Tips stent graft and kit
The present invention relates to a TIPS stent graft, comprising a tubular component having a lumen extending therethrough, the tubular component comprising a balloon expandable central section and a first and a second self-expanding section, the first and the second self-expanding section sandwiching the central section, the lumen extending through the first, central, and second sections, the stent graft being capable of selectively constricting the central section.
1. A Transjugular Intrahepatic Portosystemic Shunt (TIPS) stent graft, comprising:
a tubular component having a lumen extending therethrough, the tubular component configured for placement in a liver channel created for a TIPS procedure, the tubular component comprising:
a diametrically restricted balloon expandable central section;
a first self-expanding section; and
a second self-expanding section, the first self-expanding section and the second self-expanding section sandwiching the diametrically restricted balloon expandable central section, the lumen extending through the first self-expanding section, the diametrically restricted balloon expandable central section, and the second self-expanding section, wherein the diametrically restricted balloon expandable central section comprises a shape memory alloy having a transition temperature above body temperature, the diametrically restricted balloon expandable central section being configured to assume a configuration which is more constricted than the first self-expanding section and second self- expanding section in their expanded state when heated above its transition temperature; and
a collar formed as a cylinder wrapped around the diametrically restricted balloon expandable central section, the collar being arranged to selectively reduce its inner diameter to thereby constrict the diametrically restricted balloon expandable central section.
2. The TIPS stent graft according to claim 1 , wherein the collar is arranged to selectively reduce its inner diameter upon an application of heat.
3. The TIPS stent graft according to claim 1 , wherein the collar comprises a metal.
4. The TIPS stent graft according to claim 1 , the collar being arranged to heat up upon application of electric energy to thus reduce its inner diameter, the TIPS stent graft further comprising electrodes to supply electricity to the collar.
5. The TIPS stent graft according to claim 4 , the electrodes being formed on an inside of the TIPS stent graft.
6. The TIPS stent graft according to claim 5 , the electrodes comprising a first electrode and a second electrode, with the first electrode being provided on the first self-expanding section and with the second electrode being provided on the second self-expanding section.
7. The TIPS stent graft according to claim 1 , wherein the collar comprises a shape memory alloy.
8. The TIPS stent graft according to claim 7 , the shape memory alloy having a higher transition temperature than the first section and the second section.
9. The TIPS stent graft according to claim 4 , further comprising a catheter comprising electrodes arranged to supply energy to the electrodes of the TIPS stent graft.