Research Letter Biomimetic Composite-Metal Hip Resurfacing Implant
|
|
|
- Maria Sarah Stephens
- 9 years ago
- Views:
Transcription
1 Research Letters in Materials Science Volume 2008, Article ID , 4 pages doi: /2008/ Research Letter Biomimetic Composite-Metal Hip Resurfacing Implant Habiba Bougherara and Martin N. Bureau Department of Mechanical and Industrial Engineering, Ryerson University, ON, Canada M5B 2K3 Correspondence should be addressed to Habiba Bougherara, [email protected] Received 7 April 2008; Accepted 18 June 2008 Recommended by Steve J. Bull Hip resurfacing technique is a conservative arthroplasty used in the young patient in which the femoral head is reshaped to accept metal cap with small guide stem. In the present investigation, a hybrid composite-metal resurfacing implant is proposed. The cup is made of carbon fiber/polyamide 12 (CF/PA12) covered with a thin layer of cobalt chrome (Co-Cr). Finite element (FE) method was applied to analyze and compare the biomechanical performances of the hybrid hip resurfacing (HHR) and the conventional Birmingham (BHR). Results of the finite element analysis showed that the composite implant leads to an increase in stresses in the cancellous bone by more than 15% than BHR, indicating a lower potential for stress shielding and bone fracture and higher potential for bone apposition with the HHR. Copyright 2008 H. Bougherara and MartinN. Bureau. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. 1. INTRODUCTION The successful reintroduction of the improved metal-onmetal (MOM) bearings has led to a resurgence of interest for hip resurfacing procedure as a viable alternative to conventional arthroplasty for younger and more active patients [1, 2]. The reported benefits of hip resurfacing (HR) include reduced dislocation rate and increased function compared to total hip arthroplasty (THA) [3, 4]. Other advantages of HR compared with THA include minimal bone resection, easier revision, and reduction in the stress shielding in the proximal femur [1, 5]. Femoral neck fracture and stress shielding problems remain a concern with resurfacing hip prostheses [6, 7]. Currently, most implants for joint replacements including HR are manufactured from stiff materials (i.e., stainless steel, Co-Cr, etc.). These materials undergo stress shielding that may lead to implant loosening and femoral neck fracture [8]. Currently, conventional implants still undergo problems of biomechanical mismatch of elastic modulus and interfacial stability with host tissues. Fortunately, fiber-reinforced polymer composites provide an interesting solution to face these problems since they have excellent mechanical properties, such as high fatigue and creep resistance, rigidity, and stiffness. Moreover, these materials have rapid, versatile, and inexpensive fabrication processes. The feasibility of the proposed biomimetic polymer composite was previously used to manufacture a hip stem for THA. This hip stem described by Campbell et al. [9] and Bougherara et al. [10] was evaluated numerically and experimentally. Preliminary tests investigating the biocompatibility of the biomimetic composite stem showed that the composite produced no adverse cytotoxic response in the periprosthetic tissues [11, 12], and tests using simulated body fluid conditioning showed that the hydroxyapatite- (HA) coated composite has excellent potential of biocompatibility [13]. This new biomimetic composite implant has the ability to mimic the functions of the natural bone that will allow stable fixation of prosthesis with minimal bone loss through stress shielding. The biocompatibility of this new biomimetic composite was verified [14, 15]. Miniature implants made of the same materials and of HA-coated Ti as control were produced and inserted as femoral intramedullary implants in rabbits. Hystomorphometric results for both composite and control implants (HA-coated Ti) showed that the composite implants were highly osseoinductive, by more than one order of magnitude with respect to control (implant coverage exceeding 100% of nominal implant perimeter). The protocol used here thus led us to conclude that the HAcoated PA12/CF composites have the potential to lead to very good osseoconduction that may reduce stress shielding leading to bone resorption.
