BrantiganO. C.VoshellA. F. (1941) The mechanics of the ligaments and menisci of the knee joint. J. Bone Jt Surg., 23, 44–66.
2.
DeaneG. (1970) MSc Thesis, University of Surrey.
3.
GreenwaldA. S. (1970) DPhil Thesis, University of Oxford.
4.
LevensA. S.InmanV. T.BlosserJ. A. (1948) Transverse rotation of the segments of the lower extremity in locomotion. J. Bone Jt Surg., 30-A, 859–872.
5.
RecklingF. W.AsherM. A.MantzF. A.HeltonD. O. (1975) Performance analysis of an ex-vivo geometric total knee prosthesis. J. Bone Jt Surg., 57-A, 108.
6.
SeedhomB. B. (1976) Contact and transmission of loads in the knee joint. In Orthopaedic Bio-engineering. Eds MowV. C.KatzJ. L., Marcel Dekker Inc., New York (in the press).
7.
SeedhomB. B.DowsonD.WrightV. (1974) The load bearing function of the menisci: A preliminary study. In The knee joint. Eds IngwersonO. S., Exerpta med., Amsterdam and American Elsevier Publishing Co. Inc., New York.
8.
SeedhomB. B.DowsonD.WrightV.LongtonE. B. (1973) A technique for the study of geometry and contact of natural and artificial joints. Wear, 6, 189–199.
9.
ShriveN. (1974) DPhil Thesis, University of Oxford.
10.
WalkerP. S.ErkmanM. J. (1975) The role of the menisci force transmission across the knee. Clin. Orthop., 175, 184.
11.
WalkerP. S.WangC-J.MasseY. (1974) Joint laxity as a criterion for the design of condylar knee prostheses. In Conference on total knee replacement. Instn mech. Engrs, 22–29.
12.
WangC-J.WalkerP. S. (1974) Rotating laxity of the human knee joint. J. Bone Jt Surg., 56-A, 161.