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Surgical 3D Printing Market By Technology (Electronic Beam Melting (EBM), Laser Beam Melting, Photopolymerization, Droplet Deposition (DD), and Others), By Component (Equipment, Materials, and Services & Software), By Application (External Wearable Devices, Tissue Engineering, Implants, and Clinical Study Devices), Industry Analysis, Size, Share, Growth, Trends, and Forecasts 2020-2026.

Report ID : 2298 | Publisher ID : Meta | Published : 2023-09-27 | Pages : 254

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Market Definition 

3D Printing medical system is based on a patient's imaging data. Medical devices that are printed at the point of care include patient-matched anatomical models, prosthetics, and surgical guides, which are used to guide surgeons during an operation. 

Global surgical 3D printing market was valued at $XX billion in 2019 with a CAGR of 17.7% from 2020 to 2026. 

Market Dynamics 

Technological advancements in surgical 3D printing is a key driving factor of the market. Companies are focusing on developing advanced and innovative 3D printing system for surgery. For instance, Anatomics has designed and developed world-first 3D printed titanium sternum and rib implant for the patient in suffering from cancer in the chest. The customizable implant can be adjusted to fit into the affected area and secured in place with screws. The people suffering from sarcoma use 3D printed titanium sternum and rib implant. Sarcoma cancer occurs in bone, cartilage, fat, muscle, vascular, or hematopoietic tissues. Further, TRUMPF has offered TRUMPF 3D printer to produce craniomaxillofacial implants. The surgeon use TRUMPF 3D printer to cut the craniomaxillofacial implant from perforated titanium plate during the procedure and then shape it to the size. Additionally, Renovis Surgical has introduced 3D-printed Posterior Lumbar Interbody Fusion Systems. The company has received 510(k) clearance from the U.S. Food and Drug Administration (FDA) to market posterior lumbar Tesera porous titanium interbody fusion systems. However, the high cost associated with surgical 3D printing might hamper market growth. The cost of the standard 3D printing material varies by process from approximately $25 per kilogram for FDM filaments, to $50-60 per kilogram of SLA resin. Larger parts of the 3D printed system need more material and will take longer to print, which leads to increasing cost. Moreover, Rising investment and funding for surgical 3D printing would provide lucrative opportunities for the market in the coming years. 

Market Segmentation 

The global surgical 3D printing market is mainly classified based on technology, component, and application. Technology is further segmented into Electronic Beam Melting (EBM), Laser Beam Melting, Photopolymerization, Droplet Deposition (DD), and Others. By component, the market is divided into Equipment, Materials, and Services & Software. By application, the market is further divided into External Wearable Devices, Tissue Engineering, Implants, and Clinical Study Devices. 

Based on technology, Photopolymerization was dominating the global surgical 3D printing market in 2019, owing to the widespread application of photopolymerization technology across various medical applications such as for manufacturing surgical guides including orthopedic, dental, and CMF guides; prosthetics and implants; porous scaffolds; and dental restorations. The partnership between companies to extend the range of applications for surgical 3D printing system is driving the market demand. For instance, Structo, a dental 3D printing solutions provider and the manufacturer has partnered with German 3D printing materials company, pro3dure. The partnership will help Velox users gain access to pro3dure’s range of dental 3D printing materials. Velox is an all-in-one desktop 3D printer with autonomous post-processing aimed at spearheading the adoption of 3D printing in dental practices. pro3dure manufactures various photopolymer materials for dental, audiology and medical applications. 

Regional Analysis 

Based on geography, the global surgical 3D printing market is divided into North America, Europe, Asia-Pacific, South America, and Middle East & Africa. North America is further divided in the U.S., Canada, and Mexico, whereas Europe consists of the UK, Germany, France, Italy, and Rest of Europe. Asia-Pacific is segmented into India, China, Japan, South Korea, and Rest of Asia-Pacific. The South America region includes Brazil, Argentina, and the Rest of South America, while the Middle East & Africa is categorized into GCC Countries, Egypt, South Africa, and Rest of Middle East & Africa. 

