The Stingray LP Catheter is a specialized medical device designed for chronic total occlusion (CTO) procedures. It is engineered to facilitate re-entry into the true lumen of blood vessels, particularly in complex coronary interventions. The catheter features a unique design with a central guidewire lumen and two side holes, allowing for precise navigation and control. Its compatibility with standard guide catheters and guidewires makes it a versatile tool in interventional cardiology.
1. The Stingray LP Catheter is characterized by its dual side holes and radiopaque markers, which enhance visibility and precision during procedures. Its design allows for effective re-entry into the true lumen, even in challenging CTO cases.
2. Structurally, the catheter consists of a central guidewire lumen and two side holes positioned opposite each other on the balloon. This configuration ensures compatibility with 6F guide catheters and guidewires ≤0.014 in in diameter.
3. The primary use of the Stingray LP Catheter is in CTO procedures, where it aids in guiding and supporting guidewires to access discrete areas of the coronary and peripheral vascular systems. It is particularly useful in PTCA and stent interventions.
The Stingray LP Catheter, also known as the CTO Re-entry Balloon Catheter, is a specialized tool designed for complex coronary interventions. Its unique design and compatibility with standard equipment make it an essential device in the treatment of chronic total occlusions.
The Stingray LP Catheter offers precise re-entry into the true lumen of blood vessels, making it ideal for CTO procedures. Its design ensures compatibility with standard guide catheters and guidewires, enhancing its versatility in interventional cardiology.
1. The catheter's dual side holes and radiopaque markers provide enhanced visibility and control during procedures, ensuring accurate re-entry into the true lumen.
2. Its central guidewire lumen and side hole configuration allow for seamless integration with 6F guide catheters and guidewires ≤0.014 in in diameter.
3. The Stingray LP Catheter is designed for single use and is sterilized using ethylene oxide, ensuring safety and reliability in clinical settings.
4. It is particularly effective in guiding and supporting guidewires in complex CTO cases, facilitating successful PTCA and stent interventions.
5. The catheter's compatibility with standard equipment makes it a versatile tool in interventional cardiology, suitable for a wide range of procedures.
The Stingray LP Catheter stands out for its precision and compatibility in CTO procedures. Its design ensures effective re-entry into the true lumen, making it a reliable choice for interventional cardiologists.
The Stingray LP Catheter is primarily used in chronic total occlusion (CTO) procedures, where it facilitates re-entry into the true lumen of blood vessels. Its application is crucial in complex coronary interventions, particularly in PTCA and stent placements.
1. In CTO procedures, the Stingray LP Catheter is used to guide and support guidewires, enabling access to discrete areas of the coronary and peripheral vascular systems.
2. Its dual side holes and radiopaque markers enhance visibility and control, ensuring accurate re-entry into the true lumen during complex interventions.
3. The catheter is particularly useful in PTCA and stent interventions, where it aids in placing conventional guidewires distal to stenotic coronary lesions.
4. Its compatibility with standard guide catheters and guidewires makes it a versatile tool in interventional cardiology, suitable for a wide range of clinical applications.
5. The Stingray LP Catheter is designed for single use, ensuring safety and reliability in clinical settings.
The Stingray LP Catheter is a vital tool in CTO procedures, offering precision and reliability in complex coronary interventions. Its application in PTCA and stent placements underscores its importance in interventional cardiology.
When purchasing the Stingray LP Catheter, consider factors such as product specifications, compatibility with existing equipment, budget, and intended clinical applications. This guide provides essential information to help you make an informed decision.
1. Product specifications: Ensure the catheter's compatibility with 6F guide catheters and guidewires ≤0.014 in in diameter. Verify its single-use design and ethylene oxide sterilization.
2. Product type: The Stingray LP Catheter is a specialized device for CTO procedures, designed for re-entry into the true lumen of blood vessels.
3. Budget considerations: Evaluate the cost-effectiveness of the catheter, considering its single-use nature and the potential for improved clinical outcomes in complex interventions.
4. Usage scenarios: The catheter is ideal for CTO procedures, particularly in PTCA and stent interventions. Assess its suitability for your clinical needs.
Purchasing the Stingray LP Catheter requires careful consideration of product specifications, compatibility, and clinical applications. This guide aims to assist in making an informed decision, ensuring the catheter meets your specific needs.
When using the Stingray LP Catheter, it is essential to follow proper handling and usage guidelines to ensure patient safety and optimal performance. This section outlines key precautions to consider during clinical applications.
1. Ensure the catheter is used only once and disposed of properly after the procedure to prevent contamination and ensure patient safety.
2. Verify compatibility with 6F guide catheters and guidewires ≤0.014 in in diameter before use to avoid complications during the procedure.
3. Follow proper sterilization and handling procedures to maintain the catheter's integrity and performance.
4. Monitor the patient closely during and after the procedure for any adverse reactions or complications related to catheter use.
5. Train clinical staff thoroughly on the proper use of the Stingray LP Catheter to ensure safe and effective application in CTO procedures.
The Stingray LP Catheter requires careful handling and adherence to usage guidelines to ensure patient safety and optimal performance. Proper training and monitoring are essential for successful clinical applications.
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