A placement table for EEG detection equipment for neurological diagnosis
Through the design of the lifting module and the locking structure, the problems of unstable installation of equipment components and easy impact of the display screen in the existing placement table are solved, the stable installation of the equipment and the protection of the display screen are achieved, the synchronous movement and on-site separation of the EEG topograph are supported, and the stability and convenience of the equipment are improved.
Patent Information
- Application Number
- CN202510360841.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2045-03-26
AI Technical Summary
When the existing EEG detection equipment placement table is moved, the display screen is easily subjected to external impact, and the components cannot be firmly installed, and the EEG topography device cannot be moved synchronously and used separately on site.
A placement table is designed, which includes a base, a display screen placement unit, a walking unit, a printing unit and an EEG topography device placement component. The device is stably installed and protected through a lifting module, a locking component and a snap-in structure. The display screen tilt angle can be adjusted, and the synchronous movement and on-site separation of the EEG topography device are supported.
It achieves stable installation of various components of the equipment, protects the display screen from impact, supports synchronous movement during movement and on-site separation use, and improves the stability and convenience of the equipment.
Smart Images

Figure CN119879030B_ABST
Abstract
Description
Technical Field
[0001] The present invention specifically relates to a placement table for electroencephalogram (EEG) detection equipment used for neurological diagnosis, and belongs to the technical field of placement tables for EEG detection equipment. Background Art
[0002] During neurological diagnosis, it is usually necessary to use an EEG detection device for diagnostic monitoring. The EEG detection device needs to be installed on a placement table. When in use, in order to facilitate movement, a universal wheel is usually provided at the bottom of the placement table. Existing placement tables such as China Patent Authorization Announcement No.: CN114576528B disclose a placement table for EEG detection equipment for neurological diagnosis. The lower side wall of the bottom plate is provided with a support mechanism, and the upper side wall of the bottom plate is connected to two symmetrically arranged mounting plates through a telescopic mechanism; one of the side walls of the mounting plates is provided with a handle, and the two opposite side walls of the two mounting plates are connected to the placement plate through a leveling mechanism. Through the support mechanism, when in use, the rocker is rotated to separate the universal wheel from the ground, and the support is provided by the support plate, making the support more stable and reliable; then the vacuum fan is used to evacuate the suction cup, so that the suction cup is in a negative pressure state, thereby adsorbing the device more tightly, preventing the device from shaking or even falling during movement or use; however, during the movement of the existing placement table, the touch screen is susceptible to external impact, and the various components of the EEG detection device cannot be firmly installed on the placement table; in addition, the EEG topography device corresponding to the EEG detection device cannot be installed synchronously with other components, and the moving process is inconvenient. Summary of the Invention
[0003] In order to solve the above problems, the present invention proposes a placement table for EEG detection equipment for neurological diagnosis, which can stably install the various components of the EEG detection equipment, protect the display screen during movement, and realize the synchronous movement and on-site separate use of the EEG topography instrument.
[0004] The placement table of the electroencephalogram (EEG) detection equipment for neurological diagnosis of the present invention comprises:
[0005] base;
[0006] A display screen placement unit, comprising a cavity seat fixed to the top surface of the base, a host slot seat provided on the bottom surface of the cavity seat, mesh covers fixed to the host slot seat on the front and rear sides of the cavity seat; a lifting module provided on the inner side of the cavity seat, a back panel cover hingedly connected to the lifting module; a handle provided on the top surface of the back panel cover; a support frame hingedly connected to the back surface of the back panel cover; an inner card seat fixed to the back surface of the back panel cover that is engaged with the support frame;
[0007] The panel is fixed to the top surface of the cavity seat, a flip cavity is fixed on the front side of the top of the panel, and the flip cavity is connected to the cavity seat; an external card seat is fixed on the rear side of the flip cavity of the panel; the support frame is movably engaged with the external card seat;
[0008] The walking unit includes legs mounted on the front side of the base and the rear side of the panel, with walking wheels mounted on the bottom of the legs; the legs on the rear side are convex in structure and are fixedly engaged with a horizontal plate;
[0009] A printing unit, comprising a guide plate disposed between the transverse plate and the cavity seat, wherein a drawer with a hollow top surface is slidably disposed on the guide plate, and a printing device is disposed in the drawer;
[0010] The EEG topography device placement piece is locked with the base.
