1)上月正博. 腎臓リハビリテーションの定義とエビデンス.In: 上月正博,編著.腎臓リハビリテーション. 東京: 医歯薬出版; 2012. p. 10-7
|
|
|
2)社団法人日本透析医学会ホームページ図説わが国の慢性透析療法の現況. Available from: URL: http: //docs. jsdt. or. jp/overview/index. html (2012年6月17日引用)
|
|
|
3)上月正博.腎臓リハビリテーション:現況と将来展望.リハ医学. 2006; 43: 105-9
|
|
|
4)Smart N, Steele M. Exercise training in haemodialysis patients: a systematic review and meta-analysis. Nephrology (Carlton). 2011; 16: 626-32
|
|
|
5)Tentori F, Elder SJ, Thumma J, et al. Physical exercise among participants in the Dialysis Outcomes and Practice Patterns Study (DOPPS): correlates and associated outcomes. Nephrol Dial Transplant. 2010; 25: 3050-62
|
|
|
6)Balakrishnan VS, Rao M, Menon V, et al. Resistance training increases muscle mitochondrial biogenesis in patients with chronic kidney disease. Clin J Am Soc Nephrol. 2010; 5: 996-1002
|
|
|
7)Wang XH, Du J, Klein JD, et al. Exercise ameliorates chronic kidney disease-induced defects in muscle protein metabolism and progenitor cell function. Kidney Int. 2009; 76: 751-9
|
|
|
8)Dong J, Sundell MB, Pupim LB, et al. The effect of resistance exercise to augment long-term benefits of intradialytic oral nutritional supplementation in chronic hemodialysis patients. J Ren Nutr. 2011; 21: 149-59
|
|
|
9)Cheema BS, Abas H, Smith BC, et al. Effect of resistance training during hemodialysis on circulating cytokines: a randomized controlled trial. Eur J Appl Physiol. 2011; 111: 1437-45
|
|
|
10)Johansen KL, Painter P. Exercise in individuals with CKD. Am J Kidney Dis. 2012; 59: 126-34
|
|
|
11)Heiwe S, Jacobson SH. Exercise training for adults with chronic kidney disease. Cochrane Database Syst Rev. 2011; 10: CD003236
|
|
|
12)Kosmadakis GC, John SG, Clapp EL, et al. Benefits of regular walking exercise in advanced pre-dialysis chronic kidney disease. Nephrol Dial Transplant. 2012; 27: 997-1004
|
|
|
13)Mustata S, Groeneveld S, Davidson W, et al. Effects of exercise training on physical impairment, arterial stiffness and health-related quality of life in patients with chronic kidney disease: a pilot study. Int Urol Nephrol. 2011; 43: 1133-41
|
|
|
14)Toyama K, Sugiyama S, Oka H, et al. Exercise therapy correlates with improving renal function through modifying lipid metabolism in patients with cardiovascular disease and chronic kidney disease. J Cardiol. 2010; 56: 142-6
|
|
|
15)エビデンスに基づくCKD診療ガイドライン. 日本腎臓学会, 編. http: //www. jsn. or. jp/ckd/ckd 2009_764. php
|
|
|
16)Clapp EL, Bevington A. Exercise-induced biochemical modifications in muscle in chronic kidney disease: occult acidosis as a potential factor limiting the anabolic effect of exercise. J Ren Nutr. 2011; 21: 57-60
|
|
|
17)Workeneh BT, Mitch WE. Review of muscle wasting associated with chronic kidney disease. Am J Clin Nutr. 2010; 91: 1128S-32S
|
|
|
18)Alebiosu CO, Ayodele OE. The global burden of chronic kidney disease and the way forward. Ethn Dis. 2005; 15: 418-23
|
|
|
19)Morales E, Praga M. The effect of weight loss in obesity and chronic kidney disease. Curr Hypertens Rep. 2012; 14: 170-6
|
|
|
20)Straznicky NE, Grima MT, Lambert EA, et al. Exercise augments weight loss induced improvement in renal function in obese metabolic syndrome individuals. J Hypertens. 2011; 29: 553-64
|
|
|
21)Brinkworth GD, Buckley JD, Noakes M, et al. Renal function following long-term weight loss in individuals with abdominal obesity on a very-low carbohydrate diet versus high carbohydrate diet. J Am Diet Assoc. 2010; 110: 633-8
|
|
|
22)Deike E, Bowden RG, Moreillon JJ, et al. The effects of fish oil supplementation on markers of inflammation in chronic kidney disease patients. J Ren Nutr. 2012 Jan 26. [Epub ahead of print]
|
|
|
23)Tomayko EJ, Chung HR, Wilund KR. Soy protein diet and exercise training increase relative bone volume and enhance bone microarchitecture in a mouse model of uremia. J Bone Miner Metab. 2011; 29: 682-90
|
|
|
24)Ciampone S, Borges R, de Lima IP, et al. Long-term exercise attenuates blood pressure responsiveness and modulates kidney angiotensin II signalling and urinary sodium excretion in SHR. J Renin Angiotensin Aldosterone Syst. 2011; 12: 394-403
|
|
|
25)Agarwal D, Elks CM, Reed SD, et al. Chronic exercise preserves renal structure and hemodynamics in spontaneously hypertensive rats. Antioxid Redox Signal. 2012; 16: 139-52
|
|
|
26)Garcia-Pinto AB, de Matos VS, Rocha V, et al. Low-intensity physical activity beneficially alters the ultrastructural renal morphology of spontaneously hypertensive rats. Clinics (Sao Paulo). 2011; 66: 855-63
|
|
|
27)Moningka NC, Sindler AL, Muller-Delp JM. Twelve weeks of treadmill exercise does not alter age-dependent chronic kidney disease in the Fisher 344 male rat. J Physiol. 2011; 589(Pt 24): 6129-38
|
|
|
28)Zhao J, Tian Y, Cao J, et al. Mechanism of endurance training-induced erythrocyte deformability in rats involves erythropoiesis. Clin Hemorheol Microcirc. 2012 [Epub ahead of print]
|
|
|
29)Broderick TL, El Midaoui A, Chiasson JL, et al. The effects of exercise training on γ-butyr-obetaine hydroxylase and novel organic cation transporter-2 gene expression in the rat. Appl Physiol Nutr Metab. 2011; 36: 781-9
|
|
|
30)Poortmans JR, Mathieu N, De Plaen P. Influence of running different distances on renal glomerular and tubular impairment in humans. Eur J Appl Physiol Occup Physiol. 1996; 72: 522-7
|
|
|
31)Clorius JH, Mandelbaum A, Hupp T, et al. Exercise activates renal dysfunction in hypertension Am J Hypertens. 1996; 9: 653-61
|
|
|
32)Kocer G, Kuru O, Gunduz F, et al. The effect of exercise training on the responsiveness of renal resistance arteries in rats. Ren Fail. 2011; 33: 587-92
|
|
|
33)Wu GL, Chen YS, Huang XD, et al. Exhaustive swimming exercise related kidney injury in rats - protective effects of acetylbritannilactone. Int J Sports Med. 2012; 33: 1-7
|
|
|
34)Bucioli SA, de Abreu LC, Valenti VE, et al. Effects of vitamin E supplementation on renal non-enzymatic antioxidants in young rats submitted to exhaustive exercise stress. BMC Complement Altern Med. 2011; 11: 133
|
|
|
35)日本腎臓リハビリテーション学会ホームページ:http://jsrr.jimdo.com/
|
|
|