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Global 3D Printing Medical Devices Market Analysis
- Published Date: December, 2022 | Report ID: CLS-1863 | No of pages: 225 | Format:
Global 3D Printing Medical Devices Market Executive Summary
Growing applications of 3D printing in the healthcare sector, high incidences of dental and orthopaedic diseases, easy development of customised medical products using 3D printing, availability of advanced 3D printing materials for dental and medical applications, and rising demand for 3D-printed goods in the cosmetics and pharmaceutical industries are the main drivers of the market's growth.
Market Size and Key Findings
The Global 3D Printing Medical Devices Market size is around US $ xx Bn in 2021 and is projected to reach US $ xx Bn in 2030, exhibiting a CAGR of xx% during the forecast period.
Global 3D Printing Medical Devices Market Size (In $Bn)
(2021-2030F)
Market Dynamics
Market Growth Drivers Analysis
One of the key drivers behind the market's expansion is the rising prevalence of surgical operations due to a variety of causes around the world. In other words, increasing rates of kidney stones, auto accidents, and other problems are directly causing the market to expand. Public-private investment for various efforts in the 3D printing sector has significantly increased in recent years. Such research and financing initiatives are anticipated to accelerate the development of 3D printing technologies and goods, consequently bolstering the market for 3D printed medical equipment.
Market Restraints
On the other hand, it is anticipated that barriers to market expansion will include high costs associated with research and development capabilities, a lack of adequate infrastructure, an uneven distribution of medical services, and a lack of knowledge in developing nations. Additionally, during the forecast period of 2022–2029, the market is expected to face challenges from a lack of favourable reimbursement scenarios and technology penetration in developing economies, high capital investment and operating costs, strict regulatory framework, limited insurance coverage and regulatory compliance, and a lack of suitable infrastructure in low- and middle-income nations.
Competitive Landscape
Key Players
The major players in the 3D Printing Medical Devices market are Stratasys Ltd. (US & Israel), 3D Systems Corporation GE Additive, Materialise NV, Renishaw plc, SLM Solutions Group AG, Desktop Metal, Inc., Prodways Group, Carbon, Inc., CELLINK, Organovo Holdings, Inc., EOS (Electro Optical Systems) GmbH, Biomedical Modeling, Inc., Formlabs, Inc., 3T Additive Manufacturing Ltd., DENTSPLY Sirona, Inc., DWS Systems SRL, Roland DG, HP, Inc., and regenHU among others.
TABLE OF CONTENT
1. Report Description of the Global 3D Printing Medical Devices Market
1.1 Research Scope and Assumption
1.2 Objective of the study
1.3 Research Methodology
1.4 Reason to buy the report
2. Global 3D Printing Medical Devices Market Executive Summary
2.1 Global 3D Printing Medical Devices Market – Industry Snapshot & key buying criteria, 2021-2030
2.2 Market Size, Growth Prospects, and Key findings
3. Market Dynamics of Global 3D Printing Medical Devices Market
3.1 Market Growth Drivers Analysis
3.2 Market Restrains Analysis
4. Global 3D Printing Medical Devices Market Segmentation
4.1 By Component
4.1.1 Equipment
4.1.1.1 3D Printers
4.1.1.2 3D Bioprinters
4.1.2 Materials
4.1.2.1 Plastics
4.1.2.1.1 Thermoplastics
4.1.2.1.2 Photopolymers
4.1.2.2 Metals and Metal Alloys
4.1.2.3 Biomaterials
4.1.2.4 Ceramics
4.1.2.5 Paper
4.1.2.6 Wax
4.1.2.7 Other Materials
4.1.3 Services & Software
4.2 By Application
4.2.1 Surgical Guides
4.2.1.1 Dental Guides
4.2.1.2 Craniomaxillofacial Guides
4.2.1.3 Orthopedic Guides
4.2.1.4 Spinal Guides
4.2.2 Surgical Instruments
4.2.2.1 Surgical Fasteners
4.2.2.2 Scalpels
4.2.2.3 Retractors
4.2.3 Standard Prosthetics & Implants
4.2.4 Custom Prosthetics & Implants
4.2.4.1 Orthopedic Implants
4.2.4.2 Dental Prosthetics & Implants
4.2.4.3 Craniomaxillofacial Implants
4.2.5 Tissue-engineered Products
4.2.5.1 Bone & Cartilage Scaffolds
4.2.5.2 Ligament & Tendon Scaffolds
4.2.6 Hearing Aids
4.2.7 Wearable Medical Devices
4.2.8 Other Applications
4.3 By Technology
4.3.1 Laser Beam Melting
4.3.1.1 Direct Metal Laser Sintering
4.3.1.2 Selective Laser Sintering
4.3.1.3 Selective Laser Melting
4.3.1.4 LaserCUSING
4.3.2 Photopolymerization
4.3.2.1 Digital Light Processing
4.3.2.2 Stereolithography
4.3.2.3 Two-photon Polymerization
4.3.2.4 PolyJet 3D Printing
4.3.3 Droplet Deposition/Extrusion-based Technologies
4.3.3.1 Fused Deposition Modeling
4.3.3.2 Multiphase Jet Solidification
4.3.3.3 Low-temperature Deposition Manufacturing
4.3.3.4 Microextrusion Bioprinting
4.3.4 Electron Beam Melting
4.3.5 Three-dimensional Printing/Adhesion Bonding/Binder Jetting
4.3.6 Other Technologies
4.4 By End User
4.4.1 Hospitals & Surgical Centers
4.4.2 Dental & Orthopedic Clinics
4.4.3 Academic Institutions & Research Laboratories
4.4.4 Pharma-Biotech & Medical Device Companies
