COMBINED SEMI-LIMITING MULTIPOLAR ARTIFICIAL WRIST JOINT
20210045890 ยท 2021-02-18
Inventors
- Hongwen ZHU (Tianjin, CN)
- Guofu HUANG (Tianjin, CN)
- Ronghua DONG (Tianjin, CN)
- Tianmou ZHU (Tianjin, CN)
Cpc classification
A61F2002/30772
HUMAN NECESSITIES
A61F2/30771
HUMAN NECESSITIES
A61F2002/30841
HUMAN NECESSITIES
A61F2002/30663
HUMAN NECESSITIES
A61F2310/00389
HUMAN NECESSITIES
A61F2002/30471
HUMAN NECESSITIES
A61F2002/30624
HUMAN NECESSITIES
International classification
Abstract
The present invention discloses a combined semi-limiting multipolar artificial wrist joint, or semi-limiting bipolar artificial wrist joint, and be selected and assembled based on the specific pathological conditions of wrist bone destruction. For instance, the metacarpal bone articular surface is shown to be complete and the bone quality is good, and most of the far carpal bones (including small polyangular bones and head bones) can be preserved, while the proximal carpal bones (scaphoid and lunate) and the articular surface of the carpal radius are broken, and the proximal carpal bones are to be excised. The artificial wrist joint can also be assembled in another way, which is called semi-limiting multipolar artificial wrist joint, wherein the pathologically damaged double carpal bones are excised to form an inter-matching assembly of palm, wrist and radius joints.
Claims
1. A combined semi-limiting bipolar artificial wrist joint, characterized in that the artificial wrist joint includes two carpal implant needles (1); the carpal implant needle (1) is an implant of distal-row retained carpus; the carpal implant needle (1) is mounted on a shaft (2); a shaft sleeve (3) is sleeved on the outside of the shaft (2); the shaft (2) and the shaft sleeve (3) can perform a joint axial movement.
2. The combined semi-limiting bipolar artificial wrist joint according to claim 1, wherein: the shaft (2) is made of metal material, and the shaft sleeve (3) is made of non-metal material.
3. The combined semi-limiting bipolar artificial wrist joint according to claim 1, characterized in that: the shaft (2) and the shaft sleeve (3) are both installed on the articulation movable connector (4).
4. The combined semi-limiting bipolar artificial wrist joint according to claim 3, characterized in that, a joint shaft frame (42) matched with the shaft (2) and the shaft sleeve (3) is provided on an end surface of one side of the articulation movable connector (4); on the other side of the articulation movable connector (4) is a hemispherical concave joint socket (41) in which a first socket lining (43) is installed; preferably, the first socket lining (43) is made of non-metallic material.
5. The combined semi-limiting bipolar artificial wrist joint according to claim 4, characterized in that, the artificial wrist joint further includes a spherical cylinder (5) which is a distal implant of the radius, and the spherical cylinder (5) itself can be a solid cylinder or a hollow cylinder, preferably, a hollow cylinder, more preferably, a hollow cylinder whose surface is sprayed with a layer of biological material.
6. The combined semi-limiting bipolar artificial wrist joint according to claim 5, characterized in that, the distal end of the spherical cylinder (5) is provided with a first platform (51) with a 90 angle to the axis of the spherical cylinder (5), and a first ball neck (52) and a first ball head (53) are arranged on the upper end of the platform, and the first ball head (53) is combined with the joint socket (41) by an over-radius press-fit.
7. A combined semi-limiting multipolar artificial wrist joint, characterized in that the artificial wrist joint includes a spherical cylinder (6) having a tilted neck at the proximal end of metacarpal bones; a second platform (61), a second ball neck (62), and a second ball head (63) are provided on the spherical cylinder (6); the second ball neck (62) of the spherical cylinder (6) and the axis of the spherical cylinder (6) form an obliquity of 8-15 degrees.
8. The combined semi-limiting multipolar artificial wrist joint according to claim 7, characterized in that, the combined semi-limiting multipolar artificial wrist joint further includes a dual articulation movable connector (8) inside which second socket lining (7) is installed, and the spherical cylinder (6) is matched with the second socket lining (7).
9. The combined semi-limiting multipolar artificial wrist joint according to claim 8, characterized in that, the moving end of the dual articulation movable connector (8) is an integration of two sockets which are angled in the opposite directions and press fit with the spherical cylinder (6) angled; and a shaft (2) and a shaft sleeve (3) are provided on the other end of the dual articulation movable connector (8).
