Product Code: iDATA_EUTR20_MS
The European orthopedic trauma device market was valued at 807 million Euro in 2019. This is expected to decrease over the forecast period at a CAGR of -0.4% to 783.1 million Euro.
One of the major limiters to the European trauma market is the new Medical Device Regulation (MDR) that will be put into force by the European Union (EU) in 2021. This will change the procedures for introducing new products into the market, making it a considerably more time intensive and cost-intensive process. Furthermore, the regulations also apply to all products that are currently available on the market. This will result in a reevaluation of product portfolios by the manufacturers and the likelihood of much lesser innovation.
One of the major drivers of this market is demographics. The growing and aging population are increasing unit sales, as there is a relative high number of bone fractures in the elderly population. Furthermore, obesity increases the risk of bone fractures and, since the number of obese people in Europe is rising, unit sales will rise accordingly.
The full report suite on the European market for orthopedic trauma device includes devices related to plates and screws, bioabsorbable fixation, intramedullary nails, cannulated screws, intramedullary hip nails, conventional hip fixation, staple fixation bone pins, external fixation and bone growth stimulators. The value of applicable instruments used in those segments is not included in the scope of this report.
TABLE OF CONTENTS
TABLE OF CONTENTS I
LIST OF FIGURES XIII
LIST OF CHARTS XXXVI
EXECUTIVE SUMMARY 1
EUROPEAN ORTHOPEDIC TRAUMA DEVICE MARKET OVERVIEW 1
COMPETITIVE ANALYSIS 3
MARKET TRENDS 5
MARKET DEVELOPMENTS 7
PROCEDURE NUMBERS 9
MARKETS INCLUDED 10
KEY REPORT UPDATES 12
VERSION HISTORY 12
RESEARCH METHODOLOGY 13
- Step 1: Project Initiation & Team Selection 13
- Step 2: Prepare Data Systems and Perform Secondary Research 16
- Step 3: Preparation for Interviews & Questionnaire Design 18
- Step 4: Performing Primary Research 19
- Step 5: Research Analysis: Establishing Baseline Estimates 21
- Step 6: Market Forecast and Analysis 22
- Step 7: Identify Strategic Opportunities 24
- Step 8: Final Review and Market Release 25
- Step 9: Customer Feedback and Market Monitoring 26
DISEASE OVERVIEW 27
- 2.1 BASIC ANATOMY 27
- 2.2 DISEASE TREATMENTS AND DIAGNOSTICS 28
- 2.3 PATIENT DEMOGRAPHICS 30
- 2.3.1 General Statistics 30
PRODUCT ASSESSMENT 32
- 3.1 INTRODUCTION 32
- 3.2 PRODUCT PORTFOLIOS 32
- 3.2.1 Plates and Screws 32
- 3.2.1.1 Latest Developments 33
- 3.2.2 Bioabsorbable Plates and Screws 44
- 3.2.2.1 Market Developments 45
- 3.2.3 Intramedullary Nails 47
- 3.2.4 Cannulated Screws 50
- 3.2.5 Intramedullary Hip Screws 52
- 3.2.6 Conventional Hip Screws 53
- 3.2.7 Staple Fixation 54
- 3.2.8 Bone Pins 57
- 3.2.9 External Fixation 59
- 3.2.10 Bone Growth Stimulators 62
- 3.3 REGULATORY ISSUES AND RECALLS 64
- 3.3.1 Acumed 64
- 3.3.1.1 Plates and Screws 64
- 3.3.2 DePuy 65
- 3.3.2.1 External Fixation 65
- 3.3.2.2 Intramedullary Nails 66
- 3.3.2.3 Plates and Screws 67
- 3.3.3 Integra LifeScience 72
- 3.3.3.1 Bone Pin 72
- 3.3.3.2 External Fixation 72
- 3.3.3.3 Plates and Screws 73
- 3.3.4 Smith and Nephew 74
- 3.3.4.1 Plates and Screws 74
- 3.3.5 Stryker 76
- 3.3.5.1 Bone Pins 76
- 3.3.5.2 External Fixation 77
