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3D Printing Medical Devices Market size is set to grow by USD 7.07 billion from 2024-2028, Increased demand for personalized or customized medical devices to boost the market growth, Technavio

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NEW YORK, Aug. 21, 2024 /PRNewswire/ — The global 3D printing medical devices market size is estimated to grow by USD 7.07 billion from 2024-2028, according to Technavio. The market is estimated to grow at a CAGR of almost 25.2% during the forecast period. Increased demand for personalized or customized medical devices is driving market growth, with a trend towards rising focus on the research for the use of 3D printing process to manufacture living organs and cell structures. However, high initial setup cost of 3d printing facility poses a challenge. Key market players include 3D Systems Corp., Anatomics Pty Ltd., Autodesk Inc., Biomerics LLC, Boston Scientific Corp., Desktop Metal Inc., EOS GmbH, Exail Technologies, Formlabs Inc., General Electric Co., INTAMSYS TECHNOLOGY CO. LTD., MATERIALISE NV, Mecuris GmbH, Medtronic Plc, Organovo Holdings Inc., Qualtech Consulting Corp., Renishaw Plc, Schultheiss GmbH, SLM Solutions Group AG, and Stratasys Ltd..

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Forecast period

2024-2028

Base Year

2023

Historic Data

2018 – 2022

Segment Covered

Application (Orthopedic and spinal, Dental, Hearing aids, and Others), End-user (Hospitals and clinics, Academic institutes, Pharma and biotech companies, and Others), and Geography (North America, Europe, Asia, and Rest of World (ROW))

Region Covered

North America, Europe, Asia, and Rest of World (ROW)

Key companies profiled

3D Systems Corp., Anatomics Pty Ltd., Autodesk Inc., Biomerics LLC, Boston Scientific Corp., Desktop Metal Inc., EOS GmbH, Exail Technologies, Formlabs Inc., General Electric Co., INTAMSYS TECHNOLOGY CO. LTD., MATERIALISE NV, Mecuris GmbH, Medtronic Plc, Organovo Holdings Inc., Qualtech Consulting Corp., Renishaw Plc, Schultheiss GmbH, SLM Solutions Group AG, and Stratasys Ltd.

Key Market Trends Fueling Growth

The 3D printing medical devices market is experiencing significant growth due to the advancements in 3D bioprinting technology. This process involves the precise layering of cells, biologic scaffolds, and growth factors to create bioidentical tissue, such as stem cells, skin grafts, and bone and cartilage. Unlike traditional 3D printers, 3D bioprinters use a computer-guided pipette to layer living cells, referred to as bioink, to create artificial living tissues. One of the most promising applications of 3D bioprinting is in the field of organ replacement. This technology has the potential to address the shortage of donor organs and reduce organ rejections by creating organs that better meet the requirements of the body. Companies like ORGANOVO and Allevi are leading the way in 3D bioprinting for medical applications, developing products such as the ExVive 3D Bioprinted Human Liver Tissues and the first desktop 3D bioprinter that prints living tissues out of human cells. These advancements offer several advantages over traditional regenerative methods, including highly precise cell placement and digital control of speed, resolution, cell concentration, drop volume, and diameter of printed cells. With continued research and development, 3D bioprinting technologies are expected to record widespread adoption, driving the growth of the global 3D printing medical devices market.

The 3D Printing Medical Devices market is experiencing significant growth, particularly in the production of patient-specific solutions for various medical applications. Stereolithography (SLA) and digital light processing (DLP) technologies are driving innovation in this field, enabling the creation of complex medical devices such as prosthetics implants, orthopedic implants, and wearable medical devices. Dentistry and orthodontics are major sectors benefiting from 3D printing, with applications including tissue-engineered products, customized hearing aids, and bone scaffolds. Remote patient monitoring, telemedicine, and vital signs measurement are also seeing advancements through 3D printing, with the ability to produce non-implantable medical devices like sensors and monitors. Minimally invasive surgery and drug testing are other areas where 3D printing is making an impact, with potential applications in organ and tissue production, and complex medical procedures. 3D printing laboratories are collaborating with diagnostic centers, medical institutions, and laser beam technology to deliver personalized solutions, from implantable medical devices to surgical equipment and patient-specific models. CAD images are used to create patient-specific products in a layer-wise manner, leading to improved patient outcomes and reduced healthcare costs. 

