Suture device for suturing meniscus
By adopting the automatic switching design of the pushing block and the limiting block in the meniscus suturing device, the problem of low operating efficiency in the prior art is solved, and a more efficient suturing operation is achieved.
Patent Information
- Application Number
- CN202422385242.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing meniscus suture device has low operating efficiency and requires manual operation to push the component to switch from one limiting part to another, which causes inconvenience in operation.
The design includes a push block, a limit block and an elastic component, so that the push block automatically switches the limit state during movement. Through the cooperation of the limit block and the blocking structure, stepping motion is achieved, avoiding manual operation.
The operating efficiency of the meniscus suture device is improved, the steps of manually switching the limit part are reduced, and the convenience and efficiency of operation are improved.
Smart Images

Figure CN223365586U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of medical instruments, in particular to a suturing device for suturing a meniscus. Background Art
[0002] In the prior art, there is provided a patent document entitled "Meniscus Suturing Device" with application number 202310981539.9; in this prior art, a push needle, a pushing assembly, a limiting assembly and an implant are specifically provided, wherein the limiting assembly has a first limiting portion, a second limiting portion and a third limiting portion; when the pushing assembly is located at the second limiting portion, the pushing assembly can be blocked by the third limiting portion, so that the pushing assembly cannot push the push needle; when the pushing assembly is located at the first limiting portion, the pushing assembly is not blocked by the third limiting portion, and the pushing member of the pushing assembly can push the push needle along the direction determined by the first limiting portion, so that the push needle pushes the implant from the inside of its puncture needle to the outside;
[0003] From the actual use effect of the meniscus suture device of the above-mentioned prior art, when the user pushes the push needle through the pushing component and the push needle reaches the position at the next moment from the position at the previous moment, the impact sound emitted by the prompt sound component reminds the current user, indicating that an implant has been pushed to the outside of the puncture needle at the current moment; then, the user needs to push the pushing component in the opposite direction to make the pushing component move from the first limit part to the second limit part again. At this time, if the user does not continue to operate, the pushing component is blocked by the third limit part again. The pushing component is blocked by the third limit part again, which can prevent the meniscus suture device from pushing the push needle when the user misoperates, thereby preventing the implant currently restricted in the puncture needle from being accidentally fired by the push needle.
[0004] However, in the above-mentioned prior art, the state in which the pushing component is not blocked by the third limiting portion when the pushing component is switched from the second limiting portion to the first limiting portion is defined as a non-restricted state, and the state in which the pushing component is blocked by the third limiting portion when the pushing component is switched from the first limiting portion to the second limiting portion is defined as a restricted state. At least in the process in which the meniscus suture device of the above-mentioned prior art is operated by the user to change the pushing component from the non-restricted state to the restricted state, the user is required to manually complete the action of operating the pushing component, resulting in low operating efficiency of the meniscus suture device of the above-mentioned prior art.
[0005] Therefore, how to improve the operating efficiency of the meniscus suture device in the prior art becomes a technical problem to be solved. Utility Model Content
[0006] In order to solve the technical problem of how to improve the operating efficiency of the meniscus suturing device in the prior art, the utility model provides a suturing device for suturing the meniscus.
[0007] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0008] According to one aspect of the present invention, there is provided a suturing device for suturing a meniscus, comprising at least two fixing rods, an inserter rod, a push rod, a housing, a push block, a first limit block, a second limit block, a first elastic component, and a second elastic component;
[0009] The inserter rod has a tip portion, the inserter rod and the housing are detachably connected, wherein the guide channel of the inserter rod and the sliding cavity of the housing are in communication;
[0010] All the fixing rods are arranged in sequence in the guide channel, the pushing block is arranged in the sliding cavity, and the pushing rod is arranged in the guide channel and the sliding cavity, wherein the pushing rod is located between the pushing block and all the fixing rods;
[0011] The housing is provided with a first movable channel for inserting the first limiting block and a second movable channel for inserting the second limiting block, and the first movable channel and the second movable channel are respectively communicated with the sliding cavity;
[0012] The first elastic component is used to drive the first limiting block 'along the direction from the outside to the inside of the shell', and the second elastic component is used to drive the second limiting block 'along the direction from the outside to the inside of the shell';
[0013] The pushing block is provided with at least one first blocking structure and at least one second blocking structure, the first blocking structure is used to be blocked by the first limiting block, and the second blocking structure is used to be blocked by the second limiting block, and the pushing block remains stationary relative to the housing only when it is blocked by the first blocking structure or the second blocking structure;
[0014] The displacement length of the pushing block from the previous static state to the next static state is the same as the displacement length of one of the fixing rods from being pushed from the inside of the guide channel to the outside of the guide channel.
[0015] Furthermore, the number of the fixing rods is 2, the number of the first blocking structures is 1, and the number of the second blocking structures is 1;
[0016] Alternatively, the number of the fixing rods is 3, the number of the first blocking structures is 2, and the number of the second blocking structure is 1;
[0017] Alternatively, the number of the fixing rods is four, the number of the first blocking structures is two, and the number of the second blocking structures is two.
[0018] Furthermore, it also includes a first pressing plate and a second pressing plate;
[0019] The first elastic member and the second elastic member are respectively configured as one of an elastic sheet and a coil spring;
[0020] The first pressure plate and the second pressure plate are respectively hinged to the shell, wherein the first limit block is arranged at one end of the first pressure plate, the first elastic component is arranged at the other end of the first pressure plate, and the first elastic component is restricted between the shell and the first pressure plate, the second limit block is arranged at one end of the second pressure plate, the second elastic component is arranged at the other end of the second pressure plate, and the second elastic component is restricted between the second pressure plate and the shell.
[0021] Furthermore, the first blocking structure is specifically a first limiting groove recessed in the pushing block;
[0022] The second blocking structure is specifically a second limiting groove recessed in the pushing block.
[0023] Furthermore, it also includes a stopper assembly and a mounting nut;
[0024] The stopper assembly includes a stopper body and a stopper hose, wherein the stopper body is cylindrical, and the stopper body and the stopper hose are fixedly or detachably connected;
[0025] A portion of the inserter rod is sleeved by the stopper assembly;
[0026] The mounting nut is provided with an internal thread, the housing is provided with an external thread, and the mounting nut and the housing are threadedly connected;
[0027] The stopper body is inserted into the mounting nut.