- 3.3.5.3 Intramedullary Nails 77
- 3.3.5.4 Plates and Screws 78
- 3.3.6 Wright Medical 79
- 3.3.6.1 Plates and Screws 79
- 3.3.7 Zimmer Biomet 82
- 3.3.7.1 External Fixation 82
- 3.3.7.2 Intramedullary Nails 82
- 3.3.7.3 Plates and screws 84
- 3.3.7.4 Other Related Products 89
- 3.3.8 Other Companies 90
- 3.3.8.1 Bone Pin 90
- 3.3.8.2 Intramedullary Nails 91
- 3.3.8.3 Plates and Screws 91
- 3.3.8.4 Staple Fixation 94
- 3.4 CLINICAL TRIALS 95
- 3.4.1 Acumed 95
- 3.4.1.1 Plates and Screws 95
- 3.4.2 Arthrex 96
- 3.4.2.1 Plates and Screws 96
- 3.4.3 DePuy Synthes 97
- 3.4.3.1 Plates and Screws 97
- 3.4.3.2 Intramedullary Nail 99
- 3.4.4 Integra LifeScience 100
- 3.4.4.1 Plates and Screws 100
- 3.4.4.2 Staples Fixation 100
- 3.4.5 Smith and Nephew 101
- 3.4.5.1 Bioabsorbable Plates and Screws 101
- 3.4.5.2 Conventional Hip Screw / Nail 101
- 3.4.6 Stryker 102
- 3.4.6.1 External Fixation 102
- 3.4.6.2 Intramedullary Nails 102
- 3.4.7 Zimmer Biomet 104
- 3.4.7.1 Bone Growth Stimulator 104
- 3.4.7.2 Intramedullary Nail 104
- 3.4.7.3 Plates and Screws 105
- 3.4.8 Other Companies 106
- 3.4.8.1 Bioabsorbable Plates and Screws 106
- 3.4.8.2 Bone Growth Stimulation 108
- 3.4.8.3 Bone Pin 108
- 3.4.8.4 Cannulated Screws 109
- 3.4.8.5 Intramedullary Nail 110
- 3.4.8.6 Plates and Screws 111
EUROPEAN ORTHOPEDIC TRAUMA DEVICE MARKET OVERVIEW 116
- 4.1 INTRODUCTION 116
- 4.1.1 Anatomy 116
- 4.1.2 Pathology and Healing 116
- 4.1.3 Treatment Overview 117
- 4.1.3.1 Internal Fixation 117
- 4.1.3.2 External Fixation 117
- 4.1.3.3 Bone Growth Stimulation 118
- 4.1.4 Internal Fixation 118
- 4.1.4.1 Plates and Screws 118
- 4.1.4.2 Bioabsorbable Plates and Screws 119
- 4.1.4.3 Intramedullary Nails 119
- 4.1.4.4 Cannulated Screws 119
- 4.1.4.5 Conventional Hip screws 119
- 4.1.4.6 Hip Intramedullary Nails 120
- 4.1.4.7 Staples 120
- 4.1.4.8 Bone Pins 120
- 4.1.5 External Fixation 120
- 4.1.6 Bone Growth Stimulators 121
- 4.2 CURRENCY EXCHANGE RATE 122
- 4.3 MARKET OVERVIEW 123
- 4.4 TREND ANALYSIS BY SEGMENT 131
- 4.5 DRIVERS AND LIMITERS 135
- 4.5.1 Market Drivers 135
- 4.5.2 Market Limiters 136
- 4.6 COMPETITIVE MARKET SHARE ANALYSIS 138
- 4.7 MERGERS AND ACQUISITIONS 144
- 4.8 COMPANY PROFILES 146
- 4.8.1 Acumed 146
- 4.8.2 Arthrex 147
- 4.8.3 BioPro 148
- 4.8.4 Bioventus 149
- 4.8.5 CONMED 150
- 4.8.6 DePuy Synthes 151
- 4.8.7 DJO Global 152
- 4.8.8 I.T.S. Gmbh 153
- 4.8.9 Integra LifeSciences 154
- 4.8.10 Orthofix 155
- 4.8.11 Smith & Nephew 156
- 4.8.12 Stryker 157
- 4.8.13 Wright Medical 158
- 4.8.14 Zimmer Biomet 159
- 4.9 SWOT ANALYSIS 161
- 4.9.1 Bioventus 162
- 4.9.2 DePuy Synthes 163
- 4.9.3 Smith & Nephew 164
- 4.9.4 Stryker 165
- 4.9.5 Wright Medical 166
- 4.9.6 Zimmer Biomet 167
COUNTRY PROFILES 169
- 5.1 INTRODUCTION 169
- 5.1.1 Population 169
- 5.1.2 GDP Per Capita 169
- 5.1.3 Price Index 169
- 5.2 GERMANY 170
- 5.3 FRANCE 171
- 5.4 UNITED KINGDOM 172
- 5.5 ITALY 173
- 5.6 SPAIN 174
- 5.7 BENELUX 175
- 5.8 SCANDINAVIA 176
- 5.9 AUSTRIA 177
- 5.10 SWITZERLAND 178
- 5.11 PORTUGAL 179
PROCEDURE NUMBERS 180
- 6.1 PROCEDURES 180
- 6.1.1 Procedural Definitions 180
- 6.1.2 Upper Extremities 181
- 6.1.3 Hip 181
- 6.1.4 Lower Extremities 181
PLATE AND SCREW MARKET 184
- 7.1 INTRODUCTION 184
- 7.1.1 General Product Description 185
- 7.1.2 Product Sizes 185
- 7.1.3 Anatomic Plates 186