2 2 Research Letters in Materials Science Co-Cr surface CF/PA12 PMMA C B Figure 1: Hip resurfacing. Hybrid HR and Birmingham HR. Angle fiber Figure 2: Composite (CF/PA12) stem braided (+45/ 45) 6. A B C A Displacement Joint force: N Muscle force: N (c) Figure 3: Geometry and load conditions, FE model of BHR, and (c) FE model of HHR. A novel hybrid composite Co-Cr hip resurfacing (HHR) implant is proposed to prevent stress shielding and bone fracture. The aim of this article is thus to present the concept design for the hybrid resurfacing implant and secondly, to compare its performance to conventional Birmingham hip resurfacing (BHR). Bounded contact Frictionless contact 2. MATERIAL AND METHODS 2.1. Concept design and 3D geometries Computerized tomography (CT) scan sections were performed every 0.5 mm along the length of the composite femur (sawbones 4th generation composite bone models) and used to generate the 3D solid model of the proximal femur [16] (see Figure 2). The elastic modulus of the simulated cortical (short fiber-filled epoxy) and cancellous (rigid polyurethane foam) based on ASTM D-638, D-695, and D-1621 tests were equal to 16.7 (GPa) and 206 (MPa). The concept and geometry of the hybrid resurfacing component are shown in Figure 1. The femoral cup with a diameter of 46 mm (Birmingham) is composed of 2 mmthick shell structure made of several layers of continuous carbon fiber/polyamide 12 (CF/PA12) composite fabrics (see Figure 2), onto which a 1 mm layer of Co-Cr is overlaid in order to avoid wear debris formation. The guide stem is composed of the same material as the cup (i.e., CF/PA12-Co- Cr). The cup is fixed to the femoral head with 1.5 mm cement made of PMMA Finite element models 3D FE models of a composite femur were meshed and analyzed using ANSYS 11.0 software. The femoral head was Figure 4: Type of contact used in the FEA. reamed and embedded with two types of hip resurfacing implants. The first was a model of the femoral bone in which the implanted HR was made of a Cr-Co-base alloy (E = 200 GPa, v = 0.3) (see Figure 3), while the second was the hybrid composite (CF/PA12) metal (Co-Cr) implant (see Figure 3(c)). The material properties used for the analysis are shown in Table 1. The models were meshed with 10 node quadratic tetrahedron elements (see Figure 3). Bonded contact was assumed at the cup-bone interfaces in view of simulating full bone ingrowth and perfect cement fixation. This resulted in a rigid link between the composite cup and the PMMA contact surfaces, allowing no relative sliding or gap opening. The bone-stem interface was simulated using frictionless contact allowing free sliding (see Figure 4). For each FE model, the load corresponded to 8 running and consisted of a 3704 kn load applied to the femoral head and a 1085 kn great trochanter muscles load [17]. The
3 H. Bougherara and MartinN. Bureau 3 Table 1: Mechanical properties of the bone-implant system. Material Modulus of elasticity (GPa) Shear modulus (GPa) Poisson s ratio E x = CF/PA12 E y = E z = PMMA E = 2..3 Cortical bone E = Cancellous bone E = max min max Min min 5.26 max min max min Figure 5: Von Mises stress in the cancellous bone using BHR implant and HHR. loads were distributed over several nodes to avoid stress concentration, and for all FE analyses, the displacement of all nodes at the distal end of the femoral bone was rigidly constrained (Figure 3). 3. RESULTS 3.1. Stresses in the trabecular bone The von Mises stresses in the trabecular bone with the Cr- Co and CF/PA12 resurfacing implants are shown in Figure 5. The stress inside the trabecular bone was higher for the conventional Co-Cr resurfacing implant (von Mises stress between 0 and 4.7 MPa) than the one using the hybrid CF/PA12-Co-Cr (von Mises stress level ranged between 0 and 4.1 MPa). The highest stress patterns were noted in the posteroinferior region near the rim of the implant. Peak stresses were 6.09 MPa for the Co-Cr prosthesis and 5.26 MPa for the hybrid HR max e 5min (c) Figure 6: Von Mises stress in the implant using conventional (BHR), hybrid (HHR), and (c) stress distribution in the CF/PA12 shell Stresses in the implant The values of stresses in the conventional Co-Cr implant ranged between 0 and 77 compared to 0 and 69 MPa when the hybrid implant is used (see Figure 6). The peak stress in the conventional implant was higher (173.6 MPa) than that found in the hybrid implant (156.2).
4 4 Research Letters in Materials Science 4. DISCUSSION The new concept design for hip resurfacing using a hybrid composite metal was described. Finite element analysis has been performed to evaluate and analyze the potential of the proposed design concept. In the case of the hybrid implant, numerical results have shown that the von Mises stresses were more uniform and higher by more than 15% in the cancellous bone. This indicates the potential of the hybrid composite implant to reduce stress shielding, especially in the great trochanter region. Also higher peak stress in the cancellous bone was found when the Co-Cr is used, which may lead to one fracture. Again the use of the hybrid implant reduced considerably the peak bone stress in the cancellous bone and thus prevents from bone fracture. Results of simulation indicate also that the hybrid implant reduced the stress in the femoral cup by approximately 10 to 20%. Therefore, more loads are transferred to the bone with the hybrid composite Co-Cr resurfacing implant than the conventional ones. The main objective of the current work was to present a preliminary study on the metal composite femoral component. However, the FE model needs some improvements, such as the inclusion of the load bearing surfaces (i.e., acetabular cup). The thickness of this acetabular cup would be expected to affect the load transfer across the bearing surfaces. 