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3D Printing Medical Device Software Market 2022

3D printing medical device software solutions are used to produce medical devices with the help of additive manufacturing. In 3D printing, three-dimensional medical devices are created by adding successive layers of raw materials. Medical devices are produced from a digital 3-D file like Magnetic Resonance Image (MRI) or a Computer-Aided Design (CAD). 3D printing solution is flexible, and it allows designers to make changes without the need for any additional tools. Manufacturers create medical devices matched to a patients’ anatomy. The software used in 3D printing medical devices performs several tasks such as printing, designing, analyzing, visualization, planning, and simulation.

The global 3D Printing Medical Device Software Market  is expected to register a CAGR of 17.62% during the forecast period and is expected to hit USD 657.08 million by 2027.

Ongoing technological advancements in software solutions are driving the growth of the3D Printing Medical Device Software Market. For a very long time, the 3D printing industry focused on the development of hardware and materials. The recent trend involves a considerable development of software solutions used in the 3D printing of medical devices. The interoperability of software solutions has greatly benefited the 3D printing industry. It has reduced the number of steps, tools, and efforts needed to design a model for printing. Technical advancements have paved the way for the development of innovative 3D-printed products to cater to the growing demand for 3D-printed medical devices in the healthcare industry. As conventional manufacturing processes are time-consuming, key players in the market are focusing on the development of novel products.

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Major Key Players:

Some of the key players operating in the 3D Printing Medical Device Software Market are Stratasys Ltd, Nemotec, PS-Medtech, DWS Systems, 3D Systems Corporation, Carima, Real Dimension Inc, Regenhu, 3D Totem, Ackuretta Technologies, and Materialise NV.

Segment Analysis

The global 3D Printing Medical Device Software Market, based on type, is segmented into type, function, application, and end user. On the basis of type, the 3D Printing Medical Device Software Market has been sub-segmented into integrated and standalone. On the basis of function, the 3D printing medical devices software market has been segmented into printing, analysis, visualization, planning, design, navigation, and others. On the basis of application, the 3D Printing Medical Device Software Market is segmented into medical imaging, dental, surgery, research, physical therapy, aesthetic medicine, and others. Based on end user, the global 3D printing medical devices software market is segmented into medical device companies, dental laboratories, research institutes, hospitals & clinics, and others.

Regional Analysis

The global 3d printing medical devices market has been segmented on the basis of region into the Americas, Europe, Asia-Pacific, and the Middle East & Africa. The Americas 3D printing medical devices software market has been segmented into North America and Latin America, with the North America market further divided into the US and Canada. The European 3D printing medical devices software market has been segmented into Western Europe and Eastern Europe. The Western Europe 3D printing medical devices software market has further been classified into Germany, the UK, France, Italy, Spain, and the Rest of Western Europe. The 3D printing medical devices software market in Asia-Pacific has been segmented into China, Japan, India, South Korea, Australia, and the Rest of Asia-Pacific. The Middle East & Africa 3D printing medical devices software market has been divided into the Middle East and Africa.

In 2019, the Americas led the 3D printing medical devices software market with a share of 42.16%, and this trend is expected to continue throughout the forecast period. This is due to the introduction of innovative technologies and their rapid acceptance, as well as the presence of key companies in the region. Moreover, increased research funding from private and public organizations is fueling the market growth in the region.

Asia-Pacific is anticipated to register the highest growth rate over the forecast period from 2020 to 2027. Global players are focused on collaboration and opening new offices in the region owing to the availability of talent. For instance, Materialise, a leading US-based 3D printing medical devices software has officially opened a new office in China with a focus on carrying out R&D on 3D printing software. Furthermore, India and China have a number of startups such as think3D and Osteo3d working on the 3D printing medical devices software. These startups are offering services across the world, driving the growth of this region.

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