[0028] Furthermore, the outer circumferential surface of the limiter body is provided with a plurality of positioning grooves;
[0029] The mounting nut is provided with a mounting through hole, and a marble pin is provided in the mounting through hole;
[0030] The ball of the ball pin is configured to be snapped into one of the positioning slots of the limiter body;
[0031] The end of the inserter rod disposed in the housing is provided with a positioning boss in a protruding shape, and the positioning boss is confined between the mounting nut and the pushing block.
[0032] Furthermore, a fixed handle is extended from the shell, and a movable handle is detachably provided on the shell, wherein the movable handle is hinged to the shell;
[0033] One end of the movable handle is provided with a movable slot, and the pushing block is provided with a receiving cavity and a transmission pin, the transmission pin is cylindrical, and the transmission pin is fixedly or detachably provided in the receiving cavity;
[0034] One end of the movable handle having the movable slot is configured to be inserted into the accommodating cavity, and the transmission pin is configured to be inserted into the movable slot, wherein the axis of the transmission pin and the axis of the hinge between the movable handle and the shell are parallel to each other.
[0035] Furthermore, the pushing block at one end is configured as a first guide portion, the first guide portion is in the shape of a male head, the cross-sectional profile of the first guide portion is configured as a geometric profile other than a circular profile, and the accommodating cavity is located at the first guide portion;
[0036] The housing is provided with a second guide portion, the second guide portion is in a female head shape, and the cross-sectional profile of the second guide portion is the same as that of the first guide portion;
[0037] The first guide portion and the second guide portion are configured to be clearance-fitted.
[0038] Furthermore, the cross-sectional profile of the first guide portion is configured as one of a semicircular profile, a triangular profile, a rectangular profile, a regular hexagonal profile, a convex profile, and a concave profile.
[0039] Furthermore, it also includes an elastic component;
[0040] The elastic component is located between the movable handle and the fixed handle, and the elastic component is detachably connected to the fixed handle and the movable handle respectively. When the fixed handle and the movable handle receive external force and are in a state where the angle between them gradually decreases, the elastic component is used to absorb energy. When the fixed handle and the movable handle lose external force or the external force decreases, the elastic component is used to release energy.
[0041] The above technical solution has the following advantages or beneficial effects:
[0042] The suturing device for suturing the meniscus provided by the present invention has the following characteristics: after the pushing block pushes the pushing rod and the pushing block performs stepping motion, so that the rear blocking structure of the pushing block is blocked by the rear limit block, the rear limit block automatically contacts and blocks the rear blocking structure, thereby eliminating the need for a manual operation step of "manually operating the pushing member as in the prior art to switch the pushing member from the first blocking part to the second blocking part", thereby saving the time of the manual operation step. BRIEF DESCRIPTION OF THE DRAWINGS
[0043] Figure 1 A schematic structural diagram of a suturing device for suturing a meniscus provided in an embodiment of the present invention;
[0044] Figure 2 A schematic structural diagram of a suturing device for suturing a meniscus provided in an embodiment of the present invention;
[0045] Figure 3 A cross-sectional view of a suturing device for suturing a meniscus provided in an embodiment of the present utility model;
[0046] Figure 4 A cross-sectional view of an inserter rod provided by an embodiment of the present invention;
[0047] Figure 5 A schematic structural diagram of a push block provided in an embodiment of the present utility model;
[0048] Figure 6 A schematic structural diagram of a push block provided in an embodiment of the present utility model;
[0049] Figure 7 A cross-sectional view of a housing provided in an embodiment of the present utility model;
[0050] Figure 8 A schematic structural diagram of a housing and a push block provided in an embodiment of the present utility model;
[0051] Figure 9 A schematic diagram of the structure of the mounting nut provided in an embodiment of the present utility model;
[0052] Figure 10 This is a structural schematic diagram of the first pressing plate, the first limiting block, the first elastic component, the second pressing plate, the second limiting block and the second elastic component provided in an embodiment of the present utility model. DETAILED DESCRIPTION
[0053] Example 1:
[0054] In this embodiment, a suturing device for suturing a meniscus is provided to solve the technical problem of how to improve the operating efficiency of a meniscus suturing device in the prior art.
[0055] For details, see Figures 1 to 3 The suturing device for suturing the meniscus of this embodiment includes at least two fixing rods 1, an inserter rod 2, a pushing rod 3, a housing 4, a pushing block 5, a first limiting block 6, a second limiting block 7, a first elastic component 8 and a second elastic component 9;
[0056] The inserter rod 2 has a tip portion 201, and the inserter rod 2 and the housing 4 are detachably connected, wherein the guide channel 202 of the inserter rod 2 (see Figure 4 ) communicates with the sliding cavity 401 of the housing 4;
[0057] All the fixing rods 1 are arranged in sequence in the guide channel 202, the pushing block 5 is arranged in the sliding cavity 401, and the pushing rod 3 is arranged in the guide channel 202 and the sliding cavity 401, wherein the pushing rod 3 is located between the pushing block 5 and all the fixing rods 1;
[0058] The housing 4 is provided with a first movable channel 402 for being inserted into the first limiting block 6 (see Figure 7 ) and the second movable channel 403 for being inserted by the second limiting block 7 (see Figure 7 ), the first movable channel 402 and the second movable channel 403 are respectively communicated with the sliding cavity 401;
[0059] The first elastic component 8 is used to drive the first limit block 6 'along the direction from the outside to the inside of the housing 4', and the second elastic component 9 is used to drive the second limit block 7 'along the direction from the outside to the inside of the housing 4';
[0060] The pushing block 5 is provided with at least one first blocking structure 501 and at least one second blocking structure 502. The first blocking structure 501 is used to be blocked by the first limiting block 6, and the second blocking structure 502 is used to be blocked by the second limiting block 7. The pushing block 5 remains stationary relative to the housing 4 only when it is blocked by the first blocking structure 501 or the second blocking structure 502.
[0061] The displacement length of the pushing block from the previous static state to the next static state is the same as the displacement length of one of the fixing rods from the inside of the guide channel to the outside of the guide channel.
[0062] The main purpose of the suturing device for suturing the meniscus provided in this embodiment is to push the block 5 to achieve stepping motion.