5. CONCLUSIONS The outcome of this study showed that the hybrid composite metal hip resurfacing had the potential to reduce stress shielding, preserve bone stock, and prevent from bone fracture compared to conventional metallic hip resurfacing implants. REFERENCES [1] J. Daniel, P. B. Pynsent, and D. J. W. McMinn, Metal-onmetal resurfacing of the hip in patients under the age of 55 years with osteoarthritis, The Bone & Joint Surgery B, vol. 86, no. 2, pp , [2] D. L. Back, R. Dalziel, D. Young, and A. Shimmin, Early results of primary Birmingham hip resurfacings. An independent prospective study of the first 230 hips, The Bone & Joint Surgery B, vol. 87, no. 3, pp , [3] D. Adams and S. Quigley, Hip resurfacing: past, present and future, Orthopaedic Nursing, vol. 9, no. 2, pp , [4] P. E. Beaulé, M. Le Duff, P.Campbell,F.J.Dorey,S.H.Park, and H. C. Amstutz, Metal-on-metal surface arthroplasty with a cemented femoral component: a 7 10 year follow-up study, The Arthroplasty, vol. 19, no. 8, supplement 1, pp , [5] A. Ebied and S. Journeaux, (iv) Metal-on-metal hip resurfacing, Current Orthopaedics, vol. 16, no. 6, pp , [6] R. Ramakrishnan, W. L. Jaffe, and W. R. Kennedy, Metal-onmetal hip resurfacing: radiographic evaluation techniques, The Arthroplasty. In press. [7] Y. Hayaishi, H. Miki, T. Nishii, T. Hananouchi, H. Yoshikawa, and N. Sugano, Proximal femoral bone mineral density after resurfacing total hip arthroplasty and after standard stem-type cementless total hip arthroplasty, both having similar neck preservation and the same articulation type, The Arthroplasty, vol. 22, no. 8, pp , [8] A. M. Pearson, P. Foguet, C. Little, D. Murray, P. McLardy- Smith, and S. Krikler, Can we prevent fractures in hip resurfacing? The Bone & Joint Surgery B, vol. 87, supplement 1, p. 41, [9] M. Campbell, J. Denault, L. H. Yahia, and M. N. Bureau, CF/PA12 composite femoral stems: manufacturing and properties, Composites Part A, vol. 39, no. 5, pp , [10] H. Bougherara, M. N. Bureau, M. Campbell, A. Vadean, and L. H. Yahia, Design of a biomimetic polymer-composite hip prosthesis, Biomedical Materials Research Part A, vol. 82, no. 1, pp , [11] M. N. Bureau, H. Shen, J. F. Whitfield, et al., Osseointegration of biomimetic HA-coated composite hip implants, in Proceedings of the International Symposium on Polymeric Materials for Regenerative Medicine (PMRM 07), Boucherville, Canada, April [12] M. Campbell, M. N. Bureau, H. A. Bougherara, J. Denault, and L. H. Yahia, Biomimetic polymer composites for orthopedic implants, in Proceedings of the Annual Technical Conference (ANTEC 06), vol. 1, pp , Charlotte, NC, USA, May [13] C. Auclair-Daigle, M. N. Bureau, J.-G. Legoux, and L. H. Yahia, Bioactive hydroxyapatite coatings on polymer composites for orthopedic implants, Biomedical Materials Research Part A, vol. 73, no. 4, pp , [14]S.Dimitrievska,A.Petit,A.Ajji,M.N.Bureau,andL.H. Yahia, Biocompatibility of novel polymer-apatite nanocomposite fibers, Biomedical Materials Research Part A, vol. 84, no. 1, pp , [15] M. N. Bureau, H. Shen, J. F. Whitfield, et al., Osseointegration of biomimetic HA-coated composite hip implants, in Proceedings of the 52nd Annual Meeting of the Orthopedic Research Society, Chicago, Ill, USA, March [16] M. Papini and P. Zalzal, Thirdgen.zip, International Society of Biomechanics (ISB) Finite Element Mesh Repository, Istituti Ortopedici Rizzoli. [17] G. Bergmann, F. Graichen, and A. Rohlmann, Hip joint loading during walking and running, measured in two patients, Biomechanics, vol. 26, no. 8, pp , 1993.
5 Nanotechnology International International Corrosion Polymer Science Smart Materials Research Composites Metallurgy BioMed Research International Nanomaterials Submit your manuscripts at Materials Nanoparticles Nanomaterials Advances in Materials Science and Engineering Nanoscience Scientifica Coatings Crystallography The Scientific World Journal Textiles Ceramics International Biomaterials
Computer Aided Engineering (CAE) Techniques Applied To Hip Implant
International Journal Of Computational Engineering Research (ijceronline.com) Vol. 3 Issue. 3 Computer Aided Engineering (CAE) Techniques Applied To Hip Implant 1, M. S. Abo_Elkhair, 2, M. E. Abo-Elnor,
Custom Design of Knee Joint Prosthesis By Using Computerized Tomography (CT) Images and 3D Modelling
Custom Design of Knee Joint Prosthesis By Using Computerized Tomography (CT) Images and 3D Modelling Qasem Alyazji Near East University, Department of Biomedical Engineering Nicosia, North Cyprus, Turkey
Wear-contact analysis of hip implant coated with functionally graded material
2014; 1(7): 439-443 IJMRD 2014; 1(7): 439-443 www.allsubjectjournal.com Received: 13-12-2014 Accepted: 30-12-2014 e-issn: 2349-4182 p-issn: 2349-5979 Impact Factor: 3.762 Vinod Pallapu M. Tech Student
Why an Exactech Hip is Right for You
