Published Date: 
Jun,2017
Total Pages: 
150
Categories: 
HealthCare IT
Report Id: HIH3DPM617

The 3D printing also termed as additive manufacturing is a technique for converting virtual 3-D models into real time 3-D objects. Technological Innovation and advancements has evolved as preclinical drug trial by promoting testing on 3D printed organs as an alternative to animal examination. The current accomplishment in the 3D printing of tablets has opened new roads for the 3D printing innovation for use in the pharmaceutical sector. Photo polymerization innovation is broadly used by research associations to create exact and effective bio-models. Human services 3D printing market gives huge chances to assembling different medicinal devices and equipments including prosthetic limbs,  dental inserts, orthotic footwear and hearing aids. The 3D printing innovation takes into account the rising requests of customized therapeutic care by giving modified restorative devices in light of individual needs and necessities.

 

How Big is the Global Healthcare 3D Printing Market?

 

The Global Healthcare 3D Printing Market is expected to exceed more than US$ 3.89 Billion by 2022 at a CAGR of 21.9% in the given forecast period.

 

The major driving factors of Global Healthcare 3D Printing Market are as follows:

 

  • High demand for customization
  • Development investment in R&D from new entrant
  • Innovative Advancements in Healthcare 3D Printing
  • Growing Application of 3D Printing in the Healthcare Industry
  • Development of Customized Medical Products By 3D Printing Technology is easy
  • Growing demand for organ transplantation

 

The restraining factors of Global Healthcare 3D Printing Market are as follows:

 

  • Expensive 3D printing system
  • Strict government rules for 3D printed medical device approval
  • Process Control and Understanding
  • Lack of Trained Professionals

 

The Global Healthcare 3D Printing Market is segmented on the lines of its materials, application, technological and regional. Based on materials segmentation it covers metal & metal alloys, polymers, ceramics, others. Based on application segmentation it covers prosthetics, medical implants, dental, bio-printing, hearing & audibility aid, others. Based on technological segmentation it covers electron beam melting, selective laser sintering, fused deposition modeling, binder jetting, polyjet technology, comparisons – photo polymerization & FDM, scanners. The Global Healthcare 3D Printing Market on geographic segmentation covers various regions such as North America, Europe, Asia Pacific, Latin America, Middle East and Africa. Each geographic market is further segmented to provide market revenue for select countries such as the U.S., Canada, U.K. Germany, China, Japan, India, Brazil, and GCC countries.

 

This report provides:
 
1) An overview of the global market for Global Healthcare 3D Printing Market and related technologies.
2) Analyses of global market trends, with data from 2013, estimates for 2014 and 2015, and projections of compound annual growth rates (CAGRs) through 2022.
3) Identifications of new market opportunities and targeted promotional plans for Global Healthcare 3D Printing Market.
4) Discussion of research and development, and the demand for new products and new applications.
5) Comprehensive company profiles of major players in the industry.

 

REPORT SCOPE:

The scope of the report includes a detailed study of global and regional markets on Global Healthcare 3D Printing Market with the reasons given for variations in the growth of the industry in certain regions.
 
The report covers detailed competitive outlook including the market share and company profiles of the key participants operating in the global market. Key players profiled in the report include 3D Systems, Arcam AB, Renishaw PLC., EoS GmBH, EnvisionTec, Stratasys, Luxexcel, Organovo, Voxeljet, GE Healthcare, Siemens Healthcare, Stryker, Bego Medical, Hitachi Medical, Philips Healthcare, Trumpf, Optomec, and 3T RPD.Company profile includes assign such as company summary, financial summary, business strategy and planning, SWOT analysis and current developments.
 
The Top Companies Report is intended to provide our buyers with a snapshot of the industry’s most influential players.

 

The Global Healthcare 3D Printing Market has been segmented as below:

 

By Materials Analysis:

  • Metal & Metal Alloys
  • Polymers
  • Ceramics
  • Others
     

By Application Analysis:

  • Prosthetics
  • Medical Implants
  • Dental
  • Bio-Printing
  • Hearing & Audibility Aid
  • Others

 

By Technological Analysis:

  • Laser beam melting
  • Electron beam melting
  • Droplet deposition
    • Inkjet printing
    • Multiphase jet solidification
    • Fused deposition modeling
  • Photo polymerization
    • Digital light processing
    • Stereo lithography
    • Two-Photon Polymerization

 

By Regional Analysis:

  • North America
  • Europe
  • Asia-Pacific
  • Rest of the world

 

Reasons to Buy this Report:
 
1) Obtain the most up to date information available on all Global Healthcare 3D Printing Market.
2) Identify growth segments and opportunities in the industry.
3) Facilitate decision making on the basis of strong historic and forecast of Global Healthcare 3D Printing Market data.
4) Assess your competitor’s refining portfolio and its evolution.

