ISO 10555 Catheter Testing services
Ensure your catheters meet rigorous safety and regulatory requirements with comprehensive ISO 10555 Catheter Testing services. Get complete validation across mechanical properties, simulated use, and performance testing under real physiological conditions (37°C). Our "four corners" testing approach and thorough testing methodologies streamline your path to market with testing that covers every aspect of catheter safety and performance, from balloon compliance to bond strength.

What is ISO 10555 catheter testing at Element?
ISO 10555 testing evaluates the safety and performance of intravascular catheters through comprehensive mechanical, dimensional, and simulated use testing. At Element, we provide complete validation services for all catheter types, ensuring compliance with FDA guidance and ISO standards while verifying your device performs according to its intended use under real-world conditions.

What can Element offer you for Catheter Testing?
Components and Materials We Test
Components and Materials We Test
Transform your regulatory compliance journey with our comprehensive testing solutions. Element inspects complete sterilized assemblies, including mounted stents and all accessory devices used in clinical procedures. Our testing evaluates every component of your catheter system under real physiological conditions.
Key Tests Offered
Key Tests Offered
- Simulated Use Testing
- Tip Pull, Flexibility and Kink Resistance, and Torque Strength
- Dimensional Verification
- Balloon-Rated Burst Pressure Testing
- Balloon Fatigue Testing
- Balloon Compliance Testing
- Catheter Bond Strength
- Catheter Body Burst Pressure
Methods and Solutions Offered
Methods and Solutions Offered
Access a complete suite of validation testing that ensures your catheters meet all safety and performance requirements. From balloon-rated burst pressure testing with 99.9% survival rate at 95% confidence levels to comprehensive simulated use evaluation, we deliver the data you need for regulatory submission and market confidence.
Simulated Use Testing:
This test mimics the device’s clinical use by tracking the delivery catheter through a fixture that replicates in vivo conditions, like a tortuous path or aqueous environment. It uses sterilized assemblies, stents, and accessory devices in a 37°C water bath. Testing includes the observation of any abnormalities, device damage, or difficulties encountered during simulated procedures.
Tip Pull, Flexibility & Kink Resistance, and Torque Strength:
These tests measure the mechanical properties of the catheter, balloon, or guidewire within the simulated use model to assess how well they perform under real-world conditions.
Dimensional Verification:
This test ensures that accessory devices used in clinical procedures, such as introducers or guiding catheters, meet the required size specifications (e.g., smallest guiding catheter inner diameter) per ASTM F2081.
Balloon-Rated Burst Pressure Testing:
This test determines the rated burst pressure (RBP), or the pressure at which 99.9% of balloons can survive with 95% confidence, including testing in stents, per ISO 10555-4.
Balloon Fatigue Testing:
Balloon fatigue testing measures how balloons perform under repeated inflations, typically up to 10 inflations, to the rated burst pressure. We follow the “four corners” paradigm to test device sizes: largest diameter/longest length, largest diameter/shortest length, smallest diameter/longest length, and smallest diameter/shortest length.
Balloon Compliance Testing:
This test measures how the diameter of a deployed PTCA balloon changes with inflation pressure. It includes single-point measurements of deployed PTCA balloon diameter and thickness of PTCA balloon material. It also includes measuring balloon inflation and deflation times to help manufacturers create compliance charts for selecting the right catheter size for the target vasculature.
Catheter Bond Strength:
We test the bonding areas of the catheter where adhesives or other methods are used to join components. The catheter is preconditioned by tracking it through a tortuous path fixture to assess bond strength.
Catheter Body Burst Pressure:
This test measures the maximum pressure a catheter body can withstand under injection conditions, including using syringes or automatic injectors. The test also includes measuring the contrast media flow rate at maximum burst pressure and typical clinical pressures.
Cutting-edge Equipment We Use
Cutting-edge Equipment We Use
Our advanced testing facilities feature specialized equipment including digital stroboscopes for visual inspection, precision pressure monitoring systems, and temperature-controlled testing environments that maintain exact 37°C conditions. We utilize custom-designed fixtures that accurately simulate tortuous vascular pathways and specialized measurement tools that provide detailed data on catheter performance across all test parameters.
Which Labs Offer This Service
Which Labs Offer This Service
Our expert team operates from strategically located medical device industry hubs, giving you convenient access to expert guidance. Find your nearest lab on our Locations Page.
Standards we test to and products we test
The main standards for balloon and catheter testing are:
- ISO 10555-1 Intravascular catheters – Sterile and single-use catheters – Part 1: General requirements
- ISO 10555-3 Intravascular catheters – Sterile and single-use catheters – Part 3: Central venous catheters
- ISO 10555-4 Intravascular catheters – Sterile and single-use catheters – Part 4: Balloon dilatation catheters
- ISO 10555-5 Intravascular catheters – Sterile and single-use catheters – Part 5: Over-needle peripheral catheters
- ASTM F623 Standard Performance Specification for Foley Catheter
- ASTM F2081 Standard Guide for Characterization and Presentation of the Dimensional Attributes of Vascular Stents
- ASTM F2394 Standard Guide for Measuring Securement of Balloon Expandable Vascular Stent Mounted on Delivery System
Relevant FDA guidance documents include:
- Non-Clinical Engineering Tests and Recommended Labeling for Intravascular Stents and Associated Delivery Systems
- Class II Special Controls Guidance Document: Vascular and Neurovascular Embolization Devices
- Class II Special Controls Guidance Document for Certain Percutaneous Transluminal Coronary Angioplasty (PTCA) Catheters
- Intravascular catheters
- Balloon dilatation catheters
- Central venous catheters
- Over-needle peripheral catheters
- PTCA catheters
- Foley catheters
- Vascular stents and delivery systems
- Guiding catheters
- Introducer catheters
Your Challenges, Our Solutions
Complex Regulatory Requirements
Multiple Test Method Needs
Evolving Technology Validation
Time-Critical Testing Needs
Why Choose Element

Fully Comprehensive Testing Processes
Insightful Analysis & Reporting
Real-World Simulation
Global Expert Network
20Inflations in balloon fatigue testing
10+Testing methods available under one comprehensive service
37°C Precise physiological temperature maintained during testing
4-corners Systematic testing approach covering all critical dimensional combinations

Frequently asked questions
What are the key standards for balloon and catheter testing?
The main standards include ISO 10555-1 through 10555-5, covering general requirements through specific catheter types, plus ASTM standards F623, F2081, and F2394 for specific performance characteristics.
What flow rate measurements do you perform during testing?
We measure contrast media flow rate at both maximum burst pressure and pressures typical to clinical use, ensuring your catheter performs reliably under all operating conditions.
What type of compliance data do you provide for balloons?
We develop detailed compliance charts showing diameter vs. pressure relationships, helping you accurately select catheter sizes for target vasculature sites. This includes balloon inflation and deflation time measurements.

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