intraclass CC (r; 95% CI) Bland-Altman* REE overestimation (%[n]) HB x REE 0.53(0.31;0.69) 188(-331; 709 59.6 [34] Schofield x REE 0.72(0.57;0.83) 112(-248; 472) 56.1 [32] WHO 1985 x REE 0.74(0.60;0.84) 139(-222; 499) 59.6 [34] ⁎ Mean difference and interquartile range; CI: confidence interval In conclusion, all predicted equations overestimated the REE in elderly HD patients. Among them, the HB equation had the worse agreement with IC.http://www.sciencedirect.com/science/article/pii/S2211913212006535
spellingShingle Juliana Rodrigues
Fernando Lamarca
Renata Fetter
Fernanda Bigogno
Cecilia Oliveira
Maria Kamimura
Flavia Baria
Lilian Cuppari
Carla Avesani
Which Predictive Equation Of Resting Energy Expenditure Has The Best Agreement With Indirect Calorimetry In Elderly Patients On Hemodialysis?
Kidney Research and Clinical Practice
title Which Predictive Equation Of Resting Energy Expenditure Has The Best Agreement With Indirect Calorimetry In Elderly Patients On Hemodialysis?
title_full Which Predictive Equation Of Resting Energy Expenditure Has The Best Agreement With Indirect Calorimetry In Elderly Patients On Hemodialysis?
title_fullStr Which Predictive Equation Of Resting Energy Expenditure Has The Best Agreement With Indirect Calorimetry In Elderly Patients On Hemodialysis?
title_full_unstemmed Which Predictive Equation Of Resting Energy Expenditure Has The Best Agreement With Indirect Calorimetry In Elderly Patients On Hemodialysis?
title_short Which Predictive Equation Of Resting Energy Expenditure Has The Best Agreement With Indirect Calorimetry In Elderly Patients On Hemodialysis?
title_sort which predictive equation of resting energy expenditure has the best agreement with indirect calorimetry in elderly patients on hemodialysis
url http://www.sciencedirect.com/science/article/pii/S2211913212006535
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