 

Customization:
We can offer you custom research reports as per client’s special requirements.

Chapter 1    INTRODUCTION    
    1.1    KEY TAKE AWAYS    
    1.2    REPORT DESCRIPTION    
    1.3    MARKETS COVERED    
    1.4    STAKEHOLDERS    
    1.5    RESEARCH METHODOLOGY    
    1.5.1    MARKET SIZE    
    1.5.2    MARKET SHARE    
    1.5.3    KEY DATA POINTS FROM SECONDARY SOURCES    
    1.5.4    KEY DATA POINTS FROM PRIMARY SOURCES 

Chapter: 2 EXECUTIVE SUMMARY
2.1 CXO perspective
2.2 Market beyond: what to expect by 2025

2.2.1 Base case scenario
2.2.2 Rapid growth scenario
2.2.3 Critical growth scenario

Chapter: 3 MARKET OVERVIEW
3.1 Market definition and scope
3.2 Conventional versus 3D printing technology
3.3 Latest developments in 3D healthcare printing technology
3.4 Key findings

3.4.1 Top investment pockets
3.4.2 Top winning strategies

3.5 Ethical and legal concerns
3.6 Porters five force analysis

3.6.1 Bargaining power of suppliers
3.6.2 Bargaining power of buyers
3.6.3 Threat of substitutes
3.6.4 Threat of new entrants
3.6.5 Competitive rivalry

3.7 Value Chain Analysis

3.7.1 Primary activities
3.7.2 Supportive activities

3.8 Market share analysis of world 3D healthcare printing market (2014)
3.9 Patent analysis
3.10 Market dynamics

3.10.1 Drivers
3.10.2 Restraints
3.10.3 Opportunities

Chapter: 4 WORLD 3D PRINTING HEALTHCARE MARKET, BY COMPONENT 2014-2020
4.1 Overview

4.1.1 Market size and forecast

4.2 System

4.2.1 Key market trends
4.2.2 Key growth factors and opportunities
4.2.3 Market size and forecast

4.3 Materials

4.3.1 Key market trends
4.3.2 Key growth factors and opportunities
4.3.3 Market size and forecast
4.3.4 Polymers

4.3.4.1 Photopolymers
4.3.4.2 Thermoplastics

4.3.5 Metals and Alloys
4.3.6 Ceramics
4.3.7 Others

4.4 Services

4.4.1 Key market trends
4.4.2 Key growth factors and opportunities
4.4.3 Market size and forecast

Chapter: 5 WORLD 3D PRINTING HEALTHCARE MARKET, BY TECHNOLOGY 2014-2020
5.1 Overview

5.1.1 Market size and forecast

5.2 Droplet deposition

5.2.1 Key market trends
5.2.2 Key growth factors and opportunities
5.2.3 Market size and forecast
5.2.4 Fused deposition modeling (FDM) technology
5.2.5 Low-temperature Deposition Manufacturing (LDM)
5.2.6 Multiphase Jet Solidification (MJS)

5.3 Photopolymerization

5.3.1 Key market trends
5.3.2 Key growth factors and opportunities
5.3.3 Market size and forecast
5.3.4 Stereolithography (SLA)
5.3.5 Continuous Liquid Interface Production (CLIP)
5.3.6 Two-Photon Polymerization (2PP)

5.4 Laser beam melting

5.4.1 Key market trends
5.4.2 Key growth factors and opportunities
5.4.3 Market size and forecast
5.4.4 Selective laser sintering (SLS)
5.4.5 Selective laser melting (SLM)
5.4.6 Direct metal laser sintering (DMLS)

5.5 Electron beam melting (EBM)

5.5.1 Key market trends
5.5.2 Key growth factors and opportunities
5.5.3 Market size and forecast

5.6 Laminated object manufacturing (LOM)

5.6.1 Key market trends
5.6.2 Key growth factors and opportunities
5.6.3 Market size and forecast

5.7 Others

5.7.1 ColorJet printing
5.7.2 MultiJet printing
5.7.3 Market size and forecast

Chapter: 6 WORLD 3D PRINTING HEALTHCARE MARKET, BY APPLICATION 2014-2020
6.1 Overview

