Abdominal cavity hemostasis device convenient to replace

By designing an abdominal hemostasis device that is easy to replace, using the conversion inflation module and glue replenishment mechanism, the problem of low efficiency of air entering the abdominal cavity and hemostasis gel replenishment is solved, efficient hemostasis and rapid replacement are achieved, and patient discomfort and waste are reduced.

CN120052998APending Publication Date: 2025-05-30CHINESE PEOPLES LIBERATION ARMY ARMY SPECIAL MEDICAL CENTER
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Patent Information

Application Number
CN202510267710.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

During operation, existing abdominal hemostasis devices are prone to push air into the patient's abdominal cavity, resulting in discomfort, and the replenishment and pushing of the hemostasis gel is inefficient and wasteful.

Method used

A replacement abdominal hemostasis device is designed, including a rubber injection cylinder, a conversion and inflation module, a rubber filling mechanism, a compression module and an alternative rubber injection module. By converting the inflatable module, the inside of the rubber inlet module is expanded and the air is drained to prevent air from entering the abdominal cavity; the glue replenishment valve and auxiliary module are used to achieve automatic replenishment and efficient push of the hemostatic gel.

Benefits of technology

It effectively avoids air entering the abdominal cavity and reduces discomfort in patients; improves the replenishment and push efficiency of hemostatic gel, reduces waste, and supports rapid replacement of modules to avoid contamination.

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Abstract

The invention discloses an abdominal cavity hemostasis device convenient to replace, which belongs to the technical field of medical apparatus and instruments, and comprises a glue injection barrel, a conversion inflation module, a glue supplementing mechanism and a replaceable glue feeding module, the glue injection barrel comprises a glue barrel, a push rod, a glue pushing plug and a connecting pipe; a connecting pipe is fixedly mounted at the bottom of the rubber sleeve; threads are arranged on the outer side of the connecting pipe; a push rod is fixedly mounted on the upper side of the push rubber plug; the lower side of the connecting pipe is in threaded connection with a glue feeding module inserted into a wound in the abdominal cavity; the conversion inflation module is connected with the glue feeding module; the glue supplementing mechanism is mounted on the glue barrel and the glue pushing plug; the glue supplementing mechanism comprises a glue supplementing valve and an auxiliary module, the glue supplementing valve is installed on the glue barrel, and the auxiliary module is installed on the glue pushing plug. By means of the mode, air in the channel of the gel inlet module is emptied, then the gel inlet module is inserted into a wound in the abdominal cavity of a patient, pain of the patient is reduced, and air is prevented from being injected into the abdominal cavity of the patient in the process of injecting hemostasis gel.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical devices, and particularly relates to an abdominal hemostatic device that is easy to replace. Background Art

[0002] After a human body is injured, bleeding of various conditions is likely to occur, such as bleeding on the inner wall of the abdominal cavity; when bleeding occurs on the inner wall of the abdominal cavity, it is often necessary to open the abdominal cavity, and then use various hemostatic devices to perform hemostasis operations on the abdominal cavity; one operation method is to inject hemostatic gel into the wound in the patient's abdominal cavity through a syringe; after the hemostatic gel comes into contact with the blood, it quickly swells, and the wound surface is compressed and hemostatic by the self-swelling of the hemostatic gel.

[0003] For example, Chinese Patent CN209285624U discloses an abdominal hemostatic device. The hemostatic device is provided with a barrel and a push rod end cap. Before use, hemostatic gel is injected into the barrel, and then the hemostatic gel is pushed to the patient's wound through the push rod.

[0004] However, when the inner wall of the patient's abdominal cavity is traumatized, usually a small opening is made in the patient's abdominal cavity, and an extension tube is inserted into the abdominal cavity from the outside, and then the hemostatic gel is pushed to the wound through the barrel and the push rod outside; during the operation, the air in the extension tube is easily pushed into the patient's abdominal cavity, which is likely to cause discomfort to the patient.

[0005] Based on this, the present invention designs an abdominal hemostatic device that is easy to replace to solve the above problems. Summary of the Invention

[0006] In view of the above-mentioned drawbacks of the prior art, the present invention provides an abdominal hemostatic device that is easy to replace.

