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PTFE Guidewire

Used to gain access to desired anatomical location and to assist in placement of medical devices during diagnostic or interventional procedures (URS).

PTFE Coating for smooth insertion

Atraumatic floppy tip for less trauma

Uniform outer diameter

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Tracer Guidewire

Used to gain smooth and easy access to desired anatomical location and to assist in placement of medical devices.

Lubricious hydrophilic coating provides easy passage in tortuous anatomy and through lesions

Radiopaque polymer jacket enhances fluoroscopic visualization

Kink resistant nitinol core for optimal performance

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Amplatz Extra Stiff Guidewire

Used to gain access to desired anatomical location and to assist in placement of medical devices and heavier instruments (PCN & PCNL).

PTFE coating for smooth insertion

Atraumatic floppy tip for less trauma

The stiffness of the wire provides support for the advancement of devices such as dilators, catheters and instruments

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Prime Wire

Used to gain access to desired anatomical location and to assist in placement of medical devices during diagnostic or interventional procedures.

Designed to combine the benefits of multiple specialty guidewires in one guidewire for urological procedures

5 cm hydrophilic floppy tip provides easy passage in tortuous anatomy

Teflon coating provides for low friction navigation and easy advancement of devices

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P Flex Ureteral Stent

Intended to be implanted for drainage of urine from renal pelvis to urinary bladder.

For indwelling up to 30 days

Polyurethane based stent has uniform diameter and smooth surface reducing encrustation

Optimal loop shape and high memory retention reduces the risk of migration

Optimal radiopacity for better visualization

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Bluthane Ureteral Stent

Intended to be implanted for drainage of urine from renal pelvis to urinary bladder.

Thermosensitive, advanced PU material for enhanced patient comfort

Stent will be stiffer at room temperature promoting pushability for stent deployment

Material becomes softer at body temperature

Optimal loop shape and high memory retention reduces the risk of migration

Optimal radiopacity for better visualization

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