10. The combined semi-limiting multipolar artificial wrist joint according to claim 9, characterized in that, the shaft (2) and the shaft sleeve (3) can perform a joint axial movement; the shaft (2) and the shaft sleeve (3) are both installed on the articulation moveable connector (4), a joint shaft frame (42) matched with the shaft rod (2) and the shaft sleeve (3) is provided on one end surface of the articulation moveable connector (4); the other side of the articulation moveable connector (4) is provided with a joint socket (41) in which a first socket lining (43) is installed.
Description
DESCRIPTION OF FIGURES
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DESCRIPTION OF THE REFERENCE SIGNS
[0032] 1a carpal implant needle [0033] 2a shaft [0034] 3a shaft sleeve [0035] 4an articulation movable connector [0036] 41a shaft frame [0037] 42a joint socket [0038] 43a first socket lining [0039] 44a first bulge [0040] 5a spherical cylinder [0041] 51a first platform [0042] 52a first ball neck [0043] 53a first ball head [0044] 6a cylinder having a tilted neck and a ball at the proximal end of metacarpal bones [0045] 61-a second platform [0046] 62-a second ball neck [0047] 63-a second ball head [0048] 7a second socket lining [0049] 71a second bulge [0050] 8a dual articulation movable connector
SPECIFIC EMBODIMENTS FOR CARRYING OUT THE INVENTION
[0051] The present invention will be further described in detail below through the drawings and embodiments. Through these descriptions, the characteristics and advantages of the present invention will become clearer.
[0052] The term exemplary herein means serving as an example, embodiment, or illustration. Any embodiment described herein as exemplary need not be construed as being superior to or better than other embodiments. Although various aspects of the embodiments are shown in the drawings, unless otherwise noted, the drawings are not necessarily drawn to scale.
[0053] Severe wrist injuries, comminuted fractures of the wrist, malunion, rheumatoid arthritis involving destruction of the wrist joints, unexplained carpal necrosis and wrist joint tumors have become common diseases in specialist clinics and are likely to cause patients deformity, pain and dysfunction of the joints and seriously affect their quality of life and bring great pain. For this reason, we have designed a combined semi-limiting multipolar artificial wrist joint which is divided into two assembly methods through many years of clinical observation and careful research. The main body of these two assembly methods can be matched and exchanged with each other and can be flexibly selected and applied according to the disease condition.
[0054] According to the present invention, the combined semi-limiting multipolar artificial wrist joint can be divided into two assembly methods to facilitate the operation success of the surgeon.
[0055] Preferably, in an assembling method, only the proximal carpal bones of the wrist joints need to be excised. As shown in
[0056] Wherein reference numerals 2 and 3 are shaft and shaft sleeve that can perform joint axial movement. Shaft 2 is made of metal material, and the shaft sleeve 3 that fits on the surface of shaft 2 is made of non-metal material, so that the wear rate between the shaft 2 and the shaft sleeve 3 can be reduced, and the service life of the wrist joint is improved.
[0057] The sleeve 3 is sleeved on the middle of the shaft 2, and the carpal implant needles 1 are installed at both ends of the shaft 2. There is a certain distance between the sleeve and the carpal implant needle 1 to avoid interference friction with each other.
[0058] The reference number 4 shows an articulation movable connecter. One end of the articulation movable connecter is provided with a joint shaft frame 42, which is assembled with the above-mentioned shaft and sleeve. That is, the shaft 2 and its sleeve 3 are half embedded and inserted into the joint shaft frame 42. The joint shaft frame 42 includes a concave fixed jaw, and the sleeve 3 and the shaft 2 are embedded in the fixed jaw, so that the sleeve 3 and the shaft 2 are installed and fixed to the articulating movable connecter 4.
[0059] The other end of the articulation movable connecter is a hemispherical concave articular socket 41 in which a socket lining 43 is installed, and the socket lining 43 is made of non-metallic material.
[0060] Reference numeral 5 is a spherical cylinder, which is a distal implant of the radius. The cylinder itself can be a solid cylinder or a hollow cylinder. The surface of the hollow cylinder may be sprayed with biological material. The distal end of the spherical cylinder 5 is provided with a first platform 51 with a 90 angle to the axis of the spherical cylinder 5, that is, the first platform 51 is perpendicular to the spherical cylinder. A first ball neck 52 and a first ball head 53 are arranged on the upper end of the first platform 51, and the first ball head 53 is combined with the joint socket 41 by an over-radius press-fit, that is, the depth value of the ball head 53 inserted into the articular socket lining 43 is greater than the radius value of the ball head 53. After the first ball head in the shape of a spherical shape is installed in the first socket lining, it can rotate relative to the first socket lining to realize the joint-like function. The ball neck 52 is cylindrical and used to connect the first ball head 53 and the spherical cylinder 5.