[0063] For details, see Figure 3 , the pushing block 5 cooperates with the first limiting block 6 and the second limiting block 7 respectively, so that when the pushing block 5 is displaced relative to the housing 4, the pushing block 5 is alternately blocked by the first limiting block 6 and the second limiting block 7;
[0064] More specifically, if at the previous moment, the first blocking structure 501 of the pushing block 5 is blocked by the first limiting block 6, then at the next moment, the second blocking structure 502 of the pushing block 5 is blocked by the second limiting block 7;
[0065] Alternatively, if at the previous moment, the second blocking structure 502 of the pushing block 5 is blocked by the second limiting block 7, then at the next moment, the first blocking structure 501 of the pushing block 5 is blocked by the first limiting block 6;
[0066] During the displacement of the pushing block 5 relative to the shell 4, the pushing block 5 changes from the position when it was blocked at the previous moment to the position when it was blocked at the next moment. The distance between the two positions is the distance of the stepping motion of the pushing block 5. In other words, the pushing block 5 is provided with at least one first blocking structure 501 and at least one second blocking structure 502, so that under the cooperation of the first limit block 6 and the second limit block 7, the pushing block 5 can form at least one stepping motion or stepping motion displacement relative to the shell 4.
[0067] After the pushing block 5 forms a stepping motion relative to the shell 4, the distance of the stepping motion of the pushing block 5 should match the position of the fixed rod 1 located in the guide channel 202 of the inserter rod 2, so that during the stepping motion of the pushing block 5, each time the pushing rod 3 pushes all the fixed rods 1 in the guide channel 202 of the inserter rod 2, only one of the fixed rods 1 moves from the guide channel 202 to the outside of the wire channel, that is, only one fixed rod 1 falls off from the inserter rod 2.
[0068] In this embodiment, the number of the first blocking structures 501 and the number of the second blocking structures 502 on the pushing block 5 can be configured according to the number of the fixing rods 1;
[0069] For details, see Figures 1 to 3 In the suturing device for suturing a meniscus of this embodiment, the number of the fixing rods 1 is two, and correspondingly, the number of the first blocking structure 501 is one, and the number of the second blocking structure 502 is one. The two fixing rods 1 are arranged as a first fixing rod 1 and a second fixing rod 1, respectively, along the direction from the inserter rod 2 to the housing 4, with the tip 201 as the starting point.
[0070] In the solution where there are two fixed rods 1, the push block 5 has an initial state relative to the shell 4; in the initial state, the first blocking structure 501 is blocked by the first limit block 6, so that the push block 5 is in the initial static state relative to the shell 4, and the second blocking structure 502 is not blocked by the second limit block 7; at this time, the two fixed rods 1 are respectively located in the guide channel 202, and the first fixed rod 1 is located between the tip 201 and the second fixed rod 1. Since the push block 5 is in a static state relative to the shell 4 at this time, the push block 5 cannot push the push rod 3, so that the push rod 3 cannot push the two fixed rods 1, thereby avoiding the phenomenon that the first fixed rod 1 is accidentally fired by the push rod 3; after this, if the user When the first blocking structure 501 is released from the blocking of the first limit block 6, the pushing block 5 changes from a stationary state to an active state relative to the shell 4, so that the pushing block 5 can push the pushing rod 3, and the pushing rod 3 can push the two fixed rods 1; then, the second blocking structure 502 is automatically blocked by the second limit block 7, so that when the pushing block 5 is in a stationary state for the second time, the second fixed rod 1 is still located in the guide channel 202, and the first fixed rod 1 has moved from the guide channel 202 to the outside of the guide channel 202, so that the first fixed rod 1 falls off relative to the inserter rod 2. At this time, the pushing block 5, which is in a stationary state for the second time, cannot continue to push the pushing rod 3, thereby avoiding the phenomenon that the second fixed rod 1 is accidentally fired by the pushing rod 3.
[0071] Alternatively, the number of fixing rods 1 is three (not shown), the number of first blocking structures 501 is two, and the number of second blocking structures 502 is one, wherein, along the direction from the inserter rod 2 to the housing 4, with the tip 201 as the starting point, the three fixing rods 1 are arranged as a first fixing rod 1, a second fixing rod 1, and a third fixing rod 1 respectively;
[0072] In the scheme where the number of fixed rods 1 is 3, the push block 5 has an initial state relative to the shell 4; the first blocking structure 501 close to the push rod 3 is defined as the first first blocking structure 501, and the first blocking structure 501 away from the push rod 3 is defined as the second first blocking structure 501; in the initial state, the first first blocking structure 501 is blocked by the first limit block 6, so that the push block 5 is in the first static state relative to the shell 4, and the second blocking structure 502 is not blocked by the second limit block 7, and the second first blocking structure 501 is not blocked by the first limit block 6; at this time, the three fixed rods 1 are respectively located in the guide channel 202, along the direction from the inserter rod 2 to the push block 5, the first fixed rod 1 is close to the tip 201, the second fixed rod 1 and the third fixed rod 1 are arranged in sequence after the first fixed rod 1, and since the push block 5 is in a static state relative to the shell 4 at this time, the push block 5 cannot After the user has released the first blocking structure 501 from being blocked by the first limit block 6, the pushing block 5 changes from a stationary state to an active state relative to the shell 4, so that the pushing block 5 can push the pushing rod 3, and the pushing rod 3 can push the three fixed plates; then, the second blocking structure 502 is automatically blocked by the second limit block 7, so that when the pushing block 5 is in a stationary state for the second time, the second fixed rod 1 and the third fixed rod 1 are still located in the guide channel 202, and the first fixed rod 1 has moved from the guide channel 202 to the outside of the guide channel 202, so that the first fixed rod 1 falls off relative to the inserter rod 2. At this time, the pushing block 5, which is in a stationary state for the second time, cannot continue to push the pushing rod 3, thereby avoiding the phenomenon of the second fixed rod 1 being accidentally fired by the pushing rod 3.
