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Stingray Guidewire and Extension Wire
The Stingray Guidewire features a distal coil that is radiopaque, with a proximal shaft coated in PTFE and a hydrophilic coating on the distal coil area. The Stingray Extension Wire is a stainless steel wire with a distal connector, also coated in PTFE. It is compatible only with extendable Stingray Guidewires. The product is sterilized with ethylene oxide, intended for single use, and has a shelf life of two years.
Product English Name:
Stingray Guidewire and Extension Wire
Alias:
CTO Guidewire,Stingray Wire
Intended Use:
The Stingray CTO Guidewire is designed for use during percutaneous transluminal coronary angioplasty (PTCA) and percutaneous transluminal angioplasty (PTA) to assist in the placement of balloon catheters or other intravascular devices. It is not suitable for cerebral vessels. When used as part of a system including the Crossboss CTO Microcatheter, Stingray CTO Re-entry Balloon Catheter, and Stingray CTO Guidewire, it is suitable for placing conventional guidewires distal to coronary lesions, including chronic total occlusions (CTO), prior to PTCA or stent interventions.
Product Introduction

The Stingray Guidewire and Extension Wire are specialized medical devices designed for navigating and treating chronic total occlusions (CTO) in coronary arteries. These guidewires are integral to complex vascular interventions, offering precision and reliability in challenging anatomical scenarios.

1. The Stingray Guidewire is characterized by its radiopaque distal coil and PTFE-coated proximal shaft, ensuring visibility and smooth navigation through vascular structures.
2. The Stingray Extension Wire complements the guidewire with its stainless steel construction and PTFE coating, designed specifically for compatibility with extendable Stingray Guidewires.
3. These devices are used in conjunction with other CTO-specific tools to facilitate the placement of guidewires and catheters in complex coronary interventions, enhancing procedural success rates.

The Stingray Guidewire and Extension Wire are essential tools in the treatment of chronic total occlusions, offering a combination of visibility, compatibility, and precision. Their design and functionality make them indispensable in complex coronary interventions.

Main Features

The Stingray Guidewire and Extension Wire offer advanced features for navigating and treating CTOs, including radiopacity, smooth navigation, and compatibility with other CTO-specific devices.

1. The radiopaque distal coil ensures clear visibility under fluoroscopy, aiding in precise navigation.
2. The PTFE coating on the proximal shaft and hydrophilic coating on the distal coil area facilitate smooth movement through vascular structures.
3. The Stingray Extension Wire's stainless steel construction and PTFE coating ensure durability and compatibility with extendable guidewires.
4. These guidewires are designed for single use, ensuring sterility and reducing the risk of infection.
5. The two-year shelf life provides flexibility in storage and usage planning.

The Stingray Guidewire and Extension Wire are designed with advanced features to enhance procedural success in treating CTOs. Their radiopacity, smooth navigation, and compatibility make them reliable tools in complex coronary interventions.

Clinical Applications

The Stingray Guidewire and Extension Wire are clinically used in the treatment of chronic total occlusions (CTO) in coronary arteries, facilitating the placement of guidewires and catheters in complex interventions.

1. These guidewires are used in percutaneous transluminal coronary angioplasty (PTCA) to navigate through occluded coronary arteries.
2. They assist in the placement of balloon catheters and other intravascular devices during PTCA and percutaneous transluminal angioplasty (PTA).
3. The guidewires are integral to the Crossboss CTO system, enhancing the success rate of CTO interventions.
4. They are particularly useful in treating chronic total occlusions, where conventional guidewires may fail.
5. The devices are not suitable for use in cerebral vessels, ensuring safety in specific vascular territories.

The Stingray Guidewire and Extension Wire are clinically essential for treating chronic total occlusions, offering precision and reliability in complex coronary interventions. Their use in PTCA and PTA procedures enhances procedural success and patient outcomes.

Purchasing Guide

The Stingray Guidewire and Extension Wire require careful consideration of product parameters, types, budget, and usage scenarios during procurement.

1. Product parameters such as length, diameter, and coating type should be evaluated to ensure compatibility with existing equipment.
2. Different types of guidewires and extension wires are available, each suited for specific procedural needs.
3. Budget considerations should include the cost of single-use devices and their impact on overall procedural expenses.
4. Usage scenarios should be assessed to determine the appropriate guidewire and extension wire for specific interventions.

Procuring the Stingray Guidewire and Extension Wire involves careful evaluation of product parameters, types, budget, and usage scenarios. Ensuring compatibility and suitability for specific interventions is crucial for successful outcomes.

 Precautions

The Stingray Guidewire and Extension Wire require adherence to specific precautions to ensure safe and effective use in clinical settings.

1. Ensure the guidewire and extension wire are used only once to maintain sterility and prevent infections.
2. Verify compatibility with other CTO-specific devices before use to avoid procedural complications.
3. Monitor the guidewire's position under fluoroscopy to ensure accurate navigation through vascular structures.
4. Avoid using the guidewire in cerebral vessels, as it is not designed for such applications.
5. Store the devices within their specified shelf life to maintain efficacy and safety.

Using the Stingray Guidewire and Extension Wire safely requires adherence to precautions such as single-use protocols, compatibility checks, and proper storage. These measures ensure effective and safe use in clinical interventions.

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