Why an Exactech Hip is Right for You Why do I need a total hip replacement? Which surgical approach is best for me? How long will it last? Which implant is right for me? Founded in 1985 by an orthopaedic
on-metal Hips: Device Mechanics and Failure Modes
1 Metal-on on-metal Hips: Device Mechanics and Failure Modes Steven M. Kurtz, Ph.D., and Richard Underwood, Ph.D. Exponent, Inc., and Drexel University NIH R01 AR47904 2 Contracts: DePuy Orthopaedics,
ReCap Product Rationale
FLH 155 01/09 Biomet UK Ltd Waterton Industrial Estate Bridgend, South Wales CF31 3XA, United Kingdom Tel. +44 (0)1656 655221 Fax. +44 (0)1656 645454 ReCap Product Rationale A complete resurfacing system
The Right Choice. Exeter. total hip system
The Right Choice Exeter total hip system Exeter The Right Choice Anatomic Reconstruction Offset The objectives of total hip replacement are to: relieve pain increase mobility and function Achieving a correct
Hip Resurfacing 2011 ORIGINAL ARTICLE. James W. Pritchett MD. Introduction. Abstract
1 ORIGINAL ARTICLE Hip Resurfacing 2011 James W. Pritchett MD Abstract In 1938 Marion Smith-Peterson placed a cobalt chromium cup on a reshaped femoral head to perform the first hip resurfacing. 15 Also,
Acetabular Wedge Augment System
Orthopaedics Acetabular Wedge Augment System Stryker Hips. Implant with confidence. Restoration Acetabular Wedge Augment System Restoration Acetabular Wedge Augments, united with Tritanium, Trident, MDM
NATIONAL INSTITUTE FOR HEALTH AND CLINICAL EXCELLENCE. Health Technology Appraisal
NATIONAL INSTITUTE FOR HEALTH AND CLINICAL EXCELLENCE Health Technology Appraisal Total hip replacement and resurfacing arthroplasty for the treatment of pain or disability resulting from end stage arthritis
BONE PRESERVATION STEM
TRI-LOCK BONE PRESERVATION STEM Featuring GRIPTION Technology SURGICAL TECHNIQUE IMPLANT GEOMETRY Extending the TRI-LOCK Stem heritage The original TRI-LOCK Stem was introduced in 1981. This implant was
Total Hip Joint Replacement. A Patient s Guide
Total Hip Joint Replacement A Patient s Guide Don t Let Hip Pain Slow You Down What is a Hip Joint? Your joints are involved in almost every activity you do. Simple movements such as walking, bending,
Metal-on-Metal Hip Systems
Meeting of the Orthopaedic and Rehabilitation Devices Advisory Panel June 27-28, 2012 Metal-on-Metal Hip Systems Center for Devices and Radiological Health U.S. Food and Drug Administration Meeting of
Answers to commonly asked questions from patients with metal-on-metal hip replacements / resurfacings. Contents
Answers to commonly asked questions from patients with metal-on-metal hip replacements / resurfacings John Skinner 1 and Alister Hart 2, Consultant Orthopaedic Surgeons and Directors of the London Implant
TOTAL HIP REPLACEMENT FOR A LIFETIME: THE CEMENTLESS METAL ON METAL RECONSTRUCTION
Richard A. Sweet, M.D. Louisville Orthopaedic Clinic Louisville, KY TOTAL HIP REPLACEMENT FOR A LIFETIME: THE CEMENTLESS METAL ON METAL RECONSTRUCTION INTRODUCTION Total hip replacement surgery (THR) has
Metasul LDH Large Diameter Head
Metasul LDH Large Diameter Head Surgical Technique Metasul LDH Large Diameter Head Surgical Technique Enhancing Stability and Increasing Range of Motion Metasul LDH Large Diameter Head Surgical Technique
How To Make An Implant From A Metal That Is Like Bone
Trabecular Metal Technology The Best Thing Next to Bone Trabecular Metal Technology The Best Thing Next to Bone When you need a hip, knee, shoulder or spine implant, you want assurance that your implant
M 2 a-magnum. Design Rationale. Large Metal Articulation. Knees Hips Extremities Cement and Accessories PMI. Technology
M 2 a-magnum Large Metal Articulation Design Rationale Knees Hips Extremities Cement and Accessories PMI Technology M 2 a-magnum Large Metal Articulation History of Metal-on-Metal Early metal-on-metal
Photograph showing the components of an artificial total hip
Case Study 4 (CS4) Artificial Total Hip Replacement Learning Objectives After studying this case study, you should be able to do the following: 1. List and briefly explain six biocompatibility considerations
Medical Device Alert. Device All metal-on-metal (MoM) hip replacements. Action by. CAS deadlines. Ref: MDA/2012/036 Issued: 25 June 2012 at 11:00
Medical Device Alert Issued: 25 June 2012 at 11:00 Device All metal-on-metal (MoM) hip replacements Problem The MHRA is issuing updated information and advice about the follow-up of implanted with metal-on-metal
Lap Fillet Weld Calculations and FEA Techniques
Lap Fillet Weld Calculations and FEA Techniques By: MS.ME Ahmad A. Abbas Sr. Analysis Engineer [email protected] www.advancedcae.com Sunday, July 11, 2010 Advanced CAE All contents Copyright
Randal S. Ford. ATTORNEY AT LAW (205) 752-4440 [email protected]. DePuy ASR Hip Implant Recall Fact Sheet
DePuy ASR Hip Implant Recall Fact Sheet Recalled Devices: ASR XL Acetabular System on the market since 2004, and sold worldwide. Dates of Implant: July 2003 to 2010 ASR Hip Resurfacing System on the market
Introduction to Biomaterials in Orthopaedic Surgery
CHAPTER 1 Introduction to Biomaterials in Orthopaedic Surgery 1.1 Definition of Biomaterial A biomaterial is a material that interacts with human tissue and body fluids to treat, improve, or replace anatomical
Technology Breakthrough in Spinal Implants (Technical Insights)
Technology Breakthrough in Spinal Implants (Technical Insights) Biomaterial innovations is a growth factor for spinal implant market June 2014 Table of Contents Section Page Number Executive Summary 4
