Measuring equipment for breast enlargement surgery

Through automatic adjustment of support components and adjustment components and three-position scanning technology, the problem of manual adjustment of existing breast augmentation surgical measurement equipment is solved, and efficient and accurate chest measurement is achieved.

CN223208412UActive Publication Date: 2025-08-12XIAMEN SIMING MEILIXINGHOU PLASTIC SURGERY CLINIC CO LTD
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Patent Information

Application Number
CN202421365236.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-14
Publication Date
2025-08-12
Estimated Expiration
2034-06-14

AI Technical Summary

Technical Problem

The existing measurement equipment for breast augmentation surgery requires manual assistance for measurement, which leads to manual adjustment of the position of the measurement tool for different groups of people, which is time-consuming and labor-intensive and reduces the measurement efficiency.

Method used

The support component, the first adjustment component, the second adjustment component and the measurement component are used to cooperate with each other to automatically adjust the position of the measurement component to adapt to the chest of different people. The first scanning head and the second scanning head are combined to perform three-digit scanning measurements, and the measurement data is automatically summarized and analyzed through the data processing module.

Benefits of technology

It realizes that it automatically adapts to different groups of people without manual adjustment, improves measurement efficiency, more accurate results, and faster and more efficient scanning methods.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of measuring equipment, in particular to measuring equipment for breast enlargement surgery. The technical problems that an existing measuring device for the breast enlargement surgery usually needs manual assistance for measurement, the position of a measuring tool needs to be manually adjusted for adaptation for different crowds, time and labor are wasted, and the measuring efficiency is reduced are solved, and compared with a traditional measuring device for the breast enlargement surgery, the measuring device for the breast enlargement surgery has the advantages that the measuring efficiency is improved; comprising a supporting assembly, a first adjusting assembly, a second adjusting assembly, a third adjusting assembly and a measuring assembly, the first adjusting assembly, the second adjusting assembly and the third adjusting assembly are matched with one another to automatically adjust the position of a measuring cover on the measuring assembly so as to be matched with the breasts of different people, manual adjustment is not needed, and more convenience and rapidness are achieved; by arranging the measuring assembly with the first scanning head and the second scanning head, the size condition of the chest can be measured by conducting three-position scanning on the chest, and compared with traditional manual measurement, the measurement is faster and more efficient, and the measurement efficiency is higher.
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Description

Technical Field

[0001] The utility model relates to the field of measuring equipment, in particular to a measuring equipment for breast augmentation surgery. Background Art

[0002] Breast augmentation surgery is a method of improving breast size and shape through medical aesthetic means. Common surgical methods include breast augmentation injections and breast implants. Breast augmentation surgery can significantly change the shape of the breasts, making them fuller and firmer, thereby enhancing overall beauty. It can also enhance women's self-confidence, improve quality of life, and meet personalized needs. In order to determine the breast shape and size, select appropriate prostheses, assist in surgical plan design, reduce postoperative disputes, and improve surgical results, relevant measuring tools are usually used to measure the breasts during breast augmentation surgery. The measuring equipment used for breast augmentation surgery is mainly used to accurately assess the size and shape of the breasts and determine the surgical plan. Existing measuring equipment for breast augmentation surgery usually requires manual assistance for measurement. The position of the measuring tool needs to be manually adjusted to adapt to different people, which is time-consuming and labor-intensive, resulting in reduced measurement efficiency. Utility Model Content

[0003] In order to overcome the existing breast augmentation surgery measurement equipment, manual assistance is usually required for measurement. The position of the measuring tool needs to be manually adjusted to adapt to different groups of people, which is time-consuming and labor-intensive, resulting in reduced measurement efficiency.

[0004] The technical solution of the utility model is: a measuring device for breast augmentation surgery, including a support component, a first adjustment component, a second adjustment component, a third adjustment component and a measuring component, the upper end side of the support component is symmetrically provided with two groups of first adjustment components for controlling the up and down movement of the second adjustment component, the outer side of the first adjustment component is rotatably connected to the second adjustment component for adjusting the position of the third adjustment component, the middle part of the second adjustment component is provided with the third adjustment component for controlling the position of the measuring component, and the middle part of the upper end of the support component is provided with a measuring component for measuring breast size and related information.

