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Published in: Archives of Orthopaedic and Trauma Surgery 3/2005

01-04-2005 | Original Article

Avoiding rotational malalignment after fractures of the femur by using the profile of the lesser trochanter: an in vitro study

Authors: R. L. Jaarsma, N. Verdonschot, R. van der Venne, A. van Kampen

Published in: Archives of Orthopaedic and Trauma Surgery | Issue 3/2005

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Abstract

Introduction

Intramedullary (IM) nailing has become the preferred method of treatment for femoral shaft fractures in adults. Rotational malalignment is an important complication, established during operation. The incidence of rotational malalignment (≥15°) has been reported to be between 20% and 30%. It might be avoided intra-operatively by using quantitative imaging techniques, with the profile of the contralateral lesser trochanter serving as a reference.

Materials and methods

With the help of a C-arm image intensifier, five surgeons tried to determine the neutral state of ten prepared cadaver femora. They could only look at the C-arm screen and were blinded to the actual femur. Per observer three measurements were done per femur. The first measurement (method I) was done without a reference, while the second (method II) used a reference image of the femur in a neutral state. The third method (method III) added a lesser trochanter quantifying computer program. After positioning of the femur, the difference in rotational state compared with the neutral state was measured with an inclinometer.

Results

Without reference, malrotations up to 27° were found. Methods II and III proved to be significantly better (p<0.0001). These two methods showed malrotation of 2.2° (±1.5°) and 2.3° (±1.7°), respectively. External or internal malrotation occurred with all three methods equally frequently. No difference was found between observers.