[0073] After the pushing block 5 is in the second static state, if the user releases the second blocking structure 502 from being blocked by the second limit block 7, the pushing block 5 changes from the second static state to the movable state relative to the housing 4, so that the pushing block 5 can push the pushing rod 3, and the pushing rod 3 can push the two fixing rods 1;
[0074] Then, the second first blocking structure 501 is automatically blocked by the first limit block 6, so that when the push block 5 is in a stationary state for the third time, the third fixed rod is still located in the guide channel 202, and the second fixed rod 1 has moved from the guide channel 202 to the outside of the guide channel 202, so that the second fixed rod 1 falls off relative to the inserter rod 2. At this time, the push block 5, which is in a stationary state for the third time, cannot continue to push the push rod 3, thereby avoiding the phenomenon that the third fixed rod 1 is accidentally fired by the push rod 3.
[0075] Alternatively, the number of fixing rods 1 is four (not shown), the number of first blocking structures 501 is two, and the number of second blocking structures 502 is two. Along the direction from the inserter rod 2 to the housing 4, with the tip 201 as the starting point, the four fixing rods 1 are arranged as a first fixing rod 1, a second fixing rod 1, a third fixing rod 1, and a fourth fixing rod 1.
[0076] In the solution where the number of the fixed rods 1 is four, the two first blocking structures 501 are respectively a first first blocking structure 501 close to the push rod 3 and a second first blocking structure 501 away from the push rod 3, and the two second blocking structures 502 are respectively a first second blocking structure 502 close to the push rod 3 and a second second blocking structure 502 away from the push rod 3.
[0077] In the embodiment where the number of fixing rods 1 is four, the function of the first first blocking structure 501 is the same as the aforementioned function of the first first blocking structure 501 in the embodiment where the number of fixing rods 1 is three; the function of the first second blocking structure 502 is the same as the aforementioned function of the second blocking structure 502 in the embodiment where the number of fixing rods 1 is three; and the function of the second first blocking structure 501 is the same as the aforementioned function of the second first blocking structure 501 in the embodiment where the number of fixing rods 1 is three, and therefore will not be further described.
[0078] The difference between this solution and the aforementioned 'solution with three fixed rods 1' is that a second second blocking structure 502 and a fourth fixed rod 1 are added; wherein, when the second first blocking structure 501 is blocked by the first limit block 6, the third fixed rod 1 and the fourth fixed rod 1 are still located in the guide channel 202. Since the push block 5 is in a stationary state relative to the shell 4 at this time, the push block 5 cannot push the push rod 3, and the push rod 3 cannot push the third fixed rod 1 and the fourth fixed rod 1, thereby avoiding the phenomenon that the third fixed rod 1 is accidentally fired by the push rod 3; thereafter, if the user releases the second first blocking structure 501 from being blocked by the first limit block 6, the push block 5 When the shell 4 changes from a stationary state to an active state, the pushing block 5 can continue to push the pushing rod 3, so that the pushing rod 3 can push the third fixed rod 1 and the fourth fixed rod 1; then, the second second blocking structure 502 is automatically blocked by the second limit block 7, so that the pushing block 5 is in a stationary state for the fourth time, and the fourth fixed rod 1 is still located in the guide channel 202, while the third fixed rod 1 has moved from the guide channel 202 to the outside of the guide channel 202, so that the third fixed rod 1 falls off relative to the inserter rod 2. At this time, the pushing block 5, which is in a stationary state for the fourth time, cannot continue to push the pushing rod 3, thereby avoiding the phenomenon that the fourth fixed rod 1 is accidentally fired by the pushing rod 3.
[0079] It should be understood that after seeing the technical solution of this embodiment, those skilled in the art can also design and manufacture a suturing device with 5, 6 or more parts for suturing the meniscus, wherein more first blocking structures 501 and more second blocking structures 502 are provided on the pushing block 5.
[0080] It should be understood that in the above-mentioned schemes with 2 fixing rods 1, 3 fixing rods 1 and 4 fixing rods 1, a universal push block 5 (not shown in the figure) can be adopted, and the universal push block 5 is provided with at least two first limiting structures and two second limiting structures; the significance of the universal push block 5 is that when the manufacturer is faced with the need to manufacture a suturing device for suturing the meniscus with 2 fixing rods 1, 3 fixing rods 1 and 4 fixing rods 1 respectively, the manufacturer chooses the universal push block 5, which can reduce the number of manufacturing molds of the push block 5; if push blocks 5 matching the schemes with 2 fixing rods 1, 3 fixing rods 1 and 4 fixing rods 1 are generated respectively, the push block 5 requires three molds, and if a universal push block 5 is generated, only one mold is required; under the condition of reducing the number of molds of the push block 5, the economic cost of the suturing device for suturing the meniscus can be effectively reduced.
[0081] The suturing device for suturing the meniscus in this embodiment is provided with a first elastic component 8 and a second elastic component 9 (see FIG. 1 ) in order to realize that the pushing block 5 is transformed from the blocked state at the previous moment to the blocked state at the next moment, and in the process of transforming to the blocked state at the next moment, the first limiting block 6 is formed to automatically block the first limiting structure, or the second limiting block 7 is formed to automatically block the second limiting structure. Figures 1 to 3 );
[0082] See also Figure 3 The first elastic component 8 is used as the power source of the first limit block 6, so that the first elastic component 8 can use its own elastic force or tension to force the first limit block 6 to move "along the direction from the outside to the inside of the shell 4", and the second elastic component 9 is used as the power source of the second limit block 7, so that the second elastic component 9 can use its own elastic force or tension to force the second limit block 7 to move "along the direction from the outside to the inside of the shell 4", so that the first limit block 6 can automatically block the first blocking structure 501, and the second limit block 7 can automatically block the second blocking structure 502.
[0083] For details, see Figures 1 to 3 ,、 Figure 10 The suturing device for suturing the meniscus of this embodiment further includes a first pressing plate 10 and a second pressing plate 11;
[0084] The first elastic member 8 and the second elastic member 9 are respectively configured as one of an elastic sheet and a coil spring;
[0085] The first pressure plate 10 and the second pressure plate 11 are respectively hinged to the shell 4, wherein the first limit block 6 is arranged at one end of the first pressure plate 10, the first elastic component 8 is arranged at the other end of the first pressure plate 10, and the first elastic component 8 is restricted between the shell 4 and the first pressure plate 10, the second limit block 7 is arranged at one end of the second pressure plate 11, the second elastic component 9 is arranged at the other end of the second pressure plate 11, and the second elastic component 9 is restricted between the second pressure plate 11 and the shell 4.
