Skip to main content
Top
Published in: Journal of Orthopaedics and Traumatology 4/2014

Open Access 01-12-2014 | Original Article

A new volar plate made of carbon-fiber-reinforced polyetheretherketon for distal radius fracture: analysis of 40 cases

Authors: Luigi Tarallo, Raffaele Mugnai, Roberto Adani, Francesco Zambianchi, Fabio Catani

Published in: Journal of Orthopaedics and Traumatology | Issue 4/2014

Login to get access

Abstract

Background

Implants based on the polyetheretherketon (PEEK) polymer have been developed in the last decade as an alternative to conventional metallic devices. PEEK devices may provide several advantages over the use of conventional orthopedic materials, including the lack of metal allergies, radiolucency, low artifacts on magnetic resonance imaging scans and the possibility of tailoring mechanical properties. The purpose of this study was to evaluate the clinical results at 12-month follow-up using a new plate made of carbon-fiber-reinforced polyetheretherketon for the treatment of distal radius fractures.

Materials and methods

We included 40 consecutive fractures of AO types B and C that remained displaced after an initial attempt at reduction. The fractures were classified according to the AO classification: 21 fractures were type C1, 9 were type C2, 2 were type C3, 2 were type B1 and 6 were type B2.

Results

At a 12-month follow-up no cases of hardware breakage or loss of the surgically achieved fracture reduction were documented. All fractures healed, and radiographic union was observed at an average of 6 weeks. The final Disabilities of Arm, Shoulder and Hand score was 6.0 points. The average grip strength, expressed as a percentage of the contralateral limb, was 92 %. Hardware removal was performed only in one case, for the occurrence of extensor tenosynovitis.

Conclusion

At early follow-up this device showed good clinical results and allowed maintenance of reduction in complex, AO fractures.

