Energy requirements for patients in convalescent rehabilitation using motor scores as in the Functional Independent
Hiromasa Inoue1, Kokoro Morioka2, Kozue Okamoto2
1Department of Rehabilitation Medicine, Jyujyo Takeda Rehabilitation Hospital, Kyoto, Japan. h-inoue@takedahp.or.jp.
Background And Objectives:
Although appropriate nutrition management could improve rehabilitation outcomes, more than 40 % of patients in a convalescent rehabilitation ward (CRW) suffer from malnutrition. The study was undertaken to investigate whether adequate nutrition for each patient in a CRW could be estimated based on motor scores on the Functional Independence Measure (FIM-M).
Methods And Study Design:
In 218 patients in our CRW, both basal energy expenditure (BEE) on admission and average energy intake (EI) for 2 weeks were calculated, and EI was divided by BEE to estimate the activity index (e-AI). The patients were classified according to FIM-M to investigate the relationship between the FIM-M and the e-AI.
Results:
The e-AI tended to increase in proportion to the FIM-M. In the N group, where the increase-decrease rate for body weight was within 2%, the e-AI induced by a FIM-M greater than 60 was significantly higher than that induced by a FIM-M up to 60 (1.3 vs 1.1, p<0.01). Compared to the N group, altering the e-AI caused the same tendency of body weight change in patients with FIM-M greater than 60 and up to 60.
Conclusions:
The FIM-M could provide a criterial activity index for patients in a CRW when their energy requirement is appropriately estimated, considering the intensity of their physical activity.
Related Concept Videos
Energy-requiring Steps of Glycolysis
Free Energy
Introduction to Test of Independence
The test statistic for a test of independence is similar to that of a goodness-of-fit test:
Hypothesis Test for Test of Independence
H0: The two variables (factors)...
Gibbs Free Energy
Requirements for Human Life
Oxygen
Atmospheric air is only about 20 percent oxygen, but that oxygen is a key component of the chemical reactions that keep the body alive, including the reactions that produce ATP. Brain cells are susceptible to a lack of oxygen because they require a...