[0005] Preferably, by setting the first adjustment component, the second adjustment component and the third adjustment component, the position of the measuring cover on the measuring component can be automatically adjusted to adapt to the chest of different people without manual adjustment, which is more convenient and quick. By setting the measuring component with the first scanning head and the second scanning head, the size of the chest can be measured by performing a three-dimensional scan of the chest, which is faster and more efficient than traditional manual measurement, and the measurement results are more accurate, which can greatly improve the measurement efficiency.

[0006] Preferably, the support assembly includes a backrest, a base and an anti-slip pad. The backrest is used for people with breast augmentation to lean their backs to keep them straight. The lower end of the backrest is provided with a base for supporting the backrest and for people to stand. The lower end of the base is fitted with an anti-slip pad for increasing friction. The upper parts of the left and right ends of the backrest are relatively provided with sliding grooves for the sliding of the first adjustment assembly. By providing anti-slip pads to increase friction, the stability of the base can be increased, making it less likely to slide or deflect.

[0007] Preferably, the first adjustment component includes a threaded rod, a slider and a first drive motor. The threaded rods are symmetrically provided in two groups. The outer sides of the two groups of threaded rods are both provided with sliders for sliding. The first drive motor drives the threaded rod to rotate to drive the slider to slide. By setting the first drive motor to drive the threaded rod to rotate to drive the slider to move up and down along its surface, the height of the measuring cover can be adjusted to make it suitable for people of different heights.

[0008] Preferably, the second adjusting component includes a first electric push rod, a first telescopic cylinder and a second drive motor. The ends of the two groups of sliders that are away from each other are rotatably connected to the first electric push rod for telescopically controlling the movement of the third adjusting component. The first telescopic cylinder for controlling the movement of the first electric push rod is fixedly connected between the first electric push rod and the third adjusting component. The outer side of the connection end of the first electric push rod and the slider is provided with a second drive motor for driving the first electric push rod to rotate. By setting the second drive motor to drive the first electric push rod to rotate, the third adjusting component is driven to rotate synchronously, so that the measuring cover can be adjusted to the required position by rotation.

[0009] Preferably, the third adjustment component includes a mounting plate, a second electric push rod and a second telescopic cylinder. Two groups of second electric push rods for controlling the position of the measuring component are symmetrically arranged at one end of the mounting plate close to the back plate. A second telescopic cylinder for controlling the movement of the second electric push rod is fixedly installed at one end of the mounting plate away from the back plate. The second telescopic cylinder is provided with an output shaft. The output shaft of the second telescopic cylinder passes through one end of the mounting plate and extends to the other end to control the movement of the second electric push rod. By setting the second telescopic cylinder to control the back and forth movement of the second electric push rod, the measuring hood can be adjusted to cover the chest of different people during measurement.

[0010] Preferably, the measuring assembly includes a measuring cover, a first scanning head, a second scanning head, a control module, a connecting line and a data processing module. Two groups of measuring covers are symmetrically arranged, and both groups of measuring covers are fixedly connected to the end of the second electric push rod. The inner bottom of the measuring cover is surrounded by multiple groups of first scanning heads for scanning the chest directly to detect its size and related information. The inner wall of the measuring cover is surrounded by multiple groups of second scanning heads for scanning the sides of the chest to detect its size and related information. By arranging multiple groups of first scanning heads and second scanning heads around the measuring cover, the chest can be scanned at multiple angles, thereby making the scanning measurement results more accurate.

[0011] Preferably, a control module for controlling the working status of the first scanning head and the second scanning head is fixedly installed on the upper end of the measuring hood. Both sets of control modules are electrically connected to the data processing module through connecting lines. The data processing module is used to summarize and analyze the measurement data of the chest by the first scanning head and the second scanning head. The lower end of the data processing module is fixedly connected to the upper end of the back plate. By setting up a data processing module electrically connected to the measuring hood, the measurement data can be automatically summarized and analyzed, so that a more comprehensive analysis result can be quickly obtained.