[0011] During installation, fix the display screen of the EEG detection device to the back panel cover. The back panel cover protects the outside of the display screen. At the same time, the back of the back panel cover is a perforated plate to facilitate heat dissipation of the display screen. Fix the host of the EEG detection device to the host slot. Then, fix the mesh cover on the front and back sides of the host slot. The mesh cover can protect the host and facilitate heat dissipation of the host. Then, pull the drawer out of the guide plate and install the printing device into the drawer. Then, push the drawer and lock the drawer from the guide plate to complete the assembly of the various components of the EEG detection device. Before use, hold the handle , and pull up the back panel cover. When pulling up, it is guided in a straight line by the lifting module. When the back panel cover is pulled up to the top, pull out the support frame, rotate the back panel cover backward, and adjust the display screen to a suitable observation position. Then, engage the support frame with the outer card seat; limit the back panel cover, and separate the EEG topography device placement piece from the base; then the EEG detection device can be used; after use, separate the support frame from the outer card seat, and engage the support frame with the inner card seat; send the back panel cover into the inner side of the cavity seat, and re-lock the EEG topography device placement piece and the base.
[0012] Furthermore, the placement part of the electroencephalogram (EEG) topography instrument includes an outer cylinder seat, a plurality of universal wheels are fixed to the bottom of the outer cylinder seat, a pneumatic rod is fixed to the inner side of the outer cylinder seat; an inner cylinder seat is fixed to the top surface of the pneumatic rod, a plurality of screw holes are provided on the top surface of the inner cylinder seat; a wire reel seat with an I-shaped structure is fixed to the top surface of the inner cylinder seat; a plurality of rows of electrode wire through holes are provided on the wire reel seat; a mounting seat for installing the EEG topography instrument is provided on the inner side of the wire reel seat; a top cover is fixed to the top surface of the wire reel seat, a rail engaged with the base is fixed on the top cover, and a locking piece is provided between the wire reel seat and the base. The EEG topography device placement piece is used to place the EEG topography device, fix the EEG topography device to the mounting base, and the brain electrode cable of the EEG topography device is inserted into the electrode wire hole and connected to the EEG topography device; the brain electrode cables can be wired through the multiple rows of electrode wire holes of the cable reel seat, which is convenient for subsequent identification of the corresponding interfaces of each brain electrode cable; after use, the brain electrode cables are sorted out and coiled onto the cable reel seat; when in use, the EEG topography device placement piece can be pushed to the use position through the universal wheel, and the handle of the pneumatic rod can be turned to adjust the height between the outer cylinder seat and the inner cylinder seat; it is convenient for the brain electrode cable to be connected to the detection part; after use, the rail is movably engaged with the base to realize the positioning of the EEG topography device placement piece and the base; then, the EEG topography device placement piece and the base are locked by the locking piece.
[0013] Furthermore, the locking member includes a first telescopic rod, a ring plate fixed on the upper portion of the first telescopic rod, a first spring body sleeved on the top surface of the ring plate, a slideway is provided under the ring plate, a top block is slidably provided on the inner side of the slideway, and a slope structure is provided on the top surface of the top block; a second telescopic rod is fixed at one end of the top block, and a pull rod is screwed on the other side of the top block; the top surface of the first telescopic rod movably protrudes from the top cover; an embedding hole is provided on the bottom surface of the base, and the top of the first telescopic rod is movably embedded in the embedding hole; the top surface of the first spring body is pressed against the inner surface of the top cover; a second spring body is provided between the top block and the inner surface of the wire drum seat; the pull rod movably extends out of the wire drum seat; when the locking member is in a natural state, due to the action of the second spring body, The top block is moved horizontally toward the side of the second telescopic rod, and the top block slides in the slide to push up the first telescopic rod. When the first telescopic rod is pushed up, the first spring body is compressed by the ring plate, so that the first telescopic rod protrudes from the top cover, and the first telescopic rod is engaged with the embedded hole of the base, so that the base and the EEG topography device placement piece are locked; when the base and the EEG topography device placement piece need to be separated, the pull rod is pulled, and the top block moves toward the side of the pull rod, so that the top block compresses the second spring body, so that the inner rod of the second telescopic rod is stretched horizontally outward. At this time, the slide contacts the slope of the slider, and is subjected to the elasticity of the first spring body, which can push the first telescopic rod down, and the inner rod of the first telescopic rod contracts vertically. At this time, the first telescopic rod is separated from the embedded hole; the base and the EEG topography device placement piece can be slid apart.
