Thursday, 13 January 2022

3D Printed Medical Devices | 3D BIOPRINTING SOLUTIONS, 3D LIFEPRINTS, 3D ORTHOTICS LTD., HANDSMITH INC., DENTIS USA, NOVAX DMA

Three-dimensional (3D) printed medical devices are a subsection of the larger medical devices industry. These devices are can be manufactured at end-user facilities with 3D printers and compatible scanners and software but also purchased through an outsourced 3D printing vendor, which uses transmitted patient scans digitally to print the device that is then delivered to the healthcare provider.


There are numerous end-user markets for 3D printed medical devices. Globally, hospitals, physical therapist clinics, outpatient care centers and physicians offices use millions of medical devices for implanting joints, surgeries (instruments), joint braces (orthopedics) and prosthetics. 3D printed orthodontic appliances are becoming common at orthodontic clinics and are manufactured in-house at an increasing rate.

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Definition

3D printing is a process in which material is joined or solidified under computer control to create a 3D object, with material being added together (such as liquid molecules or powder grains being fused together). The term 3D printing is used interchangeably with additive manufacturing (AM; we will use both in this report). Unlike material removed from a stock in the conventional machining process (subtractive manufacturing), AM builds a 3D object from a computer-aided design model, usually by successively adding material layer by layer. There are many different 3D printing technologies, the most common by number of users being fused deposition modeling.

The term 3D printing originally referred to a process that deposits a binder material onto a powder bed with inkjet printer heads layer by layer. More recently, the term is being used in popular vernacular to encompass a wider variety of AM techniques.

While the industry is seeing dramatic success, there are hurdles to future success. Insiders at recent conferences are recognizing the continued need for global industry standards, both in terminology and production methodologies but also in testing standards and safety standards. Many of these standards are being applied to the industry by government agencies that test devices and give approval to new devices, but industry companies will work together to enhance these standards.

Government regulations are another hurdle for industry companies. The U.S. Food and Drug Administration (FDA) is a powerful agency in the global industry, as it approves devices and sets guidelines that companies much adhere to when submitting new devices to testing. The FDA issued in December 2017 a guidance for 3D printing medical device manufacturers: Technical Considerations for Additive Manufactured Devices. The guidance is intended to share FDAs initial thoughts regarding technologies that are likely to be of public health importance early in product development. As of 2018, the FDA has approved more than 100 medical devices, and one prescription drug, that involve 3D printing."

Report Scope:

The scope of this report is broad and covers various types of 3D printed orthodontic appliances, 3D printed medical and surgical instruments, 3D printed implants and 3D printed orthopedic and prosthetic devices used for various end-user application industries. The market is broken down by major types, technologies, region and application of 3D printed orthodontic appliances, 3D printed medical and surgical instruments, 3D printed implants and 3D printed orthopedic and prosthetic devices. Revenue forecasts from 2018 through 2023 are given for each of the 3D printed orthodontic appliances, 3D printed medical and surgical instruments, 3D printed implants, 3D printed orthopedic and prosthetic devices segments and regional markets, with estimated values derived from manufacturers total revenues. The report will not cover 3D printed biologics.

The report also includes a discussion of the major players across each regional 3D printed orthodontic appliances, 3D printed medical and surgical instruments, 3D printed implants and 3D printed orthopedic and prosthetic devices market. Further, it explains the major drivers and regional dynamics of the global of 3D printed orthodontic appliances, 3D printed medical and surgical instruments, 3D printed implants and 3D printed orthopedic and prosthetic devices market and current trends within the industry.

The report concludes with a focus on the distribution landscape and includes detailed profiles of the major retailers and wholesalers in the global 3D printed orthodontic appliances, 3D printed medical and surgical instruments, 3D printed implants and 3D printed orthopedic and prosthetic devices market.

