Joint device and method
A mould adapted to be introduced into a joint of a human patient for resurfacing at least one carrying contacting surface of said joint is provided. The mould is adapted to receive material for resurfacing at least one carrying contacting surface of said joint. The mould is further adapted to be resorbed by the human body or melt after having served its purpose.
1. A mould adapted to be introduced into a joint of a human patient for resurfacing at least one carrying contacting surface of the joint, wherein said mould is adapted to receive material for resurfacing said at least one carrying contacting surface of the joint, and wherein said mould comprises a mould material adapted to chemically react with a fluid injected into said mould such that said mould melts or is resorbed by the human patient after having served the mould's purpose.
2. The mould according to claim 1 , wherein said mould comprises a collagen-based material.
3. The mould according to claim 2 , wherein said mould is adapted to receive collagenase, and wherein the material of said mould is affected by the injection of the collagenase such that the mould melts or is resorbed faster than without the injection of the collagenase.
4. The mould according to claim 1 , wherein said mould comprises a chitosan-based material.
5. The mould according to claim 4 , wherein said mould is adapted to receive lysozyme, and wherein the material of said mould is affected by the injection of the lysozyme such that the mould melts or is resorbed faster than without the injection of the lysozyme.
6. The mould according to claim 1 , wherein said mould material is adapted to be melted by a temperature of the received material.
7. The mould according to claim 1 , wherein said received material comprises at least one material selected from the group consisting of:
a. polytetrafluoroethylene,
b. perfluoroalkoxy
c. fluorinated ethylene propylene,
d. polyethylene, and
e. acrylic polymer mixed with alumina trihydrate.
8. The mould according to claim 1 , wherein said mould is adapted to be melted by the received material having a temperature in the interval 40-60 degrees Celsius, or in the interval 60-90 degrees Celsius, or in the interval 90-200 degrees Celsius, or in the interval 200-400 degrees Celsius or more than 400 degrees Celsius.
9. The mould according to claim 1 , wherein the joint is a hip joint and said mould is collapsible such that said mould can be introduced into the hip joint through a hole in any of: a pelvic bone, a femoral bone and a hip joint capsule.
10. The mould according to claim 1 , wherein the joint is a knee joint and said mould is collapsible such that said mould can be introduced into the knee joint through a hole in any of: a femoral bone, a tibia bone and a knee joint capsule.
11. The mould according to claim 1 , further comprising an injecting entrance in said mould adapted to receive the fluid injected into said mould.
12. A mould adapted to be introduced into a joint of a human patient for resurfacing at least one carrying contacting surface of the joint, wherein said mould is adapted to receive material for resurfacing said at least one carrying contacting surface of the joint, and wherein said mould comprises a mould material adapted to chemically react with a fluid injected into said mould such that said mould melts or is resorbed by the human patient after having served the mould's purpose wherein said mould comprises a hyaluronan-based material.
13. The mould according to claim 12 , wherein said mould is adapted to receive hyaluronidase, and wherein the material of said mould is affected by the injection of the hyaluronidase such that the mould melts or is resorbed faster than without the injection of the hyaluronidase.
14. A mould adapted to be introduced into a joint of a human patient for resurfacing at least one carrying contacting surface of the joint, wherein said mould is adapted to receive material for resurfacing said at least one carrying contacting surface of the joint, and wherein said mould comprises a mould material adapted to chemically react with a fluid injected into said mould such that said mould melts or is resorbed by the human patient after having served the mould's purpose, wherein said mould comprises a fibrin-based material.
15. The mould according to claim 14 , wherein said mould is adapted to receive plasmin, and wherein the material of said mould is affected by the injection of the plasmin such that the mould melts or is resorbed faster than without the injection of the plasmin.