North America was dominating the global surgical 3D printing market in 2019, due to the commercialization of regulatory approved surgical 3D printing system, rising investment and expanding the development facility for the surgical 3D printing system, and strategic collaboration between companies to develop surgical 3D printing system. For instance, GE Healthcare has collaborated with Formlabs, a Massachusetts-based manufacturer of advanced 3D-printers that can help clinicians quickly print anatomical models at the point of care. These models visualize patient anatomy and disease for improved communication within the medical team, case-based teaching models and enhanced patient education 

Competitive landscape 

Key players operating in the surgical 3D printing industry include 3D Systems Corporation, Stratasys Ltd., Envisiontec GmbH, Renishaw plc, Materialise NV, 3T Additive Manufacturing Ltd., Arcam AB, EOS GmbH Electro Optical Systems, Prodways Group, and Concept Laser GmbH. 

The companies are commercializing technologically advanced surgical 3D printing system, the partnership between companies to develop 3D printing system for the medical industry, rising investment, facility expansion to manufacture 3D printing system for medical applications, and regulatory approval of surgical 3D printing system are some of the strategies adopted by the major companies. For instance, Materialise NV, a leading company in 3D technology solutions has received CE Marking Certification for its personalized orthopaedic and cranio-maxillofacial (CMF) solutions, which includes 3D-printed anatomical models and patient-matched surgical guides and implants. Materialise  is one of the first company to acquire CE certification for personalized, 3D-printed medical device portfolio. The CE approval will make the technology more accessible for surgeons.  

Surgical 3D Printing Market Key Segments: 

By Technology 

  • Electronic Beam Melting (EBM) 
  • Laser Beam Melting 
  • Photopolymerization 
  • Droplet Deposition (DD) 
  • Others 

By Component 

  • Equipment 
  • Materials 
  • Services & Software 

By Application 

  • External Wearable Devices 
  • Tissue Engineering 
  • Implants 
  • Clinical Study Devices 

Key Global Surgical 3D Printing Industry Players 

  • 3D Systems Corporation 
  • Stratasys Ltd. 
  • Envisiontec GmbH 
  • Renishaw plc 
  • EOS GmbH Electro Optical Systems 
  • Materialise NV 
  • 3T Additive Manufacturing Ltd. 
  • Arcam AB 
  • Prodways Group 
  • Concept Laser GmbH 

What Report Provides 

  • Full in-depth analysis of the parent Industry 
  • Important changes in market and its dynamics 
  • Segmentation details of the market 
  • Former, on-going, and projected market analysis in terms of volume and value 
  • Assessment of niche industry developments 
  • Market share analysis 
  • Key strategies of major players 
  • Emerging segments and regional growth potential 