[0014] Furthermore, a plurality of cable protection rods are fixed around the reel seat. After use, the brain electrode cable is wound around the outer periphery of the reel seat. After winding, the cable protection rods are used to prevent the cable from slipping off the reel seat.
[0015] Furthermore, the lifting module includes two guide rail seats, and corner seats are fixed on the top and bottom of the guide rail seats. The corner seat at the bottom is fixed to the bottom inner side of the cavity seat, and the corner seat at the top is fixed to the inner side of the flip cavity; a slider is slidingly provided on the guide rail seat, and the slider is hinged to the two sides of the bottom of the back panel cover; the slider slides in cooperation with the guide rail seat, and when the slider slides up and down along the guide rail seat, it can synchronously drive the back panel cover to slide up and down, and the bottom of the back panel cover can be flipped on the slider.
[0016] Furthermore, a guide rail is fixed on the inner side of the cavity seat, and the guide rail is movably connected to the back plate cover; when the back plate cover is received into the inner side of the cavity seat or pulled out from the inner side of the cavity seat, it can be limited and guided by the guide rail.
[0017] Furthermore, a through slot is provided on the rear side of the flip cavity, and a flip cover is hingedly connected to the flip cavity at the lower part of the through slot, and compression springs are provided between the two sides of the flip cover and the flip cavity; when the support frame needs to be flipped, the back panel cover is lifted up, and the flip cover is flipped open, and the support frame is pulled out from the through slot, so that the support frame can be engaged with the outer card seat; after use, the flip cover is flipped outward again, and the back panel cover is put back into the cavity seat; and the flip cover can be reset by the compression spring.
[0018] Furthermore, the external card seat includes a plate seat, the top surface of the plate seat is integrally formed with multiple rear baffles, and the front side of the rear baffle is integrally formed with an arc-shaped limit plate; the rear baffle and the arc-shaped limit plate form a card position, when the support frame is locked into the card position, the rear baffle can lock the rearward position of the support frame, and the arc-shaped limit plate can limit the forward movement of the support frame; so that the support frame is stabilized in the card position.
[0019] Furthermore, an ear hole seat is provided between the drawer and the guide rail plate, and the ear hole seats are locked by a lock; when the printing device needs to be taken out or materials need to be added to the printing device, the lock can be unlocked. After the operation is completed, the lock and the ear hole seat are re-matched to achieve the locking of the drawer and the guide rail plate.
[0020] Furthermore, the support frame includes a frame body rotatably set on the elongated seat body, and a card tube movably engaged with the external card seat is rotatably set on the side of the frame body away from the elongated seat body; when in use, according to the inclination requirement of the display screen, the corresponding connecting part of the external card seat is selected, the frame body is swung, and the card tube is movably engaged with the external card seat, and the card tube is locked by the external card seat.
[0021] Compared with the existing technology, the placement table for EEG detection equipment for neurological diagnosis of the present invention can firmly install the detection host, display screen and printing equipment on the placement table to prevent the detection host, display screen and printing equipment from hitting the placement table during movement; and during the movement of the placement table, it can protect the display screen, and when in use, the inclination angle of the display screen can be adjusted as required; during the movement of the placement table, the EEG topography device can be moved synchronously, and the EEG topography device can be separated and used on site. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a structural schematic diagram of the placement table of the present invention without the drawer and the placement piece for the electroencephalogram (EEG) apparatus.
[0023] Figure 2 This is a schematic diagram of the overall structure of the placement table for EEG detection equipment for neurological diagnosis of the present invention.
[0024] Figure 3 This is a schematic diagram of the overall structure of the placement piece of the electroencephalogram instrument of the present invention.
[0025] Figure 4 It is a schematic diagram of the internal structure of the outer cylinder seat after the cross section of the present invention.