Conclusions

Using the contralateral lesser trochanter as a reference is an accurate method to minimize malrotation of a femur. Quantifying the profile of the lesser trochanter with computer assistance did not improve these results. Clinical results in the future still have to support these in vitro findings.
Literature
1.
go back to reference Alho A, Strømsøe, Ekeland A (1991) Locked intramedullary nailing of femoral shaft fractures. J Trauma 31:49–59 Alho A, Strømsøe, Ekeland A (1991) Locked intramedullary nailing of femoral shaft fractures. J Trauma 31:49–59
2.
go back to reference Bråten M, Terjesen T, Rossvoll I (1993) Torsional deformity after intramedullary nailing of femoral shaft fractures. J Bone Joint Surg Br 75:799–803PubMed Bråten M, Terjesen T, Rossvoll I (1993) Torsional deformity after intramedullary nailing of femoral shaft fractures. J Bone Joint Surg Br 75:799–803PubMed
3.
go back to reference Christie J, Court-Brown C, Kinninmonth AWG, Howie CR (1989) Intramedullary locking nails in the management of femoral shaft fractures. J Bone Joint Surg Br 70:206–210 Christie J, Court-Brown C, Kinninmonth AWG, Howie CR (1989) Intramedullary locking nails in the management of femoral shaft fractures. J Bone Joint Surg Br 70:206–210
4.
go back to reference Deshmukh RG, Lou KK, Neo CB, Yew KS, Rozman I, George J (1998) A technique to obtain correct rotational alignment during closed locked intramedullary nailing of the femur. Injury 29:207–210CrossRef Deshmukh RG, Lou KK, Neo CB, Yew KS, Rozman I, George J (1998) A technique to obtain correct rotational alignment during closed locked intramedullary nailing of the femur. Injury 29:207–210CrossRef
5.
go back to reference Hammer A (2002) Triangular structure of the proximal femur. Clin Anat 15:210–216CrossRef Hammer A (2002) Triangular structure of the proximal femur. Clin Anat 15:210–216CrossRef
6.
go back to reference Hoaglund FT, Low WD (1980) Anatomy of the femoral neck and head with comparative data from Caucasians and Hong Kong Chinese. Clin Orthop 152:10–16 Hoaglund FT, Low WD (1980) Anatomy of the femoral neck and head with comparative data from Caucasians and Hong Kong Chinese. Clin Orthop 152:10–16
7.
go back to reference Jaarsma RL, Pakvis DFM, Verdonschot N et al (2004) Rotational malalignment after intramedullary nailing of femoral fractures. J Orthop Trauma 18:403–409CrossRef Jaarsma RL, Pakvis DFM, Verdonschot N et al (2004) Rotational malalignment after intramedullary nailing of femoral fractures. J Orthop Trauma 18:403–409CrossRef
8.
go back to reference Khang G, Choi K, Kim CS, Yang JS, Bae TS (2003) A study of Korean femoral geometry. Clin Orthop 406:116–122 Khang G, Choi K, Kim CS, Yang JS, Bae TS (2003) A study of Korean femoral geometry. Clin Orthop 406:116–122
9.
go back to reference Kim JJ, Kim E, Kim KY (2001) Predicting the rotationally neutral state of the femur by comparing the shape of the contralateral lesser trochanter. Orthopedics 24:1069–1070 Kim JJ, Kim E, Kim KY (2001) Predicting the rotationally neutral state of the femur by comparing the shape of the contralateral lesser trochanter. Orthopedics 24:1069–1070
10.
go back to reference Krettek C, Schandelmaier P, Guy P, Könemann B, Tscherne H (1996) Unreamed intramedullary nailing of femoral shaft fractures: operative technique and early clinical experience with standard locking option. Injury 27:233–254CrossRef Krettek C, Schandelmaier P, Guy P, Könemann B, Tscherne H (1996) Unreamed intramedullary nailing of femoral shaft fractures: operative technique and early clinical experience with standard locking option. Injury 27:233–254CrossRef
11.
go back to reference Krettek C, Mannß J, Miclau T, Schandelmaier P, Linnemann I, Tscherne H (1998) Deformation of femoral nails with intramedullary insertion. J Orthop Res 16:572–575 Krettek C, Mannß J, Miclau T, Schandelmaier P, Linnemann I, Tscherne H (1998) Deformation of femoral nails with intramedullary insertion. J Orthop Res 16:572–575
12.
go back to reference Sennerich T, Sutter P, Ritter G, Zapf S (1992) Computertomographische Kontrolle des Antetorsionwinkels nach Oberschenkelschaftfrakturen des Erwachsenen. Unfallchirurg 95:301–305PubMed Sennerich T, Sutter P, Ritter G, Zapf S (1992) Computertomographische Kontrolle des Antetorsionwinkels nach Oberschenkelschaftfrakturen des Erwachsenen. Unfallchirurg 95:301–305PubMed
13.
go back to reference Sim E, Höcker K (1992) Locked nailing of fractures of the femur—an analysis of problems and faults in 80 cases. Unfallchirug 95:626–633 Sim E, Höcker K (1992) Locked nailing of fractures of the femur—an analysis of problems and faults in 80 cases. Unfallchirug 95:626–633
14.
go back to reference Søjbjerg JO, Eiskjaer S, Møller-Larsen F (1990) Locked nailing of comminuted and unstable fractures of the femur. J Bone Joint Surg Br 72:23–25 Søjbjerg JO, Eiskjaer S, Møller-Larsen F (1990) Locked nailing of comminuted and unstable fractures of the femur. J Bone Joint Surg Br 72:23–25
15.
go back to reference Sveningsen S, Nesse O, Finsen V (1986) Intramedullary nailing versus AO-plate fixation in femoral shaft fractures. Acta Orthop Scand 57:609 Sveningsen S, Nesse O, Finsen V (1986) Intramedullary nailing versus AO-plate fixation in femoral shaft fractures. Acta Orthop Scand 57:609
16.
go back to reference Tornetta P, Ritz G, Kantor A (1995) Femoral torsion after interlocked nailing of unstable femoral fractures. J Trauma 38:213–219 Tornetta P, Ritz G, Kantor A (1995) Femoral torsion after interlocked nailing of unstable femoral fractures. J Trauma 38:213–219
17.
go back to reference Winquist RA, Hansen ST, Clawson DK (1984) Closed intramedullary nailing of femoral fractures. J Bone Joint Surg Am 66:529–539PubMed Winquist RA, Hansen ST, Clawson DK (1984) Closed intramedullary nailing of femoral fractures. J Bone Joint Surg Am 66:529–539PubMed
18.
go back to reference Wiss DA, Fleming CH, Matta JM, Clarck D (1986) Comminuted and rotationally unstable fractures of the femur treated with an interlocking nail. Clin Orthop 212:35–47 Wiss DA, Fleming CH, Matta JM, Clarck D (1986) Comminuted and rotationally unstable fractures of the femur treated with an interlocking nail. Clin Orthop 212:35–47
Metadata
Title
Avoiding rotational malalignment after fractures of the femur by using the profile of the lesser trochanter: an in vitro study
Authors
R. L. Jaarsma
N. Verdonschot
R. van der Venne
A. van Kampen
Publication date
01-04-2005
Publisher
Springer-Verlag
Published in
Archives of Orthopaedic and Trauma Surgery / Issue 3/2005
Print ISSN: 0936-8051
Electronic ISSN: 1434-3916
DOI
https://doi.org/10.1007/s00402-004-0790-2

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