14
es
JOURNÉES LYONNAISES DE CHIRURGIE DU GENOU
190
RÉFÉRENCES
[1] ANDRIACCHI TP, GALANTE JO, FERMIER RW The
influence of total knee replacement design on walking and
stair climbing.
J Bone Joint surg. 1982 61-A: 1328-35.
[2] BELLEMANS J, CARPENTIER K, VANDEN-
NEUCKER H
and al.
Both morphotype and gender influen-
ce the shape oh the knee in patients undergoing TKA.
Clin
Orthop Relat Res. 2010; 468: 29-36.
[3] BERTIN KC, KOMISTEK RD, DENNIS DA
and al.
In
vivo determination of posterior femoral rollback for sub-
jects having a nexgen posterior cruciate-retaining total knee
arthroplasty.
J Arthroplasty 2002 17: 1040-8.
[4] BLUNN GW, JOSHI AB, MINNS RJ Wear in retrieved
condylar knee arthroplasties.
J Arthroplasty 1997 12 (3): 281-9.
[5] BONNIN MP, SAFFARINI M, MERCIER PE
and al
Is
the anterior tibial tuberosity a relable rotational landmark
for the tibial component in total knee arthroplasty ?
J Arthroplasty. 2010 May 7. [Epub ahead of print].
[6] CLARKE HD, HENTZ JG Restoration of femral anato-
my in TKA with unisex and gender-specific components.
Clin Orthop Relat Res. 2008; 446: 2711-6.
[7] DENNIS D, KOMISTEK R, MAHFOUZ M Multicenter
determination of in vivo kinematics after total knee arthro-
plasty.
Clin Orthop Relat Res 2003; 456: 37-57.
[8] DUFFY GP, BERRY DJ, RAND JA Cement versus
cementless fixation in total knee arthroplasty.
Clin Orthop
Relat res 1992; 356: 66-72.
[9] FANTOZZI S, CATNI F, ENSINI A
and al.
Femoral
rollback of cruciate-retaining and posterior stabilized total
knee replacements: in vivo fluoroscopic analysis during
activities of daily living.
J Orthop Res. 2006 ; 24: 2222-9.
[10] GIOE TJ, STROEMER ES SANTOS ER All-polyethy-
lene and metal-backed tibias have similar outcomes at 10
years.
Clin Orthop Relat Res. 2006; 455: 212-8.
[11] GOMEZ-BARRENA E, FERNANDEZ-GARCIA C,
FERNANDEZ-BRAVO A
and al.
Functional performance
with a single-radius femoral design total knee arthroplasty.
Clin Orthop Relar Res. 2010; 468: 1214-20.
[12] HARTEL MJ, LOOSLI Y, GRALLA J
and al.
The
mean anatomical shape of the tibial plateau at the knee
arthroplasty resection level: an investigation using MRI.
The Knee 2009: 452-7.
[13]
HERNANDEZ-VAQUERO
D,
GARCIA-
SANDOVAL M, FERNANDEZ-CARREIRA J Influence of
the tibial stem design on bone density after cemented total
knee arthroplasty: a prospective seven-year follow-up study
Intern.
Orthopaedics 2008; 32: 47-51.
[14] KIM H, PELKER RR, GIBSON Dh
and al.
Rollback
in posterior cruciate ligament retaining TKA.
J. Arthroplasty 1997; 12,5: 553-61.
[15] KWAK DS, SURENDRAN S, PENGATTEERI YH
and al.
Morphometry oh the proximal tibia to design the
tibial component of total knee arthroplasty for the korean
population.
The knee 2007: 295-300.
[16] MILLER CW, PETTYGROW R Long-term clinical
and radiographic results of a pegged tibial base plate in pri-
mary total knee arthroplasty
J Arthroplasty 2001; 16: 70-5.
[17] NAKAYAMA K, MATSUDA S, MIURA H
and al.
Contact stresse at the post-cam mechanism in posterior-sta-
bilised total knee arthroplasty.
J Bone joint Srg (Br) 2005
;87-B: 483-8.
[18] PANDT H, WARD T, HOLLINGHURST D
and al.
Influence of surface geometry and the cam-post mechanism
on the kinematics of total knee replacement.
J Bone Joint
Surg (Br) 2005 87-B: 940-5.
[19] RITTER MA, BEREND ME, MEDING JB Long term
follow up of anatomic garduated components posterior retai-
ning total knee replacement
Clin. Orthop. 2001 388: 51-7.
[20] SCHWARTZAJ, DELLAVALLE CJ, ROSENBERGAG
Cruciate-retaining TKA using a third-generation system
with a four-pegged tibial component.
Clin Orthop Relat
Res. 2010 Epub ahead of print.
[21] SERVIEN E, SAFFARINI M, LUSTIG S Lateral ver-
sus medial tibial plateau: morphometric analysis and adap-
tability with current tibial component design.
Knee Surg
Sports Traumatol Arthrosc. 2008 16(12): 1141-5.
[22] SLEDGE CB, EWALD EC Total knee arthroplasty
experience at the Robert Breck Brigham Hospital 1979.
Clin. Orthop. 145: 78-84.
[23] TOYOJI U, YUUICHI K, NOBORU I
and al.
Deep
flexion-oriented bisurface-type knee joint and its tibial rota-
tion that attributes its high performance of flexion.
J Arthroplasty 2010 Epub ahead of print.
[24] UVEHAMMER J, KÄRRHOLM J, BRANDSSON S
In Vivo kinematics of total knee arthroplasty.
J Bone Joint
Surg (Br) 2000; 82-B: 499-505.
[25] UVEHAMMER J, REGNER L, KÄRRHOLM j Flat
Vs concave tibial joint surface in total knee arthroplasty
Acta Orthop Scand 2001; 72(3): 257-65.
[26] VICTOR Y, MUELLER JK, KOMISTEK R In Vivo
kinematics after a cruciate-substituting TKA.
Clin Orthop
Relat Res 2010; 468: 807-14.
[27] VICTOR Y, BELLEMANS J Physiologic kinematics as
a concept for better flexion in TKA.
Clin Orthop Relat Res
2006; 452: 53-8.
[28] WALKER PS, HELLER Y, CLEARY D
and al
Preclinical evaluation method for total knees designed to
restore normal knee mechanics
J Arthroplasty 2010 Epub
ahead of print.
[29] WALKER PS Design of a knee prosthesis system.
Acta
Orthopedica Belgica 1980; 45: 766-75.