IP Library › Granted Patent US 10,806,456
Granted Patent B2
US 10,806,456 · App. 15/336,958 · Granted Oct 20, 2020

Implantable tissue connector

Inventor: Peter Forsell (Bouveret, CH)
A61B17/11A61B1/3132A61B17/1114A61B17/320016A61B17/3478A61F2/064A61M1/1008A61M5/142A61M13/003A61M27/002A61B2017/1107A61B2017/1132A61F2/0077A61F2002/045A61M1/12
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Quick Facts
Patent No.
US 10,806,456
App. No.
15/336,958
Granted
Oct 20, 2020
Kind
B2
Abstract

An implantable tissue connector comprises a conduit and at least one bulge extending outwardly from the conduit's outer surface in a circumferential direction. At least one blocking ring loosely fitting over the outer surface with a clearance between the outer surface and the blocking ring is provided for mounting tubular living tissue within the clearance. The blocking ring has an inner diameter which is sized relative to an outer diameter of the bulge to prevent the blocking ring from slipping over the bulge when living tissue is mounted within the clearance. During implantation, the conduit is inserted into the tubular part of living tissue and over the bulge. Then, the blocking ring is pushed over the free end of the living tissue against the bulge. The living tissue is secured to the conduit with a self-enhancing effect when the tissue tends to be pulled off of the conduit.

Claims (17)

1. An implantable tissue connector adapted so as to be connectable to a tubular part of living tissue within a patient's body, comprising:

a conduit having at least a first end and a second end and further having an outer surface with at least one bulge extending outwardly from the conduit's outer surface in a circumferential direction of the conduit about at least a part of the conduit's circumference,

at least one blocking ring loosely fitting over the outer surface of the conduit with a clearance between the outer surface of the conduit and the blocking ring for mounting tubular living tissue within the clearance, said blocking ring having an inner cross sectional diameter which is smaller than or substantially identical to an outer cross sectional diameter of the at least one bulge so as to prevent the blocking ring from slipping over the bulge when living tissue is mounted within the clearance, and

at least one flexible sleeve adapted to axially extend and closely fit around at least part of said outer surface of the conduit, wherein said flexible sleeve is adapted to extend over the bulge and wherein, depending upon intended use, the clearances is in the range of one of the following ranges: 0.1 to 0.4 mm, 0.4 to 0.8 mm, 0.8 to 1.3 mm, 1.3 to 2 mm, 2 to 3 mm, 3 to 4 mm, 4 to 5 mm, over 5 mm.

2. The tissue connector of claim 1 , wherein the blocking ring is adapted to be pushed over the flexible sleeve against the bulge.

3. The tissue connector of claim 1 , wherein the blocking ring is made from a material that has a friction coefficient in relation to living human mucosa tissue that is higher than a friction coefficient which the conduit's outer surface has in relation to living human serosa tissue.

4. The tissue connector of claim 1 , wherein the at least one bulge is located proximately to said first end of the conduit.

5. The tissue connector of claim 1 , wherein the conduit has at least two of said bulges with the at least one blocking ring being located intermediate said at least two bulges.

6. The tissue connector of claim 5 , wherein the at least one blocking ring located intermediate said at least two bulges comprises two blocking rings, each of said two blocking rings being located proximate one of said at least first and second ends of the conduit.

7. The tissue connector of claim 5 , wherein the at least two bulges are each located proximate one of said at least first and second ends of the conduit.

8. The tissue connector of claim 1 , wherein the flexible sleeve is made from a biocompatible material, which preferably comprises at least one polymer selected from the following group of polymers comprising: polytetrafluoroethylene, silicone, polyurethane, expanded polytetrafluoroethylene (ePTFE).

9. The tissue connector of claim 1 , wherein the conduit is less flexible than the flexible sleeve at least in a radial direction so as to provide support to the flexible sleeve against radial forces.

10. The tissue connector of claim 1 , wherein the at least one flexible sleeve is located proximately to said first end of the conduit.

11. The tissue connector of claim 10 , wherein the conduit has at least two of said flexible sleeves, and the at least two flexible sleeves are each located proximately to one of said at least first and second ends of the conduit.

12. The tissue connector of claim 1 , wherein said second end of the conduit is adapted for connecting the tissue connector to at least one of the following items: an implantable reservoir, an implantable pump, an implantable motor, an implantable medical device, a biological transplant.

13. The tissue connector of claim 1 , wherein between the first and second ends of the conduit or connected to the second end of the conduit, there is provided at least one of the following items: a reservoir, a pump, a motor, a medical device.

14. The tissue connector of claim 13 , wherein the reservoir is artificial or a biological transplant or made from tissue material of a patient into whom the reservoir is to be implanted.

Continuity (9)
Continuation 12682533
Provisional Application 60960716 · Oct 11, 2007
Provisional Application 60960766 · Oct 12, 2007
Provisional Application 60960764 · Oct 12, 2007
Provisional Application 60960765 · Oct 12, 2007
Provisional Application 60960767 · Oct 12, 2007
Provisional Application 60960790 · Oct 15, 2007
Provisional Application 60960715 · Oct 11, 2007
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