Home Healthcare IT Healthcare Additive Manufacturing Market Size, Share by 2033

Healthcare Additive Manufacturing Market Size & Outlook, 2025-2033

Healthcare Additive Manufacturing Market Size, Share & Trends Analysis Report By Technology (Stereolithography, Deposition Modeling, Electron Beam Melting, Laser Sintering, Jetting Technology, Laminated Object Manufacturing, Others), By Applications (Medical Implants, Prosthetics, Wearable Devices, Tissue Engineering, Others), By Material (Metals and Alloys, Polymers, Biological Cells, Others) and By Region(North America, Europe, APAC, Middle East and Africa, LATAM) Forecasts, 2025-2033

Report Code: SRHI54719DR
Last Updated : Jul, 2023
Pages : 110
Author : Debashree Bora
Format : PDF, Excel

Table Of Content

  1. Executive Summary

    1. Research Objectives
    2. Limitations & Assumptions
    3. Market Scope & Segmentation
    4. Currency & Pricing Considered
    1. Emerging Regions / Countries
    2. Emerging Companies
    3. Emerging Applications / End Use
    1. Drivers
    2. Market Warning Factors
    3. Latest Macro Economic Indicators
    4. Geopolitical Impact
    5. Technology Factors
    1. Porters Five Forces Analysis
    2. Value Chain Analysis
    1. North America
    2. Europe
    3. APAC
    4. Middle East and Africa
    5. LATAM
  2. ESG Trends