- 7.1.3.1 Locking Plates 186
- 7.1.3.2 Hybrid Plates 186
- 7.1.4 Materials 186
- 7.2 MARKET OVERVIEW 188
- 7.3 MARKET ANALYSIS AND FORECAST 193
- 7.3.1 Total Plate and Screw Market 193
- 7.3.2 Anatomical Plate and Screw Market by Segment 200
- 7.3.2.1 Total Anatomical Plate and Screw Market 205
- 7.3.2.2 Clavicle Plate and Screw Market 212
- 7.3.2.3 Proximal Humerus Plate and Screw Market 219
- 7.3.2.4 Elbow Plate and Screw Market 226
- 7.3.2.5 Distal Radius Plate and Screw Market 233
- 7.3.2.6 Hand Plate and Screw Market 240
- 7.3.2.7 Proximal Femur Plate and Screw Market 247
- 7.3.2.8 Distal Femur Plate and Screw Market 254
- 7.3.2.9 Proximal Tibia Plate and Screw Market 261
- 7.3.2.10 Distal Tibia Plate and Screw Market 268
- 7.3.2.11 Foot Plate and Screw Market 275
- 7.3.3 Generic Plate and Screw Market by Material 282
- 7.3.3.1 Total Generic Plate and Screw Market 286
- 7.3.3.2 Generic Stainless Steel Plate and Screw Market 292
- 7.3.3.2.1 Generic Large Stainless Steel Plate and Screw Market 301
- 7.3.3.2.2 Generic Small Stainless Steel Plate and Screw Market 308
- 7.3.3.2.3 Generic Mini Stainless Steel Plate and Screw Market 315
- 7.3.3.3 Generic Titanium Plate and Screw Market 322
- 7.3.3.3.1 Generic Large Titanium Plate and Screw Market 331
- 7.3.3.3.2 Generic Small Titanium Plate and Screw Market 338
- 7.3.3.3.3 Generic Mini Titanium Plate and Screw Market 345
- 7.4 DRIVERS AND LIMITERS 352
- 7.4.1 Market Drivers 352
- 7.4.2 Market Limiters 353
- 7.5 COMPETITIVE MARKET SHARE ANALYSIS 355
BIOABSORBABLE FIXATION MARKET 360
- 8.1 INTRODUCTION 360
- 8.1.1 Product Overview 360
- 8.1.2 Disadvantages Compared with Metal Fixation 361
- 8.1.2.1 Sterilization 361
- 8.1.2.2 Decreasing Strength with Absorption 362
- 8.1.2.3 Instrumentation 362
- 8.1.2.4 Soft-Tissue Reaction and Bone Lysis 362
- 8.1.2.5 Incomplete Absorption 362
- 8.1.3 Future Directions 362
- 8.2 MARKET ANALYSIS AND FORECAST 363
- 8.3 DRIVERS AND LIMITERS 366
- 8.3.1 Market Drivers 366
- 8.3.2 Market Limiters 367
- 8.4 COMPETITIVE MARKET SHARE ANALYSIS 369
INTRAMEDULLARY NAIL MARKET 372
- 9.1 INTRODUCTION 372
- 9.1.1 Product Description 373
- 9.1.2 Efficacy 373
- 9.2 MARKET OVERVIEW 374
- 9.3 MARKET ANALYSIS AND FORECAST 379
- 9.3.1 Total Intramedullary Nail Market 379
- 9.3.2 Humeral Intramedullary Nail Market 386
- 9.3.3 Forearm Intramedullary Nail Market 393
- 9.3.4 Femoral Intramedullary Nail Market 400
- 9.3.5 Tibial Intramedullary Nail Market 408
- 9.3.6 Ankle Intramedullary Nail Market 415
- 9.4 DRIVERS AND LIMITERS 422
- 9.4.1 Market Drivers 422
- 9.4.2 Market Limiters 423
- 9.5 COMPETITIVE MARKET SHARE ANALYSIS 425
CANNULATED SCREW MARKET 429
- 10.1 INTRODUCTION 429
- 10.1.1 Product Description 430
- 10.1.1.1 Headed Cannulated Screws 430
- 10.1.1.2 Headless Cannulated Screws 430
- 10.2 MARKET OVERVIEW 431
- 10.3 MARKET ANALYSIS AND FORECAST 436
- 10.3.1 Total Cannulated Screw Market 436
- 10.3.2 Stainless Steel Cannulated Screw Market 443
- 10.3.2.1 Large Stainless Steel Cannulated Screw Market 453
- 10.3.2.2 Medium Stainless Steel Cannulated Screw Market 460
- 10.3.2.3 Small Stainless Steel Cannulated Screw Market 467
- 10.3.3 Titanium Cannulated Screw Market 474
- 10.3.3.1 Large Titanium Cannulated Screw Market 484
- 10.3.3.2 Medium Titanium Cannulated Screw Market 491
- 10.3.3.3 Small Titanium Cannulated Screw Market 498