Implant materials. Learning outcomes. Implant materials in trauma. How to use this handout? Functions of implants. Types of materials
Implant materials How to use this handout? The left column is the information as given during the lecture. The column at the right gives you space to make personal notes. Learning outcomes At the end of
An Alternative Conservative Approach to Hip Reconstruction
Joint Implant Surgery & Research Foundation Chagrin Falls, Ohio, USA An Alternative Conservative Approach to Hip Reconstruction Craig S. Waller, MD* and Timothy McTighe, Dr. H.S. (hc)** Acknow ledgement:
PRESENTATIONS/PAPERS INTERNATIONAL. RAISING STANDARDS IN JOINT ARTHROPLASTY Course Co-Chairman, The Great Debate - London, June 2013
PRESENTATIONS/PAPERS INTERNATIONAL 1998 2013 RAISING STANDARDS IN JOINT ARTHROPLASTY Course Co-Chairman, The Great Debate - London, June 2013 HOW TO CHOOSE THE RIGHT STEM FOR THE RIGHT PATIENT Corin Symposium
ABGII Cement Free Total Hip Replacement System
Cement Free Total Hip Replacement System Efficacy Innovation Cement Free Hip System The ABG Cement Free Hip System is one of the foremost ranges of cementless total hip replacement prosthesis. Used extensively
frequently asked questions Knee and Hip Joint Replacement Technology
frequently asked questions Knee and Hip Joint Replacement Technology frequently asked questions Knee and Hip Joint Replacement Technology Recently, you may have seen advertisements from legal companies
PERIPROSTHETIC IMPLANTS
PERIPROSTHETIC IMPLANTS PRODUCT OVERVIEW CLINICAL SOLUTIONS Periprosthetic fractures present unique challenges, such as how to gain fixation when the medullary canal is occupied. Special techniques and
Materials Sciences. Dr.-Ing. Norbert Hort [email protected]. International Masters Programme in Biomedical Engineering
Materials Sciences International Masters Programme in Biomedical Engineering Magnesium Innovations Center (MagIC) GKSS Forschungszentrum Geesthacht GmbH Dr.-Ing. Norbert Hort [email protected] Contents
Exeter. Surgical Technique. V40 Stem Cement-in-Cement. Orthopaedics
Exeter Orthopaedics V40 Stem Cement-in-Cement Surgical Technique Exeter V40 Stem Cement-in-Cement Surgical Technique Table of Contents Indications and Contraindications...2 Warnings and Precautions...2
Artificial Hip Implants 2011
A Novel Elastic Squeeze Film Total Hip Replacement Stephen Boedo Department of Mechanical Engineering Rochester Institute of Technology Rochester, NY 14623 [email protected] John F. Booker Sibley School of
The information contained in this document is intended for healthcare professionals only.
The information contained in this document is intended for healthcare professionals only. Dall-Miles Cabling System Dall-Miles Recon and Trauma Cable System Trochanteric Reattachment Using the Trochanteric
Introduction to Solid Modeling Using SolidWorks 2012 SolidWorks Simulation Tutorial Page 1
Introduction to Solid Modeling Using SolidWorks 2012 SolidWorks Simulation Tutorial Page 1 In this tutorial, we will use the SolidWorks Simulation finite element analysis (FEA) program to analyze the response
A THREE-DIMENSIONAL FINITE ELEMENT ANALYSIS OF MANDIBULAR OVERDENTURE SUPPORTED BY CYLINDRICAL AND CONICAL IMPLANTS
A THREE-DIMENSIONAL FINITE ELEMENT ANALYSIS OF MANDIBULAR OVERDENTURE SUPPORTED BY CYLINDRICAL AND CONICAL IMPLANTS Evandro Afonso Sartori, [email protected] Josué Ricardo Broilo Luiz Oscar
PMA P050016 Cormet 2000 Hip Resurfacing System
PMA P050016 Cormet 2000 Hip Resurfacing System ORTHOPEDIC AND REHABILITATION DEVICES PANEL Gaithersburg, Maryland February 22, 2007 PMA P050016 1 Agenda Introduction Device Description & Preclinical Testing
Accolade. System. Brochure. Achieving Perfect Balance. Cemented and Cementless Femoral Hip System
Accolade System Brochure Achieving Perfect Balance Cemented and Cementless Femoral Hip System Accolade Cemented Hip System Potential for Perfect Balance The Accolade C Femoral Component: A perfect balance
Clinically Proven Fiber Metal Material. Power to choose advanced bearing technologies to match patient demands
Trilogy IT Acetabular System Design Rationale 1 For orthopedic surgeons treating a wide range of patients, the Trilogy IT Acetabular System provides a clinically proven1-5 Fiber Metal Material and the
Clinical Testing for Metal-on-Metal Prosthetic Wear and Tear
Clinical Testing for Metal-on-Metal Prosthetic Wear and Tear Frederick G. Strathmann, PhD, DABCC (CC, TC) February 8 th, 2013 Disclosures None Objectives Compare heavy metal analysis in synovial fluid
Numerical Analysis of Independent Wire Strand Core (IWSC) Wire Rope
Numerical Analysis of Independent Wire Strand Core (IWSC) Wire Rope Rakesh Sidharthan 1 Gnanavel B K 2 Assistant professor Mechanical, Department Professor, Mechanical Department, Gojan engineering college,
.URGENT DEVICE CORRECTION
zimmer.urgent DEVICE CORRECTION Zimmer, Inc. P.O. Box 706 Warsaw, IN 46561-0706 574.267.6131 www.zimmer.com July 22, 2008 Dear Surgeon: Since we last wrote to you in May 2008 regarding the Durom Acetabular
EBM Inside. Additive Manufacturing of orthopedic implants
EBM Inside Arcam provides a cost-efficient Additive Manufacturing solution for production of implants. Arcam s EBM technology is used for production of FDA-cleared and CE-certified orthopedic implants.
