JohansenK.L., ChertowG.M., NgA.V.. Physical activity levels in patients on hemodialysis and healthy sedentary controlsKidney Int2000; 57: 2564–70.
2.
McIntyreC.W., SelbyN.M., SigristM., PearceL.E., MercerT.H., NaishP.F.Patients receiving maintenance dialysis have more severe functionally significant skeletal muscle wasting than patients with dialysis-independent chronic kidney disease.Nephrol Dial Transplant2006; 21: 2210–6.
3.
SterkyE., StegmayrB.G.Elderly patients on haemodialysis have 50% less functional capacity than gender-and age-matched healthy subjects.Scand J Urol Nephrol2005; 39: 423–30.
4.
JohansenK.L., DoyleJ., SakkasG.K., Kent-BraunJ.A.Neural and metabolic mechanisms of excessive muscle fatigue in maintenance hemodialysis patients.Am J Physiol Regul Integr Comp Physiol2005; 289: 805–13.
5.
FuhrmannI., KrauseR.Principles of exercising in patients with chronic kidney disease, on dialysis and for kidney transplant recipients.Clin Nephrol2004; 61(suppl 1): S14–25.
6.
O'HareA.M., TawneyK., BacchettiP., JohansenK.L.Decreased survival among sedentary patients undergoing dialysis: results from the dialysis morbidity and mortality study wave 2.Am J Kidney Dis2003; 41: 447–54.
7.
StackA.G., MolonyD.A., RivesT., TysonJ., MurthyB.V.Association of physical activity with mortality in the US dialysis population.Am J Kidney Dis2005; 45: 690–701.
8.
KouidiE.J.Central and peripheral adaptations to physical training in patients with end-stage renal disease.Sports Med2001; 31: 651–65.
9.
ClyneN.Physical working capacity and muscle strength in chronic renal failure are improved by exercise.Lakartidningen2004; 101: 4111–5.
10.
DeligiannisA.Exercise rehabilitation and skeletal muscle benefits in hemodialysis patients.Clin Nephrol2004; 61(suppl 1): S46–50.
11.
BeasleyC.R., SmithD.A., NealeT.J.Exercise capacity in chronic renal failure patients managed by continuous ambulatory peritoneal dialysis.Aust N Z J Med1986; 16: 5–10.
12.
JohansenK.L.Physical functioning and exercise capacity in patients on dialysis.Adv Ren Replace Ther1999; 6: 141–8.
13.
ThompsonC.H., KempG.J., TaylorD.J., LedinghamJ.G., RaddaG.K., RajagopalanB.Effect of chronic uraemia on skeletal muscle metabolism in man.Nephrol Dial Transplant1993; 8: 218–22.
14.
DieselW., EmmsM., KnightB.K.. Morphologic features of the myopathy associated with chronic renal failureAm J Kidney Dis1993; 22: 677–84.
15.
BradleyJ.R., AndersonJ.R., EvansD.B., CowleyA.J.Impaired nutritive skeletal muscle blood flow in patients with chronic renal failure.Clin Sci (Lond)1990; 79: 239–45.
16.
LimP.S., ChengY.M., WeiY.H.Increase in oxidative damage to lipids and proteins in skeletal muscle of uremic patients.Free Radic Res2002; 36: 295–301.
17.
HiattW.R., KoziolB.J., ShapiroJ.I., BrassE.P.Carnitine metabolism during exercise in patients on chronic hemodialysis.Kidney Int1992; 41: 1613–9.
SietsemaK.E., HiattW.R., EslerA., AdlerS., AmatoA., BrassE.P.Clinical and demographic predictors of exercise capacity in end-stage renal disease.Am J Kidney Dis2002; 39: 76–85.
20.
LeafD.A., KleinmanM.T., DeitrickR.W.The effects of exercise on markers of lipid peroxidation in renal dialysis patients compared with control subjects.Am J Med Sci2004; 327: 9–14.
