Medical diagnosis equipment based on brain-computer

By designing an adjustment mechanism on the EEG machine, the height and angle adjustment are achieved using the support arms, splints and threaded structures, the operation inconvenience caused by different heights of the user is solved and the efficiency of use is improved.

CN223041536UActive Publication Date: 2025-07-01BEIJING NAOZHI XINGYAO TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421828453.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-01
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

Due to the different heights of users, existing EEG machines lack height and angle adjustment functions when used, which leads to inconvenient operation and affects the efficiency of use.

Method used

A medical diagnostic device based on a brain machine is designed, including an adjustment mechanism, and the height and angle adjustment of the electroencephalography machine is realized through the combination of a first support arm, a first splint, a clamp block, a clamp groove, a mounting groove, a nut, a threaded bolt, a second support arm and a mounting plate.

Benefits of technology

Through the setting of the adjustment mechanism, users can adjust the height and angle of the EEG machine according to their height, improve the convenience and efficiency of use, and solve the problem of inconvenience in operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related technical field of medical equipment, in particular to brain-machine-based medical diagnosis equipment which comprises an electroencephalograph, an adjusting mechanism is arranged on the surface of one side of the electroencephalograph, a placement frame is fixedly connected to the surface of one side of the adjusting mechanism, a storage mechanism is arranged on the surface of the upper portion of the placement frame, and the storage mechanism is fixedly connected to the surface of the other side of the electroencephalograph. And a protection mechanism is arranged on the surface of one side of the placement frame. Through arrangement of a first supporting arm, a first clamping plate, a clamping block, a clamping groove, a mounting groove, a nut, a threaded bolt, a second supporting arm and a mounting plate, the angle of the first clamping plate is rotated firstly, then the threaded bolt is rotated to be in threaded connection with the nut, the clamping block can clamp the first clamping plate in the clamping groove at the moment, and therefore the first supporting arm is fixed to the current angle; and then the second supporting arm is adjusted to the required angle according to the process, so that the clamping block can clamp the first clamping plate in the clamping groove in the rotating process, and the second supporting arm and the placement frame are installed together through the installation plate.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical devices, in particular to a brain-computer-based medical diagnostic device. Background Technique

[0002] Medical devices refer to instruments, equipment, appliances, materials or other articles used alone or in combination on the human body, and also include the required software. Medical devices are the most basic elements for medical treatment, scientific research, teaching, institutions, and clinical disciplines, including both professional medical devices and household medical devices, among which there is an electroencephalograph. An electroencephalograph is a bioelectric amplifier used to measure brain electrical signals. Therefore, there is a particular need for a brain-computer-based medical diagnostic device in order to operate it according to the heights of different people.

[0003] Because the heights of users are different, during the use of an electroencephalograph, if the electroencephalograph does not have an adjustment function, it will cause inconvenience in operation during use, which is not conducive to the use of the electroencephalograph. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a brain-computer-based medical diagnostic device to solve the problem proposed in the above background technique that because the heights of users are different, during the use of an electroencephalograph, if the electroencephalograph does not have an adjustment function, it will cause inconvenience in operation during use, which is not conducive to the use of the electroencephalograph.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A brain-computer-based medical diagnostic device, including an electroencephalograph, on one side surface of the electroencephalograph, there is an adjustment mechanism, on one side surface of the adjustment mechanism, there is a placement rack fixedly connected, above the placement rack, there is a storage mechanism arranged, and on one side surface of the placement rack, there is a protection mechanism;

[0006] The adjustment mechanism includes a first support arm, a first clamping plate, a clamping block, a clamping groove, an installation groove, a nut, a threaded bolt, a second support arm, and an installation plate. On one side surface of the electroencephalograph, there is a first support arm installed. On one end surface of the first support arm, there is a first clamping plate fixedly connected. Inside the first clamping plate, there is a clamping block rotatably connected. On one side surface of the clamping block, there is a clamping groove opened. On one side surface of the clamping block, there is an installation groove opened. Inside the installation groove, there is a nut fixedly connected. Inside the nut, there is a threaded bolt threadedly connected. Below the clamping block, there is a fixed plate second support arm, and on one side surface of the placement rack, there is an installation plate fixedly connected.