[0086] In the scheme in which the first pressure plate 10 and the second pressure plate 11 are provided, its essence is to utilize the elastic force of the first elastic component 8 and cooperate with the lever-like structure formed by the first pressure plate 10 and the shell 4 to force the first limit block 6 provided on the first pressure plate 10 to move in the direction of 'from the outside to the inside of the shell 4', and to utilize the elastic force of the second elastic component 9 and cooperate with the lever-like structure formed by the second pressure plate 11 and the shell 4 to force the second limit block 7 provided on the second pressure plate 11 to move in the direction of 'from the outside to the inside of the shell 4'.
[0087] Among them, see Figure 3 The first elastic component 8 is arranged between the shell 4 and the first pressure plate 10. If the elastic force of the first elastic component 8 forces the first pressure plate 10 to rotate, then at the first elastic component 8, the distance between the first pressure plate 10 and the shell 4 gradually increases, and at the first limiting block 6, the distance between the first pressure plate 10 and the shell 4 gradually decreases, so that the first limiting block 6 moves relative to the shell 4 in the direction of "along the outside to the inside of the shell 4", so that the first limiting block 6 can automatically block the first blocking structure 501; correspondingly, when it is necessary to release the first blocking structure 501 from being blocked by the first limiting block 6, the user needs to apply pressure on the first pressure plate 10 located at the first elastic component 8. The pressure forces the distance between the first pressure plate 10 located at the first elastic component 8 and the shell 4 to decrease, so that the first elastic component 8 accumulates energy. At the same time, the distance between the first pressure plate 10 at the first limiting block 6 and the shell 4 increases, forming a movement of the first limiting block 6 relative to the shell 4 in the direction of "along the inside to the outside of the shell 4", thereby separating the first limiting block 6 and the first blocking structure 501 from each other;
[0088] Also, see Figure 3The second elastic component 9 is arranged between the shell 4 and the second pressure plate 11. If the elastic force of the second elastic component 9 forces the second pressure plate 11 to rotate, then at the second elastic component 9, the distance between the second pressure plate 11 and the shell 4 gradually increases, and at the second limit block 7, the distance between the second pressure plate 11 and the shell 4 gradually decreases, so that the second limit block 7 moves relative to the shell 4 in the direction of "along the outside to the inside of the shell 4", so that the second limit block 7 can automatically block the second blocking structure 502; correspondingly, when it is necessary to release the second blocking structure 502 from being blocked by the second limit block 7, the user needs to apply pressure on the second pressure plate 11 located at the second elastic component 9. The pressure forces the distance between the second pressure plate 11 located at the second elastic component 9 and the shell 4 to decrease, so that the second elastic component 9 accumulates energy. At the same time, the distance between the second pressure plate 11 at the second limit block 7 and the shell 4 increases, forming a movement of the second limit block 7 relative to the shell 4 in the direction of "along the inside to the outside of the shell 4", and then the second limit block 7 and the second blocking structure 502 are separated from each other.
[0089] It should be understood that in other embodiments, a pulling component or a pulling component (not shown in the figure) can also be used, and in combination with the pulling force of the first elastic component 8 and the pulling force of the second elastic component 9, the technical effect of the aforementioned scheme of 'also including a first pressure plate 10 and a second pressure plate 11' can also be achieved; when a pulling component is used, the pulling component should form a telescopic pair with the shell 4, the first elastic component 8 or the second elastic component 9 should be arranged between the pulling component and the shell 4, and the two ends of the first elastic component 8 or the two ends of the second elastic component 9 are respectively connected to the pulling component and the shell 4; when a pulling component is used, the pulling component should form a rotating pair with the shell 4, the first elastic component 8 or the second elastic component 9 should be arranged between the pulling component and the shell 4, and the two ends of the first elastic component 8 or the two ends of the second elastic component 9 are respectively connected to the pulling component and the shell 4.
[0090] In the suturing device for suturing the meniscus of this embodiment, in order to achieve that the pushing block 5 is blocked by the first limiting block 6 and the second limiting block 7, see Figure 5 and Figure 6 Preferably, the first blocking structure 501 is specifically configured to be recessed in the first limiting groove of the push block 5, and the second blocking structure 502 is specifically configured to be recessed in the second limiting groove of the push block 5;
[0091] See also Figure 5 and Figure 6, in the scheme where the number of fixed rods 1 is 2, the number of first limiting grooves is configured to be at least one, and the number of second limiting grooves is configured to be at least one; wherein, all the first limiting grooves are matched with the first limiting block 6 respectively, that is, with the movement of the pushing block 5, any first limiting groove can be moved to the position of the first active channel 402 respectively, causing the first limiting block 6 to automatically penetrate the first active channel 402 and be inserted into the first limiting groove, so that the first limiting block 6 blocks the first limiting groove, causing the first limiting block 6 to block the pushing block 5; and, all the second limiting grooves are matched with the second limiting block 7 respectively, with the movement of the pushing block 5, any second limiting groove is matched with the second limiting block 7 respectively; with the movement of the pushing block 5, any second limiting groove can be moved to the position of the second active channel 403 respectively, causing the second limiting block 7 to automatically penetrate the second active channel 403 and be inserted into the second limiting groove, so that the second limiting block 7 blocks the second limiting groove, causing the second limiting block 7 to block the pushing block 5.
[0092] The first blocking structure 501 is set as the first limiting groove, and the second blocking structure 502 is set as the second limiting groove, which has a simple structure and low economic cost.
[0093] It should be understood that in other embodiments, the first blocking structure 501 can also be set as a first limiting protrusion structure (not shown in the figure), and the second blocking structure 502 can be set as a second limiting protrusion structure (not shown in the figure); wherein, the outline of the first limiting protrusion protrudes from the outline of the push block 5, and the gap between the first limiting protrusion and the inner wall of the shell 4 is smaller than the gap between the push block 5 and the inner wall of the shell 4, so that the first limiting block 6 can contact the first limiting protrusion in the shell 4, forming the pushing block 5 blocked by the first limiting block 6; the setting method of the second limiting protrusion is the same as the setting method of the first limiting protrusion, the only difference is that the second limiting protrusion is blocked by the second limiting block 7, and the rest of the content will not be repeated here.
