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Ansys 醫療裝置工程模擬 

電腦模擬醫療裝置開發

在採用物理型模擬的電腦模擬方法中,醫療裝置產業可以加快創新、顯著降低成本、縮短法規核准流程,並將病人安全性最大化。

利用工程模擬加速醫療裝置創新

在身心健康與救生作業方面,應避免發生裝置故障。醫療裝置產業利用模擬技術開發顛覆性創新,並提供日益改善的治療方式。為了讓病人更快獲得新的治療方式,在整個設備開發週期以及法規核准流程中應用工程模擬,是唯一具成本效益的方法,同時符合安全標準並滿足上市時間限制。

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More Insights, Better Patient Outcomes

Patient Results

Validated Medical Devices 

Accurate modeling of the complexities of human and animal physiology can validate a medical device's performance in its working environment. 

 

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In Silico Clinical Trials

Applying validated computer models of medical devices to hundreds or thousands of virtual patients provides complementary evidence of product performance for a more robust regulatory approval submission. 

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Biocompatibility Testing

Multiphysics modeling enables medical device manufacturers to test Class II and III devices for biocompatibility, ensuring patient safety and providing evidence for regulatory approval.

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Personalized Medicine

In silico technologies are paving the way for personalized medicine, enabling individualized treatments rather than a one-size-fits-all approach. 

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Fighting Cardiovascular Diseases with In Silico Solutions 

Applications

Simulation provides a transformative approach that minimizes development risks and expenses across various health applications. With virtual testing, manufacturers can identify design flaws early, reducing reliance on costly physical prototypes and extensive testing phases.

Featured Solutions

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Advanced Heart Modeling with AI and Simulation

By combining AI and simulation technologies, the PyAnsys-Heart platform enables users to replicate critical heart functions. Engineered to support diverse user needs, the PyAnsys-Heart platform offers a modular framework to build simple to highly complex heart models. 

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From Scan to Simulation

Simpleware software offers complete 3D image segmentation and model generation solutions for converting scans into 3D models. Accurately process images, obtain measurements and statistics, and export high-quality models to design, simulation, and 3D printing applications. 

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Hans Human Body Model

Hans Human Body Model is a digital model that supports various applications, including ergonomics, biomechanics, and more. The model provides detailed and accurate representations of the human body, including its anatomy, physiology, and mechanical properties. 

Real-World Simulation in Action

Below is a curated list of success stories and thought leadership from our colleagues, customers, and partners around the world using simulation to advance medical devices.   

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Using In Silico Evidence to Accelerate the Regulatory Approval of Cardiovascular Devices

This webinar will review the ASME V&V 40 standard along with complementary FDA guidance that outlines a clear and consistent pathway for using CM&S in submissions.

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Circleg Empowers Amputees Through Simulation

Learn how Circleg engineers provide high-quality solutions for amputees with a focus on beneficiaries in low- and middle-income countries.

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Beating the Competition With Total Artificial Hearts

Read how the inaugural winner of the Heart Hackathon competition used Ansys software to help build a total artificial heart (TAH) at University of Bath.

Numalogics

Democratizing In Silico Medical Device Testing

See how Numalogics helps medical device manufacturers design, test, and iterate on their devices using simulated virtual models