Single-hole visual bromhidrosis minimally invasive surgery device
By designing a single-hole visual minimally invasive axillary odor surgery device including a scraping rod, a cladding, a transparent cover and a grip assembly, the problem of camera contamination and disinfection in the existing devices is solved, and the equipment is safe, reusable and efficiently operated.
Patent Information
- Application Number
- CN202421979786.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The micro cameras in the existing minimally invasive single-hole lens-axillary odor-scraping and suction surgical device are easily contaminated when approaching the cutting blade and extending into the skin, and are not easy to disinfect, resulting in waste of equipment and safety hazards.
A single-hole visual axillary odor minimally invasive surgical device is designed, using a combined structure of scraping rod, cladding, transparent cover and grip assembly. The visual parts are blocked through the transparent cover to avoid contamination, and the disassembly and assembly design is convenient for disinfection and reuse.
It effectively prevents the camera from being contaminated during operation, simplifies the disinfection process, reduces equipment waste, and improves operational safety and reusability of equipment.
Smart Images

Figure CN223026118U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical devices, and more specifically, to a single-hole visual minimally invasive axillary osmidrosis surgical device. Background Technique
[0002] Axillary osmidrosis, also known as bromhidrosis, is the secretion of the apocrine sweat glands of the large sweat glands. These secretions themselves have no odor, but because there are some bacteria colonized on the skin surface of the armpit, they can act with the odorless secretions to produce unsaturated fatty acids and ammonia, thus producing a pungent and unpleasant odor.
[0003] The minimally invasive single-hole endoscope - axillary osmidrosis scraping and suction surgery is also a way of dissection. The incision is only about 1 cm. The subcutaneous adipose tissue is separated by the method of anesthesia and swelling. A minimally invasive single-hole endoscope is used to connect an axillary osmidrosis curette to scrape the bilateral axillary large sweat glands close to the skin under the armpit, and the adipose tissue is aspirated and scraped. The minimally invasive single-hole endoscope - axillary osmidrosis scraping and suction surgery has a small incision, less bleeding, short operation time, quick recovery and almost no scar {as shown in the publication number: CN212679219U, a suction and cutting knife suitable for axillary osmidrosis surgery}.
[0004] In order to improve the accurate and clear scraping and suction process under the skin, there is already {as shown in the publication number: CN206414301U, a modified device for minimally invasive axillary large sweat gland removal}, which uses a "miniature camera". However, the "camera" in this "miniature camera" needs to be close to the "cutting blade" and extend into the skin, which will cause contamination of the "camera" at this time, and it is not easy to disinfect, and the whole needs to be replaced and used, resulting in waste. Content of the Utility Model
[0005] The purpose of the utility model is to provide a single-hole visual minimally invasive axillary osmidrosis surgical device in order to solve the above technical problems.
[0006] The utility model specifically adopts the following technical solutions to achieve the above purpose:
[0007] The utility model provides a single-hole visual minimally invasive axillary osmidrosis surgical device, including a scraping and suction rod;
[0008] A housing is fixedly arranged on the scraping and suction rod, and an insertion cavity and a rod cavity are formed therebetween. The two sides of the insertion cavity are respectively communicated with the rod cavity and the outside of the housing, and the rod cavity is communicated with the scraping end of the scraping and suction rod.
[0009] A transparent cover is fixedly arranged between the rod cavity and the outside of the housing to close the rod cavity and communicate with the scraping end of the scraping and suction rod.
[0010] A holding assembly is arranged between the rod cavity and the housing;
[0011] The holding assembly includes a grip housing that fits into the insertion cavity, and a strip housing fixed to the grip housing. The strip housing extends into the rod cavity. A visual component is fixedly installed inside the strip housing and is close to and communicates with the transparent cover. A control assembly for connecting the visual component is provided on the grip housing;
[0012] There are several groups of connected holes provided on the cladding and the grip housing, and fixing members are connected in the connected holes to fix the cladding and the grip housing.
[0013] As a preferred technical solution of the present utility model, the scraping and suction rod, the cladding, and the fixing member are made of stainless steel, and the transparent cover is made of glass.
[0014] As a preferred technical solution of the present utility model, there are multiple groups of the connected holes.