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Report Includes:

- 65 data tables
- An overview of the global 3D printed medical devices market
- Analyses of global market trends, with data from 2017, 2018, and projections of compound annual growth rates (CAGRs) through 2023
- Characterisation and quantification of orthopedic and cranial implants, surgical instruments and dental restorations based on product types, materials and end-user market
- Explanation of the major drivers and regional dynamics of the global 3D printing of medical device market and current trends within the industry
- Snapshot of new innovations in 3D printing technologies and 3D printing materials
- Profiles of key players in the market including Amedica Corp., BioArchitects, Dentis USA, Esstech Inc., and Handsmith Inc.

Table of Contents
Chapter 1 Introduction
Study Goals and Objectives
Reasons for Doing This Study
Scope of Report
Information Sources
Methodology
Geographic Breakdown
Analyst's Credentials
BCC Custom Research
Related BCC Research Reports
Chapter 2 Summary and Highlights
Definition
Chapter 3 Market and Technology Background
History of Medical Devices
Current Trends in the Medical Devices Market
Current Trends in the 3D Printing Market
Technology Background
Traditional Manufacturing Methods
3D Printing (Additive Manufacturing) Methods
3D Printing (Additive Manufacturing) Materials
Traditional Hip Implant Devices
Traditional Knee Implant Devices
Traditional Dental Implant Devices
Traditional Orthopedic Devices
Traditional Prosthetic Devices
Global Market for 3D Printed Orthodontic Appliances
Global Market for 3D Printed Orthodontic Appliances by Type
Global Market for 3D Printed Orthodontic Appliances by End Users
Global Market for 3D Printed Medical and Surgical Instruments by Type
Global Market for 3D Printed Medical and Surgical Instruments by End Users
Global Market for 3D Printed Implants by Type
Global Market for 3D Printed Implants by End Users
Global Market for 3D Printed Orthopedics and Prosthetics by Type
Global Market for 3D Printed Orthopedics and Prosthetics by End Users
New Technology Innovations for 3D Printed Medical Devices Markets
New Technology Innovations for 3D Printed Orthodontic Appliances
New Technology Innovations for 3D Printed Medical and Surgical Instruments
New Technology Innovations for 3D Printed Implants
New Technology Innovations for 3D Printed Orthopedics and Prosthetics
Chapter 4 Market Breakdown by Technology Type
Global Market for 3D Printing of Medical Devices
Global Market for 3D Printed Orthodontic Appliances
Global Market for 3D Printed Surgical and Medical Instruments
Global Market for 3D Printed Implants
Global Market for 3D Printed Orthopedics and Prosthetics
Chapter 5 Market Breakdown by End User
Global 3D Printed Orthodontic Appliances by End User
Global 3D Printed Surgical and Medical Instruments Market by End User
Global 3D Printed Implants Market by End User
Global 3D Printed Orthopedics and Prosthetics Market by End User
Chapter 6 Market Breakdown by Materials
Global 3D Printed Orthodontic Appliances Market by Materials
Global 3D Printed Surgical and Medical Instruments Market by Materials
Global 3D Printed Implants Market by Materials
Global 3D Printed Orthopedics and Prosthetics Market by Materials
Chapter 7 Market Breakdown by Region
Global 3D Printed Orthodontic Appliances Market by Region
Global 3D Printed Dental Implants (Parallel-Walled) by Region
