Cordis is a well-known medical device company that produces a variety of products, including devices used in interventional cardiology and vascular procedures. The Cordis Saber PTA balloon is likely designed for use in percutaneous transluminal angioplasty procedures. Angioplasty is a medical procedure used to open narrowed or blocked blood vessels, typically arteries, to improve blood flow. During angioplasty, a balloon catheter is inflated at the site of the blockage to widen the vessel and restore blood flow. Here are some general features you might expect from a PTA balloon like Cordis Saber: Balloon Material: The balloon is typically made of materials like polyethylene or polyurethane. Inflation System: It would likely have an inflation system that allows controlled inflation and deflation of the balloon during the procedure. Catheter Design: The balloon is mounted on a catheter, which is a flexible tube that allows the device to be threaded through blood vessels to the site of the blockage. Guidewire Compatibility: PTA balloons are often designed to be used with guide wires for precise placement.
The Accu-Chek FastClix lancing device is the first lancing device with a one-click system and a lancet holder. The unique technology ensures quick, easy and virtually painless injection. The rotating hood has eleven depth settings that allow you to adjust the device to your skin type. The lancing device has a holder with six pre-filled lancets, so you do not have to handle the lancets separately. Fast and easy pricking with one click Loading slide for easy selection of a new lancet Rotating hood with eleven depth settings for different skin types Lancet holder is preloaded with six lancets so you don't have to touch needles The window next to the loading slide shows the number of lancets remaining in the holder No sharps container required Less chance of accidental pricking Thanks to the Clixmotion technology, the lancet movement is controlled with minimal vibration and rotation for comfortable puncturing Tapered, tri-cut point with optimal angles, 30G (0.3mm) lancets AST function (alternate puncture sites) is available upon request
I can provide some general information: PTFE Guide Wire: PTFE stands for polytetrafluoroethylene, which is a synthetic fluoropolymer of tetrafluoroethylene. It is known for its low friction properties and is often used in medical applications. Medtronic: Medtronic is a global healthcare company that produces a wide range of medical devices and technologies. This includes products used in cardiology, neurology, diabetes, and other medical specialties.
Guide wires are commonly used in medical procedures, particularly in cardiology and radiology, to guide catheters and other devices through blood vessels or other anatomical structures. The Terumo Radifocus Guide Wire M is likely designed for use in vascular interventions. Here are some general characteristics you might find in Terumo guide wires: Material: Guide wires are typically made of materials such as stainless steel or nitinol. Coating: Some guide wires may have hydrophilic or hydrophobic coatings to enhance their performance during navigation through blood vessels. Tip Design: The tip design may vary based on the intended application, with options like floppy or stiff tips. Diameter and Length: Guide wires come in various diameters and lengths to suit different procedures and anatomies. Radiopaque Markers: Radiopaque markers help visualize the position of the guide wire under fluoroscopy.
Teleflex: Teleflex is a global provider of medical technologies, including products for vascular access, anesthesia, respiratory care, surgical care, and more. They offer a range of vascular products, and the Arrow brand is associated with vascular access and intervention. Rediguard IAB (Intra-Aortic Balloon): Intra-aortic balloon pumps are medical devices used to temporarily support the heart's pumping function and improve coronary artery blood flow. The term "Rediguard" suggests that it may have features related to safety or guarding.
The EverFlex stent is designed for use in the treatment of peripheral arterial disease (PAD), specifically in the iliac arteries. Key features of the EverFlex Protege stent may include: Self-Expanding Design: The stent is self-expanding, meaning it can open and conform to the shape of the artery without the need for balloon inflation. Nitinol Construction: The stent is typically made of nitinol, a nickel-titanium alloy known for its flexibility and ability to maintain shape memory. Longitudinal Flexibility: The stent is designed to provide longitudinal flexibility, allowing it to adapt to the natural movement of the vessel. Iliac Artery Treatment: The EverFlex Protege stent is specifically indicated for use in the iliac arteries, which are located in the pelvis.
The EV3 SpiderFX is commonly associated with the SpiderFX Embolic Protection Device, which is used in the field of interventional cardiology. The device is designed to capture and remove embolic debris that may be released during certain vascular procedures, particularly during carotid artery stenting. Key features of the EV3 SpiderFX Embolic Protection Device may include: Embolic Protection: The primary function of the device is to provide protection against embolic debris dislodged during the intervention. It helps prevent these debris from reaching and potentially blocking smaller blood vessels. Flexible Design: The SpiderFX typically has a flexible design that allows it to navigate through blood vessels, facilitating the deployment and retrieval process. Distal Protection: The device is designed to be positioned distal to the treatment site, capturing any embolic debris before it can travel downstream. Capture Basket: The device often includes a capture basket that traps and retains embolic debris, preventing it from causing harm in the circulation. Compatibility: The SpiderFX device is designed for compatibility with various catheters and guide wires commonly used in interventional procedures.
Medical grade PET, PETG blister, tray and HDPE cleancut card for medical device packaging.
SpO2 cables are specifically designed to connect the SpO2 sensor, typically placed on a patient's finger or earlobe, to the monitoring device. These cables transmit the optical signals captured by the sensor to the monitor, where the data is processed and displayed as oxygen saturation levels.