    1. Global Healthcare Additive Manufacturing Market Introduction
    2. By Technology
      1. Introduction
        1. Technology By Value
      2. Stereolithography
        1. By Value
      3. Deposition Modeling
        1. By Value
      4. Electron Beam Melting
        1. By Value
      5. Laser Sintering
        1. By Value
      6. Jetting Technology
        1. By Value
      7. Laminated Object Manufacturing
        1. By Value
      8. Others
        1. By Value
    3. By Applications
      1. Introduction
        1. Applications By Value
      2. Medical Implants
        1. By Value
      3. Prosthetics
        1. By Value
      4. Wearable Devices
        1. By Value
      5. Tissue Engineering
        1. By Value
      6. Others
        1. By Value
    4. By Material
      1. Introduction
        1. Material By Value
      2. Metals and Alloys
        1. By Value
      3. Polymers
        1. By Value
      4. Biological Cells
        1. By Value
      5. Others
        1. By Value
    1. Introduction
    2. By Technology
      1. Introduction
        1. Technology By Value
      2. Stereolithography
        1. By Value
      3. Deposition Modeling
        1. By Value
      4. Electron Beam Melting
        1. By Value
      5. Laser Sintering
        1. By Value
      6. Jetting Technology
        1. By Value
      7. Laminated Object Manufacturing
        1. By Value
      8. Others
        1. By Value
    3. By Applications
      1. Introduction
        1. Applications By Value
      2. Medical Implants
        1. By Value
      3. Prosthetics
        1. By Value
      4. Wearable Devices
        1. By Value
      5. Tissue Engineering
        1. By Value
      6. Others
        1. By Value
    4. By Material
      1. Introduction
        1. Material By Value
      2. Metals and Alloys
        1. By Value
      3. Polymers
        1. By Value
      4. Biological Cells
        1. By Value
      5. Others
        1. By Value
    5. U.S.
      1. By Technology
        1. Introduction
          1. Technology By Value
        2. Stereolithography
          1. By Value
        3. Deposition Modeling
          1. By Value
        4. Electron Beam Melting
          1. By Value
        5. Laser Sintering
          1. By Value
        6. Jetting Technology
          1. By Value
        7. Laminated Object Manufacturing
          1. By Value
        8. Others
          1. By Value
      2. By Applications
        1. Introduction
          1. Applications By Value
        2. Medical Implants
          1. By Value
        3. Prosthetics
          1. By Value
        4. Wearable Devices
          1. By Value
        5. Tissue Engineering
          1. By Value
        6. Others
          1. By Value
      3. By Material
        1. Introduction
          1. Material By Value
        2. Metals and Alloys
          1. By Value
        3. Polymers
          1. By Value
        4. Biological Cells
          1. By Value
        5. Others
          1. By Value
    6. Canada
    1. Introduction
    2. By Technology
      1. Introduction
        1. Technology By Value
      2. Stereolithography
        1. By Value
      3. Deposition Modeling
        1. By Value
      4. Electron Beam Melting
        1. By Value
      5. Laser Sintering
        1. By Value
      6. Jetting Technology
        1. By Value
      7. Laminated Object Manufacturing
        1. By Value
      8. Others
        1. By Value
    3. By Applications
      1. Introduction
        1. Applications By Value
      2. Medical Implants
        1. By Value
      3. Prosthetics
        1. By Value
      4. Wearable Devices
        1. By Value
      5. Tissue Engineering
        1. By Value
      6. Others
        1. By Value
    4. By Material
      1. Introduction
        1. Material By Value
      2. Metals and Alloys
        1. By Value
      3. Polymers
        1. By Value
      4. Biological Cells
        1. By Value
      5. Others
        1. By Value
    5. U.K.
      1. By Technology
        1. Introduction
          1. Technology By Value
        2. Stereolithography
          1. By Value
        3. Deposition Modeling
          1. By Value
        4. Electron Beam Melting
          1. By Value
        5. Laser Sintering
          1. By Value
        6. Jetting Technology
          1. By Value
        7. Laminated Object Manufacturing
          1. By Value
        8. Others
          1. By Value
      2. By Applications
        1. Introduction
          1. Applications By Value
        2. Medical Implants
          1. By Value
        3. Prosthetics
          1. By Value
        4. Wearable Devices
          1. By Value
        5. Tissue Engineering
          1. By Value
        6. Others
          1. By Value
      3. By Material
        1. Introduction
          1. Material By Value
        2. Metals and Alloys
          1. By Value
        3. Polymers
          1. By Value
        4. Biological Cells
          1. By Value
        5. Others
          1. By Value
    6. Germany
    7. France
    8. Spain
    9. Italy
    10. Russia
    11. Nordic
    12. Benelux
    13. Rest of Europe
    1. Introduction
    2. By Technology
      1. Introduction
        1. Technology By Value
      2. Stereolithography
        1. By Value
      3. Deposition Modeling
        1. By Value
      4. Electron Beam Melting
        1. By Value
      5. Laser Sintering
        1. By Value
      6. Jetting Technology
        1. By Value
      7. Laminated Object Manufacturing
        1. By Value
      8. Others
        1. By Value
    3. By Applications
      1. Introduction
        1. Applications By Value
      2. Medical Implants
        1. By Value
      3. Prosthetics
        1. By Value
      4. Wearable Devices
        1. By Value
      5. Tissue Engineering
        1. By Value
      6. Others
        1. By Value
    4. By Material
      1. Introduction
        1. Material By Value
      2. Metals and Alloys
        1. By Value
      3. Polymers
        1. By Value
      4. Biological Cells
        1. By Value
      5. Others
        1. By Value
    5. China
      1. By Technology
        1. Introduction
          1. Technology By Value
        2. Stereolithography
          1. By Value
        3. Deposition Modeling
          1. By Value
        4. Electron Beam Melting