6.1.1 Market size and forecast

6.2 External wearable devices

6.2.1 Key market trends
6.2.2 Key growth factors and opportunities
6.2.3 Market size and forecast
6.2.4 Hearing aids
6.2.5 Prosthesis and orthotics
6.2.6 Dental products

6.3 Clinical study devices

6.3.1 Key market trends
6.3.2 Key growth factors and opportunities
6.3.3 Market size and forecast
6.3.4 Drug testing
6.3.5 Anatomical models

6.4 Implants

6.4.1 Key market trends
6.4.2 Key growth factors and opportunities
6.4.3 Market size and forecast
6.4.4 Surgical guides
6.4.5 Cranio-maxillofacial implants
6.4.6 Orthopedic implants

6.5 Tissue engineering

6.5.1 Key market trends
6.5.2 Key growth factors and opportunities
6.5.3 Market size and forecast

Chapter: 7 WORLD 3D PRINTING HEALTHCARE MARKET BY END USER 2014-2020
7.1 Overview

7.1.1 Market size and forecast

7.2 Medical and surgical centers

7.2.1 Key market trends
7.2.2 Key growth factors and opportunities
7.2.3 Market size and forecast

7.3 Pharma and biotech companies

7.3.1 Key market trends
7.3.2 Key growth factors and opportunities
7.3.3 Market size and forecast

7.4 Academic institutions

7.4.1 Key market trends
7.4.2 Key growth factors and opportunities
7.4.3 Market size and forecast

Chapter: 8 WORLD 3D PRINTING HEALTHCARE MARKET BY GEOGRAPHY 2014-2020
8.1 Overview

8.1.1 Market size and forecast

8.2 North America

8.2.1 Key market trends
8.2.2 Key growth factors and opportunities
8.2.3 Market size & forecast

8.3 Asia-Pacific

8.3.1 Key market trends
8.3.2 Key growth factors and opportunities
8.3.3 Market size & forecast

8.4 Europe

8.4.1 Key market trends
8.4.2 Key growth factors and opportunities
8.4.3 Market size & forecast

8.5 LAMEA

8.5.1 Key market trends
8.5.2 Key growth factors and opportunities
8.5.3 Market size & forecast

Chapter: 9 COMPANY PROFILE
9.1 3D Systems Corporation

9.1.1 Company overview
9.1.2 Company snapshot
9.1.3 Business performance
9.1.4 Key strategies and developments
9.1.5 SWOT analysis of 3D Systems Corporation

9.2 Stratasys Ltd

9.2.1 Company overview
9.2.2 Company snapshot
9.2.3 Operating business segment overview
9.2.4 Business performance
9.2.5 Key strategies and developments
9.2.6 SWOT analysis of Stratasys Ltd.

9.3 Arcam AB

9.3.1 Company overview
9.3.2 Company snapshot
9.3.3 Business Performance
9.3.4 Key strategies and developments
9.3.5 SWOT analysis of Arcam

9.4 Organovo Holdings, Inc.

9.4.1 Company overview
9.4.2 Company snapshot
9.4.3 Business performance
9.4.4 Key strategies and developments
9.4.5 SWOT analysis of Organovo Holdings, Inc.

9.5 EnvisionTec

9.5.1 Company overview
9.5.2 Company snapshot
9.5.3 Key strategies and development
9.5.4 SWOT analysis of EnvisionTec

9.6 Oxford Performance Materials Inc.

9.6.1 Company overview
9.6.2 Company snapshot
9.6.3 Key strategies and developments
9.6.4 SWOT analysis of Oxford Performance Materials Inc.

9.7 Materialise NV

9.7.1 Company overview
9.7.2 Company snapshot
9.7.3 Business performance
9.7.4 Key strategies and developments
9.7.5 SWOT analysis of Materialise NV

9.8 Bio3D Technologies

9.8.1 Company overview
9.8.2 Company snapshot
9.8.3 Key strategies and developments
9.8.4 Swot analysis

9.9 Cyfuse Biomedical K.K.

9.9.1 Company overview
9.9.2 Company snapshot
9.9.3 Key strategies and developments
9.9.4 SWOT analysis

9.10 SLM Solutions Group AG

9.10.1 Company overview
9.10.2 Company snapshot
9.10.3 Business performance
9.10.4 Key strategies and developments
9.10.5 SWOT analysis

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