The Journal of Arthroplasty
The Journal of Arthroplasty 29 (2014) 219 224 Contents lists available at ScienceDirect The Journal of Arthroplasty journal homepage: www.arthroplastyjournal.org One-Component Revision of Failed Hip Resurfacing
Metal on Metal Hips. Total Hip Replacement. Total Hip Replacement
Metal on metal hips: Questions Metal on Metal Hips Jim Sullivan Why were metal on metal hips popular? Are all metal on metal hips the same? What are the problems with the ASR hip? What are the issues with
INTRODUCTION Cerclage Cable Vs. Monofilament Wire
B M P CABLE S Y S T E M S U R G I C A L TECHNIQUE INTRODUCTION The Biomet Medical Products (BMP ) Cable System provides a cost effective and simple method of trochanteric reattachment, fracture fixation,
High-Flex Solutions for the MIS Era. Zimmer Unicompartmental High Flex Knee System
High-Flex Solutions for the MIS Era Zimmer Unicompartmental High Flex Knee System Zimmer Unicompartmental High Flex Knee Built On Success In today s health care environment, meeting patient demands means
Appendice Caratteristiche Dettagliate dei Materiali Utilizzati
Appendice Caratteristiche Dettagliate dei Materiali Utilizzati A.1 Materiale AISI 9840 UNI 38NiCrMo4 AISI 9840 Steel, 650 C (1200 F) temper, 25 mm (1 in.) round Material Notes: Quenched, 540 C temper,
Patient Labeling Information System Description
Patient Labeling Information System Description The Trident Ceramic Acetabular System is an artificial hip replacement device that features a new, state-of-the-art ceramic-on-ceramic bearing couple. The
Modular Dual Mobility Acetabular Components: An Important Extension of a Proven Approach to Hip Instability
Modular Dual Mobility Acetabular Components: An Important Extension of a Proven Approach to Hip Instability Robert Wetzel, MD, Lalit Puri, MD, S. David Stulberg, MD Disclosure In accordance with ACCME
INJECTION MOLDING COOLING TIME REDUCTION AND THERMAL STRESS ANALYSIS
INJECTION MOLDING COOLING TIME REDUCTION AND THERMAL STRESS ANALYSIS Tom Kimerling University of Massachusetts, Amherst MIE 605 Finite Element Analysis Spring 2002 ABSTRACT A FEA transient thermal structural
NATIONAL INSTITUTE FOR HEALTH AND CARE EXCELLENCE
NATIONAL INSTITUTE FOR HEALTH AND CARE EXCELLENCE Overview Total hip replacement and resurfacing arthroplasty for treating pain or disability resulting from end stage arthritis of the hip (review of technology
Appendix B: FDA Safety Communication (Website) for MoM Hip Systems
Appendix B: FDA Safety Communication (Website) for MoM Hip Systems. 1 Metal on Metal Hip Implant Systems Home Page The Hip Joint Hip Implant Systems Metal-on-Metal Hip Implant Systems Total Hip Replacement
Metallurgical analysis of five failed cast cobalt-chromium-molybdenum alloy hip prostheses
Veterans Administration Journal of Rehabilitation Research and Development Vol. 23 No. 4 Pages 27-36 Metallurgical analysis of five failed cast cobalt-chromium-molybdenum alloy hip prostheses STEPHEN D.
