Innovation and collaborative, synchronized program management for new programs
Aerospace & Defense
Innovation and collaborative, synchronized program management for new programs
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Integration of mechanical, software and electronic systems technologies for vehicle systems
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Innowacyjność produktów poprzez efektywne zarządzanie zintegrowanymi recepturami, opakowaniami i procesami produkcyjnymi
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New product development leverages data to improve quality and profitability and reduce time-to-market and costs
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Supply chain collaboration in design, construction, maintenance and retirement of mission-critical assets
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Construction, mining, and agricultural heavy equipment manufacturers striving for superior performance
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Integration of manufacturing process planning with design and engineering for today’s machine complexity
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Visibility, compliance and accountability for insurance and financial industries
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Shipbuilding innovation to sustainably reduce the cost of developing future fleets
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Siemens PLM Software, a leader in media and telecommunications software, delivers digital solutions for cutting-edge technology supporting complex products in a rapidly changing market.
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“Personalized product innovation” through digitalization to meet market demands and reduce costs
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Remove barriers and grow while maintaining your bottom line. We’re democratizing the most robust digital twins for your small and medium businesses.
Explore IndustryCatheter design and optimization via CFD simulation and design exploration
Catheter design and optimization via CFD simulation and design exploration
How to design catheters best suited for specific objectives
Catheters are among the most commonly used medical devices, employed in a wide range of procedures including the administration of intravenous fluids, drug delivery, and dialysis. In order to maximize the effectiveness of a catheter for a particular application, medical device developers are increasingly turning to simulation to design catheters best suited for achieving specific objectives. In the case of a drug delivery catheter, for instance, the goal is more efficient and uniform drug delivery, while ensuring that the catheter design does not negatively impact the flow properties that affect thrombus generation and recirculation.
Simulation also provides a way to investigate the response of a design to different sources of variability—variability of usage, of patients, or of the design itself.
In this webinar, you’ll learn how the sophisticated Computational Fluid Dynamics simulation and design exploration tools in Simcenter STAR-CCM+ can help you meet the ever-present challenges of accelerated design cycles and risk management.
Specifically, you’ll learn about:
Register now to confirm your place and hear about the future of medical device simulation from expert users.
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How to design catheters best suited for specific objectives
Catheters are among the most commonly used medical devices, employed in a wide range of procedures including the administration of intravenous fluids, drug delivery, and dialysis. In order to maximize the effectiveness of a catheter for a particular application, medical device developers are increasingly turning to simulation to design catheters best suited for achieving specific objectives. In the case of a drug delivery catheter, for instance, the goal is more efficient and uniform drug delivery, while ensuring that the catheter design does not negatively impact the flow properties that affect thrombus generation and recirculation.
Simulation also provides a way to investigate the response of a design to different sources of variability—variability of usage, of patients, or of the design itself.
In this webinar, you’ll learn how the sophisticated Computational Fluid Dynamics simulation and design exploration tools in Simcenter STAR-CCM+ can help you meet the ever-present challenges of accelerated design cycles and risk management.
Specifically, you’ll learn about:
Register now to confirm your place and hear about the future of medical device simulation from expert users.