14
Views
1
CrossRef citations to date
0
Altmetric
Original Article

Muscle strength and bone mineral density in mine victims with transtibial amputation

, , , , &
Pages 299-306 | Published online: 04 Dec 2009

References

  • Yazicioglu K, Tugcu I, Yilmaz B, Goktepe AS, Mohur H. Osteoporosis: A factor on residual limb pain in traumatic trans-tibial amputations. Prosthet Orthot Int 2008;32(2):172–178.
  • Rush PJ, Wong JS, Kirsh J, Devlin M. Osteopenia in patients with above knee amputation. Arch Phys Med Rehabil 1994;5:12–15.
  • Kulkarni J, Adams J, Thomas E, Silman A. Association between amputation, arthritis and osteopenia in British male veterans with major lower limb amputations. Clin Rehab 1998;12:274–279.
  • Morienfeld I, Ayalon M, Ben-Sira D, Isakov E. Isokinetic strength and endurance of the knee extensors and flexors in trans-tibial amputees. Prosthet Orthot Int 2000;24:221–225.
  • Isakov E, Burger H, Gregoric M, Marincek C. Isokinetic and isometric strength of the thigh muscles in below-knee amputees. Clin Biomech 1996;11:233–255.
  • Klingenstierna U, Renström P, Grimby G, Morelli B. Isokinetic strength training below-knee amputees. Scand J Rehabil Med 1990;22:39–43.
  • Pedrinelli A, Saito M, Coelho RF, Fontes RBV, Guarniero R. Comparative study of the strength of the flexor and extensor muscles of the knee through isokinetic evaluation in normal subjects and patients subjected to trans-tibial amputation. Prosthet Orthot Int 2002;26:195–205.
  • Schmalz T, Blumentritt S, Reimers CD. Selective thigh muscle atrophy in trans-tibial amputees: An ultrasonographic study. Arch Orthop Trauma Surg 2001;121:307–312.
  • Ryser DK, Erickson RP, Cahalan T. Isometric and isokinetic hip abductor strength in persons with above-knee amputations. Arch Phys Med Rehabil 1988;69:840–845.
  • Renstrom P, Grimby G, Morelli B, Palmertz B. Thigh muscle atrophy in below-knee amputees. Scand J Rehabil Med 1983;15(Suppl. 9):150–162.
  • Rossi SA, Doyle W, Skinner HB. Gait initiation of persons with below-knee amputation: The characterisation and comparison of force profiles. J Rehabil Res Dev 1995;32:120–127.
  • Pinzur MS, Gold J, Schwartz D, Gross N. Energy demands for walking in dysvascular amputees as related to the level of amputation. Orthopedics. 1992;15:1033–1037.
  • Yazicioglu K, Taskaynatan MA, Guzelkucuk U, Tugcu I. Effect of playing football (soccer) on balance, strength, and quality of life in unilateral below-knee amputees. Am J Phys Med Rehabil 2007;86:800–805.
  • Ribom E, Ljunggren Ö, Piehl-Aulin K, Ljunghall S, Bratteby L-E, Samuelson G, Mallmin H. Muscle strength correlates with total body bone mineral density in young women but not in men. Scand J Med Sci Sports 2004;14:24–29.
  • Goktepe AS, Yilmaz B, Alaca R, Yazicioglu K, Mohur H, Gunduz S. Bone density loss after spinal cord injury. Elite paraplegic basketball players vs. paraplegic sedentary persons. Am J Phys Med Rehabil 2004;83:279–283.
  • Fraisse N, Martinet N, Kpadonou T-J, Paysant J, Blum A, Andre J-M. Muscles of the below-knee amputees. Ann RMP 2008;51:218–227.
  • Angelopoulou N, Matziari C, Tsimaras V, Sakadamis A, Souftas V, Mandroukas K. Bone mineral density and muscle strength in young men with mental retardation (with and without Down syndrome). Calcif Tissue Int 2000;66:176–180.
  • Bevier WC, Wiswell RA, Pyka G, Kozak KC, Newhall KM, Marcus R. Relationship of body composition, muscle strength, and aerobic capacity to bone mineral density in older men and women. J Bone Miner Res 1989;4:421–432.
  • Madsen OR, Schaadt O, Bliddal H, Egsmose C, Sylvest J. Relationship between quadriceps strength and bone mineral density of the proximal tibia and distal forearm in women. J Bone Miner Res 1993;8:1439–1444.
  • Nordström P, Nordström G, Thorsen K, Lorentzon R. Local bone mineral density, muscle strength, and exercise in adolescent boys: A comparative study of two groups with different muscle strength and exercise levels. Calcif Tissue Int 1996;58:402–408.
  • Kerr D, Morton A, Dick I, Prince R. Exercise effects on bone mass in postmenopausal women are site specific and load dependent. J Bone Miner Res 1996;11:218–225.
  • Pettersson U, Nordström P, Lorentzon R. A Comparison of bone mineral density and muscle strength in young male adults with different exercise level. Calcif Tissue Int 1999;64:490–498.
  • Bayramoglu M, Sozay S, Karatas M, Kılınc S. Relationships between muscle strength and bone mineral density of three body regions in sedentary postmenopausal women. Rheumatol Int 2005;25:513–517.
  • Rubin CT, Lanyon LE. Osteoregulatory nature of mechanical stimuli: Function as a determinant for adaptive remodeling in bone. J Orthop Res 1987;5:300–310.
  • Pocock N, Eisman J, Gwinn T, Sambrook P, Kally P, Freund J, et al Muscle strength, physical fitness and weight but not age predict femoral neck bone mass. J Bone Miner Res 1989;4:441–448.
  • Tan J, Çubukçu S, Sepici V. Relationship between bone mineral density of the proximal femur and strength of hip muscles in postmenopausal women. Am J Phys Med Rehab 1998;7:477–482.
  • Sinaki M, Fitzpatrick L, Ritchie C, Montesano A, Wahner H. Site-specificity of bone mineral density and muscle strength in women: Job-related physical activity. Am J Phys Med Rehab 1998;77:470–476.
  • Madsen K, Adams W, Van Loan M. Effects of physical activity, body weight and composition and muscular strength on bone density in young women. Med Sci Sports Exerc 1998;30:114–120.
  • Duppe H, Gardsell P, Johnell O, Nilsson B, Ringsberg K. Bone mineral density, muscle strength and physical activity. A population-based study of 332 subjects aged 15–42 years. Acta Orthop Scand 1997;68:97–103.
  • Madsen OR, Schaadt O, Bliddal H, Egsmose C, Sylvest J. Relationship between quadriceps strength and bone mineral density of the proximal tibia and distal forearm in women. J Bone Miner Res 1993;8:1439–1444.
  • Alfredson H, Hedberg G, Bergström E, Nordström P, Lorentzon R. High thigh muscle strength but not bone mass in young horseback-riding females. Calcif Tissue Int 1998;62:497–501.
  • Nordström P, Thorsen K, Bergström E, Lorentzon R. High bone mass and altered relationships between bone mass, muscle strength, and body constitution in adolescent boys on a high level of physical activity. Bone. 1996;19:189–195.
  • Nordström P, Thorsen K, Nordström G, Bergström E, Lorentzon R. Bone mass, muscle strength, and different body constitutional parameters in adolescent boys with a low or moderate exercise level. Bone. 1995;17:351–356.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.