1. Market Introduction
1.1. Executive Summary
1.2. Market Definition
1.3. Market Scope
2. Research Methodology
2.1. Primary Research
2.2. Research Methodology
2.3. Assumptions & Exclusions
2.4. Secondary data sources
3. Surgical 3D Printing Market Overview
3.1. Report Segmentation & Scope
3.2. Key Market Trend
3.3. Drivers
3.3.1. Technological Advancements in Surgical 3D Printing
3.4. Restraints
3.4.1. High Cost Associated with 3D Printing
3.5. Opportunity
3.5.1. Rising Investment and Funding for Surgical 3D Printing
3.6. Porter’s Five Forces Analysis
3.6.1. Porter’s Five Forces Analysis
3.7. Market Share Analysis
4. Technology Overview
4.1. Introduction
4.1.1. Market Size & Forecast
4.2. Electronic Beam Melting (EBM)
4.2.1. Market Size & Forecast
4.3. Laser Beam Melting
4.3.1. Market Size & Forecast
4.4. Photopolymerization
4.4.1. Market Size & Forecast
4.5. Droplet Deposition (DD)
4.5.1. Market Size & Forecast
4.6. Others
4.6.1. Market Size & Forecast
5. Component Overview
5.1. Introduction
5.1.1. Market Size & Forecast
5.2. Equipment
5.2.1. Market Size & Forecast
5.3. Materials
5.3.1. Market Size & Forecast
5.4. Services & Software
5.4.1. Market Size & Forecast
6. Application Overview
6.1. Introduction
6.1.1. Market Size & Forecast
6.2. External Wearable Devices
6.2.1. Market Size & Forecast
6.3. Tissue Engineering
6.3.1. Market Size & Forecast
6.4. Implants
6.4.1. Market Size & Forecast
6.5. Clinical Study Devices
6.5.1. Market Size & Forecast
7. Surgical 3D Printing Market Regional Overview
7.1. Introduction
7.1.1. Market Size & Forecast
7.2. North America Surgical 3D Printing Market
7.2.1. North America Market Size & Forecast, By Country
7.2.2. North America Market Size & Forecast, By Technology
7.2.3. North America Market Size & Forecast, By Component
7.2.4. North America Market Size & Forecast, By Application
7.2.5. U.S.
7.2.5.1. Market Size and Forecast
7.2.6. Canada
7.2.6.1. Market Size and Forecast
7.2.7. Mexico
7.2.7.1. Market Size and Forecast
7.3. Europe Surgical 3D Printing Market
7.3.1. Europe Market Size & Forecast, By Country
7.3.2. Europe Market Size & Forecast, By Technology
7.3.3. Europe Market Size & Forecast, By Component
7.3.4. Europe Market Size & Forecast, By Application
7.3.5. Germany
7.3.5.1. Market Size and Forecast
7.3.6. France
7.3.6.1. Market Size and Forecast
7.3.7. UK
7.3.7.1. Market Size and Forecast
7.3.8. Italy
7.3.8.1. Market Size and Forecast
7.3.9. Spain
7.3.9.1. Market Size and Forecast
7.3.10. Rest of Europe
7.3.10.1. Market Size and Forecast
7.4. Asia-Pacific Surgical 3D Printing Market
7.4.1. Asia-Pacific Market Size & Forecast, By Country
7.4.2. Asia-Pacific Market Size & Forecast, By Technology
7.4.3. Asia-Pacific Market Size & Forecast, By Component
7.4.4. Asia-Pacific Market Size & Forecast, By Application
7.4.5. Japan
7.4.5.1. Market Size and Forecast
7.4.6. China
7.4.6.1. Market Size and Forecast
7.4.7. Australia
7.4.7.1. Market Size and Forecast
7.4.8. India
7.4.8.1. Market Size and Forecast
7.4.9. South Korea
7.4.9.1. Market Size and Forecast
7.4.10. Rest of Asia-Pacific
7.4.10.1. Market Size and Forecast
7.5. South America Surgical 3D Printing Market
7.5.1. South America Market Size & Forecast, By Country
7.5.2. South America Market Size & Forecast, By Technology
7.5.3. South America Market Size & Forecast, By Component
7.5.4. South America Market Size & Forecast, By Application
7.5.5. Brazil
7.5.5.1. Market Size and Forecast
7.5.6. Argentina
7.5.6.1. Market Size and Forecast
7.5.7. Rest of South America
7.5.7.1. Market Size and Forecast
7.6. Middle East & Africa Surgical 3D Printing Market
7.6.1. Middle East & Africa Market Size & Forecast, By Country
7.6.2. Middle East & Africa Market Size & Forecast, By Technology
7.6.3. Middle East & Africa Market Size & Forecast, By Component
7.6.4. Middle East & Africa Market Size & Forecast, By Application
7.6.5. GCC Countries
7.6.5.1. Market Size and Forecast
7.6.6. Egypt
7.6.6.1. Market Size and Forecast
7.6.7. South Africa
7.6.7.1. Market Size and Forecast
7.6.8. Rest of Middle East & Africa
7.6.8.1. Market Size and Forecast
8. Company Profile
8.1. 3D Systems Corporation
8.1.1. Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
8.1.2. 3D Systems Corporation Product Category, Application, and Specification
8.1.3. 3D Systems Corporation Financial Performance (2016-2018)
8.1.4. Main Business/Business Overview
8.2. Stratasys Ltd.
8.3. Envisiontec GmbH
8.4. Renishaw plc
8.5. EOS GmbH Electro Optical Systems
8.6. Materialise NV
8.7. 3T Additive Manufacturing Ltd.
8.8. Arcam AB
8.9. Prodways Group
8.10. Concept Laser GmbH

  • 3D Systems Corporation 
  • Stratasys Ltd. 
  • Envisiontec GmbH 
  • Renishaw plc 
  • EOS GmbH Electro Optical Systems 
  • Materialise NV 
  • 3T Additive Manufacturing Ltd. 
  • Arcam AB 
  • Prodways Group 
  • Concept Laser GmbH 

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