[0012] Beneficial effects of the utility model:

[0013] 1. Compared with traditional breast augmentation surgery measurement equipment, which usually requires manual assistance for measurement, the position of the measuring tool needs to be manually adjusted to adapt to different people, which is time-consuming and labor-intensive, resulting in reduced measurement efficiency. By providing a first adjustment component, a second adjustment component, and a third adjustment component, the position of the measurement cover on the measurement component can be automatically adjusted to adapt to different people's breasts without manual adjustment, which is more convenient and quicker. The first adjustment component can be used to control the measurement cover to move up and down to accommodate people of different heights. The first drive motor can be used to drive the threaded rod to rotate, so that the threaded rod can drive the slider to move up and down along its surface during rotation to adjust the height of the measurement cover. The second adjustment component can be used to control the third adjustment component to adjust the position of the measurement cover to an unobstructed position when not in use. The first telescopic cylinder can be used to control the first electric push rod to move horizontally to drive the third adjustment component to synchronize its position to adjust it to different positions. The second drive motor can be used to drive the first electric push rod to rotate to drive the third adjustment component to rotate synchronously, so that the measurement cover can be adjusted to a desired position by rotation.

[0014] 2. By setting a third adjustment component, the measuring hood can be controlled to move to adjust the distance between it and the chest. By setting a second telescopic cylinder, the second electric push rod can be controlled to move back and forth, so that the measuring hood can be adjusted to cover the chest of different people during measurement. By setting a measuring component with a first scanning head and a second scanning head, the size of the chest can be measured by performing a three-dimensional scan of the chest, which is faster and more efficient than traditional manual measurement, and the measurement results are more accurate, which can greatly improve the measurement efficiency. By setting a symmetrical measuring hood, the chest can be covered. By arranging multiple groups of first scanning heads and second scanning heads around the measuring hood, the chest can be scanned at multiple angles, thereby making the scanning measurement results more accurate. By setting a data processing module electrically connected to the measuring hood, the measurement data can be automatically summarized and analyzed, so that a more comprehensive analysis result can be quickly obtained. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 Shown is an overall schematic diagram of the measuring device for breast augmentation surgery of the present invention;

[0016] Figure 2 Shown is a schematic diagram of the support assembly of the measuring device for breast augmentation surgery of the present invention;

[0017] Figure 3 Shown is a schematic diagram of the first adjustment component in the measuring device for breast augmentation surgery of the present invention;

[0018] Figure 4 Shown is a schematic diagram of the third adjustment component in the measuring device for breast augmentation surgery of the present invention;

[0019] Figure 5 Shown is a schematic diagram of the measuring components in the measuring device for breast augmentation surgery of the present invention.

[0020] Explanation of the accompanying drawings: 1. Support assembly; 2. First adjustment assembly; 3. Second adjustment assembly; 4. Third adjustment assembly; 5. Measuring assembly; 101. Back plate; 102. Base; 103. Slide groove; 104. Anti-slip pad; 201. Threaded rod; 202. Slider; 203. First drive motor; 301. First electric push rod; 302. First telescopic cylinder; 303. Second drive motor; 401. Mounting plate; 402. Second electric push rod; 403. Second telescopic cylinder; 501. Measuring cover; 502. First scanning head; 503. Second scanning head; 504. Control module; 505. Connecting line; 506. Data processing module. DETAILED DESCRIPTION

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] See also Figure 1 The utility model provides an embodiment: a measuring device for breast augmentation surgery, comprising a support component 1, a first adjustment component 2, a second adjustment component 3, a third adjustment component 4 and a measuring component 5. The upper end side of the support component 1 is symmetrically provided with two groups of first adjustment components 2 for controlling the up and down movement of the second adjustment component 3. The outer side of the first adjustment component 2 is rotatably connected with the second adjustment component 3 for adjusting the position of the third adjustment component 4. The middle part of the second adjustment component 3 is provided with the third adjustment component 4 for controlling the position of the measuring component 5. The middle part of the upper end of the support component 1 is provided with a measuring component 5 for measuring breast size and related information.

