Global 3D Printing Medical Devices Market – Size, Outlook, Trends and Forecast (2024 – 2032)

Published : 30 Aug 2024
Report Type : Global

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Home > Reports > Medical Devices > Healthcare > Global 3D Printing Medical Devices Market – Size, Outlook, Trends and Forecast (2024 – 2032)
CHAPTER 1 INTRODUCTION

    1.1. Market Definition

    1.2. Executive Summary

    1.3. The Scope of the Study

CHAPTER 2 RESEARCH METHODOLOGY

    2.1. Secondary Research

    2.2. Primary Research

    2.3. Analytic Tools and Model

    2.4. Economic Indicator

            2.4.1 Base Year, Base Currency, Forecasting Period

    2.5. Expert Validation

    2.6. Study Timeline

CHAPTER 3 MARKET ANALYSIS

    3.1. Industry Value Chain Analysis

    3.2. Porter's Five Force Analysis

            3.2.1. Bargaining Power of Buyers

            3.2.2. Bargaining Power of Suppliers

            3.2.3. Threats of Substitutes

            3.2.4. Threats of New Entrants

            3.2.5. Degree of Competition

    3.3. PESTLE Analysis

            3.3.1. Political

            3.3.2. Economical

            3.3.3. Social

            3.3.4. Technological

            3.3.5. Legal

            3.3.6. Environmental

    3.4. SWOT Analysis

            3.4.1. Strengths

            3.4.2. Weakness

            3.4.3. Opportunities

            3.4.4. Threats

    3.5. Y-O-Y Analysis

CHAPTER 4 MARKET DYNAMICS

    4.1. Market Drivers

            4.1.1. Growing applications of 3D printing in the healthcare industry & technological

advancements in 3D printing

            4.1.2. Increasing public-private funding for 3D printing activities

            4.1.3. Easy development of customised medical products using 3D printing

            4.1.4. Strategic investments are done by the market players coupled with demand for 3D

prosthetics and implants, surgical instruments and tissue fabrication

    4.2. Market Restraints

            4.2.1. High costs of printers, reliability and wastage of materials

            4.2.2. Stringent regulatory process for the approval of 3D-printed medical devices

    4.3. Market Opportunities

            4.3.1. Growing demand for an organ transplant and expiry of key patents in the 3D

printing industry

            4.3.2. Direct digital manufacturing and reconfiguration of supply chain models of

medical device manufacturers

    4.4. Market Challenges

            4.4.1. Lack of trained professionals, process control and understanding

            4.4.2. Socio-ethical concerns related to the use of 3D-printed products

CHAPTER 5 GLOBAL 3D PRINTING MEDICAL DEVICES MARKET – BY TYPE

    5.1. Prosthetics and Implants

            5.1.1. Custom Implants

            5.1.1.1. Custom Craniomaxillofacial Implants

            5.1.1.2. Custom Orthopedic Implants

            5.1.1.3. Custom Dental Implants

            5.1.2. Standard Implants

    5.2. Surgical Guides

            5.2.1. Craniomaxillofacial Guides

            5.2.2. Orthopedic Guides

            5.2.3. Dental Guides

    5.3. Tissue Engineering Products

            5.3.1. Ligament and Tendon Scaffolds

            5.3.2. Bone and Cartilage Scaffolds

    5.4. Surgical Instruments

            5.4.1. Scalpels

            5.4.2. Retractors

            5.4.3. Surgical Fasteners

CHAPTER 6 GLOBAL 3D PRINTING MEDICAL DEVICES MARKET – BY

COMPONENT

    6.1. Materials

            6.1.1. Bioprinting Biomaterials

            6.1.2. Metal and Metal Alloy Powders

            6.1.3. Plastics

            6.1.3.1. Photopolymers

            6.1.3.2. Thermoplastics

            6.1.4. Others

    6.2. Services & Software

    6.3. Equipment

            6.3.1. 3D Bioprinters

            6.3.2. 3D Printers

CHAPTER 7 GLOBAL 3D PRINTING MEDICAL DEVICES MARKET – BY

TECHNOLOGY

    7.1. Electron Beam Melting

    7.2. Three-Dimensional Printing/ Adhesion Bonding/ Binder Jetting

    7.3. Laser Beam Melting

            7.3.1. Selective Laser Melting

            7.3.2. Direct Metal Laser Sintering

            7.3.3. Laser cusing

            7.3.4. Selective Laser Melting

    7.4. Droplet Deposition/ Extrusion-Based Technologies

            7.4.1. Low-Temperature Deposition Manufacturing

            7.4.2. Multiphase Jet Solidification

            7.4.3. Fused Deposition Modeling

    7.5. Photo polymerization

            7.5.1. Poly jet 3D Printing Technology

            7.5.2. Two-Photon Polymerization

            7.5.3. Stereo lithography

            7.5.4. Digital Light Processing

            7.5.4.1. Continuous Liquid Interface Production

CHAPTER 8 GLOBAL 3D PRINTING MEDICAL DEVICES MARKET - BY

GEOGRAPHY

    8.1. Introduction

    8.2. North America

            8.2.1. U.S.

            8.2.2. Canada

            8.2.3. Mexico

            8.2.4. Costa Rica

    8.3. South America

            8.3.1. Brazil

            8.3.2. Argentina

            8.3.3. Chile

            8.3.4. Columbia

            8.3.5. Others

    8.4. Europe

            8.4.1. U.K.

            8.4.2. Germany

            8.4.3. France

            8.4.4. Italy

            8.4.5. Spain

            8.4.6. Russia

            8.4.7. Netherlands

            8.4.8. Switzerland

            8.4.9. Poland

            8.4.10. Others

    8.5. APAC

            8.5.1. China

            8.5.2. Japan

            8.5.3. India

            8.5.4. South Korea

            8.5.5. Australia & New Zealand

            8.5.6. Malaysia

            8.5.7. Singapore

            8.5.8. Others

    8.6. Middle East & Africa

            8.6.1. UAE

            8.6.2. Saudi Arabia

            8.6.3. Iran

            8.6.4. Iraq

            8.6.5. Qatar

            8.6.6. South Africa

            8.6.7. Algeria

            8.6.8. Morocco

            8.6.9. Nigeria

            8.6.10. Egypt

            8.6.11. Others

CHAPTER 9 GLOBAL 3D PRINTING MEDICAL DEVICES MARKET - COMPANY

PROFILES

    9.1. 3T RPD Ltd.

    9.2. Concept Laser GmbH

    9.3. Prodways Group

    9.4. Carbon, Inc.

    9.5. SLM Solutions Group AG

    9.6. Organovo Holdings, Inc.

    9.7. Biomedical Modeling, Inc.

    9.8. Anatomics Pty Ltd.

    9.9. Stratasys Ltd.

    9.10. Envisiontec GmbH

    9.11. 3D Systems Corporation

    9.12. EOS GmbH Electro Optical Systems

    9.13. Renishaw PLC

    9.14. Materialise NV

    9.15. Arcam AB

CHAPTER 10 GLOBAL 3D PRINTING MEDICAL DEVICES MARKET -

COMPETITIVE LANDSCAPE

    10.1. Market Share Analysis

    10.2. Strategies adopted by top companies

    10.3. Mergers, Acquisitions, Collaborations & Agreements

CHAPTER 11 MARKET INSIGHTS

    11.1. Industry Experts Insights

    11.2. Analysts Opinions

    11.3. Investment Opportunities

CHAPTER 12 APPENDIX

    12.1. List of Tables

    12.2. List of Figures

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