[0015] As a preferred technical solution of the present utility model, the visual component includes a micro lamp and a micro camera both fixedly installed inside the strip housing;
[0016] The control assembly includes a control module and a storage battery fixedly installed inside the grip housing, and a charging port and a button respectively fixedly embedded outside the grip housing. A wireless transmission module is provided on the control module;
[0017] The control module is electrically connected to the micro lamp, the micro camera, the storage battery, and the button respectively, and the storage battery is electrically connected to the charging port.
[0018] As a preferred technical solution of the present utility model, the scraping and suction rod includes a pumping rod fixed to the cladding, and a scraping component and a connecting head are respectively fixedly provided at both ends of the pumping rod.
[0019] As a preferred technical solution of the present utility model, the scraping component includes a scraping block, a scraping opening provided inside the scraping block, a connecting pipe fixed to one side of the scraping block, and a connecting port provided on the scraping block. The inside of the connecting pipe is threadedly connected to one end of the pumping rod, and the connecting port communicates the scraping opening with the inside of the pumping rod.
[0020] As a preferred technical solution of the present utility model, a negative pressure device is connected to the outside of the connecting head to sequentially connect and suck through the connecting head, the pumping rod, the connecting port, and the scraping opening.
[0021] The beneficial effects of the present utility model are as follows:
[0022] By means of the insertion cavity and the rod cavity 3, part of the holding assembly 5 is shielded, especially the strip housing 52 and the visual component are covered, so that it will not be contaminated when contacting the treatment site. At the same time, the scraping and suction rod 1, the cladding 2, the rod cavity 3, the transparent cover 4, the connected holes 6, and the fixing member 7 are disassembled and assembled with the holding assembly 5, and can be conveniently separated and disinfected to provide repeated use. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic structural diagram of the present utility model;
[0024] Figure 2 It is a schematic diagram of the split structure of the utility model.
[0025] Figure numerals: scraping rod-1, shell-2, rod cavity-3, transparent cover-4, holding assembly-5, connecting hole-6, fixing part-7, pulling rod-11, scraping assembly-12, connecting head-13, scraping block-121, scraping mouth-122, connecting tube-123, connecting mouth-124, grip shell-51, strip shell-52, miniature light-53, miniature camera-54, control module-55, battery-56, charging port-57, button-58. DETAILED DESCRIPTION
[0026] Embodiment 1:
[0027] like Figure 1 As shown, this embodiment proposes: a single-hole visualized underarm odor minimally invasive surgical device, comprising a scraping and suction rod 1;
[0028] The scraper and suction rod 1 is fixedly provided with a shell 2 and an insertion cavity and a rod cavity 3 are formed therebetween, and the two sides of the insertion cavity are respectively connected with the rod cavity 3 and the outside of the shell 2, and the rod cavity 3 is connected to the scraping supply end of the scraper and suction rod 1 (as shown in the figure, the shell 2 is between the top ends of the scraper and suction rod 1, the right end of the scraper and suction rod 1 is the scraping supply end, and there is a gap between the left end of the shell 2 and the right end of the scraper and suction rod 1, and the rod cavity 3 is long and thin, the insertion cavity is larger and connected to the left end of the rod cavity 3, and the right end of the rod cavity 3 is close to the scraping supply end of the scraper and suction rod 1);
[0029] A transparent cover 4 is fixedly arranged outside the rod cavity 3 and the shell 2 to close the rod cavity 3 and connect the scraping end of the scraping and suction rod 1 (as shown in the figure, the left end of the rod cavity 3 is open and connected to the right end of the scraping and suction rod 1, and a closed transparent cover 4 is arranged at the next open position to provide shielding);
[0030] A gripping assembly 5 is provided between the rod cavity 3 and the enclosure 2;
[0031] The grip assembly 5 includes a grip shell 51 that fits into the insertion cavity, and a bar shell 52 fixed to the grip shell 51, and the bar shell 52 is inserted into the rod cavity 3 (as shown in the figure, the shape of the grip assembly 5 corresponds to the insertion cavity and the rod cavity 3, and is larger on the left and smaller on the right. From left to right, the bar shell 52 can be inserted into the rod cavity 3 through the insertion cavity, and the grip shell 51 fits in the insertion cavity);
[0032] The visible component is fixed in the bar shell 52 and is close to and connected to the transparent cover 4. The grip shell 51 is provided with a control component for connecting the visible component. The visible component is built into the bar shell 52, and can be directly inserted into and taken out of the rod cavity 3 through the bar shell 52 to visually face the right end of the scraping and suction rod 1 through the transparent cover 4, providing shielded use without contamination and easy operation.
