F. Picard, F. Leitner, A. Gregori, D. Saragaglia
40
[35] Taylor RH (Ed.) (1996). Computer-integrated
surgery: technology and clinical applications.
Mit Press.
[36] Bäthis H, Perlick L, L
C, Kalteis T,
Grifka J. (2003) [CT-based and CT-free navigation in
knee prosthesis implantation. Results of a prospective study].
Der Unfallchirurg, 106(11), 935-40.
[37] Mason JB, Fehring TK, Estok R, Banel D,
Fahrbach K. (2007). Meta-analysis of alignment
outcomes in computer-assisted total knee arthroplasty
surgery.
The Journal of arthroplasty, 22(8), 1097-106.
[38] Bauwens K, Matthes G, Wich M, Gebhard
F, Hanson B, Ekkernkamp A, Stengel D. (2007).
Navigated total knee replacementa meta-analysis.
The
Journal of Bone & Joint Surgery, 89(2), 261-9.
[39] Mason JB, Fehring TK, Estok R, Banel D,
Fahrbach K. (2007). Meta-analysis of alignment
outcomes in computer-assisted total knee arthroplasty
surgery.
The Journal of arthroplasty, 22(8), 1097-106.
[40] IshidaK, Matsumoto T, TsumuraN, Kubo S,
Kitagawa A, Chin T, Kuroda R. (2011). Mid-term
outcomes of computer-assisted total knee arthroplasty.
Knee
Surgery, Sports Traumatology, Arthroscopy, 19(7), 1107-12.
[41] Seon JK, Song EK. (2006). Navigation-assisted less
invasive total knee arthroplasty compared with conventional
total knee arthroplasty: a randomized prospective trial.
The
Journal of arthroplasty, 21(6), 777-82.
[42] Seon JK, Park SJ, Lee KB, Li G, Kozanek M,
Song EK. (2009). Functional comparison of total knee
arthroplasty performed with and without a navigation
system.
International orthopaedics, 33(4), 987-90.
[43] Hakki S, Coleman S, Saleh K, Bilotta VJ,
Hakki A. (2009). Navigational predictors in determining
the necessity for collateral ligament release in total knee
replacement.
Journal of Bone & Joint Surgery, British
Volume, 91(9), 1178-82.
[44] Luring C, H T, Perlick L, Bäthis H,
Krettek C, Grifka J. (2006). The effectiveness of
sequential medial soft tissue release on coronal alignment in
total knee arthroplasty: using a computer navigation model.
The Journal of arthroplasty, 21(3), 428-34.
[45] Picard F, Deakin AH, Clarke JV, Dillon JM,
Gregori A. (2007). Using navigation intraoperative
measurements narrows range of outcomes in TKA.
Clinical
orthopaedics and related research, 463, 50-7.
[46] Siston RA, Patel JJ, Goodman SB, Delp SL,
Giori NJ. (2005). The variability of femoral rotational
alignment in total knee arthroplasty.
The Journal of Bone &
Joint Surgery, 87(10), 2276-80.
[47] Siston RA, Goodman SB, Patel JJ, Delp SL,
Giori NJ. (2006). The high variability of tibial rotational
alignment in total knee arthroplasty.
Clinical orthopaedics
and related research, 452, 65-9.
[48] Page SR, Deakin AH, Payne AP, Picard F
(2011). Reliability of frames of reference used for tibial
component rotation in total knee arthroplasty.
Computer
Aided Surgery, 16(2), 86-92.
[49] Clarke JV, Riches PE, Picard F, Deakin AH
(2012). Non-invasive computer-assisted measurement of
knee alignment.
Computer Aided Surgery,17(1), 29-39.
[50] Clarke JV, Wilson WT, Wearing SC, Picard
F, Riches PE, Deakin AH. (2012). Standardising the
clinical assessment of coronal knee laxity. Proceedings of
the Institution of Mechanical Engineers, Part H.
Journal of
Engineering in Medicine, 0954411912451814.
[51] Russell DF, Deakin AH, Fogg QA, Picard F
(2013). Non-invasive, non-radiological quantification of
anteroposterior knee joint ligamentous laxity A study in
cadavers.
Bone and Joint Research, 2(11), 233-7.
[52] Russell D, Deakin A, Fogg QA, Picard F.
(2014).Non-invasivequantificationoflowerlimbmechanical
alignment in flexion.
Computer Aided Surgery, (0), 1-7.
[53] Russell D, Deakin AH, Fogg QA, Picard F
(2014). Quantitative measurement lower limb mechanical
alignment and coronal knee laxity in early flexion.
The
Knee
.
[54] Deep K (2014). Collateral Ligament Laxity in Knees:
What Is Normal?
Clinical Orthopaedics and Related
R
esearch
®, 1-6.
[55] Picard F, DeakinAH, Clarke JV, Dillon J. M,
Kinninmonth AW. (2007). A quantitative method of
effective soft tissue management for varus knees in total
knee replacement surgery using navigational techniques.
Proceedings of the Institution of Mechanical Engineers, Part
H:
Journal of Engineering in Medicine, 221(7), 763-72.
[56] Chin PL, Yang KY, Yeo SJ, Lo NN. (2005).
Randomized control trial comparing radiographic total knee
arthroplasty implant placement using computer navigation
versus conventional technique.
The Journal of arthroplasty,
20(5), 618-26.
[57] Bäthis H, Perlick L, Tingart M, L
C,
Zurakowski D, Grifka J. (2004). Alignment in total
knee arthroplastyAcomparison of computer-assisted surgery
with the conventional technique.
Journal of Bone & Joint
Surgery, British Volume, 86(5), 682-7.
[58] Victor J, Hoste D. (2004). Image-based computer-
assisted total knee arthroplasty leads to lower variability in
coronal alignment.
Clinical orthopaedics and related
research, 428, 131-9.
[59] Siston RA, Daub AC, Giori NJ, Goodman SB,
Delp SL. (2005). Evaluation of methods that locate the
center of the ankle for computer-assisted total knee
arthroplasty.
Clinical orthopaedics and related research,
439, 129-35.
[60] Van Damme G, Defoort K, Ducoulombier
Y, Van Glabbeek F, Bellemans J, Victor J.
(2005). What should the surgeon aim for when performing
computer-assisted total knee arthroplasty?
The Journal of
Bone & Joint Surgery, 87(suppl 2), 52-8.
[61] Proserpio L, Gioia DA. (2007). Teaching the
Virtual Generation.
Academy of Management Learning &
Education, 6(1), 69-80.
[62] Millar NL, Deakin AH, Millar LL,
Kinnimonth AW, Picard F. (2011). Blood loss
following total knee replacement in the morbidly obese:
Effects of computer navigation.
The Knee, 18(2), 108-12.
[63] Kalairajah Y, Simpson D, Cossey AJ,
Verrall GM, Spriggins AJ. (2005). Blood loss after
total knee replacement effects of computer-assisted surgery.