[0026] Figure 5 It is a schematic diagram of the overall structure of the locking member of the present invention.
[0027] Figure 6 This is a schematic diagram of the front structure of the display screen placement unit of the present invention.
[0028] Figure 7 It is a schematic diagram of the back structure of the display screen placement unit of the present invention.
[0029] Figure 8 This is a schematic diagram of the display screen placement unit and guide rail installation structure of the present invention.
[0030] Figure 9 It is a schematic diagram of the overall structure of the external card holder of the present invention.
[0031] Figure 1: Base, 2: Cavity seat, 3: Mesh cover, 4: Back cover, 5: Handle, 6: Support frame, 7: Inner card seat, 8: Panel, 9: Flip cavity, 10: Outer card seat, 11: Support legs, 12: Travel wheels, 13: Horizontal board, 14: Guide rail, 15: Drawer, 16: Printing device, 17: Placement for EEG topography, 18: Outer cylinder seat, 19: Universal wheel, 20: Pneumatic rod, 21: Inner cylinder seat, 22: Wire reel seat, 23: Electrode wire threading Hole, 24, top cover, 25, rail, 26, first telescopic rod, 27, ring plate, 28, first spring body, 29, slide, 30, top block, 31, second telescopic rod, 32, pull rod, 33, second spring body, 34, cable protection support rod, 35, guide rail seat, 36, corner seat, 37, slider, 38, guide rail, 39, flip cover, 40, plate seat, 41, rear baffle, 42, arc limit plate, 43, ear hole seat, 44, frame, 45, clamping tube. DETAILED DESCRIPTION
[0032] Example:
[0033] like Figures 1 to 9 The electroencephalogram (EEG) detection device placement table for neurological diagnosis shown includes:
[0034] Base 1;
[0035] The display placement unit includes a cavity seat 2 fixed to the top surface of the base 1, a host slot seat provided on the bottom surface of the cavity seat 2, and mesh covers 3 fixed to the front and rear sides of the cavity seat 2 at the host slot seat; a lifting module is provided on the inner side of the cavity seat 2, and a back panel cover 4 is hingedly connected to the lifting module; a handle 5 is provided on the top surface of the back panel cover 4; a support frame 6 is hingedly connected to the back of the back panel cover 4; an inner card seat 7 is fixed on the back of the back panel cover 4 to engage with the support frame 6;
[0036] The panel 8 is fixed to the top surface of the cavity seat 2. A flip cavity 9 is fixed to the front side of the top of the panel 8, and the flip cavity 9 is connected to the cavity seat 2. An external card seat 10 is fixed to the rear side of the flip cavity 9 of the panel 8. The support frame 6 is movably engaged with the external card seat 10.
[0037] The walking unit includes a support leg 11 mounted on the front side of the base 1 and the rear side of the panel 8, and a walking wheel 12 is mounted on the bottom of the support leg 11; the support leg 11 on the rear side is a convex structure and is fixedly engaged with a horizontal plate 13;
[0038] The printing unit includes a guide plate 14 provided between the transverse plate 13 and the cavity seat 2, a drawer 15 with a hollow top surface is slidably provided on the guide plate 14, and a printing device 16 is provided in the drawer 15;
[0039] The EEG topography device placement piece 17 is locked and fastened to the base 1 .
[0040] During installation, fix the display screen of the EEG detection device to the back panel cover 4, which protects the outside of the display screen. At the same time, the back of the back panel cover 4 is a perforated plate to facilitate heat dissipation of the display screen; fix the host of the EEG detection device to the host slot seat, then fix the mesh cover 3 on the front and back sides of the host slot seat, which can protect the host and facilitate heat dissipation of the host; then, pull the drawer 15 out of the guide plate 14, and install the printing device 16 into the drawer 15, then push the drawer 15 and lock the drawer 15 from the guide plate 14 to complete the assembly of the various components of the EEG detection device; before use, hold the handle 5 , and pull up the back panel cover 4. When pulling up, it is guided in a straight line by the lifting module. When the back panel cover 4 is pulled up to the top, pull out the support frame 6, rotate the back panel cover 4 backward, and adjust the display screen to a suitable observation position. Then, the support frame 6 is movably engaged with the outer card seat 10; the back panel cover 4 is limited, and the EEG topography placement piece 17 is separated from the base 1; then the EEG detection device can be used; after use, the support frame 6 is separated from the outer card seat 10, and the support frame 6 is engaged with the inner card seat 7; and the back panel cover 4 is sent into the inner side of the cavity seat 2, and the EEG topography placement piece 17 and the base 1 are re-locked.