[0094] It should be understood that in other embodiments, the first blocking structure 501 can also be set as the aforementioned first limiting groove, and correspondingly, the second blocking structure 502 can be set as the aforementioned second limiting protrusion; or, the first blocking structure 501 can also be set as the aforementioned first limiting protrusion, and correspondingly, the second blocking structure 502 can be set as the aforementioned second limiting groove.
[0095] In the prior art (named as a meniscus suture device, application number 202310981539.9), when the pusher is located at the first limiting portion or the second limiting portion, the pusher is blocked in the radial direction of the first limiting portion or the second limiting portion, so that the pusher cannot move radially toward the inside of the shell 4 of the shell 4; when the pusher is located at the second limiting portion, the pusher is blocked by the third limiting portion along the axial direction of the shell 4, and when the pusher is switched from the second limiting portion to the first limiting portion, the pusher is not blocked by the third limiting portion, so that the pusher can push the push needle; when the pusher needs to be switched from the first limiting portion to the second limiting portion, manual operation of the pusher is required, resulting in low operating efficiency of the meniscus suture device of the prior art.
[0096] In the suturing device for suturing the meniscus provided in this embodiment, the pushing block 5 is equivalent to the pushing member in the prior art, and the pushing rod 3 is equivalent to the pushing needle in the prior art; wherein, the operation step in which the previous limiting block (the first or second limiting block 7) is adjusted to separate from the previous blocking structure (the first or second blocking structure 502) is equivalent to the operation step in which the pushing member in the prior art is adjusted from the second limiting portion to the first limiting portion, and the operation step in which the pushing block 5 pushes the pushing rod 3 is equivalent to the step in which the pushing member pushes the pushing needle in the prior art; in addition, after the pushing block 5 of this embodiment pushes the pushing rod 3 and the pushing block 5 performs a stepping motion, In the process of the rear blocking structure (second or first blocking structure 501) of the pushing block 5 being blocked by the rear limit block (second or first limit block 6), the rear limit block (second or first limit block 6) automatically contacts and blocks the rear blocking structure (second or first blocking structure 501), thereby eliminating the need for a manual operation step of 'manually operating the pushing member as in the prior art to switch the pushing member from the first blocking part to the second blocking part', saving the time of the manual operation step. Therefore, the operating efficiency of the suturing device for suturing the meniscus in this embodiment is higher than the operating efficiency of the meniscus suturing device in the prior art.
[0097] For further information, see Figures 1 to 3 、 Figures 7 to 9 The suturing device for suturing the meniscus in this embodiment further includes a stopper assembly 12 and a mounting nut 13;
[0098] The stopper assembly 12 includes a stopper body 12 - 1 and a stopper hose 12 - 2 . The stopper body 12 - 1 is cylindrical, and the stopper body 12 - 1 and the stopper hose 12 - 2 are fixedly or detachably connected.
[0099] A portion of the inserter rod 2 is sleeved by the stopper assembly 12;
[0100] The mounting nut 13 is provided with an internal thread, and the housing 4 is provided with an external thread, and the mounting nut 13 and the housing 4 are threadedly connected;
[0101] The stopper body 12 - 1 is inserted into the mounting nut 13 .
[0102] The stopper assembly 12 is integrally sleeved on the outside of the inserter rod 2. The function of the stopper assembly 12 is the same as that of the depth-limiting sleeve in the prior art (named as a meniscus suture device, application number 202310981539.9), which is used to limit the penetration depth of the inserter rod 2.
[0103] See also Figure 2 The limiter assembly 12 includes a limiter body 12-1 and a limiter hose 12-2, which are configured to be fixedly or detachably connected. For example, the limiter hose 12-2 is sleeved on the limiter body 12-1, and an interference fit is formed between the limiter hose 12-2 and the limiter body 12-1.
[0104] See also Figure 2 、 3 and 9, the mounting nut 13 is used to connect the limiter assembly 12 and the housing 4, wherein the mounting nut 13 and the housing 4 are connected by a threaded connection, which facilitates the disassembly and assembly of the mounting nut 13 and the housing 4, and the limiter body 12-1 of the limiter assembly 12 is inserted into the mounting nut 13, and a connection is formed by the friction between the limiter body 12-1 and the mounting nut 13, the purpose of which is to facilitate the adjustment of the position of the limiter body 12-1 relative to the mounting nut 13, thereby facilitating the easy adjustment of the position of the limiter body 12-1 relative to the mounting nut 13.
[0105] For details, see Figure 2 、 3 , 4 and 9, in the suturing device for suturing the meniscus of this embodiment, the outer circumferential surface of the stopper body 12-1 is provided with a plurality of positioning grooves 12-3;
[0106] The mounting nut 13 is provided with a mounting through hole 13-1, and a marble pin 13-2 is provided in the mounting through hole 13-1;
[0107] The ball of the ball pin 13 - 2 is configured to snap into one of the positioning slots 12 - 3 of the stopper body 12 - 1 ;
[0108] The end of the inserter rod 2 disposed in the housing 4 is provided with a positioning boss 203 (see Figure 4 ), the positioning boss 203 is confined between the mounting nut 13 and the pushing block 5.
[0109] Among them, the specific structure of the marble pin 13-2 is common knowledge known to those skilled in the art and will not be repeated here. The telescopic marble of the marble pin 13-2 can protrude from the pin portion of the marble pin 13-2 under the elastic force of the spring, but the telescopic marble cannot be separated from the outside of the pin portion, and the telescopic marble can be squeezed when subjected to external force, so that the telescopic marble can retract into the inside of the pin portion.
[0110] When the ball pin 13-2 is positioned and matched with the limiter body 12-1, if the telescopic ball is not squeezed by the limiter body 12-1, the ball pin 13-2 is accommodated in one of the positioning grooves 12-3, so that the limiter body 12-1 and the mounting nut 13 at this time form a restricted connection structure through the ball pin 13-2 respectively; when the limiter body 12-1 is subjected to external force and produces a movement tendency relative to the mounting nut 13, the limiter body 12-1 squeezes the telescopic ball of the ball pin 13-2, forcing the telescopic ball to retract into the interior of the pin part, so that a connection structure that is not restricted by the ball pin 13-2 is formed between the limiter body 12-1 and the shell 4, and the limiter body 12-1 can produce a movement relative to the mounting nut 13.