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Market Challenges

The 3D printing medical devices market faces significant challenges due to high capital costs. These costs are primarily driven by the expensive equipment needed for 3D printing or outsourced print services, as well as the advanced software used for post-processing. While desktop FDM or SLA machines cost less than USD5,000, higher-end additive manufacturing printers, such as SLS, material jetting, and metal printing, can range from USD200,000 to USD850,000, and even exceed several millions of dollars. Moreover, proprietary raw materials sold by printer manufacturers at high profit margins add to the costs. Operating a clinical 3D printing laboratory requires trained ancillary staff and significant investments in personnel. The time required to produce 3D printed devices, which depends on the number of layers, ranges from hours to days. These factors limit the viability of 3D printing for mass manufacturing and may negatively impact the growth of the market during the forecast period.The 3D printing medical devices market is experiencing significant growth, with physicians increasingly turning to 3D-printed solutions for elective surgical procedures and complex prosthetic limbs. However, challenges persist, including the use of titanium alloys and biocompatible materials for cancer patients and ensuring the safety of drug contact materials. Hearing aid manufacturers are also embracing 3D printing for personalized hearing aid devices using biocompatible materials. CAD/CAM technology and desktop printers are revolutionizing dental clinics and hospitals, leading to improved surgical planning, shorter operation times, and reduced post-surgical complications. In orthopedics, 3D-printed prosthetics offer mechanical protection and improved surgical outcomes. However, concerns around biosafety, ethical issues, and regulation by authorities like the Human Tissue Authority remain. Innovations in photopolymerization and rapid prototyping continue to drive advancements in surgical instruments, personalized prosthetics, orthotics, and even tissue and organ engineering. Healthcare professionals must collaborate with medical device manufacturers to address these challenges and ensure surgeon comfort and fatigue prevention.

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Segment Overview

This 3d printing medical devices market report extensively covers market segmentation by

Application1.1 Orthopedic and spinal1.2 Dental1.3 Hearing aids1.4 OthersEnd-user2.1 Hospitals and clinics2.2 Academic institutes2.3 Pharma and biotech companies2.4 OthersGeography3.1 North America3.2 Europe3.3 Asia3.4 Rest of World (ROW)

1.1 Orthopedic and spinal- The 3D printing medical devices market encompasses the production of orthopedic implants, spinal implants, and prosthetic limbs using 3D printing technology. Orthopedic applications, including standard-sized implants, patient-matched implants, and custom implants for individuals with deformities, dominate the market due to the rising prevalence of orthopedic and spinal disorders, increasing demand for personalized implants, and the ability to create complex structures and individually matched devices. The technology’s capacity to manufacture lattice structures and porous surfaces promotes faster healing and better bone ingrowth, particularly in orthopedic and spinal implants. In the orthopedic segment, 3D printing allows for the production of titanium implants with greater porosity, improving stability and bony ingrowth. In the prosthetics sector, 3D printing significantly reduces manufacturing costs and speeds up production, making it suitable for children who quickly outgrow their limbs. The global 3D printing medical devices market is anticipated to grow due to these factors, with orthopedic and spinal applications leading the way. Vendors are also investing heavily in R&D to create technologically advanced implants, further fueling market growth.

For more information on market segmentation with geographical analysis including forecast (2024-2028) and historic data (2018 – 2022) – Download a Sample Report

Research Analysis

The 3D printing medical devices market is revolutionizing the healthcare industry by enabling the production of customized medical products using CAD images in a layer-wise manner. This technology allows for the creation of patient-specific implants, hearing aids, bone scaffolds, surgical equipment, and more. The process begins with the creation of patient CAD images, which are then used to design and manufacture implants and other medical devices. This technology offers numerous advantages, including improved patient comfort, better surgical outcomes, and the ability to produce personalized prosthetics, orthotics, and surgical instruments. The use of 3D printing in medical devices extends beyond implantable and non-implantable devices, with potential applications in drug testing, organ and tissue engineering, and even organ transplantation using biomaterials and computer-aided manufacturing. The technology is transforming the medical device manufacturing landscape, offering rapid prototyping capabilities and enabling healthcare professionals to create innovative solutions for their patients.

