How Peripheral Vascular Anatomy Drives Implant and Delivery System Design
See how anatomy drives peripheral vascular device design, from implant geometry to delivery systems, and the tradeoffs that shape performance.
See how anatomy drives peripheral vascular device design, from implant geometry to delivery systems, and the tradeoffs that shape performance.
Aptyx experts share why catheter issues that surface later often trace back to early decisions around extrusion, materials, tolerances, and manufacturability.
How early material, tolerance, geometry and testing decisions shape production success.
When an interventional catheter fails to track through a tortuous vessel, or a multi-lumen shaft kinks under clinical load, the...
Designing Stents, Flow Diverters, and Thrombectomy Systems as Integrated Platforms The neurovascular device market is at an inflection point. As...
Located in the Boston medtech corridor and powered by the acquisition of Argos, the center delivers immediate expansion in extrusion technology and capacity to better support medtech innovation.
Learn how acetal core mandrel supports complex catheter builds with greater precision, smoother release, and higher yields.
Build better catheters faster with Aptyx core mandrel - stronger, smoother, and more precise every time.
Advancing quality and customer value with a new CT scanner that enhances inspection, validation, and refinement across our network.
Discover how we can help you shape what’s next in interventional and transcatheter innovation.
Device design with users in mind can increase adoption of smoke evacuation systems in operating rooms as new rules roll out.
Innovative tubing concept & manufacturing process for heated breathing circuit improves safety; enhances therapy & customer experience
Startup leverages molding & complex assembly to deliver novel embolic catheter for 510(k) submission in only 6 months.