[0007] To achieve the above objectives, the present invention is realized through the following technical solutions:

[0008] An abdominal hemostatic device that is easy to replace, comprising a glue injection barrel, a conversion inflation module, a glue replenishment mechanism, a compression module, and a replaceable glue inlet module;

[0009] The glue injection barrel includes an outer glue barrel, a push rod, a glue pushing plug, and a glue pushing connecting pipe; a glue pushing connecting pipe is fixedly installed at the bottom of the outer glue barrel, and a thread is provided on the outer side of the glue pushing connecting pipe; a glue pushing plug is installed in the outer glue barrel in a limited sliding manner, and a push rod is fixedly installed on the upper side of the glue pushing plug; the compression module is installed on the glue inlet module;

[0010] The lower side of the glue pushing connecting pipe is threadedly connected to a glue inlet module for inserting into the wound in the abdominal cavity; the conversion inflation module is connected to the glue inlet module, and the conversion inflation module is connected to the compression module; the glue replenishment mechanism is installed on the outer glue barrel and the glue pushing plug; the glue replenishment mechanism includes a glue replenishment valve and an auxiliary module, the glue replenishment valve is installed on the outer glue barrel, and the auxiliary module is installed on the glue pushing plug.

[0011] Furthermore, the conversion and inflation module includes an automatic conversion joint, an extrusion connection pipe, a one-way valve, and an extrusion air pump. One end of the extrusion connection pipe is fixedly connected to the automatic conversion joint, the other end of the extrusion connection pipe is fixedly connected to the lower end of the one-way valve, and the upper end of the one-way valve is fixedly connected to the extrusion air pump.

[0012] Furthermore, the conversion and inflation module further includes an exhaust valve, and the exhaust valve is fixedly installed on the lower side of the extrusion connection pipe.

[0013] Furthermore, the automatic conversion joint includes a conical communication block, a first through pipe, a second through pipe, and an automatic communication module. The conical communication block is fixedly connected to the extrusion connection pipe, the first through pipe and the second through pipe are fixedly installed on the lower side of the conical communication block, and both the first through pipe and the second through pipe communicate with the extrusion connection pipe through the conical communication block; an automatic communication module is installed in the second through pipe.

[0014] Furthermore, the automatic communication module includes a support block, a guide rod, a spring, and a conical block. The support block is fixedly installed in the second through pipe, and the guide rod is connected to the support block in a limited sliding manner; a conical block is fixedly installed at the end of the guide rod; one end of the spring is fixedly connected to the conical block, and the other end of the spring is fixedly connected to the support block; a conical groove that fits the conical block is provided on the upper side of the second through pipe.

[0015] Furthermore, the compression module includes a compression airbag, a compression connection pipe, and a second connection seat. The compression airbag is fixedly installed at the lower end of the glue injection pipe; the compression connection pipe is fixedly installed on the glue injection pipe, the lower end of the compression connection pipe communicates with the compression airbag, and the upper end of the compression connection pipe is fixedly connected to the second connection seat; the second connection seat is threadedly connected to the second through pipe.

[0016] Furthermore, the glue injection module includes a glue injection connection seat, a glue injection pipe, and an airbag module. The glue injection connection seat is fixedly installed with a glue injection pipe for inserting into the abdominal cavity wound; the glue injection connection seat is threadedly connected to the glue pushing connection pipe; an airbag module is installed on the glue injection pipe.

[0017] Furthermore, the airbag module includes an annular airbag, a replaceable connection pipe, and a first connection seat. The annular airbag is fixedly installed on the inner wall of the glue injection pipe; the replaceable connection pipe is fixedly installed on the glue injection pipe, one end of the replaceable connection pipe is fixedly connected to the annular airbag, and the other end of the replaceable connection pipe is fixedly installed with a first connection seat, and the first connection seat is threadedly connected to the first through pipe.

[0018] Further, the auxiliary module includes a glue filling airbag, a lower baffle, a guide rod, and a pressure stabilizing module. The upper end of the glue filling airbag is fixedly installed on the lower side of the glue pushing plug. The lower end of the glue filling airbag is fixedly installed with a lower baffle, and the lower baffle is limited to slide within the outer glue cylinder. A guide rod is fixedly installed on the upper side of the lower baffle, and the guide rod is in limited sliding connection with the push rod. The pressure stabilizing module is installed on the upper side of the glue pushing plug.

[0019] Further, the pressure stabilizing module includes a filling connecting pipe and a pressure stabilizing airbag. The filling connecting pipe is fixedly installed on the glue pushing plug. The lower end of the filling connecting pipe is communicated with the glue filling airbag, and the upper end of the filling connecting pipe extends out of the outer glue cylinder and is fixedly connected to the pressure stabilizing airbag.