Market Research Overview

The 3D printing medical devices market is revolutionizing the healthcare industry by enabling the production of customized medical products using CAD images in a layer-wise manner. This technology allows for the creation of patient-specific products such as implants, hearing aids, bone scaffolds, and surgical equipment, which cater to individual patient needs. 3D printing technology is being used in various medical fields, including neurosurgery, orthopedics, and dentistry. Patient CAD images are used to create personalized models, allowing physicians to plan elective surgical procedures with greater precision. 3D-printed medical devices are made using titanium alloys and biocompatible materials, ensuring safety and compatibility with human tissues and organs. These devices are being used in cancer patients and those requiring organ transplantation, as well as in the production of complex prosthetic limbs and brain designs for neurosurgery. The use of 3D printing technology in the medical field also extends to surgical tools, surgical planning, and even wearable medical devices for remote patient monitoring and telemedicine. The technology offers numerous benefits, including reduced operation time, improved surgical outcomes, and fatigue prevention for surgeons. However, there are also concerns regarding biosafety, ethical issues, and regulation by authorities such as the Human Tissue Authority. The 3D printing medical devices market includes various technologies such as stereolithography (SLA), digital light processing, and photopolymerization, among others. The market is expected to grow significantly due to the increasing demand for personalized medical products and the advancements in CAD/CAM technology, making desktop printers accessible to dental clinics and hospitals for dental restoration and orthopedic prosthetics. The use of 3D printing technology in medical devices is transforming the healthcare industry, offering numerous benefits and challenges.

Table of Contents:

1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation

ApplicationOrthopedic And SpinalDentalHearing AidsOthersEnd-userHospitals And ClinicsAcademic InstitutesPharma And Biotech CompaniesOthersGeographyNorth AmericaEuropeAsiaRest Of World (ROW)

7 Customer Landscape
8 Geographic Landscape
9 Drivers, Challenges, and Trends
10 Company Landscape
11 Company Analysis
12 Appendix

About Technavio

Technavio is a leading global technology research and advisory company. Their research and analysis focuses on emerging market trends and provides actionable insights to help businesses identify market opportunities and develop effective strategies to optimize their market positions.

With over 500 specialized analysts, Technavio’s report library consists of more than 17,000 reports and counting, covering 800 technologies, spanning across 50 countries. Their client base consists of enterprises of all sizes, including more than 100 Fortune 500 companies. This growing client base relies on Technavio’s comprehensive coverage, extensive research, and actionable market insights to identify opportunities in existing and potential markets and assess their competitive positions within changing market scenarios.

Contacts

Technavio Research
Jesse Maida
Media & Marketing Executive
US: +1 844 364 1100
UK: +44 203 893 3200
Email: media@technavio.com
Website: www.technavio.com/

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SOURCE Technavio

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KM Malta Airlines, the Maltese Islands’ New National Carrier, Implements CellPoint Digital’s Payment Orchestration Solution

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The partnership will enable KM Malta Airlines to provide passengers with a seamless payment experience and access to their preferred payment methods.

LONDON, Sept. 23, 2024 /CNW/ — CellPoint Digital, a global pioneer in Payment Orchestration, is proud to announce it has partnered with KM Malta Airlines to support the airline’s payment processes across multiple sales channels, including on its website and App, allowing passengers in future to pay with key alternative payment methods (APMs) like Apple Pay.

From the start of operations on March 31, 2024, CellPoint Digital was entrusted to support KM Malta Airlines’ payment processes across. Using CellPoint Digital’s Payment Orchestration platform, KM Malta Airlines launched the service with optimised payment processes, a cost-effective payment strategy, and a customer-centric payment model. This partnership reflects the airline’s commitment to providing its passengers with a seamless, convenient payment experience and the airline’s recognition of CellPoint Digital as a valued payment solution provider.

Through its partnership with CellPoint Digital, KM Malta Airlines gains access to a network of acquirer connections, including its newly introduced partner, Shift4 (formerly Finaro), to support its growth strategy. This allows the airline to optimise transaction routing, reduce payment costs, and settle in its preferred currency.