The mechanical behavior of the bone microstructure around dental implants
BUDAPEST UNIVERSITY OF TECHNOLOGY AND ECONOMICS DEPARTMENT OF STRUCTURAL MECHANICS The mechanical behavior of the bone microstructure around dental implants Summary and Theses of PhD dissertation ÉVA LAKATOS
Taperloc Complete Hip System
Taperloc Complete Hip System One Surgeon. One Patient. Over 1 million times per year, Biomet helps one surgeon provide personalized care to one patient. The science and art of medical care is to provide
Minimally Invasive Hip Replacement through the Direct Lateral Approach
Surgical Technique INNOVATIONS IN MINIMALLY INVASIVE JOINT SURGERY Minimally Invasive Hip Replacement through the Direct Lateral Approach *smith&nephew Introduction Prosthetic replacement of the hip joint
VERILAST Technology for Hip Replacement Implants
VERILAST Technology for Hip Replacement Implants Surgeon Name Clinic Name Clinic Address Clinic i Address Phone Number Web Address Total Hip Replacement What Is VERILAST Hip Technology? OXINIUM Oxidized
Material Optimization and Weight Reduction of Drive Shaft Using Composite Material
IOSR Journal of Mechanical and Civil Engineering (IOSR-JMCE) e-issn: 2278-1684,p-ISSN: 2320-334X, Volume 10, Issue 1 (Nov. - Dec. 2013), PP 39-46 Material Optimization and Weight Reduction of Drive Shaft
Polyethylene Hip Resurfacing for Women
1 ORIGINAL ARTICLE Polyethylene Hip Resurfacing for Women James W. Pritchett MD Abstract Background: Since 1995, most hip resurfacing procedures have been performed using a metal-on-metal prosthesis with
DIRECT FABRICATION OF METAL ORTHOPEDIC IMPLANTS USING ELECTRON BEAM MELTING TECHNOLOGY. [Reviewed, accepted August 13, 2003] Abstract.
DIRECT FABRICATION OF METAL ORTHOPEDIC IMPLANTS USING ELECTRON BEAM MELTING TECHNOLOGY O. L. A. Harrysson 1, D. R. Cormier 1, D. J. Marcellin-Little 2, K. R. Jajal 1 1 Department Of Industrial Engineering,
Titanium as a Biomaterial for Implants
Titanium as a Biomaterial for Implants 9 Carlos Oldani and Alejandro Dominguez Department of Materials and Technology, Faculty of Exact, Physical and Natural Sciences, Universidad Nacional de Córdoba Argentina
Mechanical Properties of Metals Mechanical Properties refers to the behavior of material when external forces are applied
Mechanical Properties of Metals Mechanical Properties refers to the behavior of material when external forces are applied Stress and strain fracture or engineering point of view: allows to predict the
Vincent Constantin, CADFEM (Suisse) AG
Fast Titelmasterformat and reliable Bolt durch Assessment Klicken bearbeiten inside ANSYS Vincent Constantin, CADFEM (Suisse) AG Agenda Introduction VDI 2230 Bolt Assessment inside ANSYS Verification Examples
YOUR GUIDE TO TOTAL HIP REPLACEMENT
A Partnership for Better Healthcare A Partnership for Better Healthcare YOUR GUIDE TO TOTAL HIP REPLACEMENT PEI Limited M50 Business Park Ballymount Road Upper Ballymount Dublin 12 Tel: 01-419 6900 Fax:
Modular Sternal Cable System. Flexibility and strength in sternal closure and repair.
Modular Sternal Cable System. Flexibility and strength in sternal closure and repair. Multiple closure options Stable fixation in all configurations Improved strength and flexibility compared to wire Modular
Cormet Hip Resurfacing System
Cormet Hip Resurfacing System Patient Product Information 325 Corporate Drive Mahwah, NJ 07430 t: 1-888-STRYKER www.aboutstryker.com The information presented in this brochure is for educational purposes
Validation of biomedical coatings
Synergy makes sence Validation of biomedical coatings MG-FSI72-108 Last revision: March 2011 5, Chemin du Catupolan - 69120 Vaulx en Velin - France - Tel. 33 (0)4 72 81 22 62 - Fax : 33 (0)4 72 81 22 72
We have carefully reviewed your questions and the recent promotion for your program on the ABC website.
23 May 2014 Mr P Cronau Senior Producer, Four Corners, The ABC, GPO Box 9994, Sydney NSW 2001. Dear Mr Cronau, We have carefully reviewed your questions and the recent promotion for your program on the
DePuy Orthopaedics ASR Recall Reference Guide for U.S. Healthcare Professionals
DePuy Orthopaedics ASR Recall Reference Guide for U.S. Healthcare Professionals DPYUS 46 (Version 2) 1 October 18, 2010 Contents 1. Available Resources... 3 Surgeon-to-Patient Communications Support...
Sinterstation. Pro Direct Metal SLM System
Sinterstation Pro Direct Metal SLM System Jim Dier SLS and SLM Systems, Upper Midwest 3D Systems, Inc. 18 July 2008 Introduction Product overview Systems Sinterstation Pro DM100 SLM System Sinterstation
HexWeb CR III Corrosion Resistant Specification Grade Aluminum Honeycomb
Corrosion Resistant Specification Grade Aluminum Honeycomb Description 5052 and 5056 expanded aerospace grade aluminum honeycomb materials are available in a wide selection of cell sizes and foil gauges.