[0007] Preferably, the first clamping plate and the clamping block form a rotating structure through the clamping groove, and the outer wall size of the nut matches the inner wall size of the installation groove.

[0008] Preferably, the storage mechanism includes an electric slide table, a first support plate, a storage bin, a baffle, a second support plate, a partition, a slider, a placement plate, a shelf plate and a first limiting groove. The inner surface of the placement rack is provided with an electric slide table, one side surface of the electric slide table is fixedly connected with a first support plate, the upper surface of the placement rack is provided with a storage bin, the inner surface of the storage bin is slidably connected with a baffle, one side surface of the placement rack is fixedly connected with a second support plate, the upper surface of the second support plate is slidably connected with a partition, the lower surface of the partition is provided with a first limiting groove, the inside of the first limiting groove is slidably connected with a slider, the lower surface of the slider is fixedly connected with a placement plate, and the inner surface of the placement rack is fixedly connected with a shelf plate.

[0009] Preferably, the storage bin and the baffle form a sliding structure, and the electric slide table and the first support plate form a sliding structure.

[0010] Preferably, the protection mechanism includes a storage groove, a telescopic plate, a second limiting groove, a mounting block, a storage shaft, a handle, a dust-proof cloth, a card hole, a threaded column and a threaded ring. One side surface of the placement rack is provided with a storage groove, the inner surface of the storage groove is slidably connected with a telescopic plate, one side surface of the placement rack is provided with a second limiting groove, one side surface of the placement rack is fixedly connected with a mounting block, one side surface of the mounting block is penetrated and connected with a storage shaft, one end surface of the storage shaft is fixedly connected with a handle, the outer surface of the storage shaft is fixedly connected with a dust-proof cloth, one side surface of the dust-proof cloth is provided with a card hole, one side surface of the placement rack is fixedly connected with a threaded column, and the outer surface of the threaded column is threadedly connected with a threaded ring.

[0011] Preferably, the inner wall size of the second limiting groove is matched with the outer wall size of the telescopic plate, and the threaded column and the threaded ring form a threaded structure.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: for this medical diagnosis device based on brain-computer, through the settings of the first support arm, the first clamping plate, the clamping block, the clamping groove, the installation groove, the nut, the threaded bolt, the second support arm and the installation plate, when in use, when it is necessary to adjust the height and angle of the electroencephalograph according to the user's height, first rotate the angle of the first clamping plate, and then rotate the threaded bolt to be threadedly connected with the nut. At this time, the clamping block will clamp the first clamping plate inside the clamping groove, so as to fix the first support arm at the current angle. Then, adjust the second support arm to the required angle according to the above process. Because the inner wall size of the installation groove is matched with the outer wall size of the nut, the clamping block will clamp the first clamping plate inside the clamping groove during the rotation process, and the second support arm is installed together with the placement rack through the installation plate. Description of the Drawings

[0013] Figure 1This is a schematic diagram of the overall external structure of the present utility model;

[0014] Figure 2 This is a schematic diagram of the overall sectional structure of the present utility model;

[0015] Figure 3 This is a schematic diagram of the structure of the storage groove and the telescopic plate of the present utility model in cooperation;

[0016] Figure 4 This is a schematic diagram of the structure of the clamping block and the first clamping plate of the present utility model in cooperation;

[0017] Figure 5 This is a schematic diagram of the structure of the sliding block and the second support plate of the present utility model in cooperation;

[0018] Figure 6 This is the present utility model Figure 5 The enlarged structure schematic diagram of the A place in it.

[0019] In the figure: 1, electroencephalograph; 2, adjusting mechanism; 201, first support arm; 202, first clamping plate; 203, clamping block; 204, clamping groove; 205, mounting groove; 206, nut; 207, threaded bolt; 208, second support arm; 209, mounting plate; 3, placing rack; 4, storage mechanism; 401, electric sliding table; 402, first support plate; 403, storage bin; 404, baffle; 405, second support plate; 406, partition board; 407, sliding block; 408, placing board; 409, rack board; 410, first limiting groove; 5, protection mechanism; 501, storage groove; 502, telescopic plate; 503, second limiting groove; 504, mounting block; 505, storage shaft; 506, handle; 507, dust-proof cloth; 508, card hole; 509, threaded column; 510, threaded ring. Specific embodiments