“It’s not often that we get to be present at the inception of one of Europe’s next great airlines, but that’s the opportunity we have with this partnership,” said Kristian Gjerding, CEO of CellPoint Digital. “By prioritising its payment strategy as a cornerstone of its launch strategy, KM Malta Airlines demonstrates that it cares about providing passengers with the best possible booking experience and setting itself up for future success.”

Roy Kinnear, CCO of KM Malta Airlines, stated, “A highly optimised, cost-efficient payment strategy is important to the success of our airline. That’s why we partnered with experts in aviation payments to deliver a comprehensive platform tailored to our passengers’ needs and allowing us to expand our offering of customer choice payment mechanisms.”

The Advantage of Day-One Payment Orchestration

Payment Orchestration is a concept that describes the end-to-end management of all components of a payment, from authorisation to routing to settlement to reporting, allowing airlines to boost conversions in direct and indirect sales channels at lower transaction costs. CellPoint Digital’s Payment Orchestration Platform, which KM Malta Airlines will implement, routes transactions intelligently to increase acceptance, simplifies and centralises back-end reconciliation, integrates various payment methods like Apple Pay, and easily accommodates multiple PSPs and acquirers, including KM Malta Airline’s preferred acquiring partner, Shift4.

For more information about the CellPoint Digital partnership with KM Malta Airlines or to speak with company executives, please get in touch with Steven Osei at steven.osei@cellpointdigital.com

About CellPoint Digital
CellPoint Digital is a fintech leader in payment orchestration and optimisation. CellPoint Digital’s main solution is a powerful Payment Orchestration Platform that optimises digital payment transactions from cards or alternative payment methods and accelerates the deployment of new payment options. Merchants can easily scale their own payment ecosystem across the world, unify the customer payment experience across their website, mobile apps and other channels, optimise the routing of each transaction, increase conversion rates and minimise payment costs. CellPoint Digital has offices in Copenhagen, Dallas, Dubai, London, Miami, Pune and Singapore. Visit www.cellpointdigital.com to learn more. 

About KM Malta Airlines

The KM Malta Airlines schedule serves 17 airports across 15 key European cities, namely, Amsterdam, Berlin, Brussels, Catania, Dusseldorf, London Gatwick, London Heathrow, Lyon, Madrid, Milan, Munich, Paris Charles de Gaulle, Paris Orly, Prague, Rome, Vienna and Zurich.

Bookings can be made on kmmaltairlines.com

Contact: media@kmmaltairlines.com

 

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SOURCE CellPoint Digital

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Advantech Unveils Expanded Singapore Office to Boost ASEAN Presence and Support AIoT Innovations with Strategic Partnerships

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SINGAPORE, Sept. 23, 2024 /PRNewswire/ — Advantech (TWSE: 2395), a global leader in industrial IoT and embedded computing solutions, has officially inaugurated its expanded regional office in Singapore. This strategic investment is set to enhance Advantech’s core competencies within the ASEAN region. Located at 7002 Ang Mo Kio Avenue 5, the new office will double the company’s current facility space, enhancing its infrastructure to meet the rising demand for high-technology solutions, particularly in the semiconductor sector. The expansion underscores Advantech’s commitment to collaborating with silicon and ecosystem partners and investing in local talent development through industry-academia partnerships. The new office will also support Advantech’s Configure-To-Order Service (CTOS), reinforcing its strategic goal of deepening and localising industry presence while advancing a comprehensive AIoT industry development strategy.

Vincent Chang, Managing Director of Asia and Intercontinental Region at Advantech, stated, “The relocation to our new premises marks a significant milestone in Advantech’s nearly 30 years of growth in Singapore. Established in 1995, Advantech Singapore has grown to become a pivotal hub in the ASEAN region, leading to the creation of Advantech Malaysia, Thailand, Indonesia, and Vietnam as key regional business units. Advantech envisions Singapore evolving into a Corporate Development Core Competency hub, focusing on business intelligence, strategic planning, and advancing branding, public relations, and ESG programmes across the ASEAN region.”

Advantech is also excited to launch the second year of its AIoT Innowork programme with Singapore Polytechnic (SP). This year’s projects will focus on sustainable development, net-zero emissions, and generative AI. Students will use Advantech’s WISE-PaaS, a cloud-based platform, to develop AIoT solutions, including a smart outdoor agriculture proof-of-concept within SP’s campus. Additionally, the programme will advance intelligent EV charging and parking space monitoring with Advantech’s LoRaWAN gateway and generative AI, featuring a dashboard for carpark occupancy and an assistive chatbot for availability queries.