[0041] The electroencephalogram placement piece 17 includes an outer cylinder seat 18, a plurality of universal wheels 19 are fixed to the bottom of the outer cylinder seat 18, a pneumatic rod 20 is fixed to the inner side of the outer cylinder seat 18; an inner cylinder seat 21 is fixed to the top surface of the pneumatic rod 20, and a plurality of screw holes are provided on the top surface of the inner cylinder seat 21; a wire reel seat 22 with an I-shaped structure is fixed to the top surface of the inner cylinder seat 21; a plurality of rows of electrode wire through-holes 23 are provided on the wire reel seat 22; a mounting seat for installing the electroencephalogram is provided on the inner side of the wire reel seat 22; a top cover 24 is fixed to the top surface of the wire reel seat 22, a rail 25 engaged with the base 1 is fixed on the top cover 24, and a locking piece is provided between the wire reel seat 22 and the base 1. The EEG topography device placement piece 17 is used to place the EEG topography device and fix the EEG topography device to the mounting seat. The brain electrode cable of the EEG topography device is inserted into the electrode wire hole 23 and connected to the EEG topography device. The brain electrode cables can be wired through the multiple rows of electrode wire holes 23 of the wire reel seat 22, which is convenient for identifying the corresponding interfaces of each brain electrode cable later. After use, the brain electrode cables are sorted and coiled onto the wire reel seat 22. When in use, the EEG topography device placement piece 17 can be pushed to the use position through the universal wheel 19, and the height between the outer cylinder seat 18 and the inner cylinder seat 21 can be adjusted by toggling the handle of the pneumatic rod 20, so as to facilitate the access of the brain electrode cable to the detection part. After use, the rail 25 is movably engaged with the base 1 to realize the position positioning of the EEG topography device placement piece 17 and the base 1. Then, the position of the EEG topography device placement piece 17 and the base 1 is locked by the locking piece.
[0042] The locking member includes a first telescopic rod 26, an upper portion of the first telescopic rod 26 is fixed with a ring plate 27, and the first telescopic rod 26 is sleeved on the top surface of the ring plate 27. A slide 29 is provided under the ring plate 27, and a top block 30 is slidably provided inside the slide 29, and the top surface of the top block 30 is provided with a slope structure; one end of the top block 30 is fixed with a second telescopic rod 31, and the other side of the top block 30 is screwed to a pull rod 32; the top surface of the first telescopic rod 26 movably protrudes from the top cover 24; the bottom surface of the base 1 is provided with an embedding hole, and the top of the first telescopic rod 26 is movably embedded in the embedding hole; the top surface of the first spring body 28 is pressed against the inner surface of the top cover 24; a second spring body 33 is provided between the top block 30 and the inner surface of the wire drum seat 22; the second spring body 33 is pressed against the inner surface of the wire drum seat 22; the pull rod 32 movably extends out of the wire drum seat 22; when the locking member is in the natural state, due to the second spring The spring body 33 acts to move the top block 30 horizontally toward the side of the second telescopic rod 31, and the top block 30 slides in the slide 29 to push up the first telescopic rod 26. When the first telescopic rod 26 is pushed up, the first spring body 28 is compressed by the ring plate 27, so that the first telescopic rod 26 protrudes from the top cover 24, so that the first telescopic rod 26 is engaged with the embedded hole of the base 1, and the base 1 and the EEG topography device placement piece 17 are locked; when it is necessary to separate the base 1 and the EEG topography device placement piece 17, the pull rod 32 is pulled, and the top block 30 moves toward the side of the pull rod 32, so that the top block 30 compresses the second spring body 33, so that the inner rod of the second telescopic rod 31 is stretched horizontally outward. At this time, the slide 29 contacts the slope of the slider and is subjected to the elasticity of the first spring body 28, which can push the first telescopic rod 26 down and the inner rod of the first telescopic rod 26 vertically contracts. At this time, the first telescopic rod 26 is separated from the embedded hole; the base 1 and the EEG topography device placement piece 17 can be slid apart.