[0023] See also Figure 2 In this embodiment, the support component 1 includes a backrest 101, a base 102 and an anti-slip pad 104. The backrest 101 is used for people with breast augmentation to lean their backs to make them straight. The lower end of the backrest 101 is provided with a base 102 for supporting the backrest 101 and for people to stand. The lower end of the base 102 is fitted with an anti-slip pad 104 for increasing friction. The upper parts of the left and right ends of the backrest 101 are relatively provided with sliding grooves 103 for the sliding of the first adjustment component 2. By providing the anti-slip pad 104 to increase friction, the stability of the base 102 can be increased, making it less likely to slide or deflect.

[0024] See also Figure 3 In this embodiment, the first adjustment component 2 includes a threaded rod 201, a slider 202 and a first drive motor 203. The threaded rod 201 is symmetrically provided with two groups. The outer sides of the two groups of threaded rods 201 are both provided with sliders 202 for sliding. The first drive motor 203 drives the threaded rod 201 to rotate and drives the slider 202 to slide. By setting the first drive motor 203 to drive the threaded rod 201 to rotate, the slider 202 is driven to move up and down along its surface to adjust the height of the measuring cover 501 so that it is suitable for people of different heights. The second adjustment component 3 includes a first electric push rod 301, a first telescopic cylinder 302 and a second drive motor 303, the ends of the two groups of sliders 202 that are away from each other are both rotatably connected to the first electric push rod 301 for telescopically controlling the movement of the third adjusting component 4, and the first telescopic cylinder 302 for controlling the movement of the first electric push rod 301 is fixedly connected between the first electric push rod 301 and the third adjusting component 4. A second drive motor 303 for driving the first electric push rod 301 to rotate is provided on the outer side of the connection end of the first electric push rod 301 and the slider 202. By setting the second drive motor 303 to drive the first electric push rod 301 to rotate, the third adjusting component 4 is driven to rotate synchronously, so that the measuring cover 501 can be adjusted to the required position by rotation.

[0025] See also Figure 4In this embodiment, the third adjustment component 4 includes a mounting plate 401, a second electric push rod 402 and a second telescopic cylinder 403. Two groups of second electric push rods 402 for controlling the position of the measuring component 5 are symmetrically arranged at one end of the mounting plate 401 close to the support plate 101. A second telescopic cylinder 403 for controlling the movement of the second electric push rod 402 is fixedly installed at one end of the mounting plate 401 away from the support plate 101. An output shaft is provided on the second telescopic cylinder 403. The output shaft of the second telescopic cylinder 403 passes through one end of the mounting plate 401 and extends to the other end to control the movement of the second electric push rod 402. By setting the second telescopic cylinder 403 to control the back and forth movement of the second electric push rod 402, the measuring cover 501 can be adjusted to cover the chest of different people during measurement.

[0026] See also Figure 5 In this embodiment, the measuring assembly 5 includes a measuring cover 501, a first scanning head 502, a second scanning head 503, a control module 504, a connecting line 505 and a data processing module 506. The measuring cover 501 is symmetrically arranged with two groups. Both groups of measuring covers 501 are fixedly connected to the end of the second electric push rod 402. The inner bottom of the measuring cover 501 is surrounded by multiple groups of first scanning heads 502 for scanning the chest directly to detect its size and related information. The inner wall of the measuring cover 501 is surrounded by multiple groups of second scanning heads 503 for scanning the side of the chest to detect its size and related information. By surrounding the multiple groups of first scanning heads 502 and second scanning heads 503 in the measuring cover 501, The chest is scanned at multiple angles, thereby making the scanning measurement results more accurate. A control module 504 for controlling the working status of the first scanning head 502 and the second scanning head 503 is fixedly installed on the upper end of the measurement cover 501. The two sets of control modules 504 are electrically connected to the data processing module 506 through the connecting line 505. The data processing module 506 is used to summarize and analyze the measurement data of the chest by the first scanning head 502 and the second scanning head 503. The lower end of the data processing module 506 is fixedly connected to the upper end of the back plate 101. By setting the data processing module 506 electrically connected to the measurement cover 501, the measurement data can be automatically summarized and analyzed, so that a more comprehensive analysis result can be quickly obtained.