[0020] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. Fill the hemostatic gel into the glue cylinder through the glue filling valve. During the glue filling process, the auxiliary module is used to prevent external air from entering the injection glue cylinder. Connect an inlet glue module to the end of the connecting pipe. After operating the conversion inflation module to expand the inside of the inlet glue module, evacuate the air in the channel of the inlet glue module, and then insert the inlet glue module into the wound in the patient's abdominal cavity, thus avoiding opening the external wound, reducing the patient's pain, and preventing air from being injected into the patient's abdominal cavity during the injection of the hemostatic gel;

[0021] 2. Operate the push rod to push the glue pushing plug to move within the glue cylinder, so that the gel is pushed into the inlet glue module and delivered to the wound in the patient's abdominal cavity through the inlet glue module. The hemostatic gel is used to stop bleeding at the wound in the abdominal cavity. During the hemostasis process, if the hemostatic gel in the glue cylinder is insufficient, the hemostatic gel can be replenished into the glue cylinder through the glue filling valve, and at the same time, the auxiliary module is used to prevent external air from entering the injection glue cylinder. The hemostatic gel in the inlet glue module is pushed into the patient's abdominal cavity through the conversion inflation module, thus effectively reducing waste. After the hemostasis is completed, pull out the inlet glue module from the patient's abdominal cavity, remove the inlet glue module from the connecting pipe, and separate the inlet glue module from the conversion inflation module to quickly replace the inlet glue module inserted into the patient's abdominal cavity, avoiding contamination;

[0022] 3. In the initial state, the conical block is pushed by the spring so that the conical block abuts against the conical groove. The air flow in the conical communication block flows through the first through pipe and the replaceable connecting pipe to the annular airbag, causing the annular airbag to expand, and preventing the airbag from being compressed and blocking the outflow of the hemostatic gel during this process. Then continue to operate the extrusion air pump. The extrusion air pump sends air to the conical communication block through the one-way valve and the extrusion connecting pipe, increasing the air pressure in the conical communication block. Then the air pressure pushes the conical block to move until the conical block disengages from the conical groove, allowing the air to flow into the compression airbag and causing the compression airbag to expand. The compression airbag is used to squeeze the hemostatic gel to compress and stop bleeding at the wound, improving the hemostasis effect. Description of the Drawings

[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the accompanying drawings required in the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.

[0024] Figure 1 Stereogram of an abdominal hemostasis device that is easy to replace according to the present invention Figure 1 ;

[0025] Figure 2 Front view of an abdominal hemostasis device that is easy to replace according to the present invention;

[0026] Figure 3 Schematic diagram of the rubber cylinder and its connection structure;

[0027] Figure 4 Schematic diagram of the push rod and its connection structure;

[0028] Figure 5 Forward sectional stereogram of an abdominal hemostasis device that is easy to replace according to the present invention;

[0029] Figure 6 For Figure 5 Enlarged view of part A in

[0030] Figure 7 Schematic diagram of the glue injection tube and its connection structure;

[0031] Figure 8 Schematic diagram of the extrusion air pump and its connection structure;

[0032] Figure 9 Schematic diagram of the conical connecting block and its connection structure;

[0033] Figure 10 Schematic diagram of the conical block and its connection structure.

[0034] The reference numerals in the figure respectively represent:

[0035] 1. Glue injection cylinder; 11. Outer glue cylinder; 12. Push rod; 13. Glue pushing plug; 14. Glue pushing connecting pipe; 2. Glue inlet module; 21. Glue inlet connecting seat; 22. Glue injection pipe; 23. Annular airbag; 24. Replaceable connecting pipe; 25. First connecting seat; 3. Conversion inflation module; 31. Automatic conversion joint; 32. Extrusion connecting pipe; 33. Check valve; 34. Exhaust valve; 35. Extrusion air pump; 311. Conical communication block; 312. First through pipe; 313. Second through pipe; 314. Support block; 315. Guide rod; 316. Spring; 317. Conical block; 318. Conical groove; 5. Compression module; 51. Compression airbag; 52. Compression connecting pipe; 53. Second connecting seat; 4. Glue replenishment mechanism; 41. Glue replenishment valve; 42. Glue replenishment airbag; 43. Lower baffle; 44. Guide rod; 45. Filling connecting pipe; 46. Voltage stabilizing airbag. Specific embodiments

[0036] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0037] The "left", "right", "front", "rear", "upper", and "lower" mentioned in the following description are oriented in the perspective direction of the front view.

