The disclosure relates to the technical field of medical devices, and particularly to a knotter.
In recent years, with the development of surgical devices and cardiac surgical techniques, a minimally invasive surgery has become a hotspot direction in the development of various surgical disciplines. The minimally invasive surgery has the characteristics of small incision and fast recovery. Meanwhile, a surgeon is required to realize simple and fast postoperative suture and knotting operation in a minimally invasive surgery environment. There are two clinical knotting methods, which are manual knotting and device knotting.
A related surgical knotter generally enables a clamping element to plastically deform through a punching and shearing clip so as to clamp a suture line, and then the suture line is cut by a cutting knife or a shearing knife. This cutting mode has the defects that when cutting with the cutting knife, firstly, the cutting knife is required to have relatively high sharpness, cutting edges of a cutting knife made of a general material are easy to damage, secondly, the suture line is required to be in a tight state, and when a blade is delivered, a loose suture line is not easy to cut; and when the shearing knife is used, although the defect that the loose suture line is not easy to cut by the blade is improved, the requirement for the sharpness of the cutting edges is reduced, a handle of the shearing knife is unfolded by an elastic element to keep a knife head open, and then the handle is extruded by a driving rod to close the shearing knife and then cut the suture line. The elastic element is unstable in operation during use due to the space limitation.
Some embodiments of the disclosure are to provide a knotter in order to solve the problem that a shearing knife of a knotter in the related art is unstable when cutting a suture line.
One embodiment of the disclosure provides a knotter, including: a driving structure, a punching and shearing clip and scissor. A clip mouth of the punching and shearing clip has a first position in an open state, and a second position in a punching state when driven by the driving structure. The scissor has a first position in an open state when driven by the driving structure, and a second position in a shearing state when driven by the driving structure. The second position of the scissor is synchronized with the second position of the punching and shearing clip.
In an embodiment, a first end of the scissor cooperates with the driving structure, and cutting edges of the scissor is located at a second end of the scissor.
In an embodiment, the scissor include a first scissor arm and a second scissor arm, middle parts of the first scissor arm and the second scissor arm are connected by a pivot shaft, and the driving structure cooperates with a first end of the first scissor arm and a first end of the second scissor arm. When the first end of the first scissor arm is close to a second end of the second scissor arm, a second end of the first scissor arm is close to the second scissor arm; or the first end of the first scissor arm and the first end of the second scissor arm are connected and form the pivot shaft.
In an embodiment, the scissor is located at one side of the punching and shearing clip and are arranged adjacent to the punching and shearing clip.
In an embodiment, the driving structure includes a driving rod, and a first end of the driving rod cooperates with the punching and shearing clip and the scissor respectively.
In an embodiment, a first side part of the first end of the driving rod has scissor arm holes which cooperate with the scissor, and the first end of the scissor is located in the scissor arm holes.
In an embodiment, when the middle parts of the first scissor arm and the second scissor arm of the scissor have the pivot shaft, specific structures of the scissor arm holes include a first scissor arm hole and a second scissor arm hole, the first scissor arm of the scissor is located in the first scissor arm hole, and the second scissor arm of the scissor is located in the second scissor arm hole.
In an embodiment, a second side part of the first end of the driving rod has a punching and shearing clip abutting pressure plate which cooperates with the punching and shearing clip.
In an embodiment, the knotter further includes a handle and a sleeve, a first end of the sleeve is connected with the handle, the scissor and the punching and shearing clip are located at a second end of the sleeve, and the driving rod is located in the sleeve.
In an embodiment, the knotter further includes a drive portion, the drive portion is a manual drive portion arranged at the handle; or the drive portion is an automatic drive portion arranged at the handle.
By applying the technical solutions of the disclosure, when knotting the suture line, the driving structure of the knotter drives the punching and shearing clip to punch a clamping element, thereby knotting the suture line, and at the same time, the driving structure drives the scissor to be in the shearing state, so that the scissor may cut the knotted suture line. The scissor is in the open state and the shearing state when driven by the driving structure, and the structure is stable and reliable. The technical solutions of the disclosure effectively solve the problem that the shearing knife of the knotter in the related art is unstable when cutting the suture line.
The drawings constituting a part of the disclosure are used for providing further understanding of the disclosure. Schematic embodiments of the disclosure and description thereof are used for illustrating the disclosure, rather than forming an improper limit to the disclosure. In the drawings:
The above drawings include the following reference numbers:
10. driving structure; 11. scissor arm hole; 111. first scissor arm hole; 112. second scissor arm hole; 12. driving rod; 121. first side part; 122. second side part; 13. punching and shearing clip abutting pressure plate; 20. punching and shearing clip; 21. clip mouth; 30. scissor; 31. pivot shaft; 32. cutting edges; 33. first scissor arm; 34. second scissor arm; 40. sleeve; and 100. clamping element; 50. entrance hole; 51. outlet hole.
It is to be noted that the embodiments of the disclosure and the characteristics in the embodiments can be combined under the condition of no conflicts. The disclosure is described below with reference to the drawings and the embodiments in detail.
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Through disclosure of the technical solutions of the embodiment, when knotting a suture line, the driving structure 10 of the knotter drives the punching and shearing clip 20 to punch the clamping element 100, thereby knotting the suture line, and at the same time, the driving structure 10 drives the scissor 30 to be in the shearing state, so that the scissor 30 may cut the knotted suture line. The scissor 30 is in the open state and the shearing state when driven by the driving structure 10, and the structure is stable and reliable. The technical solution of the embodiment effectively solves the problem that the shearing knife of the knotter in the related art is unstable when cutting the suture line.
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In the technical solutions (not shown in figure) of the embodiments, the knotter further includes a drive portion, and the drive portion is a manual drive portion arranged at the handle. The above structure is relatively low in processing cost. The manual drive portion is a trigger structure. Certainly, the drive portion may also be an automatic drive portion arranged at the handle. In this way, the knotter may be automatically driven, and the labor intensity of an operator is reduced. The automatic drive portion includes a motor, a hydraulic structure and the like. By operating a switch button arranged on the knotter, the motor runs or the hydraulic structure drives. Alternatively, an electric push rod structure may also be applied. It is to be noted that after primary knotting is completed, the driving structure 10 resets under the action of an elastic member or other power element in the handle, so that the scissor 30 recover from the shearing state to the open state and get ready for secondary knotting and line shearing operation.
The above descriptions are only preferred embodiments of the disclosure and are not intended to limit the disclosure. Those skilled in the art should understand that the disclosure may have various changes and modifications. Any modification, equivalent substitution, improvement and the like made within the spirit and principle of the disclosure should be included in the protection scope of the disclosure.
Number | Date | Country | Kind |
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201811526324.3 | Dec 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/124074 | 12/9/2019 | WO | 00 |