          1. By Value
        5. Laser Sintering
          1. By Value
        6. Jetting Technology
          1. By Value
        7. Laminated Object Manufacturing
          1. By Value
        8. Others
          1. By Value
      2. By Applications
        1. Introduction
          1. Applications By Value
        2. Medical Implants
          1. By Value
        3. Prosthetics
          1. By Value
        4. Wearable Devices
          1. By Value
        5. Tissue Engineering
          1. By Value
        6. Others
          1. By Value
      3. By Material
        1. Introduction
          1. Material By Value
        2. Metals and Alloys
          1. By Value
        3. Polymers
          1. By Value
        4. Biological Cells
          1. By Value
        5. Others
          1. By Value
    6. Korea
    7. Japan
    8. India
    9. Australia
    10. Taiwan
    11. South East Asia
    12. Rest of Asia-Pacific
    1. Introduction
    2. By Technology
      1. Introduction
        1. Technology By Value
      2. Stereolithography
        1. By Value
      3. Deposition Modeling
        1. By Value
      4. Electron Beam Melting
        1. By Value
      5. Laser Sintering
        1. By Value
      6. Jetting Technology
        1. By Value
      7. Laminated Object Manufacturing
        1. By Value
      8. Others
        1. By Value
    3. By Applications
      1. Introduction
        1. Applications By Value
      2. Medical Implants
        1. By Value
      3. Prosthetics
        1. By Value
      4. Wearable Devices
        1. By Value
      5. Tissue Engineering
        1. By Value
      6. Others
        1. By Value
    4. By Material
      1. Introduction
        1. Material By Value
      2. Metals and Alloys
        1. By Value
      3. Polymers
        1. By Value
      4. Biological Cells
        1. By Value
      5. Others
        1. By Value
    5. UAE
      1. By Technology
        1. Introduction
          1. Technology By Value
        2. Stereolithography
          1. By Value
        3. Deposition Modeling
          1. By Value
        4. Electron Beam Melting
          1. By Value
        5. Laser Sintering
          1. By Value
        6. Jetting Technology
          1. By Value
        7. Laminated Object Manufacturing
          1. By Value
        8. Others
          1. By Value
      2. By Applications
        1. Introduction
          1. Applications By Value
        2. Medical Implants
          1. By Value
        3. Prosthetics
          1. By Value
        4. Wearable Devices
          1. By Value
        5. Tissue Engineering
          1. By Value
        6. Others
          1. By Value
      3. By Material
        1. Introduction
          1. Material By Value
        2. Metals and Alloys
          1. By Value
        3. Polymers
          1. By Value
        4. Biological Cells
          1. By Value
        5. Others
          1. By Value
    6. Turkey
    7. Saudi Arabia
    8. South Africa
    9. Egypt
    10. Nigeria
    11. Rest of MEA
    1. Introduction
    2. By Technology
      1. Introduction
        1. Technology By Value
      2. Stereolithography
        1. By Value
      3. Deposition Modeling
        1. By Value
      4. Electron Beam Melting
        1. By Value
      5. Laser Sintering
        1. By Value
      6. Jetting Technology
        1. By Value
      7. Laminated Object Manufacturing
        1. By Value
      8. Others
        1. By Value
    3. By Applications
      1. Introduction
        1. Applications By Value
      2. Medical Implants
        1. By Value
      3. Prosthetics
        1. By Value
      4. Wearable Devices
        1. By Value
      5. Tissue Engineering
        1. By Value
      6. Others
        1. By Value
    4. By Material
      1. Introduction
        1. Material By Value
      2. Metals and Alloys
        1. By Value
      3. Polymers
        1. By Value
      4. Biological Cells
        1. By Value
      5. Others
        1. By Value
    5. Brazil
      1. By Technology
        1. Introduction
          1. Technology By Value
        2. Stereolithography
          1. By Value
        3. Deposition Modeling
          1. By Value
        4. Electron Beam Melting
          1. By Value
        5. Laser Sintering
          1. By Value
        6. Jetting Technology
          1. By Value
        7. Laminated Object Manufacturing
          1. By Value
        8. Others
          1. By Value
      2. By Applications
        1. Introduction
          1. Applications By Value
        2. Medical Implants
          1. By Value
        3. Prosthetics
          1. By Value
        4. Wearable Devices
          1. By Value
        5. Tissue Engineering
          1. By Value
        6. Others
          1. By Value
      3. By Material
        1. Introduction
          1. Material By Value
        2. Metals and Alloys
          1. By Value
        3. Polymers
          1. By Value
        4. Biological Cells
          1. By Value
        5. Others
          1. By Value
    6. Mexico
    7. Argentina
    8. Chile
    9. Colombia
    10. Rest of LATAM
    1. Healthcare Additive Manufacturing Market Share By Players
    2. M&A Agreements & Collaboration Analysis
    1. 3D Systems, Inc.
      1. Overview
      2. Business Information
      3. Revenue
      4. ASP
      5. SWOT Analysis
      6. Recent Developments
    2. RegenHU
    3. Allevi, Inc.
    4. EOS GmbH
    5. EnvisionTEC
    6. Materialise N.V.
    7. Stratasys Ltd.
    8. GPI Prototype and Manufacturing Services
    9. LLC
    10. 3T Additive Manufacturing Ltd
    11. Nanoscribe GmbH
    12. Fathom Manufacturing
    13. General Electric.
    1. Research Data
      1. Secondary Data
        1. Major secondary sources
        2. Key data from secondary sources
      2. Primary Data
        1. Key data from primary sources
        2. Breakdown of primaries
      3. Secondary And Primary Research
        1. Key industry insights
    2. Market Size Estimation
      1. Bottom-Up Approach
      2. Top-Down Approach
      3. Market Projection
    3. Research Assumptions
      1. Assumptions
    4. Limitations
    5. Risk Assessment
    1. Discussion Guide
    2. Customization Options
    3. Related Reports
  3. Disclaimer

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