High-flow port and infusion needle systems
The present invention relates to a multi-reservoir port, catheter, and non-coring needle system that supports high-flow applications such as hemodialysis and apheresis. In particular, the invention relates to improvements to provide optimal flow rates, septum life, and septum/needle stability when introducing fluid into the multi-reservoir port.
1. A vascular access port, comprising:
a vascular access port housing comprising at least one reservoir;
at least one septum situated within the at least one reservoir, the at least one septum comprising a septum first layer comprising a Newtonian material and a septum second layer comprising a Non-Newtonian material, the septum second layer being encapsulated by the septum first layer;
at least one outlet stem having an outlet lumen, the at least one outlet stem in fluid communication with the at least one reservoir.
2. The vascular access port of claim 1 , wherein the Newtonian material of the septum first layer comprises silicone.
3. The vascular access port of claim 1 , wherein the Non-Newtonian material of the septum second layer is comprised of a combination of at least one liquid particle component and at least one solid particle component.
4. The vascular access port of claim 3 , wherein the at least one liquid particle component comprises silicone, polyethylene glycol, or glycerine.
5. The vascular access port of claim 3 , wherein the at least one solid particle component comprises silica, mica, or plastic particles.
6. A vascular access port, comprising:
a housing comprising at least one septum;
the at least one septum comprising a septum first layer comprising a Newtonian material and a septum second layer comprising a Non-Newtonian material, the septum second layer being encapsulated by the septum first layer.
7. The vascular access port of claim 6 , wherein the Newtonian material of the septum first layer comprises silicone.
8. The vascular access port of claim 6 , wherein the Non-Newtonian material is comprised of a combination of at least one liquid particle component and at least one solid particle component.
9. The vascular access port of claim 8 , wherein the at least one liquid particle component comprises silicone, polyethylene glycol, or glycerine.
10. The vascular access port of claim 8 , wherein the at least one solid particle component comprises silica, mica, or plastic particles.
11. A vascular access port, comprising:
at least one septum, the at least one septum comprising a septum first layer comprising a Newtonian material, a septum second layer comprising a Non-Newtonian material, wherein the septum second layer is encapsulated by the septum first layer.
12. The vascular access port of claim 11 , wherein the Newtonian material of the septum first layer comprises silicone.
13. The vascular access port of claim 11 , wherein the vascular access port comprises a housing.
14. The vascular access port of claim 13 , wherein the housing comprises a reservoir.
15. The vascular access port of claim 11 , further comprising a housing comprising a reservoir and at least one outlet stem having an outlet lumen, the at least one outlet stem in fluid communication with the reservoir.
16. The vascular access port of claim 11 , wherein the Non-Newtonian material is comprised of a combination of at least one liquid particle component and at least one solid particle component.
17. The vascular access port of claim 16 , wherein the at least one liquid particle component comprises silicone, polyethylene glycol, or glycerine.
18. The vascular access port of claim 16 , wherein the at least one solid particle component comprises silica, mica, or plastic particles.