[0043] A plurality of cable protection rods 34 are fixed around the reel seat 22 . After use, the brain electrode cable is wound around the outer periphery of the reel seat 22 . After winding, the cable protection rods 34 prevent the cable from slipping off the reel seat 22 .
[0044] The lifting module includes two guide rail seats 35, and angle seats 36 are fixed on the top and bottom of the guide rail seats 35. The bottom angle seat 36 is fixed to the bottom inner side of the cavity seat 2, and the top angle seat 36 is fixed to the inner side of the flip cavity 9; a slider 37 is slidingly provided on the guide rail seat 35, and the slider 37 is hinged to the two sides of the bottom of the back panel cover 4; the slider 37 is slidably matched with the guide rail seat 35, and when the slider 37 slides up and down along the guide rail seat 35, it can synchronously drive the back panel cover 4 to slide up and down, and the bottom of the back panel cover 4 can be flipped on the slider 37.
[0045] A guide rail 38 is fixed inside the cavity seat 2, and the guide rail 38 is movably engaged with the back plate cover 4; when the back plate cover 4 is received into the cavity seat 2 or pulled out from the cavity seat 2, it can be limited and guided by the guide rail 38.
[0046] A through slot is provided on the rear side of the flip cavity 9, and a flip cover 39 is hingedly connected to the flip cavity 9 at the lower part of the through slot, and compression springs are provided between the two sides of the flip cover 39 and the flip cavity 9; when it is necessary to flip the support frame 6, lift the back panel cover 4, and flip open the flip cover 39, and pull the support frame 6 out of the through slot, so that the support frame 6 can be engaged with the outer card seat 10; after use, flip the flip cover 39 outward again, and put the back panel cover 4 back into the cavity seat 2; and the flip cover 39 can be reset by the compression spring.
[0047] The outer card seat 10 includes a plate seat 40, and the top surface of the plate seat 40 is integrally made of multiple rear baffles 41, and the front side of the rear baffle 41 is integrally made of an arc-shaped limit plate 42; the rear baffle 41 and the arc-shaped limit plate 42 form a card position, when the support frame 6 is carded into the card position, the rear baffle 41 can lock the rearward position of the support frame 6, and the arc-shaped limit plate 42 can limit the forward movement of the support frame 6, so that the support frame 6 is stabilized in the card position.
[0048] An ear hole seat 43 is provided between the drawer 15 and the guide rail plate 14, and the ear hole seat 43 is locked by a lock; when it is necessary to take out the printing device 16 or add materials to the printing device 16, the lock can be unlocked. After the operation is completed, the lock and the ear hole seat 43 are matched again to achieve the locking of the drawer 15 and the guide rail plate 14.
[0049] The support frame 6 includes a frame body 44 rotatably set on the elongated seat body, and a card tube 45 movably engaged with the external card seat 10 is rotatably set on the side of the frame body 44 away from the elongated seat body; when in use, according to the inclination angle requirement of the display screen, the corresponding card connection part of the external card seat 10 is selected, the frame body 44 is swung, and the card tube 45 is movably engaged with the external card seat 10, and the card tube 45 is locked by the external card seat 10.
[0050] The above embodiments are only preferred implementations of the present invention. Therefore, any equivalent changes or modifications made according to the structures, features and principles described in the scope of application of the present invention are included in the scope of application of the present invention.
