Medical restriction device for hollow organs of a body
10130370 ยท 2018-11-20
Assignee
Inventors
Cpc classification
A61B17/12022
HUMAN NECESSITIES
International classification
A61B17/12
HUMAN NECESSITIES
Abstract
The invention relates to a medical restriction device for hollow organs of a body, having a longitudinal flexible element having a first and a second end, a closure device locking the longitudinal element annularly in a predetermined diameter position, and a tip as an insertion aid at the first end of the longitudinal element for placing the restriction device on the hollow organ, wherein the tip comprises a reinforcing core made of rigid material, wherein an opening is provided at the second end of the longitudinal element as part of the closure device, the tip can be inserted with the first end of the longitudinal element into the opening at the second end of the longitudinal element for locking the closure device, and the tip is fixedly connected to the first end; and can be cut off after locking the longitudinal element by the closure device.
Claims
1. A medical restriction device for a hollow organ of a body, comprising: a longitudinal flexible element having a first and a second end, a closure device for locking the longitudinal element annularly in a predetermined diameter position, and a tip as an inlet guide at the first end of the longitudinal element for positioning the restriction device at the hollow organ, wherein the tip comprises a reinforcing core of rigid material surrounded by a silicone material, an opening is provided in the second end of the longitudinal element as a part of the closure device, the tip is adapted to be inserted together with the first end of the longitudinal element into the opening at the second end of the longitudinal element in order to lock the closure device, the tip is firmly connected with the first end and can be severed after the longitudinal element has been locked by the closure device, the reinforcing core of the tip is curved, a curvature of the tip, in combination with its rigidity caused by the reinforcing core, facilitates the insertion of the tip into the opening of the second end of the longitudinal element and facilitates locking the closure device, and the longitudinal element is made of a material that is extensible, wherein a maximum extension is between 1% and 20%.
2. The medical restriction device of claim 1, wherein the closure device is adapted to reversibly lock the longitudinal element in a plurality of diameter positions.
3. A medical restriction device for a hollow organ a body, comprising: a longitudinal flexible element having a first and a second end, a closure device for locking the longitudinal element annularly in a predetermined diameter position, and a tip as an inlet guide at the first end of the longitudinal element for positioning the restriction device at the hollow organ, the tip comprising a reinforcing core of rigid material surrounded by a silicone material, wherein an opening is provided in the second end of the longitudinal element as a part of the closure device, the tip is adapted to be inserted together with the first end of the longitudinal element into the opening at the second end of the longitudinal element in order to lock the closure device, the tip is firmly connected with the first end and can be severed after the longitudinal element has been locked by the closure device, and the closure device is adapted to reversibly lock the longitudinal element in a plurality of diameter positions, wherein the closure device comprises the opening at the second end, which cooperates with one of a plurality of notches at the first end, wherein the notches are elastic and enable a posterior widening of the medical restriction device prior to severing the tip, wherein the longitudinal element is made of a material that is extensible, wherein a maximum extension is between 1% and 20%.
4. The medical restriction device of claim 3, wherein the longitudinal element is made of a solid material that is extensible to a low degree.
5. The medical restriction device of claim 3, wherein the restriction device is adapted for laparoscopic use and is adapted for insertion into the body via the opening of a trocar.
6. The medical restriction device of claim 5, wherein the closure device at the first end of the longitudinal element has notches adapted to the opening at the second end of the longitudinal element, in that the opening at the second end elastically cooperates with the notches and engages the notches in order to lock the longitudinal element annularly in one of a plurality of selectable diameter positions.
7. The medical restriction device of claim 6, wherein the notches and the opening of the closure device are matched in a form fitting manner.
8. The medical restriction device of claim 3, wherein the second end comprises a pull tab adapted to be severed after the restriction device is closed.
9. The medical restriction device of claim 3, wherein at least two fixation eyelets are provided at the second end.
10. The medical restriction device of claim 8, wherein the pull tab at the second end has a surface that increases friction.