[0111] A positioning boss 203 is provided at the end of the inserter rod 2, the purpose of which is to position the inserter rod 2 relative to the housing 4 to prevent the inserter rod 2 from being displaced relative to the housing 4.
[0112] It should be understood that a return spring is sleeved on the push rod 3, wherein a baffle is provided on the push rod 3, the baffle and the return spring are respectively located in the sliding cavity 401, and the return spring is confined between the positioning boss 203 and the baffle of the push rod 3; when the push block 5 pushes the push rod 3, causing the fixed rod 1 to move from the inside to the outside of the guide channel 202, the return spring is squeezed and contracted by the baffle and the positioning boss 203, and the return spring accumulates energy; when the push block 5 is in an active state and does not push the push rod 3, the return spring releases energy, and the return spring pushes the baffle, causing the push rod 3 to produce a return movement along the direction of the inserter rod 2 to the shell 4.
[0113] For further information, see Figures 1 to 3 In the suturing device for suturing the meniscus of this embodiment, a fixed handle 404 is extended from the shell 4, and a movable handle 405 is detachably provided on the shell 4, wherein the movable handle 405 is hinged to the shell 4;
[0114] One end of the movable handle 405 is provided with a movable slot 405-1, and the push block 5 is provided with a receiving cavity 503 and a transmission pin 504. The transmission pin 504 is cylindrical and is fixedly or detachably provided in the receiving cavity 503.
[0115] One end of the movable handle 405 having a movable slot 405-1 is configured to be inserted into the accommodating cavity 503, and the transmission pin 504 is configured to be inserted into the movable slot 405-1, wherein the axis of the transmission pin 504 and the axis of the hinge between the movable handle 405 and the shell 4 are parallel to each other.
[0116] When the suturing device for suturing the meniscus of the present embodiment is actually used, the user first presses the first pressing plate 10 or the second pressing plate 11 to separate the first limiting block 6 from the first blocking structure 501, or to separate the second limiting block 7 from the second blocking structure 502. Then, the user holds the fixed handle 404 and the movable handle 405 with one hand, and applies a gripping force to the fixed handle 404 and the movable handle 405, so that the movable handle 405 rotates around the axis of its hinge part, and the angle between the fixed handle 404 and the movable handle 405 becomes smaller; correspondingly, the movable slot 405-1 of the movable handle 405 pushes the transmission pin 504 on the pushing block 5, so that the movable handle 405 pushes the pushing block 5, and the pushing block 5 pushes the pushing rod 3; after the pushing block 5 makes a stepping motion, the limiting block (the first or second limiting block 7) behind is automatically inserted When the user presses the first pressure plate 10 or the second pressure plate 11 again, the limit block (the first or second limit block 7) and the blocking structure (the first or second blocking structure 502) are separated again, and the user can continue to operate the movable handle 405 and push the remaining fixed rods 1 to the outside of the guide channel 202.
[0117] For further information, see Figure 3 、 Figure 7 and Figure 8 In the suturing device for suturing the meniscus of this embodiment, the pushing block 5 at one end is constructed as a first guide portion 505 (see Figure 8 ), the first guide portion 505 is in the shape of a male head, the cross-sectional profile of the first guide portion 505 is configured as a geometric profile other than a circular profile, and the position of the accommodating cavity 503 is located on the first guide portion 505;
[0118] The housing 4 is provided with a second guide portion 406 (see Figure 7), the second guide portion 406 is in the shape of a female head, and the profile of the cross section of the second guide portion 406 is the same as the profile of the first guide portion 505;
[0119] The first guide portion 505 and the second guide portion 406 are configured to be clearance-fitted.
[0120] Among them, when the first guide portion 505 is arranged in the second guide portion 406, affected by the profile (non-circular profile) of the first guide portion 505 and the profile (non-circular profile) of the second guide portion 406, the first guide portion 505 and the second guide portion 406 form a radial (at a certain angle or perpendicular to the movement direction of the push block 5) positioning state, and the first guide portion 505 and the second guide portion 406 form a sliding pair, and the push block 5 cannot be offset or rotated relative to the shell 4, and the push block 5 can only move in a linear direction along the direction from the shell 4 to the inserter rod 2.
[0121] Preferably, the cross-sectional profile of the first guide portion 505 is configured as one of a semicircular profile, a triangular profile, a rectangular profile, a regular hexagonal profile, a convex profile, and a concave profile.
[0122] It should be understood that the structures referred to by the two descriptions of “male connector” and “female connector” in the foregoing content are common knowledge known to those skilled in the art.
[0123] For further information, see Figures 1 to 3 The suturing device for suturing the meniscus of this embodiment further includes an elastic component 14;
[0124] The elastic component 14 is located between the movable handle 405 and the fixed handle 404, and the elastic component 14 is detachably connected to the fixed handle 404 and the movable handle 405 respectively. When the fixed handle 404 and the movable handle 405 receive external force and are in a state where the angle gradually decreases, the elastic component 14 is used to absorb energy. When the fixed handle 404 and the movable handle 405 lose external force or the external force decreases, the elastic component 14 is used to release energy.
[0125] Among them, the elastic component is arranged between the fixed handle 404 and the movable handle 405. When the user's hand applies a gripping force to the fixed handle 404 and the movable handle 405, the angle between the movable handle 405 and the fixed handle 404 becomes smaller. At this time, the fixed handle 404 and the movable handle 405 respectively squeeze the elastic component 14, so that the elastic component 14 absorbs energy; when the gripping force received by the fixed handle 404 and the movable handle 405 disappears or decreases to a level lower than the elastic force of the elastic component 14, the elastic component 14 releases energy and drives the movable handle 405, so that the angle between the movable handle 405 and the fixed handle 404 increases.
[0126] Preferably, see Figure 2 The elastic component 14 specifically includes a first spring piece 14-1, a second spring piece 14-2, and a spring piece pin 14-3, wherein one end of the first spring piece 14-1 is provided with a hinge groove, and one end of the second spring piece 14-2 is provided with a hinge groove, and the spring piece pin 14-3 penetrates the hinge groove respectively, so that the first spring piece 14-1 and the second spring piece 14-2 form a hinge structure. Correspondingly, a mounting hole is provided at the other end of the first spring piece 14-1, and a mounting hole is provided at the other end of the second spring piece 14-2. The first spring piece 14-1 is connected to the threaded hole on the movable handle 405 by penetrating its mounting hole with a screw, and the second spring piece 14-2 is connected to the threaded hole on the fixed handle 404 by penetrating its mounting hole with a screw, so that the spring piece assembly forms a connection structure relative to the fixed handle 404 and the movable handle 405.