21.
SangkabutraT., CrankshawD.P., SchneiderC.. Impaired K+ regulation contributes to exercise limitation in end-stage renal failure.Kidney Int2003; 63: 283–90.
22.
MayerG., ThumJ., GrafH.Anaemia and reduced exercise capacity in patients on chronic haemodialysis.Clin Sci (Lond)1989; 76: 265–8.
23.
Kettner-MelsheimerA., WeissM., HuberW.Physical work capacity in chronic renal disease.Int J Artif Organs1987; 10: 23–30.
24.
ClyneN., JogestrandT., LinsL.E., PehrssonS.K., EkelundL.G.Factors limiting physical working capacity in predialytic uraemic patients.Acta Med Scand1987; 222: 183–90.
25.
SuzukiM., TsutsuiM., YokoyamaA., HirasawaY., Normalization of hematocrit with recombinant human erythropoietin in chronic hemodialysis patients does not fully improve their exercise tolerance abilities.Int J Artif Organs1995; 19: 1258–61.
TsuyukiK., KimuraY., ChiashiK.. Oxygen uptake efficiency slope as monitoring tool for physical training in chronic hemodialysis patients.Ther Apher Dial2003; 7: 461–7.
28.
KoufakiP., MercerT.H., NaishP.F.Effects of exercise training on aerobic and functional capacity of end-stage renal disease patients.Clin Physiol Funct Imaging2002; 22: 115–24.
29.
ParsonsT.L., ToffelmireE.B., King-VanVlackC.E.Exercise training during hemodialysis improves dialysis efficacy and physical performance.Arch Phys Med Rehabil2006; 87: 680–7.
30.
Oh-ParkM., FastA., GopalS.. Exercise for the dialyzed: aerobic and strength training during hemodialysis.Am J Phys Med Rehabil2002; 81: 814–21.
31.
HeadleyS., GermainM., MaillouxP.. Resistance training improves strength and functional measures in patients with end-stage renal disease.Am J Kidney Dis2002; 40: 355–64.
32.
KouidiE., AlbaniM., NatsisK.. The effects of exercise training on muscle atrophy in haemodialysis patients.Nephrol Dial Transplant1998; 13: 685–99.
33.
LoW.K., ProwantB.F., MooreH.L.. Comparison of different measurements of lean body mass in normal individuals and in chronic peritoneal dialysis patients.Am J Kidney Dis1994; 23: 74–85.
34.
ThompsonC.H., KempG.J., BarnesP.R.. Uraemic muscle metabolism at rest and during exercise.Nephrol Dial Transplant1994; 9: 1600–5.
35.
DurozardD., PimmelP., BarettoS.. 31P NMR spectroscopy investigation of muscle metabolism in hemodialysis patients.Kidney Int1993; 43: 885–92.
36.
PainterP.Exercise for patients with chronic disease: physician responsibility.Curr Sports Med Rep2003; 2: 173–80.
37.
MooreG.E., PainterP.L., BrinkerK.R., Stray-GundersenJ., MitchellJ.H.Cardiovascular response to submaximal stationary cycling during hemodialysis.Am J Kidney Dis1998; 31: 631–7.
38.
van VilsterenM.C., de GreefM.H., HuismanR.M.The effects of a low-to-moderate intensity pre-conditioning exercise programme linked with exercise counselling for sedentary haemodialysis patients in The Netherlands: results of a randomized clinical trial.Nephrol Dial Transplant2005; 20: 141–6.
39.
HeiweS., TollbackA., ClyneN.Twelve weeks of exercise training increases muscle function and walking capacity in elderly predialysis patients and healthy subjects.Nephron2001; 88: 48–56.
40.
KugeN., SuzukiT., IsoyamaS.Does handgrip exercise training increase forearm ischemic vasodilator responses in patients receiving hemodialysis?Tohoku J Exp Med2005; 207: 303–12.