11. The medical restriction device of claim 3, wherein the restriction device is radio-opaque.
12. The medical restriction device of claim 3, wherein the tip comprises a reinforcing core of rigid material, that the reinforcing core or the tip of the reinforcing core is pre-curved towards the curvature of the restriction device which is annular in a closed position, and that the reinforcing core includes metal or hard plastics.
13. The medical restriction device of claim 3, wherein the restriction device is made from a transparent or colored material.
14. The medical restriction device of claim 3, wherein at least the longitudinal element of the restriction device has a predetermined curvature caused by tempering at a predetermined temperature.
Description
(1) The following is a detailed description of embodiments of the invention with reference to the drawing.
(2) In the Figures:
(3)
(4)
(5)
(6)
(7) The medical restriction device 1 for hollow organs of a body, illustrated in
(8) A closure device 8 enables to lock the first end 4 to the second end 6 in a predetermined selectable diameter position, the longitudinal element 2 extending annularly around a hollow organ.
(9) The tip 10 can be severed at a predefined cut-off position 15 after the longitudinal element 2 has been locked by the closure device 8. At the end directed to the longitudinal element 2, the tip 10 may be provided with ribbings for a gripping instrument, which have a friction-increasing effect when the restriction device 1 is handled with a griping instrument, so that the gripping instrument cannot slip off. If the restriction device 1 is not manufactured in one piece, a coupling element 19 may be provided in the direction of the tip 10 near the cut-off position 15, by means of which element the tip 10 can be connected posteriorly, e.g. by gluing the same to the first end 4 of the longitudinal element 2.
(10) The tip 10 comprises a reinforcing core 14 of a rigid material, e.g., metal or hard plastics.
(11) The reinforcing core 14 may at first extend linearly or, in the direction of the free end 11 of the tip, it may be curved slightly towards the inner surface 21 of the restriction device 1. The reinforcing element 14 is surrounded by the material of the restriction device 1 which is made preferably of medical silicone (NuSil). The silicone material tapers at the distal end of the tip 10 and extends beyond the reinforcing element 14 so that the free end 11 of the tip 10 can be moved in a flexible manner.
(12) A illustrated in the top plan view in
(13) As can be seen in
(14) The mutual distance between the notches 20 may be 5 mm, for instance. The length of the element 2 between the opening and the outer notch 20 is, for instance, between 80 mm and 90 mm, preferably 83 mm. The overall length of the restriction device 1 is, for instance, 150 mm to 160 mm, preferably 154 mm.
(15) At the first end 6, the longitudinal element 2 is formed with a pull tab 24 which has a flattened shape and may have ribbings 26 on the upper and lower surfaces in order to increase the friction of a gripping instrument. The pull tab 24 is formed integrally with the longitudinal element 2, but it can be severed at a rated cut-off position after the restriction device 1 has been closed.
(16) Near the opening 18, a fixation eyelet 18 may be arranged by which the restriction device 1 can be attached to the hollow organ, e.g. by sewing, after it has been positioned around the same. On the side facing the first end 4, the notches 20 are rounded at their flanks so that the second end with the opening 18 can be pulled more easily into the tighter locking positions. In contrast thereto, the flanks facing the first end 4 are linear in order to guarantee a secure locking position. Still, due to the flexibility of the material, it is possible, if so desired, to leave a tighter engagement position by exerting greater force in order to set a locking position with a larger diameter of the restriction device 1.
(17) The restriction device 1 of all embodiments has a diameter, seen in cross section, which allows inserting the restriction device 1 in the open state through the opening of a trocar into the body. Since the fixation eyelets 28 are made from a flexible silicone material, the fixation eyelets 28 can flex and thus do not hinder the insertion of the restriction device 1 into a trocar.
(18) The restriction device 1 is radio-opaque. This means that it is impermeable to radiation and is thus visible in an x-ray examination, for instance.
(19) The silicone material of the restriction device 1 may be transparent or colored. For example, the restriction device 1 could be colored in blue for a better distinction from tissue when observed with the human eye or on a monitor via a camera.
(20) The restriction device 1 may be given a predetermined curvature at least in the region of the longitudinal element, which is caused by tempering at a predetermined temperature.