[0127] It should be understood that in other embodiments, elastic components 14 with other structures may also be used. For example, a coil spring may be provided between the fixed handle 404 and the movable handle 405, or a coil spring may be provided at the hinge between the shell 4 and the movable handle 405.
[0128] The above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformation made using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, is also included in the patent protection scope of the present invention.
Claims
1. A suturing device for suturing a meniscus, characterized in that: The device comprises at least two fixing rods, an inserter rod, a pushing rod, a housing, a pushing block, a first limiting block, a second limiting block, a first elastic component and a second elastic component; The inserter rod has a tip portion, the inserter rod and the housing are detachably connected, wherein the guide channel of the inserter rod and the sliding cavity of the housing are in communication; All the fixing rods are arranged in sequence in the guide channel, the pushing block is arranged in the sliding cavity, and the pushing rod is arranged in the guide channel and the sliding cavity, wherein the pushing rod is located between the pushing block and all the fixing rods; The housing is provided with a first movable channel for inserting the first limiting block and a second movable channel for inserting the second limiting block, and the first movable channel and the second movable channel are respectively communicated with the sliding cavity; The first elastic component is used to drive the first limiting block 'along the direction from the outside to the inside of the shell', and the second elastic component is used to drive the second limiting block 'along the direction from the outside to the inside of the shell'; The pushing block is provided with at least one first blocking structure and at least one second blocking structure, the first blocking structure is used to be blocked by the first limiting block, and the second blocking structure is used to be blocked by the second limiting block, and the pushing block remains stationary relative to the housing only when it is blocked by the first blocking structure or the second blocking structure; The displacement length of the pushing block from the previous static state to the next static state is the same as the displacement length of one of the fixing rods from being pushed from the inside of the guide channel to the outside of the guide channel.
2. The suturing device for suturing the meniscus according to claim 1, characterized in that: The number of the fixing rods is 2, the number of the first blocking structure is 1, and the number of the second blocking structure is 1; Alternatively, the number of the fixing rods is 3, the number of the first blocking structures is 2, and the number of the second blocking structure is 1; Alternatively, the number of the fixing rods is four, the number of the first blocking structures is two, and the number of the second blocking structures is two.
3. The suturing device for suturing a meniscus according to claim 1, characterized in that: Also included are a first pressing plate and a second pressing plate; The first elastic member and the second elastic member are respectively configured as one of an elastic sheet and a coil spring; The first pressure plate and the second pressure plate are respectively hinged to the shell, wherein the first limit block is arranged at one end of the first pressure plate, the first elastic component is arranged at the other end of the first pressure plate, and the first elastic component is restricted between the shell and the first pressure plate, the second limit block is arranged at one end of the second pressure plate, the second elastic component is arranged at the other end of the second pressure plate, and the second elastic component is restricted between the second pressure plate and the shell.
4. The suturing device for suturing a meniscus according to claim 1, characterized in that: The first blocking structure is specifically a first limiting groove recessed in the pushing block; The second blocking structure is specifically a second limiting groove recessed in the pushing block.
5. The suturing device for suturing meniscus according to claim 1, characterized in that: Also includes a stopper assembly and mounting nut; The stopper assembly includes a stopper body and a stopper hose, wherein the stopper body is cylindrical, and the stopper body and the stopper hose are fixedly or detachably connected; A portion of the inserter rod is sleeved by the stopper assembly; The mounting nut is provided with an internal thread, the housing is provided with an external thread, and the mounting nut and the housing are threadedly connected; The stopper body is inserted into the mounting nut.
6. The suturing device for suturing a meniscus according to claim 5, characterized in that: The outer circumferential surface of the limiter body is provided with a plurality of positioning grooves; The mounting nut is provided with a mounting through hole, and a marble pin is provided in the mounting through hole; The ball of the ball pin is configured to be snapped into one of the positioning slots of the limiter body; The end of the inserter rod disposed in the housing is provided with a positioning boss in a protruding shape, and the positioning boss is confined between the mounting nut and the pushing block.
7. The suturing device for suturing a meniscus according to claim 1, characterized in that: A fixed handle is extended from the shell, and a movable handle is detachably provided on the shell, wherein the movable handle is hinged to the shell; One end of the movable handle is provided with a movable slot, and the pushing block is provided with a receiving cavity and a transmission pin, the transmission pin is cylindrical, and the transmission pin is fixedly or detachably provided in the receiving cavity; One end of the movable handle having the movable slot is configured to be inserted into the accommodating cavity, and the transmission pin is configured to be inserted into the movable slot, wherein the axis of the transmission pin and the axis of the hinge between the movable handle and the shell are parallel to each other.
8. The suturing device for suturing a meniscus according to claim 7, characterized in that: The pushing block at one end is configured as a first guide portion, the first guide portion is in the shape of a male head, the cross-section of the first guide portion is configured as a geometric profile other than a circular profile, and the accommodating cavity is located at the first guide portion; The housing is provided with a second guide portion, the second guide portion is in a female head shape, and the cross-sectional profile of the second guide portion is the same as that of the first guide portion; The first guide portion and the second guide portion are configured to be clearance-fitted.
9. The suturing device for suturing a meniscus according to claim 8, characterized in that: The cross-sectional profile of the first guide portion is configured as one of a semicircular profile, a triangular profile, a rectangular profile, a regular hexagonal profile, a convex profile, and a concave profile.
10. The suturing device for suturing a meniscus according to claim 7, characterized in that: Also included are elastic components; The elastic component is located between the movable handle and the fixed handle, and the elastic component is detachably connected to the fixed handle and the movable handle respectively. When the fixed handle and the movable handle receive external force and are in a state where the angle between them gradually decreases, the elastic component is used to absorb energy. When the fixed handle and the movable handle lose external force or the external force decreases, the elastic component is used to release energy.
Citation Information
Patent Citations
Meniscus suture device
CN116687480B