[0038] Embodiment 1: In some embodiments, please refer to Figures 1-4 of the accompanying drawings of the specification. An abdominal hemostasis device that is easy to replace includes a glue injection cylinder 1, a conversion inflation module 3, a glue replenishment mechanism 4, a compression module 5, and a replaceable glue inlet module 2;

[0039] The glue injection cylinder 1 includes an outer glue cylinder 11, a push rod 12, a glue pushing plug 13, and a glue pushing connecting pipe 14; a glue pushing connecting pipe 14 is fixedly installed at the bottom of the outer glue cylinder 11, and a thread is provided on the outer side of the glue pushing connecting pipe 14; a glue pushing plug 13 is slidably installed in the outer glue cylinder 11 in a limited manner, and a push rod 12 is fixedly installed on the upper side of the glue pushing plug 13; the compression module 5 is installed on the glue inlet module 2;

[0040] The lower side of the glue pushing connecting pipe 14 is threadedly connected to a glue inlet module 2 for inserting into the abdominal cavity wound; the conversion inflation module 3 is connected to the glue inlet module 2, and the conversion inflation module 3 is connected to the compression module 5; the glue replenishment mechanism 4 is installed on the outer glue cylinder 11 and the glue pushing plug 13; the glue replenishment mechanism 4 includes a glue replenishment valve 41 and an auxiliary module, the glue replenishment valve 41 is installed on the outer glue cylinder 11, and the auxiliary module is installed on the glue pushing plug 13.

[0041] In this embodiment, when the easily replaceable abdominal hemostasis device is working properly, hemostatic gel is filled into the outer rubber cylinder 11 through the glue filling valve 41. During the glue filling process, the auxiliary module is used to prevent external gas from entering the injection cylinder 1. One glue inlet module 2 is connected to the end of the glue pushing connecting pipe 14. After operating the conversion inflation module 3 to expand the inside of the glue inlet module 2, the air in the channel of the glue inlet module 2 is emptied, and then the glue inlet module 2 is inserted into the wound in the patient's abdominal cavity, thus avoiding opening the external wound, reducing the patient's pain, and preventing air from being injected into the patient's abdominal cavity during the injection of the hemostatic gel. The push rod 12 is operated to push the glue pushing plug 13 to move in the outer rubber cylinder 11, so that the gel is pushed into the glue inlet module 2 and delivered to the wound in the patient's abdominal cavity through the glue inlet module 2. The hemostatic gel is used to stop bleeding of the wound in the abdominal cavity. During the hemostasis process, if the hemostatic gel in the outer rubber cylinder 11 is insufficient, the hemostatic gel can be replenished into the outer rubber cylinder 11 through the glue filling valve 41, and at the same time, the auxiliary module is used to prevent external gas from entering the injection cylinder 1. The hemostatic gel in the glue inlet module 2 is pushed into the patient's abdominal cavity through the conversion inflation module 3, thus effectively reducing waste. After all the hemostatic gel is pushed out, the conversion inflation module 3 is continuously operated to expand the compression module 5. The compression module 5 squeezes the wound through the hemostatic gel to perform compression hemostasis again, so as to ensure the hemostasis effect without hindering the outflow of the hemostatic gel. After the hemostasis is completed, the glue inlet module 2 is pulled out of the patient's abdominal cavity, removed from the glue pushing connecting pipe 14, and separated from the conversion inflation module 3, and the glue inlet module 2 inserted into the patient's abdominal cavity is quickly replaced to avoid contamination.

[0042] Embodiment 2: In some embodiments, as Figures 1-10 shown, as a preferred embodiment of the present invention, the conversion inflation module 3 includes an automatic conversion joint 31, an extrusion connecting pipe 32, a one-way valve 33 and an extrusion air pump 35. One end of the extrusion connecting pipe 32 is fixedly connected to the automatic conversion joint 31, the other end of the extrusion connecting pipe 32 is fixedly connected to the lower end of the one-way valve 33, and the upper end of the one-way valve 33 is fixedly connected to the extrusion air pump 35;

[0043] The conversion inflation module 3 further includes an exhaust valve 34, and the exhaust valve 34 is fixedly installed on the lower side of the extrusion connecting pipe 32;