Claims
1. A placement table for electroencephalogram (EEG) detection equipment for neurological diagnosis, characterized by: include: base, A display screen placement unit, the display screen placement unit includes a cavity seat fixed to the top surface of the base, a host slot seat is provided on the bottom surface of the cavity seat, and mesh covers are fixed on the front and rear sides of the cavity seat at the host slot seat; a lifting module is provided on the inner side of the cavity seat, and a back panel cover is hinged on the lifting module; a handle is provided on the top surface of the back panel cover; a support frame is hinged on the back side of the back panel cover; an inner card seat that is clamped with the support frame is fixed on the back side of the back panel cover; the lifting module includes two guide rail seats, corner seats are fixed on the top and bottom of the guide rail seats, the corner seat at the bottom is fixed to the bottom inside the cavity seat, and the corner seat at the top is fixed to the inside of the flip cavity; a slider is slidably provided on the guide rail seat, and the slider is hinged to both sides of the bottom of the back panel cover; The panel is fixed to the top surface of the cavity seat, a flip cavity is fixed on the front side of the top of the panel, and the flip cavity is connected to the cavity seat; an external card seat is fixed on the rear side of the flip cavity of the panel; the support frame is movably engaged with the external card seat; The walking unit includes legs mounted on the front side of the base and the rear side of the panel, with walking wheels mounted on the bottom of the legs; the legs on the rear side are convex in structure and are fixedly engaged with a horizontal plate; A printing unit, comprising a guide plate disposed between the transverse plate and the cavity seat, wherein a drawer with a hollow top surface is slidably disposed on the guide plate, and a printing device is disposed in the drawer; An electroencephalogram (EEG) placement piece, which is locked and fastened to the base; The placement part of the electroencephalogram (EEG) device includes an outer cylinder seat, a plurality of universal wheels are fixed to the bottom of the outer cylinder seat, a pneumatic rod is fixed to the inner side of the outer cylinder seat; an inner cylinder seat is fixed to the top surface of the pneumatic rod, a plurality of screw holes are provided on the top surface of the inner cylinder seat; a wire reel seat with an I-shaped structure is fixed to the top surface of the inner cylinder seat; a plurality of rows of electrode wire through holes are provided on the wire reel seat; a mounting seat for installing the EEG device is provided on the inner side of the wire reel seat; a top cover is fixed to the top surface of the wire reel seat, a rail engaged with the base is fixed on the top cover, and a locking piece is provided between the wire reel seat and the base.
2. The placement table for EEG detection equipment for neurological diagnosis according to claim 1, characterized in that: The locking component includes a first telescopic rod, a ring plate is fixed on the upper part of the first telescopic rod, a first spring body is sleeved on the top surface of the ring plate, a slide is provided on the lower part of the first telescopic rod, a top block is slidably provided on the inner side of the slide, and a slope structure is provided on the top surface of the top block; a second telescopic rod is fixed at one end of the top block, and a pull rod is screwed on the other side of the top block; the top surface of the first telescopic rod movably protrudes from the top cover; an embedding hole is provided on the bottom surface of the base, and the top of the first telescopic rod is movably embedded in the embedding hole; the top surface of the first spring body is pressed against the inner surface of the top cover; a second spring body is provided between the top block and the inner surface of the wire reel seat; the pull rod movably extends out of the wire reel seat.
3. The placement table for EEG detection equipment for neurological diagnosis according to claim 1, characterized in that: A plurality of cable protection support rods are fixed around the cable reel seat.
4. The placement table for EEG detection equipment for neurological diagnosis according to claim 1, characterized in that: A guide rail is fixed on the inner side of the cavity seat, and the guide rail is movably connected to the back plate cover.
5. The placement table for EEG detection equipment for neurological diagnosis according to claim 1, characterized in that: A through slot is provided at the rear side of the turnover cavity, a flip cover is hingedly connected to the lower part of the through slot, and compression springs are provided between the two sides of the flip cover and the turnover cavity.
6. The placement table for EEG detection equipment for neurological diagnosis according to claim 1, characterized in that: The outer card seat includes a plate seat, the top surface of the plate seat is integrally formed with a plurality of rear baffles, and the front side of the rear baffle is integrally formed with an arc-shaped limiting plate.
7. The placement table for EEG detection equipment for neurological diagnosis according to claim 1, characterized in that: Ear hole seats are provided between the drawer and the guide rail plate, and the ear hole seats are locked by a locking piece.
8. The placement table for electroencephalogram (EEG) detection equipment for neurological diagnosis according to claim 1, characterized in that: The support frame comprises a frame body rotatably arranged on the long seat body, and a clamping tube movably engaged with the outer clamping seat is rotatably arranged on a side of the frame body away from the long seat body.
Citation Information
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