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The dental 3D printing market is anticipated to grow at a CAGR of 15.1% during the period 2023-2035, claims Roots Analysis
The growing burden of dental diseases and the challenges associated with the conventional dental product manufacturing methods has significantly increased the adoption of 3D printing in the dental industry
Roots Analysis has announced the addition of “Dental 3D Printing Market, 2023 – 2035” report to its list of offerings.
The popularity of 3D printing technology within the dental industry can be attributed to its ability to print high quality / accurate dental products, including crowns, bridges, dentures, dental implants and surgical guides. Driven by the overall growth of the additive manufacturing (3D printing) industry, and wide adoption of 3D printers in the dental sector, the dental 3D printing market is anticipated to witness a steady growth in the foreseen future.
Key Market Insights
Currently, around 230 dental 3D printers are available for use across wide range of applications
Majority (38%) of the dental 3D printers use digital light processing (DLP) as printing technology, followed by those using stereolithography (SLA) technology (21%). Further, close to 75% of the dental 3D printers can produce crowns / bridges / dentures, followed by those manufacturing working models (61%) and surgical guides (59%). It is worth highlighting that around 55% of the dental 3D printers currently available in the market have a price range below USD 10,000.
More than 80 companies claim to offer dental 3D printers, across the world
Majority of the firms (46%) engaged in this domain are mid-sized players, followed by large (32%) and small firms (22%). It is worth highlighting that, more than 50% of the companies in this domain have been established post-2010. Further, around 85% of the dental 3D printer manufacturers are based in Asia-Pacific and Europe, followed by those headquartered in North America (16%), and within the Asia-Pacific region, China emerged as the most prominent hub, featuring the presence of maximum number of players (62%).
Partnership activity has grown at an annualized rate of over 70%, between 2018-2022
Maximum number of partnerships were established in 2021 (56) and 2022 (44), indicating the recent surge in the partnership activity in this domain. Majority of these (26%) were product integration agreements. Further, most of the intercontinental as well as intracontinental deals have been inked by the players based in North America.
500+ patents related to dental 3D printing have been granted / filed between 2019 and 2022
R&D activity related to dental 3D printing is largely concentrated in Asia-Pacific, considering the fact that 50% of the total number of patents were filed in this region. It is worth highlighting that, within the Asia-Pacific region, China emerged as the most active country with ~230 filed patents. In addition, most of the patents in this domain are patent applications (65%).
North America and Europe are anticipated to capture around 75% share of the market by 2035
In addition, the market in Asia-Pacific is likely to grow at a relatively faster pace (with CAGR of 16.3%) in the long term. Further, in 2035, based on type of printing technology, majority of the revenue share (64%) of the overall market is likely to be driven by vat polymerization technology. Further, in terms of application area, prosthodontics currently holds largest share (55%) of the market.
To request a sample copy / brochure of this report, please visit
https://www.rootsanalysis.com/....reports/dental-3d-pr
Key Questions Answered
How is 3D printing used in the dental industry?
How many dental 3D printers are currently available in the market?
Which 3D printers are best for dentistry?
What is the growth rate of the dental 3D printing market?
Which region captures the largest share of the dental 3D printing market?
Which printing technology is widely used in the dental 3D printers?
Which application area currently holds the largest share in the dental 3D printing market?
What are the partnerships and collaborations trend in the dental 3D printing domain?
How many patents have been filed / granted related to dental 3D printing in the recent years?
The financial opportunity within the dental 3D printing market has been analyzed across the following segments:
Type of Printing Technology
VAT Polymerization Technology
Powder Bed Fusion Technology
Polyjet Technology
Metal Extrusion Technology
Other Technologies
Application Area
Prosthodontics
Orthodontics
Dental Implants
Other Applications
Type of Printing Material
Resins
Plastics
Metals
Metals
Other Material
Key Geographical Regions
North America
Europe
Asia-Pacific
Latin America
Middle East and North Africa
Rest of the World
The research also includes detailed profiles of key players (listed below) featuring a brief overview of the company, details related to dental 3D printer portfolio, recent developments, and an informed future outlook.
3D Systems
Asiga
BEGO
Carbon
Digital Wax Systems (DWS)
Formlabs
Prodways
Rapid Shape
SprintRay
Stratasys
For additional details, please visit
https://www.rootsanalysis.com/....reports/dental-3d-pr
or email sales@rootsanalysis.com
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About Roots Analysis
Roots Analysis is a global leader in the pharma / biotech market research. Having worked with over 750 clients worldwide, including Fortune 500 companies, start-ups, academia, venture capitalists and strategic investors for more than a decade, we offer a highly analytical / data-driven perspective to a network of over 450,000 senior industry stakeholders looking for credible market insights.