Type of study/level of evidence

Therapeutic IV.
Literature
4.
go back to reference Baidya KP, Ramakrishna S, Rahman M, Ritchie A (2001) Quantitative radiographic analysis of fiber reinforced polymer composites. J Biomater Appl 15:279–289PubMedCrossRef Baidya KP, Ramakrishna S, Rahman M, Ritchie A (2001) Quantitative radiographic analysis of fiber reinforced polymer composites. J Biomater Appl 15:279–289PubMedCrossRef
5.
go back to reference Akay M, Aslan N (1995) An estimation of fatigue life for a carbon fibre/poly ether ether ketone hip joint prosthesis. Proc Inst Mech Eng [H] 209:93–103CrossRef Akay M, Aslan N (1995) An estimation of fatigue life for a carbon fibre/poly ether ether ketone hip joint prosthesis. Proc Inst Mech Eng [H] 209:93–103CrossRef
6.
go back to reference Skinner HB (1998) Composite technology for total hip arthroplasty. Clin Orthop Relat Res 235:224–236 Skinner HB (1998) Composite technology for total hip arthroplasty. Clin Orthop Relat Res 235:224–236
7.
go back to reference Steinberg EL, Rath E, Shlaifer A, Chechik O, Maman E, Salai M (2013) Carbon fiber reinforced PEEK Optima—a composite material biomechanical properties and wear/debris characteristics of CF-PEEK composites for orthopedic trauma implants. J Mech Behav Biomed Mater 17:221–228. doi:10.1016/j.jmbbm.2012.09.013PubMedCrossRef Steinberg EL, Rath E, Shlaifer A, Chechik O, Maman E, Salai M (2013) Carbon fiber reinforced PEEK Optima—a composite material biomechanical properties and wear/debris characteristics of CF-PEEK composites for orthopedic trauma implants. J Mech Behav Biomed Mater 17:221–228. doi:10.​1016/​j.​jmbbm.​2012.​09.​013PubMedCrossRef
8.
9.
go back to reference Nakahara I, Takao M, Bandoh S, Bertollo N, Walsh WR, Sugano N (2013) In vivo implant fixation of carbon fiber-reinforced PEEK hip prostheses in an ovine model. J Orthop Res 31:485–492. doi:10.1002/jor.22251PubMedCrossRef Nakahara I, Takao M, Bandoh S, Bertollo N, Walsh WR, Sugano N (2013) In vivo implant fixation of carbon fiber-reinforced PEEK hip prostheses in an ovine model. J Orthop Res 31:485–492. doi:10.​1002/​jor.​22251PubMedCrossRef
13.
go back to reference Hudak PL, Amadio PC, Bombardier C (1996) Development of an upper extremity outcome measure: the DASH (disabilities of the arm, shoulder and hand) [corrected]. The Upper Extremity Collaborative Group (UECG). Am J Ind Med 29:602–608PubMedCrossRef Hudak PL, Amadio PC, Bombardier C (1996) Development of an upper extremity outcome measure: the DASH (disabilities of the arm, shoulder and hand) [corrected]. The Upper Extremity Collaborative Group (UECG). Am J Ind Med 29:602–608PubMedCrossRef
15.
go back to reference Arora R, Lutz M, Hennerbichler A, Krappinger D, Espen D, Gabl M (2007) Complication following internal fixation of unstable distal radius fracture with palmar locking-plate. J Orthop Trauma 21:316–322PubMedCrossRef Arora R, Lutz M, Hennerbichler A, Krappinger D, Espen D, Gabl M (2007) Complication following internal fixation of unstable distal radius fracture with palmar locking-plate. J Orthop Trauma 21:316–322PubMedCrossRef
16.
go back to reference Gruber G, Zacherl M, Giessauf C, Glehr M, Fuerst F, Liebmann W, Gruber K, Bernhardt GA (2010) Quality of life after volar plate fixation of articular fractures of the distal part of the radius. J Bone Joint Surg Am 92:1170–1178. doi:10.2106/JBJS.I.00737PubMedCrossRef Gruber G, Zacherl M, Giessauf C, Glehr M, Fuerst F, Liebmann W, Gruber K, Bernhardt GA (2010) Quality of life after volar plate fixation of articular fractures of the distal part of the radius. J Bone Joint Surg Am 92:1170–1178. doi:10.​2106/​JBJS.​I.​00737PubMedCrossRef
17.
go back to reference Arora R, Lutz M, Deml C, Krappinger D, Haug L, Gabl M (2011) A prospective randomized trial comparing nonoperative treatment with volar locking plate fixation for displaced and unstable distal radial fractures in patients sixty-five years of age and older. J Bone Joint Surg Am 93:2146–2153. doi:10.2106/JBJS.J.01597PubMed Arora R, Lutz M, Deml C, Krappinger D, Haug L, Gabl M (2011) A prospective randomized trial comparing nonoperative treatment with volar locking plate fixation for displaced and unstable distal radial fractures in patients sixty-five years of age and older. J Bone Joint Surg Am 93:2146–2153. doi:10.​2106/​JBJS.​J.​01597PubMed
18.
go back to reference Jupiter JB, Marent-Huber M, LCP Study Group (2009) Operative management of distal radial fractures with 2.4-millimeter locking plates: a multicenter prospective case series. J Bone Joint Surg Am 91:55–65. doi:10.2106/JBJS.G.01498PubMedCrossRef Jupiter JB, Marent-Huber M, LCP Study Group (2009) Operative management of distal radial fractures with 2.4-millimeter locking plates: a multicenter prospective case series. J Bone Joint Surg Am 91:55–65. doi:10.​2106/​JBJS.​G.​01498PubMedCrossRef
22.
go back to reference Toth JM, Wang M, Estes BT, Scifert JL, Seim HB 3rd, Turner AS (2006) Polyetheretherketone as a biomaterial for spinal applications. Biomaterials 27:324–334PubMedCrossRef Toth JM, Wang M, Estes BT, Scifert JL, Seim HB 3rd, Turner AS (2006) Polyetheretherketone as a biomaterial for spinal applications. Biomaterials 27:324–334PubMedCrossRef
23.
go back to reference Kitamura E, Stegaroiu R, Nomura S, Miyakawa O (2004) Biomechanical aspects of marginal bone resorption around osseointegrated implants: considerations based on a three-dimensional finite element analysis. Clin Oral Implants Res 15:401–412PubMedCrossRef Kitamura E, Stegaroiu R, Nomura S, Miyakawa O (2004) Biomechanical aspects of marginal bone resorption around osseointegrated implants: considerations based on a three-dimensional finite element analysis. Clin Oral Implants Res 15:401–412PubMedCrossRef
24.
go back to reference Rho JY, Ashman RB, Turner CH (1993) Young’s modulus of trabecular and cortical bone material: ultrasonic and microtensile measurements. J Biomech 26:111–119PubMedCrossRef Rho JY, Ashman RB, Turner CH (1993) Young’s modulus of trabecular and cortical bone material: ultrasonic and microtensile measurements. J Biomech 26:111–119PubMedCrossRef
25.
go back to reference Isidor F (2006) Influence of forces on peri-implant bone. Clin Oral Implants Res 17(Suppl. 2):8–18PubMedCrossRef Isidor F (2006) Influence of forces on peri-implant bone. Clin Oral Implants Res 17(Suppl. 2):8–18PubMedCrossRef
26.
go back to reference Slätis P, Karaharju E, Holmström T, Ahonen J, Paavolainen P (1978) Structural changes in intact tubular bone after application of rigid plates with and without compression. J Bone Joint Surg Am 60:516–522PubMed Slätis P, Karaharju E, Holmström T, Ahonen J, Paavolainen P (1978) Structural changes in intact tubular bone after application of rigid plates with and without compression. J Bone Joint Surg Am 60:516–522PubMed
27.
go back to reference Huiskes R, Weinans H, van Rietbergen B (1992) The relationship between stress shielding and bone resorption around total hip stems and the effects of flexible materials. Clin Orthop 274:124–134PubMed Huiskes R, Weinans H, van Rietbergen B (1992) The relationship between stress shielding and bone resorption around total hip stems and the effects of flexible materials. Clin Orthop 274:124–134PubMed
Metadata
Title
A new volar plate made of carbon-fiber-reinforced polyetheretherketon for distal radius fracture: analysis of 40 cases
Authors
Luigi Tarallo
Raffaele Mugnai
Roberto Adani
Francesco Zambianchi
Fabio Catani
Publication date
01-12-2014
Publisher
Springer International Publishing
Published in
Journal of Orthopaedics and Traumatology / Issue 4/2014
Print ISSN: 1590-9921
Electronic ISSN: 1590-9999
DOI
https://doi.org/10.1007/s10195-014-0311-1

Other articles of this Issue 4/2014

Journal of Orthopaedics and Traumatology 4/2014 Go to the issue