[0033] A number of groups of communicating connecting holes 6 are provided on the cladding 2 and the grip shell 51. A fixing member 7 is connected inside the connecting holes 6 to fix the cladding 2 and the grip shell 51. According to the above, after inserting into the insertion cavity and the rod cavity 3, it is aligned by the connecting holes 6, and then the fixing member 7 is used for connection and fixation to be used integrally;
[0034] Among them, a plurality of groups of the connecting holes 6 are provided (as Figure 2 shown, a plurality of connecting holes 6 are provided to improve the stability strength after assembly);
[0035] The scraping and suction rod 1, the cladding 2 and the fixing member 7 are made of stainless steel, etc., and the transparent cover 4 is made of glass, etc., and can be used together for high-temperature sterilization after use (such as autoclaving, etc.);
[0036] The visual component includes a micro lamp 53 and a micro camera 54 both fixedly installed in the strip shell 52 (installed at the left end position of the strip shell 52 as shown in the figure to provide light for the use environment and photograph the subcutaneous treatment environment);
[0037] The control component includes a control module 55 and a storage battery 56 fixedly installed in the grip shell 51, and a charging port 57 and a button 58 respectively fixedly embedded outside the grip shell 51. The control module 55 is provided with a wireless transmission module (the wireless transmission module is Bluetooth or WiFi, etc., the charging port 57 can be a USB charging port, etc., and the storage battery 56 can be a lithium battery, etc.), (the charging port 57 is connected to power by an external wire to charge the storage battery 56, the operation button 58 is turned on for use, and the computer during use is connected by the wireless transmission module and its display, smart phone, or tablet, etc., and the micro lamp 53 and the micro camera 54 are turned on for use);
[0038] The control module 55 is electrically connected to the micro lamp 53, the micro camera 54, the storage battery 56 and the button 58 respectively, and the storage battery 56 is electrically connected to the charging port 57 (the used components of this part are existing);
[0039] According to the above, to further understand the specific structural composition clearly, that is, the structure of the holding component 5: it can be a specific structure similar to the "imaging part, charging port, PCBA, battery, function button" in "CN214342916U";
[0040] Or it can be the specific structure of the "imaging, charging port, PCBA, battery, function button" applied in the existing product: "Product number: F77J9TS7S76H86, high-definition visual wireless wifi intelligent ear picker and ear spoon set ear cleaner".
[0041] Embodiment 2:
[0042] Such as Figure 1As shown, the difference from Embodiment 1 is that it further includes the specific implementation structure of the scraping and suction rod 1. The scraping and suction rod 1 includes a suction rod 11 fixed to the housing 2. Scraping components 12 and connecting heads 13 are respectively fixed at both ends of the suction rod 11 (as shown in the figure, the suction rod 11 is a hollow long tubular shape, and the left end of the suction rod 11 is connected and fixed to the connecting head 13, and the scraping component 12 is fixedly installed at the right end of the suction rod 11). According to the above, the right end of the rod cavity 3 is arranged close to the scraping component 12, that is, at the left end of the scraping component 12.
[0043] The specific structure and composition of the scraping component 12 can be as follows: The scraping component 12 includes a scraping block 121, a scraping opening 122 arranged inside the scraping block 121, a connecting pipe 123 fixed to one side of the scraping block 121, and a connecting opening 124 arranged on the scraping block 121. The inside of the connecting pipe 123 is threadedly connected to one end of the suction rod 11. The connecting opening 124 connects the scraping opening 122 and the inside of the suction rod 11 (the bilateral axillary sweat glands close to the axillary skin are scraped off under the skin by the scraping block 121 and temporarily stored in the scraping opening 122. After use, the scraping block 121 can be rotated to threadedly disassemble the connecting pipe 123 from the suction rod 11 for convenient replacement or subsequent disinfection and other treatments). The position of the rod cavity 3 does not touch the connecting pipe 123 so as not to affect the disassembly and assembly of the connecting pipe 123.