[0027] When working, first place the support assembly 1 on a stable ground, then let the person who needs breast augmentation stand in the middle of the base 102 and lean their back against the backboard 101 to keep upright;

[0028] Then adjust the second adjustment component 3 and the third adjustment component 4 to a horizontal state, and control the first electric push rod 301 to rotate and adjust it to a horizontal state through the second drive motor 303;

[0029] The measuring cover 501 is then adjusted to a position facing the chest of the person using the first adjustment component 2. The threaded rod 201 is driven to rotate by the first drive motor 203, so that the threaded rod 201 drives the slider 202 to move up and down along its surface during the rotation process to adjust the height of the measuring cover 501.

[0030] Then, the second adjustment component 3 and the third adjustment component 4 cooperate to adjust the measuring cover 501 to cover the chest. The first telescopic cylinder 302 controls the first electric push rod 301 to move horizontally to make a preliminary adjustment to the position of the measuring cover 501. The second telescopic cylinder 403 controls the second electric push rod 402 to move back and forth to fine-tune the position of the measuring cover 501 so that it completely covers the chest.

[0031] Finally, the measurement component 5 performs a three-dimensional scan of the chest to obtain relevant measurement information. The control module 504 controls the first scanning head 502 and the second scanning head 503 to scan and measure the chest. The measurement data is transmitted to the data processing module 506 via the connecting line 505, and the data processing module 506 is used to summarize and analyze the chest measurement data.

[0032] Through the above steps, the staff first places the support component 1 on a stable ground, and then asks the person who needs breast augmentation to stand in the middle position of the base 102, and lean his back against the backboard 101 to keep upright, and then adjusts the second adjustment component 3 and the third adjustment component 4 to a horizontal state, controls the first electric push rod 301 to rotate and adjust it to a horizontal state through the second drive motor 303, and then adjusts the measuring cover 501 to a position opposite to the person's chest through the first adjustment component 2, drives the threaded rod 201 to rotate through the first drive motor 203, so that the threaded rod 201 drives the slider 202 to move up and down along its surface during the rotation to adjust the height of the measuring cover 501, and adjusts the height of the measuring cover 501 by setting the first adjustment component 2 so that it can be suitable for people of different heights, and then adjusts the measuring cover 501 to cover the chest through the cooperation of the second adjustment component 3 and the third adjustment component 4, controls the first electric push rod 301 to move horizontally through the first telescopic cylinder 302 to preliminarily adjust the position of the measuring cover 501, and then controls the second electric push rod 301 to move horizontally through the second telescopic cylinder 403. The push rod 402 moves back and forth to fine-tune the position of the measuring cover 501 so that it completely covers the chest. The second adjustment component 3 and the third adjustment component 4 cooperate to adjust the position of the measuring cover 501 so that it can be used for people of different weights. By providing the first adjustment component 2, the second adjustment component 3, and the third adjustment component 4, the position of the measuring cover 501 on the measuring component 5 can be automatically adjusted to adapt to the chest of different people without manual adjustment, which is more convenient and quick. Finally, the measuring component 5 performs a three-dimensional scan of the chest to measure the relevant information. The control module 504 controls the first scanning head 502 and the second scanning head 503 to scan and measure the chest. The measurement data is transmitted to the data processing module 506 via the connecting line 505. The data processing module 506 summarizes and analyzes the chest measurement data. By providing the measuring component 5 with the first scanning head 502 and the second scanning head 503, the chest size can be measured by a three-dimensional scan method, which is faster and more efficient than traditional manual measurement, and the measurement results are more accurate, which can greatly improve measurement efficiency.

[0033] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.