[0061] The overall shape of the first socket lining 43 is hemispherical, and the hemispherical section is recessed inward to provide a groove for accommodating the first ball head 53 on the spherical cylinder 5, and the open end of the groove is provided with a resilient bulge 44 which faces the center of the sphere. When the first ball head is inserted into the groove, the bulge 44 is squeezed to make the bulge 44 elastically deform, thereby the ball head can enter the groove successfully. After the ball head has completely entered the groove, the bulge 44 returns to its original shape and becomes close to the first ball neck, preventing the ball head 51 from coming out of the groove.
[0062] Preferably, in another assembly method, it is also a semi-limiting multipolar wrist joint, which is suitable for the surgical correction of double-row partial carpal resection. Two spherical cylinders corresponding to metacarpal bones, a dual articulation movable connector, and the corresponding inner lining are press-fitted and assembled to the proximal carpal and radius end connector in the same manner as the aforementioned bipolar wrist joint prosthesis to form a palm wrist joint, an intercarpal joint and a carpal radius joint which constitute a multipolar wrist joint with multi-directional freedom, as shown in
[0063] According to the pathological changes of wrist bone injury and breakage, it is necessary to remove double row carpal bone for the multipolar carpal joint prosthesis. As shown in
[0064] A second platform 61, a second ball neck 62, and a second ball head 63 are provided on the spherical cylinder 6. The surface of the second platform 61 facing the spherical cylinder 6 forms an angle of 90 degrees with the axis of the spherical cylinder 6, and the other surface is perpendicular to the axis of the second ball neck 62.
[0065] The reference number 7 still refers to a socket lining, which is called a second socket lining 7 here.
[0066] The second ball head has a spherical shape and can rotate relative to the second socket lining after being installed in the second socket lining to realize the joint-like function. The second ball neck 62 is cylindrical and is used to connect the second ball head 63 and the spherical cylinder 6.
[0067] The second socket lining 7 is hemispherical as a whole, and the hemispherical section is recessed inward to provide a groove for accommodating the second ball head 63 on the spherical cylinder 6, and the open end of the groove is provided with a resilient second bulge 71 which faces the center of the sphere. When the second ball head is inserted into the groove, the second bulge 71 is squeezed to make it elastically deform, thereby the second ball head can enter the groove successfully. After the second ball head has completely entered the groove, the second bulge 71 returns to its original shape and becomes close to the second ball neck 62, preventing the second ball head 61 from coming out of the groove.
[0068] Reference numeral 8 denotes a dual articulation movable connector, and its moving end is designed as integration of two sockets which are angled in the opposite directions and press fit with the spherical cylinder 6 angled. A shaft and a sleeve as previously described are provided on the other end of the dual articulation movable connector. Preferably, the two sockets angled in the opposite directions means that the opening surfaces of the two sockets are not parallel, and form an angle is 150 to 170 degrees, preferably 170 degrees, so that both the spherical cylinder 6 and the spherical cylinder 5 installed on the dual articulation movable connector 8 are parallel. That is to say, the dual articulation movable connector 8 can replace the articulation movable connector 4 to perform wrist joint replacement when needed.
[0069] This assembly method still includes the shaft 2 and the sleeve 3 described above, and is also provided with a spherical cylinder 6 similar to the spherical cylinder 5. Their functions and assembly method are basically the same as those in the previous assembly method. They can be selected and assembled conveniently according to the pathological conditions and the surgical needs, and satisfactory surgical results can be achieved.
[0070] According to the specific pathological conditions of the carpal bone during the operation, the above-mentioned two prosthesis assembly methods can be selected randomly, are mutually compatible, and have strong flexibility. They effectively provide the reliability of the operation, and the assembly of various components is simple and easy. This semi-limiting multipolar artificial wrist joint further highly simulates the complex physiological functions of the human wrist joint.
[0071] The above describes the present invention in combination with preferred embodiments, but these embodiments are only exemplary and merely serve for illustration. On this basis, various replacements and improvements can be made to the present invention, all of which fall within the protection scope of the present invention.