41.
BoyceM.L., RobergsR.A., AvasthiP.S.. Exercise training by individuals with predialysis renal failure: cardiorespiratory endurance, hypertension, and renal function.Am J Kidney Dis1997; 30: 180–92.
42.
HeiweS., ClyneN., TollbackA., BorgK.Effects of regular resistance training on muscle histopathology and morphometry in elderly patients with chronic kidney disease.Am J Phys Med Rehabil2005; 84: 865–74.
43.
KongC.H., TattersallJ.E., GreenwoodR.N., FarringtonK.The effect of exercise during haemodialysis on solute removal.Nephrol Dial Transplant1999; 14: 2927–31.
44.
VaithilingamI., PolkinghorneK.R., AtkinsR.C., KerrP.G.Time and exercise improve phosphate removal in hemodialysis patients.Am J Kidney Dis2004; 43: 85–9.
45.
RusR.R., PonikvarR., KendaR.B., Buturovic-PonikvarJ.Effect of local physical training on the forearm arteries and veins in patients with end-stage renal disease.Blood Purif2003; 21: 389–94.
46.
EidemakI., HaaberA.B., Feldt-RasmussenB., KanstrupI.L., StrandgaardS.Exercise training and the progression of chronic renal failure.Nephron1997; 75: 36–40.
47.
JohansenK.L.Exercise and chronic kidney disease: current recommendations.Sports Med2005; 35: 485–99.
48.
AndersonJ.E., BoivinM.R.Jr., HatchettL.Effect of exercise training on interdialytic ambulatory and treatment-related blood pressure in hemodialysis patients.Ren Fail2004; 26: 539–44.
49.
RidleyJ., HoeyK., Ballagh-HowesN.The exercise-during-hemodialysis program: report on a pilot study.J CANNT1999; 9(3): 20–6.
50.
MillerB.W., CressC.L., JohnsonM.E., NicholsD.H., SchnitzlerM.A.Exercise during hemodialysis decreases the use of antihypertensive medications.Am J Kidney Dis2002; 39: 828–33.
51.
ClyneN., EkholmJ., JogestrandT., LinsL.E., PehrssonS.K.Effects of exercise training in predialytic uremic patients.Nephron1991; 59: 84–9.
52.
GoldbergA.P., GeltmanE.M., GavinJ.R.. Exercise training reduces coronary risk and effectively rehabilitates hemodialysis patients.Nephron1986; 42: 311–6.
53.
LoC.Y., LiL., LoW.K.. Benefits of exercise training in patients on continuous ambulatory peritoneal dialysis.Am J Kidney Dis1998; 32: 1011–8.
54.
LatosD.L., StrimelD., DrewsM.H., AllisonT.G.Acid-base and electrolyte changes following maximal and submaximal exercise in hemodialysis patients.Am J Kidney Dis1987; 10: 439–45.
55.
StreetD., NielsenJ.J., BangsboJ., JuelC.Metabolic alkalosis reduces exercise-induced acidosis and potassium accumulation in human skeletal muscle interstitium.J Physiol2005; 566: 481–9.
56.
ParrishA.E.The effect of minimal exercise on the blood lactate in azotemic subjects.Clin Nephrol1981; 16: 35–9.
57.
FreyS., MirA.R., LucasM.Visceral protein status and caloric intake in exercising versus nonexercising individuals with end-stage renal disease.J Ren Nutr1999; 9: 71–7.
58.
LewisN.P., MacdougallI.C., WillisN., ColesG.A., WilliamsJ.D., HendersonA.H.Effects of the correction of renal anaemia by erythropoietin on physiological changes during exercise.Eur J Clin Invest1993; 23: 423–7.
MarradesR.M., RocaJ., CampistolJ.M.. Effects of erythropoietin on muscle O2 transport during exercise in patients with chronic renal failure.J Clin Invest1996; 97: 2092–100.