In response to the government’s focus on future workforce development, a student team from SP is set to create a proof of concept for a “Generative AI-powered Virtual Sales Agent.” This innovative project aims to transform customer interactions by enhancing sales and engagement through cutting-edge AI technology. SP envisions this technology revolutionising customer engagement, enhancing service support, and improving operational efficiency.

Advantech Singapore is dedicated to advancing the “MySkillsFuture” programme, a key initiative by the Singapore government to support lifelong learning. Advantech aims to build a collaborative value chain that fosters a sustainable and thriving IoT ecosystem by partnering with ecosystem players, academic institutions, and industry leaders. Additionally, through academic collaboration, Advantech seeks to cultivate industry growth and align with its social responsibility objectives by producing and distributing urban farming products to underserved communities. These strategic partnerships are poised to drive long-term industry success and reinforce Advantech’s commitment to its ESG goals.

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SOURCE Advantech Co. Singapore Pte Ltd

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Estonia Strengthens Smart Mobility Networking and Strategic Partnerships in the Gulf

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DUBAI, UAE, Sept. 23, 2024 /PRNewswire/ — Trade Estonia, part of Enterprise Estonia, is concluding its participation at the ITS World Congress 2024 in Dubai, further asserting its leadership in intelligent transport systems (ITS) and smart mobility. Estonia, known for being the first country to allow testing autonomous vehicles on public roads since 2017, showcased its innovative technologies that are setting new benchmarks in smart mobility and ITS.

At the exhibition, Trade Estonia displayed pioneering solutions, including Bamboo Apps’ cutting-edge dispatch system for autonomous shuttles, enabling remote monitoring of unmanned vehicles to enhance safety and efficiency. e-Pavement integrates sensors within road surfaces to improve safety and traffic management, while Auve Tech’s autonomous shuttles seamlessly integrate with public transport, offering efficient and eco-friendly urban mobility solutions. Metrosert is enhancing the precision of smart infrastructure, and Digilogistika Keskus is optimising logistics through advanced digital platforms, boosting supply chain efficiency in smart cities.

H.E. The Ambassador of Estonia to the UAE Maria Belovas stated, “Estonia’s footprint in integrating cutting-edge technology is pivotal in enhancing transportation safety, efficiency, and mobility. Our innovations are designed to meet the evolving needs of global smart cities and ensure a sustainable future for transportation.”

These advancements exemplify Estonia’s commitment to developing intelligent, sustainable, and efficient transport solutions that address both urban and rural mobility needs, and solidifying its global network.

In addition to presenting its technological progress at the ITS World Congress, Estonia focused on building meaningful connections and exploring new avenues for collaboration.

Forging Strategic Global Partnerships

Estonia is dedicated to expanding its international impact by building strategic partnerships, particularly in the Gulf region.

A recent networking event, hosted by H.E. The Ambassador of Finland, Ms. Tuula Yrjölä, and H.E. The Ambassador of Estonia, Ms. Maria Belovas, brought together Finnish and Estonian business delegations to cultivate global connections in smart mobility. The event also facilitated valuable discussions on future collaborations, reflecting Trade Estonia’s ongoing mission to support global innovation and sustainability in transport.

Ms. Maria Belovas highlighted the importance of these international connections in advancing the organisation’s strategic goals and enriching global collaborative efforts.

Building on this momentum, Trade Estonia is gearing up for its next significant engagement at GITEX Global 2024. This upcoming event will serve as a new stage for Estonia to underline their technological advancements and explore new avenues for collaboration with global technology leaders.

About Trade Estonia

Trade Estonia is part of Enterprise Estonia. As a state organisation, Trade Estonia helps Estonian companies to establish themselves in international markets. With a focus on future technologies and pioneering projects, Trade Estonia provides Estonian companies with access to market analysis and marketing strategies and creates the conditions for them to operate successfully on a global scale. Trade Estonia not only promotes the development of new business areas and the establishment of strategic partnerships, but also facilitates access to international networks, thus contributing to the global competitiveness of Estonian companies.

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