[0044] The automatic conversion joint 31 includes a conical communication block 311, a first through pipe 312, a second through pipe 313 and an automatic communication module. The conical communication block 311 is fixedly connected to the extrusion connecting pipe 32. The first through pipe 312 and the second through pipe 313 are fixedly installed on the lower side of the conical communication block 311. Both the first through pipe 312 and the second through pipe 313 are communicated with the extrusion connecting pipe 32 through the conical communication block 311. An automatic communication module is installed in the second through pipe 313;

[0045] The automatic connection module includes a support block 314, a guide rod 315, a spring 316, and a tapered block 317. The support block 314 is fixedly installed in the second through pipe 313, and the guide rod 315 is in limit sliding connection with the support block 314; a tapered block 317 is fixedly installed at the end of the guide rod 315; one end of the spring 316 is fixedly connected to the tapered block 317, and the other end of the spring 316 is fixedly connected to the support block 314; a tapered groove 318 that fits the tapered block 317 is provided on the upper side of the second through pipe 313;

[0046] The pressing module 5 includes a pressing airbag 51, a pressing connection pipe 52, and a second connection seat 53. The pressing airbag 51 is fixedly installed at the lower end of the glue injection pipe 22; the pressing connection pipe 52 is fixedly installed on the glue injection pipe 22, the lower end of the pressing connection pipe 52 communicates with the pressing airbag 51, and the upper end of the pressing connection pipe 52 is fixedly connected to the second connection seat 53; the second connection seat 53 is threadedly connected to the second through pipe 313;

[0047] The glue feeding module 2 includes a glue feeding connection seat 21, a glue injection pipe 22, and an airbag module. A glue injection pipe 22 for inserting into the abdominal cavity wound is fixedly installed under the glue feeding connection seat 21; the glue feeding connection seat 21 is threadedly connected to the glue pushing connection pipe 14; an airbag module is installed on the glue injection pipe 22;

[0048] The airbag module includes an annular airbag 23, a replaceable connection pipe 24, and a first connection seat 25. The annular airbag 23 is fixedly installed on the inner wall of the glue injection pipe 22; the replaceable connection pipe 24 is fixedly installed on the glue injection pipe 22, one end of the replaceable connection pipe 24 is fixedly connected to the annular airbag 23, and the other end of the replaceable connection pipe 24 is fixedly installed with a first connection seat 25, and the first connection seat 25 is threadedly connected to the first through pipe 312;

[0049] The auxiliary module includes a glue replenishing airbag 42, a lower baffle 43, a guide rod 44, and a voltage stabilizing module. The upper end of the glue replenishing airbag 42 is fixedly installed under the glue pushing plug 13, the lower end of the glue replenishing airbag 42 is fixedly installed with a lower baffle 43, and the lower baffle 43 is in limit sliding in the outer glue cylinder 11; a guide rod 44 is fixedly installed on the upper side of the lower baffle 43, and the guide rod 44 is in limit sliding connection with the push rod 12; the voltage stabilizing module is installed on the upper side of the glue pushing plug 13;

[0050] The voltage stabilizing module includes a filling connection pipe 45 and a voltage stabilizing airbag 46. The filling connection pipe 45 is fixedly installed on the glue pushing plug 13, the lower end of the filling connection pipe 45 communicates with the glue replenishing airbag 42, and the upper end of the filling connection pipe 45 extends out of the outer glue cylinder 11 and is fixedly connected to the voltage stabilizing airbag 46.

