Biomedical Engineering Reference
In-Depth Information
References
1. Short WH, Werner FW, Fortino MD, Mann KA (1997) Analysis of the kinematics of the
scaphoid and lunate in the intact wrist joint. Hand Clin 13(1):93-108
2. Werner FW (1995) Principles of musculoskeletal biomechanics-wrist. In: Peimer CA (ed)
Surgery of the hand and upper extremity. McGraw-Hill, Toronto, pp 31-42
3. Viegas SF, Patterson RM (1997) Load mechanics of the wrist. Hand Clin 13(1):109-128
4. Patterson RVS (1995) Biomechanics of the wrist. J Hand Ther 8(2):97-105
5. Karsdal MA, Leeming DJ, Dam EB, Henriksen K, Alexandersen P, Pastoureau P, Altman
RD, Christiansen C (2008) Should subchondral bone turnover be targeted when treating
osteoarthritis? Osteoarthr Cartil 16(6):638-646
6. Goldsmith AAJ, Hayes A, Clift SE (1996) Application of finite elements to the stress analysis
of articular cartilage. Med Eng Phys 18(2):89-98
7. Shirazi R, Shirazi-Adl A (2005) Analysis of articular cartilage as a composite using nonlinear
membrane elements for collagen fibrils. Med Eng Phys 27(10):827-835
8. Li LP, Soulhat J, Buschmann MD, Shirazi-Adl A (1999) Nonlinear analysis of cartilage in
unconfined ramp compression using a fibril reinforced poroelastic model. Clin Biomech
14(9):673-682
9. Julkunen P, Wilson W, Jurvelin JS, Rieppo J, Qu C-J, Lammi MJ, Korhonen RK (2008)
Stress-relaxation of human patellar articular cartilage in unconfined compression: prediction
of mechanical response by tissue composition and structure. J Biomech 41(9):1978-1986
10. Wilson W, van Donkelaar CC, van Rietbergen B, Ito K, Huiskes R (2004) Stresses in the
local
collagen
network
of
articular
cartilage:
a
poroviscoelastic
fibril-reinforced
finite
element study. J Biomech 37(3):357-366
11. Soltz MA, Ateshian GA (2000) A Conewise Linear Elasticity mixture model for the analysis
of tension-compression nonlinearity in articular cartilage. J Biomech Eng 122(6):576-586
12. Hingorani RV, Provenzano PP, Lakes RS, Escarcega A, Vanderby R (2004) Nonlinear
viscoelasticity in rabbit medial collateral ligament. Ann Biomed Eng 32(2):306-312
13. An K, Berger RA (1991) Biomechanics of the wrist joint. Springer, New York
14. Johnston JD, Small CF, Bouxsein ML, Pichora DR (2004) Mechanical properties of the
scapholunate ligament correlate with bone mineral density measurements of the hand.
J Orthop Res 22(4):867-871
15. Viegas SF, Patterson RM, Hokanson JA, Davis J (1993) Wrist anatomy: incidence,
distribution, and correlation of anatomic variations, tears, and arthrosis. J Hand Surg
18(3):463-475
16. Nowalk MD, Logan SE (1991) Distinguishing biomechanical properties of intrinsic and
extrinsic human wrist ligaments. J Biomech Eng 113(1):85-93
17. Savelberg HH, Kooloos JG, Huiskes R, Kauer JM (1992) Stiffness of the ligaments of the
human wrist joint. J Biomech 25:369-376
18. Bettinger PC, Smutz WP, Linscheid RL, Cooney WP, An K-N (2000) Material properties of
the trapezial and trapeziometacarpal ligaments. J Hand Surg 25(6):1085-1095
19. Savelberg HH, Kooloos JG, Huiskes R, Kauer JM (1993) An indirect method to assess wrist
ligament
forces
with
particular
regard
to
the
effect
of
preconditioning.
J
Biomech
26(11):1347-1351
20. Savelberg HH, Kooloos JG, Huiskes R, Kauer JM (1992) Strains and forces in selected carpal
ligaments during in vitro flexion and deviation movements of the hand. J Orthop Res
10(6):901-910
21. Genda E, Horii E (2000) Theoretical stress analysis in wrist joint—neutral position and
functional position. J Hand Surg (British Eur Vol) 25:292-295
22. Iwasaki N, Genda E, Barrance PJ, Minami A, Kaneda K, Chao EYS (1998) Biomechanical
analysis of limited intercarpal fusion for the treatment of Kienböck's disease: a three-
dimensional theoretical study. J Orthop Res 16(2):256-263
Search WWH ::




Custom Search