Claims

1. A measuring device for breast augmentation surgery, comprising a support assembly (1); characterized in that: The invention also comprises a first adjustment component (2), a second adjustment component (3), a third adjustment component (4) and a measuring component (5); two groups of first adjustment components (2) for controlling the up and down movement of the second adjustment components (3) are symmetrically provided on the upper side of the support component (1); the outer side of the first adjustment component (2) is rotatably connected to the second adjustment component (3) for adjusting the position of the third adjustment component (4); the middle part of the second adjustment component (3) is provided with the third adjustment component (4) for controlling the position of the measuring component (5); and the middle part of the upper end of the support component (1) is provided with a measuring component (5) for measuring the chest size and related information.

2. The measuring device for breast augmentation surgery according to claim 1, characterized in that: The support assembly (1) includes a backrest (101), a base (102) and an anti-skid pad (104). The backrest (101) is used for a person having breast augmentation to lean back and straighten their back. The lower end of the backrest (101) is provided with a base (102) for supporting the backrest (101) and for a person to stand. The lower end of the base (102) is fitted with an anti-skid pad (104) for increasing friction. The upper parts of the left and right ends of the backrest (101) are relatively provided with sliding grooves (103) for the sliding of the first adjustment assembly (2).

3. The measuring device for breast augmentation surgery according to claim 1, characterized in that: The first adjustment component (2) comprises a threaded rod (201), a slider (202) and a first drive motor (203). The threaded rod (201) is symmetrically provided with two groups. The outer sides of the two groups of threaded rods (201) are both sleeved with sliders (202) for sliding. The first drive motor (203) drives the slider (202) to slide by driving the threaded rod (201) to rotate.

4. The measuring device for breast augmentation surgery according to claim 1, characterized in that: The second adjustment component (3) comprises a first electric push rod (301), a first telescopic cylinder (302) and a second drive motor (303); the ends of the two sets of sliders (202) that are away from each other are both rotatably connected to the first electric push rod (301) for telescopically controlling the movement of the third adjustment component (4); the first telescopic cylinder (302) for controlling the movement of the first electric push rod (301) is fixedly connected between the first electric push rod (301) and the third adjustment component (4); and the second drive motor (303) for driving the first electric push rod (301) to rotate is provided on the outer side of the connection end between the first electric push rod (301) and the slider (202).

5. The measuring device for breast augmentation surgery according to claim 1, characterized in that: The third adjustment component (4) comprises a mounting plate (401), a second electric push rod (402) and a second telescopic cylinder (403). Two groups of second electric push rods (402) for controlling the position of the measuring component (5) are symmetrically arranged at one end of the mounting plate (401) close to the supporting plate (101). A second telescopic cylinder (403) for controlling the movement of the second electric push rod (402) is fixedly mounted at one end of the mounting plate (401) away from the supporting plate (101). An output shaft is provided on the second telescopic cylinder (403). The output shaft of the second telescopic cylinder (403) passes through one end of the mounting plate (401) and extends to the other end to control the movement of the second electric push rod (402).

6. The measuring device for breast augmentation surgery according to claim 1, characterized in that: The measuring assembly (5) comprises a measuring cover (501), a first scanning head (502), a second scanning head (503), a control module (504), a connecting line (505) and a data processing module (506). The measuring cover (501) is symmetrically provided with two groups, and both groups of measuring covers (501) are fixedly connected to the end of the second electric push rod (402). The inner bottom of the measuring cover (501) is surrounded by a plurality of groups of first scanning heads (502) for scanning the chest in a frontal direction to detect the size and related information thereof. The inner wall of the measuring cover (501) is surrounded by a plurality of groups of second scanning heads (503) for scanning the sides of the chest to detect the size and related information thereof.

7. The measuring device for breast augmentation surgery according to claim 6, characterized in that: A control module (504) for controlling the working states of the first scanning head (502) and the second scanning head (503) is fixedly mounted on the upper end of the measurement cover (501). Both control modules (504) are electrically connected to a data processing module (506) via a connecting line (505). The data processing module (506) is used to summarize and analyze the measurement data of the chest obtained by the first scanning head (502) and the second scanning head (503). The lower end of the data processing module (506) is fixedly connected to the upper end of the back plate (101).