[0051] In this embodiment, when the glue feeding module 2, the conversion and inflation module 3, and the glue replenishing mechanism 4 are working properly, after the glue feeding connecting seat 21 is threadedly connected to the glue pushing connecting pipe 14, the replaceable connecting pipe 24 is then connected to the automatic conversion joint 31; the operation of the extrusion air pump 35 causes the annular airbag 23 to expand through the one-way valve 33, the extrusion connecting pipe 32, and the replaceable connecting pipe 24, fills the inner wall of the glue injection pipe 22 through the annular airbag 23, and extrudes the air in the glue injection pipe 22. Then, the glue injection pipe 22 is inserted into the wound in the patient's abdominal cavity; then the exhaust valve 34 is opened, and the push rod 12 is operated to drive the glue pushing plug 13 to move within the outer glue cylinder 11, so as to push the hemostatic gel in the outer glue cylinder 11 into the glue injection pipe 22. The hemostatic gel squeezes the annular airbag 23, and discharges the air in the annular airbag 23 through the replaceable connecting pipe 24, the extrusion connecting pipe 32, and the exhaust valve 34, so that the hemostatic gel smoothly passes through the glue injection pipe 22; thus effectively avoiding pushing air into the patient's abdominal cavity during the process of pushing the hemostatic gel and preventing infection; if the hemostatic gel in the outer glue cylinder 11 is insufficient, the push rod 12 can be used to pull the glue pushing plug 13 to make the glue pushing plug 13 move upward. At this time, the lower baffle 43 remains stationary, and the air in the pressure stabilizing airbag 46 flows through the filling connecting pipe 45 directly into the glue replenishing airbag 42; thus avoiding the entry of external air while pulling the glue pushing plug 13; then the hemostatic gel is poured into the outer glue cylinder 11 from the outside through the glue replenishing valve 41; the friction between the glue pushing plug 13 and the inner wall of the outer glue cylinder 11 is much greater than the friction between the lower baffle 43 and the inner wall of the outer glue cylinder 11; thus, during the process of replenishing the hemostatic gel, the hemostatic gel enters the outer glue cylinder 11 through the glue replenishing valve 41 and pushes the lower baffle 43 to move upward. The lower baffle 43 maintains a state perpendicular to the inner wall of the outer glue cylinder 11 and moves upward through the glue replenishing airbag 42, thereby squeezing the air in the glue replenishing airbag 42, and making the air in the glue replenishing airbag 42 flow through the filling connecting pipe 45 into the pressure stabilizing airbag 46; thus facilitating the replenishment of the hemostatic gel and effectively avoiding the entry of external air; in the initial state, the conical block 317 is pushed by the spring 316 so that the conical block 317 abuts against the conical groove 318; the air flow in the conical communication block 311 flows through the first through pipe 312 and the replaceable connecting pipe 24 into the annular airbag 23, causing the annular airbag 23 to expand, and avoiding compressing the airbag 51 to expand and blocking the outflow of the hemostatic gel during this process; then the extrusion air pump 35 is continuously operated. The extrusion air pump 35 continues to send air into the conical communication block 311 through the one-way valve 33 and the extrusion connecting pipe 32, increasing the air pressure in the conical communication block 311. Then, the air pressure pushes the conical block 317 to move until the conical block 317 disengages from the conical groove 318, allowing the air to flow into the compression airbag 51 and causing the compression airbag 51 to expand; the compression airbag 51 squeezes the hemostatic gel to compress and stop bleeding the wound; improving the hemostatic effect.

[0052] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A replaceable abdominal hemostasis device, comprising a glue injection cylinder (1), a conversion inflation module (3), a glue replenishing mechanism (4), a compression module (5) and a replaceable glue feeding module (2), characterized in that: The glue injection cylinder (1) comprises an outer glue cylinder (11), a push rod (12), a push rubber plug (13) and a push rubber connecting pipe (14); the bottom of the outer glue cylinder (11) is fixedly mounted with a push rubber connecting pipe (14), and the outer side of the push rubber connecting pipe (14) is provided with a thread; the inner part of the outer glue cylinder (11) is limitedly slidably mounted with a push rubber plug (13), and the upper side of the push rubber plug (13) is fixedly mounted with a push rod (12); the compression module (5) is mounted on the glue feeding module (2); The lower side of the glue push connection tube (14) is threadedly connected to a glue feed module (2) for inserting into the intra-abdominal wound; the conversion inflation module (3) is connected to the glue feed module (2), and the conversion inflation module (3) is connected to the compression module (5); the glue replenishment mechanism (4) is installed on the outer glue cylinder (11) and the glue push plug (13); the glue replenishment mechanism (4) comprises a glue replenishment valve (41) and an auxiliary module, the glue replenishment valve (41) is installed on the outer glue cylinder (11), and the auxiliary module is installed on the glue push plug (13).

2. The easily replaceable abdominal hemostasis device according to claim 1, characterized in that: The conversion inflation module (3) comprises an automatic conversion joint (31), an extrusion connection pipe (32), a one-way valve (33) and an extrusion air pump (35); one end of the extrusion connection pipe (32) is fixedly connected to the automatic conversion joint (31); the other end of the extrusion connection pipe (32) is fixedly connected to the lower end of the one-way valve (33); and the upper end of the one-way valve (33) is fixedly connected to the extrusion air pump (35).

