1997 |
Shrive NG. Soft tissue strain measurement. In: Orr JF, Shelton JC, eds. Optical Measurement Methods in Biomechanics. New York, NY: Chapman & Hall; 1997:154-172. |
1 |
1 |
1997 |
Frank C, McDonald D, Shrive N. Collagen fibril diameters in the rabbit medial collateral ligament scar: a longer term assessment. Connect Tissue Res. 1997;36(3):261-269. |
16 |
16 |
1992 |
Chimich D, Shrive N, Frank C, Marchuk L, Bray R. Water content alters viscoelastic behaviour of the normal adolescent rabbit medial collateral ligament. J Biomech. August 1992;25(8):831-837. |
41 |
37 |
1995 |
Matyas JR, Anton MG, Shrive NG, Frank CB. Stress governs tissue phenotype at the femoral insertion of the rabbit MCL. J Biomech. February 1995;28(2):147-157. |
34 |
34 |
1988 |
Shrive NG, Lam TC, Damson E, Frank CB. A new method of measuring the cross-sectional area of connective tissue structures. J Biomech Eng. May 1988;110(2):104-109. |
14 |
11 |
1990 |
Lam TC, Thomas CG, Shrive NG, Frank CB, Sabiston CP. The effects of temperature on the viscoelastic properties of the rabbit medial collateral ligament. J Biomech Eng. May 1990;112(2):147-152. |
14 |
14 |
2010 |
Zec ML, Thistlethwaite P, Frank CB, Shrive NG. Characterization of the fatigue behavior of the medial collateral ligament utilizing traditional and novel mechanical variables for the assessment of damage accumulation. J Biomech Eng. January 2010;132(1):011001. |
2 |
2 |
1997 |
Thornton GM, Oliynyk A, Frank CB, Shrive NG. Ligament creep cannot be predicted from stress relaxation at low stress: a biomechanical study of the rabbit medial collateral ligament. J Orthop Res. 1997;15(5):652-656. |
22 |
21 |
2001 |
Thornton GM, Shrive NG, Frank CB. Altering ligament water content affects ligament pre-stress and creep behaviour. J Orthop Res. September 2001;19(5):845-851. |
12 |
12 |
2022 |
Heard BJ, Barton KI, Abubacker S, Chung M, Martin CR, Schmidt TA, Shrive NG, Hart DA. Synovial and cartilage responsiveness to peri-operative hyaluronic acid ± dexamethasone administration following a limited injury to the rabbit stifle joint. J Orthop Res. April 2022;40(4):838-845. |
0 |
0 |