[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0021] Please refer to Figures 1-6 , the present utility model provides a technical solution: a medical diagnosis device based on a brain machine, including an electroencephalograph 1, an adjusting mechanism 2 is arranged on one side surface of the electroencephalograph 1, a placing rack 3 is fixedly connected to one side surface of the adjusting mechanism 2, a storage mechanism 4 is arranged on the upper surface of the placing rack 3, and a protection mechanism 5 is arranged on one side surface of the placing rack 3;

[0022] The adjusting mechanism 2 includes a first support arm 201, a first clamping plate 202, a clamping block 203, a clamping groove 204, a mounting groove 205, a nut 206, a threaded bolt 207, a second support arm 208 and a mounting plate 209. A first support arm 201 is mounted on one side surface of the electroencephalograph 1. One end surface of the first support arm 201 is fixedly connected with a first clamping plate 202. The inner surface of the first clamping plate 202 is rotatably connected with a clamping block 203. A clamping groove 204 is formed on one side surface of the clamping block 203. A mounting groove 205 is formed on one side surface of the clamping block 203. The inner surface of the mounting groove 205 is fixedly connected with a nut 206. The inner surface of the nut 206 is threadedly connected with a threaded bolt 207. The lower surface of the clamping block 203 is fixedly connected with a fixed plate second support arm 208. One side surface of the placement rack 3 is fixedly connected with a mounting plate 209. Through the settings of the first support arm 201, the first clamping plate 202, the clamping block 203, the clamping groove 204, the mounting groove 205, the nut 206, the threaded bolt 207, the second support arm 208 and the mounting plate 209, when in use, when it is necessary to adjust the height and angle of the electroencephalograph 1 according to the user's height, first rotate the angle of the first clamping plate 202, and then rotate the threaded bolt 207 to be threadedly connected with the nut 206. At this time, the clamping block 203 will clamp the first clamping plate 202 inside the clamping groove 204, so as to fix the first support arm 201 at the current angle. Then adjust the second support arm 208 to the required angle according to the above process. Because the inner wall size of the mounting groove 205 matches the outer wall size of the nut 206, the clamping block 203 will clamp the first clamping plate 202 inside the clamping groove 204 during the rotation process. The second support arm 208 is installed together with the placement rack 3 through the mounting plate 209.

[0023] Further, the first clamping plate 202 and the clamping block 203 constitute a rotating structure through the clamping groove 204. The outer wall size of the nut 206 matches the inner wall size of the mounting groove 205. Through the setting of the nut 206, because the inner wall size of the mounting groove 205 matches the outer wall size of the nut 206, the clamping block 203 will clamp the first clamping plate 202 inside the clamping groove 204 during the rotation process.

[0024] Further, the storage mechanism 4 includes an electric slide table 401, a first support plate 402, a storage bin 403, a baffle 404, a second support plate 405, a partition plate 406, a slider 407, a placement plate 408, a frame plate 409, and a first limiting groove 410. The inner surface of the placement rack 3 is equipped with an electric slide table 401. One side surface of the electric slide table 401 is fixedly connected to a first support plate 402. The upper surface of the placement rack 3 is provided with a storage bin 403. The inner surface of the storage bin 403 is slidably connected to a baffle 404. One side surface of the placement rack 3 is fixedly connected to a second support plate 405. The upper surface of the second support plate 405 is slidably connected to a partition plate 406. The lower surface of the partition plate 406 is provided with a first limiting groove 410. The inside of the first limiting groove 410 is slidably connected to a slider 407. The lower surface of the slider 407 is fixedly connected to a placement plate 408. The inner surface of the placement rack 3 is fixedly connected to a frame plate 409. Through the settings of the electric slide table 401, the first support plate 402, the storage bin 403, the baffle 404, the second support plate 405, the partition plate 406, the slider 407, the placement plate 408, the frame plate 409, and the first limiting groove 410, when not in use, when the display screen needs to be stored, first turn on the electric slide table 401. At this time, the electric slide table 401 will drive the first support plate 402 to move downward, so as to store the display screen above the first support plate 402 into the interior of the placement rack 3. Then pull the baffle 404 inside the storage bin 403 to form a closure above the placement rack 3. Then push the placement plate 408. At this time, the placement plate 408 will be slidably stored through the settings of the slider 407 and the first limiting groove 410, so as to store the mouse, keyboard, etc. Finally, push the partition plate 406 to store it into the interior of the placement rack 3.