4.4.5 Clinical Research Organizations
5. Global 3D Printing Medical Devices Market
5.1 Market Analysis, Insights, and Forecast – By Revenue
6. Competitive Landscape
6.1 Major Top Market Players
7. Key Company Profiles
7.1 Company 1
7.1.1 Overview
7.1.2 Financial Performance
7.1.3 Product & Services
7.1.4 Strategic initiatives
7.2 Company 2
7.2.1 Overview
7.2.2 Financial Performance
7.2.3 Product & Services
7.2.4 Strategic initiatives
7.3 Company 3
7.3.1 Overview
7.3.2 Financial Performance
7.3.3 Product & Services
7.3.4 Strategic initiatives
7.4 Company 4
7.4.1 Overview
7.4.2 Financial Performance
7.4.3 Product & Services
7.4.4 Strategic initiatives
7.5 Company 5
7.5.1 Overview
7.5.2 Financial Performance
7.5.3 Product & Services
7.5.4 Strategic initiatives
8. Healthcare Policies and Regulatory Landscape
8.1 Healthcare Policies in Global
8.2 Regulatory Framework in Global
8.3 Pricing & Reimbursement Scenario in Global 3D Printing Medical Devices Market
9. Factors Driving Future Growth
9.1 New Trends and Development Global 3D Printing Medical Devices Market
9.2 Future Opportunities
10. Strategic Recommendations
Segmentation
3D Printing Medical Devices Market Segmentation
By Component (Revenue, USD Billion):
The 3D Printing Medical Devices market is divided into equipment, materials, and software & services depending on the component. In 2020, the market for 3D printed medical devices was dominated by software and services. During the forecast period, the cost-effectiveness, utility, uniformity, and accuracy provided by services for medical device 3D printing are anticipated to drive the segment's expansion.
- Equipment
- 3D Printers
- 3D Bioprinters
- Materials
- Plastics
- Thermoplastics
- Photopolymers
- Metals and Metal Alloys
- Biomaterials
- Ceramics
- Paper
- Wax
- Other Materials
- Services & Software
By Application (Revenue, USD Billion):
The market for 3D-printed medical devices is divided into wearable/implantable medical devices, other medical devices, standard prosthetics and implants, custom prosthetics and implants, tissue-engineered goods, surgical guides, and surgical tools based on the application. In 2020, the custom prosthetics and implants market sector held a greater market share. Biological materials (such skin and bones), plastics, ceramics, and metals are just a few of the materials that may be used to create highly customizable prosthetics and implants using 3D printing. The development of this market sector is anticipated to be fueled by 3D printing of custom implants, which is drawing in new investors and medical device businesses.
- Surgical Guides
- Dental Guides
- Craniomaxillofacial Guides
- Orthopedic Guides
- Spinal Guides
- Surgical Instruments
- Surgical Fasteners
- Scalpels
- Retractors
- Standard Prosthetics & Implants
- Orthopedic Implants
- Dental Prosthetics & Implants
- Craniomaxillofacial Implants
- Bone & Cartilage Scaffolds
- Ligament & Tendon Scaffolds
- Custom Prosthetics & Implants
- Tissue-engineered Products
- Hearing Aids
- Wearable Medical Devices
- Other Applications
By Technology (Revenue, USD Billion):
The market for 3D printing medical devices has been divided into various technological categories, including electron beam melting (EBM), laser beam melting (LBM), photopolymerization, droplet deposition or extrusion-based technologies, three-dimensional printing (3DP) or adhesion bonding, and others. The segment of these that accounted for the biggest market share in 2020 was laser beam melting (LBM). The significant market share of this sector is linked to the technology's expanding use in the dentistry sector and in the production of implants for minimally invasive surgery.
- Laser Beam Melting
- Direct Metal Laser Sintering
- Selective Laser Sintering
- Selective Laser Melting
- LaserCUSING
- Photopolymerization
- Digital Light Processing
- Stereolithography
- Two-photon Polymerization
- PolyJet 3D Printing
- Fused Deposition Modeling
- Multiphase Jet Solidification
- Low-temperature Deposition Manufacturing
- Microextrusion Bioprinting
- Droplet Deposition/Extrusion-based Technologies
- Electron Beam Melting
- Three-dimensional Printing/Adhesion Bonding/Binder Jetting
- Other Technologies
By End User (Revenue, USD Billion):
Hospitals and surgical centers, dentistry and orthopaedic clinics, academic institutions & research laboratories, pharma-biotech & medical device firms, and clinical research organizations make up the different end-user segments of the 3D printing medical devices market. The sector of hospitals and surgical centers held the biggest market share in 2020. The significant market share of this sector can be due to the increased uptake of cutting-edge medical technology by hospitals, the expansion of existing 3D printing facilities, and the rising affordability of 3D printing services.
- Hospitals & Surgical Centers
- Dental & Orthopedic Clinics
- Academic Institutions & Research Laboratories
- Pharma-Biotech & Medical Device Companies
- Clinical Research Organizations
Methodology
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