[0044] The outside of the connecting head 13 is connected to a negative pressure device (the negative pressure device can be a negative pressure aspirator, etc.) to sequentially connect and aspirate the connecting head 13, the suction rod 11, the connecting opening 124, and the scraping opening 122, so as to conveniently suck out the sweat glands scraped and stored in the scraping opening 122.
[0045] The control mode of the present invention is automatically controlled by a controller. The control circuit of the controller can be realized by simple programming by those skilled in the art. The provision of power also belongs to the common knowledge in the art. And the present invention mainly protects mechanical devices, so the control mode and circuit connection of the present invention will not be further explained in detail.
[0046] The above shows and describes the basic principles, main features and advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic features of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.
[0047] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A single-hole visualized minimally invasive surgical device for axillary odor, comprising a scraping and suction rod (1); It is characterized in that The scraping and suction rod (1) is fixedly provided with a casing (2) and an insertion cavity and a rod cavity (3) are formed therebetween, and both sides of the insertion cavity are respectively connected to the rod cavity (3) and the outside of the casing (2), and the rod cavity (3) is connected to the scraping end of the scraping and suction rod (1); A transparent cover (4) is fixedly provided outside the rod cavity (3) and the casing (2) to close the rod cavity (3) and connect the end of the scraping rod (1) facing the scraping rod (1); A gripping assembly (5) is provided between the rod cavity (3) and the enclosure (2); The grip assembly (5) comprises a grip shell (51) fitted into the cavity and a bar shell (52) fixed to the grip shell (51); the bar shell (52) extends into the rod cavity (3); a visible component is fixedly mounted in the bar shell (52) and is close to and connected to the transparent cover (4); a control assembly for connecting the visible component is provided on the grip shell (51); The enveloping shell (2) and the gripping shell (51) are provided with a plurality of groups of interconnected connecting holes (6), and fixing members (7) are connected in the connecting holes (6) to fix the enveloping shell (2) and the gripping shell (51).
2. The single-hole visualized minimally invasive surgical device for underarm odor according to claim 1, characterized in that: The scraping and suction rod (1), the shell (2) and the fixing member (7) are made of stainless steel, and the transparent cover (4) is made of glass.
3. The single-hole visualized minimally invasive surgical device for underarm odor according to claim 2, characterized in that: The connecting holes (6) are provided in multiple groups.
4. The single-hole visualized minimally invasive surgical device for underarm odor according to claim 3, characterized in that: The visual component comprises a micro lamp (53) and a micro camera (54) both fixedly mounted in the strip housing (52); The control assembly comprises a control module (55) and a storage battery (56) fixedly mounted in the grip shell (51), and a charging port (57) and a button (58) respectively fixedly embedded in the grip shell (51) outside the grip shell (51), and a wireless transmission module is provided on the control module (55); The control module (55) is electrically connected to the micro light (53), the micro camera (54), the storage battery (56) and the button (58) respectively, and the storage battery (56) is electrically connected to the charging port (57).
5. The single-hole visualized minimally invasive surgical device for underarm odor according to claim 4, characterized in that: The scraping and suction rod (1) comprises a suction rod (11) fixed to the cladding shell (2), and two rod ends of the suction rod (11) are respectively fixedly provided with a scraping assembly (12) and a connecting head (13).
6. The single-hole visualized minimally invasive surgical device for underarm odor according to claim 5, characterized in that: The scraping assembly (12) comprises a scraping block (121), a scraping opening (122) provided in the scraping block (121), a connecting pipe (123) fixed to one side of the scraping block (121), and a connecting opening (124) provided on the scraping block (121); the connecting pipe (123) is threadedly connected to one end of a pumping rod (11); and the connecting opening (124) communicates the scraping opening (122) with the inside of the pumping rod (11).
7. The single-hole visualized minimally invasive surgical device for underarm odor according to claim 6, characterized in that: The connecting head (13) is externally connected to a negative pressure device so as to sequentially connect the connecting head (13), the pumping rod (11), the connecting port (124) and the scraping port (122) for suction.
Citation Information
Patent Citations
Improvement device is clear away to wicresoft's armpit apocrine sweat gland
CN206414301U
Suction cutter suitable for bromhidrosis surgery
CN212679219U