Skip to main content
Featured products
The OSYPKA PACE 300® is a three-chamber external pacemaker designed for temporary biventricular…
OSYPKA PACE 101H® is a single-chamber external pacemaker ideal for temporary cardiac pacing in…
Balloon dilatation catheter for percutaneous transluminal valvuloplasty, ideal for TAVI…
Temporary myocardial pacing cables intended for use after cardiac surgery. Available in multiple…
CoraSim® is a heart simulator designed for training and education in cardiac electrophysiology…
The ICONCore® is a portable, non-invasive cardiometer that enables continuous measurement of…

    Libro non-adhesive embolization (DMSO, EVOH)

    Non-adhesive liquid embolic agent for cerebral AVMs, composed of EVOH and DMSO, with high radiopacity and distal penetration capability.

    Libro non-adhesive embolization (DMSO, EVOH)

    Non-adhesive liquid embolic agent for cerebral AVMs, composed of EVOH and DMSO, with high radiopacity and distal penetration capability.


    Libro is a non-adhesive liquid embolic agent indicated for the treatment of cerebral arteriovenous malformations (AVMs). It is formulated with EVOH (ethylene-vinyl alcohol copolymer), micronized tantalum suspended for radiopacity, and DMSO (dimethyl sulfoxide) as solvent.

    This system allows for complete filling and more distal embolization of the nidus without significant risk of catheter entrapment. The DMSO dissipates in the blood, and the EVOH with tantalum precipitates in situ forming a spongy, coherent, and visible embolus.

    Features

    • Composition of EVOH, micronized tantalum, and DMSO.
    • Non-adhesive, ideal for avoiding catheter entrapment.
    • High radiopacity thanks to suspended tantalum powder.
    • Compatible with DMSO microcatheters.
    • Multiple viscosities allowing controlled deployment.

    Benefits

    • Enables deeper and more precise embolization within the vascular nidus.
    • Reduces the risk of catheter entrapment during the procedure.
    • Controlled in situ precipitation for effective and safe embolization.
    • Visible under imaging thanks to its tantalum content.