[0025] Further, the storage bin 403 and the baffle 404 form a sliding structure, and the electric slide table 401 and the first support plate 402 form a sliding structure. Through the setting of the baffle 404, the upper part of the placement rack 3 can be closed.

[0026] Further, the protection mechanism 5 includes a storage groove 501, a telescopic plate 502, a second limiting groove 503, a mounting block 504, a storage shaft 505, a handle 506, a dust-proof cloth 507, a card hole 508, a threaded column 509, and a threaded ring 510. A storage groove 501 is formed on one side surface of the placement rack 3. The inner surface of the storage groove 501 is slidably connected to a telescopic plate 502. A second limiting groove 503 is formed on one side surface of the placement rack 3. A mounting block 504 is fixedly connected to one side surface of the placement rack 3. A storage shaft 505 penetrates through one side surface of the mounting block 504. One end surface of the storage shaft 505 is fixedly connected to a handle 506. A dust-proof cloth 507 is fixedly connected to the outer surface of the storage shaft 505. A card hole 508 is formed on one side surface of the dust-proof cloth 507. A threaded column 509 is fixedly connected to one side surface of the placement rack 3. The outer surface of the threaded column 509 is threadedly connected to a threaded ring 510. Through the settings of the storage groove 501, the telescopic plate 502, the second limiting groove 503, the mounting block 504, the storage shaft 505, the handle 506, the dust-proof cloth 507, the card hole 508, the threaded column 509, and the threaded ring 510, when not in use and when the instrument needs to be protected, first pull the telescopic plate 502 inside the storage groove 501. At this time, the telescopic plate 502 will move through the second limiting groove 503. Then pull the dust-proof cloth 507. Next, snap the dust-proof cloth 507 onto the outer side of the threaded column 509 through the card hole 508. Finally, rotate the threaded ring 510 to threadedly connect the threaded ring 510 and fix it in the current position, thereby preventing insects and dust from contaminating or damaging the instrument. When in use, the handle 506 can be rotated, and then the storage shaft 505 drives the dust-proof cloth 507 to be wound up.

[0027] Further, the inner wall size of the second limiting groove 503 matches the outer wall size of the telescopic plate 502. The threaded column 509 and the threaded ring 510 form a threaded structure. Through the setting of the threaded ring 510, the threaded ring 510 can be rotated to threadedly connect the threaded ring 510 and fix the dust-proof cloth 507 in the current position.

[0028] Working principle: When it is necessary to adjust the height and angle of the electroencephalograph 1 according to the user's height, first rotate the angle of the first clamping plate 202, and then rotate the threaded bolt 207 to be threadedly connected to the nut 206. At this time, the clamping block 203 will clamp the first clamping plate 202 inside the clamping groove 204, so as to fix the first support arm 201 at the current angle. Then, adjust the second support arm 208 to the required angle according to the above process. Because the inner wall size of the installation groove 205 matches the outer wall size of the nut 206, the clamping block 203 will clamp the first clamping plate 202 inside the clamping groove 204 during the rotation process. The second support arm 208 is installed together with the placement rack 3 through the mounting plate 209. When it is necessary to protect the instrument, first pull the telescopic plate 502 inside the storage groove 501. At this time, the telescopic plate 502 will move through the second limiting groove 503, and then pull the dust-proof cloth 507. Then, snap the dust-proof cloth 507 onto the outside of the threaded column 509 through the card hole 508. Finally, rotate the threaded ring 510 to be threadedly connected to the threaded ring 510 and fix it in the current position, so as to prevent insects and dust from contaminating or damaging the instrument. When in use, the handle 506 can be rotated, and then the storage shaft 505 is driven to wind up the dust-proof cloth 507. When it is necessary to protect the instrument, first pull the telescopic plate 502 inside the storage groove 501. At this time, the telescopic plate 502 will move through the second limiting groove 503, and then pull the dust-proof cloth 507. Then, snap the dust-proof cloth 507 onto the outside of the threaded column 509 through the card hole 508. Finally, rotate the threaded ring 510 to be threadedly connected to the threaded ring 510 and fix it in the current position, so as to prevent insects and dust from contaminating or damaging the instrument. When in use, the handle 506 can be rotated, and then the storage shaft 505 is driven to wind up the dust-proof cloth 507.