Surgical technique. Sagitta EVL
Surgical technique Sagitta EVL Sagitta EVL The range Offset 7 mm The collar neck increases by mm from the size. 1 Size L (mm) Standard Offset DP+ 1. / 0 10 6 L 0+ 1 6.. 1 16 6.6.6 10 7 1 7.. 160 0 7 16
A Magazine Dedicated to Mass Torts Law. The Dangers of Metal-on-Metal Hips. Details of DePuy ASR Settlement Announced. www.langdonemison.
d3 Dangerous Drugs and Devices A Magazine Dedicated to Mass Torts Law The Dangers of Metal-on-Metal Hips Details of DePuy ASR Settlement Announced www.langdonemison.com Johnson & Johnson Agrees to Pay
14 Metallic Alloys in Total Hip Arthroplasty
14 Metallic Alloys in Total Hip Arthroplasty Timothy McTighe, Declan Brazil, and Warwick Bruce INTRODUCTION In dealing with the vast and complex problems associated with reconstructive total hip surgery,
Hip Resurfacing (Re-Review)
20, 2012 Health Technology Assessment Hip Resurfacing (Re-Review) Final Evidence Report October 14, 2013 Health Technology Assessment Program (HTA) Washington State Health Care Authority PO Box 42712 Olympia,
BIOACTIVE COATINGS ON 316L STAINLESS STEEL IMPLANTS
Trends Biomater. Artif. Organs. Vol. 17(2) pp 43-47 (2004) http//www.sbaoi.org BIOACTIVE COATINGS ON 316L STAINLESS STEEL IMPLANTS N. Ramesh Babu*,+, Sushant Manwatkar*, K. Prasada Rao* and T. S. Sampath
Material data sheet. EOS CobaltChrome MP1. Description
EOS CobaltChrome MP1 EOS CobaltChrome MP1 is a cobalt-chrome-molybdenum-based superalloy powder which has been optimized especially for processing on EOSINT M systems. This document provides information
ACCOLADE II. Orthopaedics. Femoral Hip System. Surgical Technique
ACCOLADE II Femoral Hip System Orthopaedics Surgical Technique Indications The indications for use of the total hip replacement prostheses include: Noninflammatory degenerative joint disease, including
Creation of an Unlimited Database of Virtual Bone. Validation and Exploitation for Orthopedic Devices
Creation of an Unlimited Database of Virtual Bone Population using Mesh Morphing: Validation and Exploitation for Orthopedic Devices Najah Hraiech 1, Christelle Boichon 1, Michel Rochette 1, 2 Thierry
P REPLACEMENT SURGERY
P REPLACEMENT SURGERY DIRECT ANTERIOR APPROACH M I N I M I Z I N G R E C O V E R Y. M A X I M I Z I N G R E S U L T S. CENTER FOR MINIMAL INVASIVE JOINT SURGERY 2301 25TH STREET SOUTH FARGO ND 58103 701-241-9300
North American Stainless
North American Stainless Flat Products Stainless Steel Sheet T409 INTRODUCTION NAS 409 is an 11% chromium, stabilized ferritic stainless steel. It is not as resistant to corrosion or high-temperature oxidation
BIRMINGHAM HIP Resurfacing (BHR ) System PATIENT INFORMATION
BIRMINGHAM HIP Resurfacing (BHR ) System PATIENT INFORMATION Table of Contents 1.0 What is the BHR Device? 2.0 What is the Purpose of the BHR Device? 3.0 When Should the BHR Device Not Be Used? (Contraindications)
A Case Study Comparing Two Approaches for Applying Area Loads: Tributary Area Loads vs Shell Pressure Loads
1 A Case Study Comparing Two Approaches for Applying Area Loads: Tributary Area Loads vs Shell Pressure Loads By Dr. Siriwut Sasibut (Application Engineer) S-FRAME Software Inc. #1158 13351 Commerce Parkway
USE OF SIMULATION TO IMPROVE CARDIOVASCULAR STENT DEVELOPMENT
USE OF SIMULATION TO IMPROVE CARDIOVASCULAR STENT DEVELOPMENT V. Astier, S. Bidal, V. Garitey, F. Mouret Abstract : A stent is a wire metal mesh tube placed into an artery or blood vessel to hold the structure
CeSpace Titanium / PEEK
Aesculap Anterior Cervical Interbody Fusion System CeSpace Titanium / PEEK Aesculap Spine CeSpace Content A Foreword 3 B Implant Material 4 C Implant Features 6 D Surgical Technique 8 E Ordering Information
Y O U R S U R G E O N S. choice of. implants F O R Y O U R S U R G E R Y
Y O U R S U R G E O N S choice of implants F O R Y O U R S U R G E R Y Y O U R S U R G E O N S choice of implants F O R Y O U R S U R G E R Y Your Surgeon Has Chosen the C 2 a-taper Acetabular System The
Graphic courtesy of DePuy Orthopaedics, Inc. HealthEast Joint Replacement Registry: 20 Year Report
Graphic courtesy of DePuy Orthopaedics, Inc. HealthEast Joint Replacement Registry: 20 Year Report HealthEast Joint Replacement Registry: 20 Year Report Foreword HealthEast Care System began the first
Bringing together proven technologies. Zimmer Continuum Acetabular System
Bringing together proven technologies. Zimmer Continuum Acetabular System The power to meet individual patient needs. Zimmer Continuum Acetabular System provides highly flexible solutions for orthopaedic
Restoration Modular. Revision Hip System Surgical Protocol
Orthopaedics Restoration Modular Revision Hip System Restoration Modular Calcar Body/Conical Distal Stem Femoral Components Using the Restoration Modular Instrument System Revision Hip System Orthopaedics