Global 3D Printed Surgical and Medical Instruments Market by Region
Global Market for 3D Printed Surgical Instruments, Including Suture Needles etc. by Region
Global Market for 3D Printed Orthopedic Instruments by Region
Global Market for 3D Printed Surgical and Medical Syringes by Region
Global Market for 3D Printed Surgical and Medical Catheters by Region
Global Market for 3D Printed Surgical and Medical Internal Fixation Devices by Region
Global Market for 3D Printed Other Surgical and Medical Apparatus and Instruments by Region
Global 3D Printed Implants Market by Region
Global Market for 3D Printed Artificial joints by Region
Global Market for 3D Printed Artificial Limbs by Region
Global 3D Printed Orthopedics and Prosthetics Market by Region
Global 3D Printed Orthopedic and Prosthetic Braces (Mechanical) by Region
Global 3D Printed Orthopedic and Prosthetic Splints and Trusses by Region
Global 3D Printed Orthopedic and Prosthetic Foot Appliances (Arch Supports etc.) by Region
Global 3D Printed Other Orthopedic and Prosthetic Appliances by Region
Global 3D Printed Intraocular Lenses Market by Region
Chapter 8 Analysis of Market Opportunities
Global Gross Domestic Product Growth
Global GDP per Capita Wealth
Global Population Growth
Growth of Global Healthcare Expenditures
Growth of Global Offices of Physicians Industry
Growth of Global Hospitals Industry
Growth of Global Outpatient Care Centers Industry
Market Opportunities in the Global 3D Printed Orthodontic Appliances Market
Increasing Demand for Cosmetic Dentistry
Gaining Popularity for Dental Tourism
Development of Newer Techniques in Implantology
Market Opportunities in the Global 3D Printed Medical and Surgical Instruments Market
Implantable Drug-Delivery Devices
Cardiovascular Disease
Market Opportunities in the Global 3D Printed Orthopedic and Prosthetic Devices Market
Exo-Prosthetic Limbs
Orthotics
Market Opportunities in the Global 3D Printed Implants Market
Aging Populations
Biodegradable Implant Technologies
Chapter 9 Patent Review/New Developments
Global Patents for 3D Printing
Patent Review by Year
Patent Review by Country
Chapter 10 Company Profiles
3D BIOPRINTING SOLUTIONS
3D LIFEPRINTS
3D ORTHOTICS LTD.
3D SYSTEMS
ADDITIVE ORTHOPAEDICS LLC
ADEISS
ALIGN TECHNOLOGY
ANATOMICSRX
ANATOMIKMODELING
AMEDICA CORP.
ANIKA THERAPEUTICS, INC.
ANTLERON
ASPECT BIOSYSTEMS
BIOARCHITECTS
BIOLASE, INC.
BRECA HEALTH CARE
CONFORMIS
CORE3DCENTRES
CYFUSE BIOMEDICAL
DENTIS USA
DENTSPLY SIRONA
DEPUY SYNTHES
DISANTO TECHNOLOGY INC.
DUNLEE
EIT EMERGING IMPLANT TECHNOLOGIES GMBH
EOS
ESSTECH INC.
EVO DENTAL
FAST RADIUS
FORMLABS (SUTRUE LTD.)
HANDSMITH INC.
THE IMPLANT CENTRE
INVENT MEDICAL
JOIMAX
K2M, INC.
KOLN 3D TECHNOLOGY (INDUSTRY) CO. LTD.
LIMACORPORATE
LIMBFORGE
LIMBITLESS SOLUTIONS
LUMINEX CORP.
MATERIALISE
MAXON COMPUTER GMBH
MEDICREA
MEDPRIN BIOTECH GMBH
MEDTRONIC
MICROFABRICA INC.
MT ORTHO SRL
NATURAL DENTAL IMPLANTS AG
NORMAN NOBLE AM
NOVAX DMA
ONKOS SURGICAL INC.
OPEN BIONICS
OPTOMEC INC.
OSSEUS FUSION SYSTEMS
OSSEOMATRIX SAS
OXFORD PERFORMANCE MATERIALS
RESOUND
ROKIT INC.
ROYAL DSM (KONINKLIJKE DSM N.V.)
SALVATORE DENTAL
SI-BONE, INC.
SINTEREX
SMILE DIRECT CLUB
SMITH & NEPHEW PLC
SOLIDSCAPE INC.
SONOVA AG
STANDARD CYBORG INC.
STRYKER CORP.
TANGIBLE SOLUTIONS
UNYQ DESIGN INC.
US BIONICS
US ENDOSCOPY
XOMETRY
WIIVV WEARABLES INC.
ZIMMER BIOMET
Chapter 11 Appendix
Abbreviations and Terms
Report Sources

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