[0029] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A medical diagnostic device based on brain-computer interaction, comprising an electroencephalogram (1), characterized in that: The electroencephalograph (1) has an adjustment mechanism (2) disposed on one side surface, a placement rack (3) is fixedly connected to one side surface of the adjustment mechanism (2), a storage mechanism (4) is disposed on the upper surface of the placement rack (3), and a protection mechanism (5) is disposed on one side surface of the placement rack (3); The adjusting mechanism (2) comprises a first supporting arm (201), a first clamping plate (202), a clamping block (203), a clamping groove (204), a mounting groove (205), a nut (206), a threaded bolt (207), a second supporting arm (208) and a mounting plate (209); the first supporting arm (201) is mounted on one side surface of the electroencephalograph (1); the first clamping plate (202) is fixedly connected to one end surface of the first supporting arm (201); and the inner surface of the first clamping plate (202) is rotatably connected to the second supporting arm (208). A clamping block (203), a clamping groove (204) is provided on one side surface of the clamping block (203), a mounting groove (205) is provided on one side surface of the clamping block (203), a nut (206) is fixedly connected to the inner side surface of the mounting groove (205), a threaded bolt (207) is threadedly connected to the inner side surface of the nut (206), a second support arm (208) of a fixing plate is fixedly connected to the lower surface of the clamping block (203), and a mounting plate (209) is fixedly connected to the one side surface of the placement rack (3).

2. A brain-computer-based medical diagnostic device according to claim 1, characterized in that: The first clamping plate (202) forms a rotating structure with the clamping block (203) through the clamping groove (204), and the outer wall size of the nut (206) matches the inner wall size of the installation groove (205).

3. The brain-computer-based medical diagnostic device according to claim 1, characterized in that: The storage mechanism (4) comprises an electric slide (401), a first support plate (402), a storage bin (403), a baffle (404), a second support plate (405), a partition plate (406), a slider (407), a placement plate (408), a shelf plate (409) and a first limiting groove (410); the inner surface of the placement rack (3) is provided with an electric slide (401); a side surface of the electric slide (401) is fixedly connected to the first support plate (402); the upper surface of the placement rack (3) is provided with a storage bin (403); The inner surface of the support frame (403) is slidably connected to a baffle (404), one side surface of the placement rack (3) is fixedly connected to a second support plate (405), the upper surface of the second support plate (405) is slidably connected to a partition (406), the lower surface of the partition (406) is provided with a first limiting groove (410), the interior of the first limiting groove (410) is slidably connected to a slider (407), the lower surface of the slider (407) is fixedly connected to a placement plate (408), and the inner surface of the placement rack (3) is fixedly connected to a shelf plate (409).

4. A brain-computer-based medical diagnostic device according to claim 3, characterized in that: The storage bin (403) and the baffle (404) form a sliding structure, and the electric slide (401) and the first support plate (402) form a sliding structure.

5. The brain-computer-based medical diagnostic device according to claim 1, characterized in that: The protective mechanism (5) comprises a storage groove (501), a telescopic plate (502), a second limiting groove (503), a mounting block (504), a storage shaft (505), a handle (506), a dustproof cloth (507), a clamping hole (508), a threaded column (509) and a threaded ring (510); a storage groove (501) is provided on one side surface of the placement rack (3); the telescopic plate (502) is slidably connected to the inner side surface of the storage groove (501); a second limiting groove (503) is provided on one side surface of the placement rack (3); A mounting block (504) is fixedly connected to one side surface of the mounting block (504), a storage shaft (505) is connected through one side surface of the mounting block (504), a handle (506) is fixedly connected to one end surface of the storage shaft (505), a dustproof cloth (507) is fixedly connected to the outer side surface of the storage shaft (505), a clamping hole (508) is provided on one side surface of the dustproof cloth (507), a threaded column (509) is fixedly connected to one side surface of the placement rack (3), and a threaded ring (510) is threadedly connected to the outer side surface of the threaded column (509).

6. A brain-computer-based medical diagnostic device according to claim 5, characterized in that: The inner wall size of the second limiting groove (503) matches the outer wall size of the telescopic plate (502), and the threaded column (509) and the threaded ring (510) form a threaded structure.