3. The easily replaceable abdominal hemostasis device according to claim 2, characterized in that: The conversion inflation module (3) further comprises an exhaust valve (34), and the exhaust valve (34) is fixedly mounted on the lower side of the extrusion connection pipe (32).

4. The easily replaceable abdominal hemostasis device according to claim 2, characterized in that: The automatic conversion joint (31) comprises a tapered connecting block (311), a first through pipe (312), a second through pipe (313) and an automatic connecting module. The tapered connecting block (311) is fixedly connected to the extruded connecting pipe (32). The first through pipe (312) and the second through pipe (313) are fixedly installed on the lower side of the tapered connecting block (311). Both the first through pipe (312) and the second through pipe (313) are connected to the extruded connecting pipe (32) through the tapered connecting block (311); and the automatic connecting module is installed in the second through pipe (313).

5. The easily replaceable abdominal hemostasis device according to claim 4, characterized in that: The automatic connection module comprises a support block (314), a guide rod (315), a spring (316) and a tapered block (317); the support block (314) is fixedly mounted in the second through pipe (313); the guide rod (315) is connected to the support block (314) in a limited sliding manner; the end of the guide rod (315) is fixedly mounted with the tapered block (317); one end of the spring (316) is fixedly connected to the tapered block (317), and the other end of the spring (316) is fixedly connected to the support block (314); and a tapered groove (318) is provided on the upper side of the second through pipe (313) and is fitted with the tapered block (317).

6. The easily replaceable abdominal hemostasis device according to claim 1, characterized in that: The glue feeding module (2) comprises a glue feeding connection seat (21), a glue injection tube (22) and an airbag module; a glue injection tube (22) for inserting into an intra-abdominal wound is fixedly mounted on the lower side of the glue feeding connection seat (21); the glue feeding connection seat (21) is threadedly connected to the glue pushing connection tube (14); and the airbag module is mounted on the glue injection tube (22).

7. The easily replaceable abdominal hemostasis device according to claim 6, characterized in that: The airbag module comprises an annular airbag (23), a replaceable connecting pipe (24) and a first connecting seat (25); the annular airbag (23) is fixedly mounted on the inner wall of the glue injection pipe (22); the replaceable connecting pipe (24) is fixedly mounted on the glue injection pipe (22); one end of the replaceable connecting pipe (24) is fixedly connected to the annular airbag (23); the other end of the replaceable connecting pipe (24) is fixedly mounted with the first connecting seat (25); the first connecting seat (25) is threadedly connected to the first through pipe (312).

8. The easily replaceable abdominal hemostasis device according to claim 7, characterized in that: The compression module (5) comprises a compression airbag (51), a compression connecting tube (52) and a second connecting seat (53); the compression airbag (51) is fixedly mounted on the lower end of the glue injection tube (22); the compression connecting tube (52) is fixedly mounted on the glue injection tube (22); the lower end of the compression connecting tube (52) is connected to the compression airbag (51); the upper end of the compression connecting tube (52) is fixedly connected to the second connecting seat (53); the second connecting seat (53) is threadedly connected to the second through tube (313).

9. The easily replaceable abdominal hemostasis device according to claim 8, characterized in that: The auxiliary module comprises a rubber filling airbag (42), a lower baffle (43), a guide rod (44) and a voltage stabilizing module. The upper end of the rubber filling airbag (42) is fixedly mounted on the lower side of the rubber push plug (13). The lower end of the rubber filling airbag (42) is fixedly mounted with a lower baffle (43). The lower baffle (43) is limitedly slidable in the outer rubber cylinder (11). The upper side of the lower baffle (43) is fixedly mounted with a guide rod (44). The guide rod (44) is limitedly slidably connected to the push rod (12). The voltage stabilizing module is mounted on the upper side of the rubber push plug (13).

10. The easily replaceable abdominal hemostasis device according to claim 9, characterized in that: The pressure stabilizing module comprises a filling connecting tube (45) and a pressure stabilizing airbag (46). The filling connecting tube (45) is fixedly mounted on the rubber push plug (13). The lower end of the filling connecting tube (45) is communicated with the rubber replenishing airbag (42). The upper end of the filling connecting tube (45) extends out of the outer rubber cylinder (11) and is fixedly connected to the pressure stabilizing airbag (46).

Citation Information

Patent Citations

  • Abdominal cavity hemostasis device

    CN209285624U