Contact:
Ben Johnson
+1 (415) 800 3415
+44 (122) 391 1091
Ben.johnson@rootsanalysis.com
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AI-BASED DIGITAL PATHOLOGY GAINS INTEREST DUE TO AUTOMATION, DIGITIZATION OF HEALTHCARE, SHORTAGE OF PATHOLOGISTS, AND INCREASED DEMAND FOR PATHOLOGY SERVICES
In recent years, advancements in technology and emphasis on precision medicine have recently paved the path for the development of artificial intelligence (AI) based digital pathology techniques for quantitative and qualitative assessment of samples. Specifically, the process of AI-based digital pathology allows scanning of slides via computer monitors, by replacing the conventional microscopic approaches. Further, by converting glass slides to images, samples can be transmitted from diagnostic centers to pathologists within a fraction of time. Considering the rising popularity and demand for such solutions in the healthcare and research industry, and the ongoing efforts of AI-powered digital pathology solution providers / AI pathology solution providers to further improve / expand their respective portfolios, we believe that the AI-based digital pathology market / AI Pathology Market is likely to evolve at a steady pace, till 2035.
To request a sample copy / brochure of this report, please visit this
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The steps involved in the usual workflow of AI-based digital pathology process.
Preparation of Tissue Sample: This process is very similar to the conventional approach. A pathologist examines a biopsy to determine its color, size and consistency. At this point, the specialist can detect symptoms of malignancy and select which areas of a specimen should be inspected under the microscope. Further, the chosen region is prepared by following multi-step processes, such as treatment of the tissue with chemicals in order to maintain its structure, mounting the specimen on a glass slide, staining to improve contrast and protecting the tissue with coverslips.
Converting into Virtual Sample / Whole slide imaging (WSI): WSI or virtual microscopy is a technique that is used to enable digital pathology. Its central component, which is a WSI scanner, captures a picture of the glass slide and generates a precise electronic replica known as a virtual slide. It is worth noting that virtual slides, unlike glass slides, are easy to replicate, save, categorize and distribute. Furthermore, they may be linked to electronic health records, thereby, providing a complete picture of a patient's health.
Saving a Virtual Slide: The scanner pre-processes the virtual slide automatically and stores it to on-premises or cloud storage. In order to minimize the file size, a compression approach is frequently employed before saving the slide.
Viewing and Editing of Slide: In the digital process, instead of using a traditional microscope, a pathologist uses a computer display to analyze enlarged tissue samples. A slide viewing and management software is used to zoom out a tissue segment and observe its smallest features. In addition, this software allows the pathologist to view the slide from different angles, add annotations and even compare multiple images at one time.
Sharing Data: Using specialized digital pathology software applications, slides are converted to an electronic format, thereby, allowing them to be exchanged using the internet. These slides can be shared to gain a second opinion, as well as with patients, research facilities and other stakeholders.
Reporting Results: Some image viewing systems provide reporting capabilities. However, this work is often accomplished by enabling interaction with the laboratory information or laboratory information management system (LIS/LIMS) and hospital information system (HIS).
The digital revolution of pathology is projected to accelerate in the coming years, considering multiple growth drivers, including growing number of laboratories adopting high throughput digital scanning and software technologies to assist diagnostic practice. In addition, factors, including shortage of skilled pathologists in remote areas, increasing pathology workloads due to ageing populations, higher rate of cancer screening programs, rising complexity of pathology testing and time constraints, and requirement for pathology labs to outsource expertise in the field, also contributes significantly towards the need for AI-based digital pathology solutions.
For additional details, please visit
https://www.rootsanalysis.com/....reports/ai-based-dig or email sales@rootsanalysis.com
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About Roots Analysis
Roots Analysis is a global leader in the pharma / biotech market research. Having worked with over 750 clients worldwide, including Fortune 500 companies, start-ups, academia, venture capitalists and strategic investors for more than a decade, we offer a highly analytical / data-driven perspective to a network of over 450,000 senior industry stakeholders looking for credible market insights.
Contact:
Ben Johnson
+1 (415) 800 3415
Ben.johnson@rootsanalysis.com
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