Brain tumor image data segmentation display device and use method thereof

By designing a brain tumor image data segmentation display device, using protective covers and partition components to adjust the direction and position of the display panel, combined with a microscope and magnifying glass, the problems of light transmission and reflection influence are solved, and clearer brain image observation is achieved.

CN120255163APending Publication Date: 2025-07-04SOUTH CHINA NORMAL UNIV
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510481830.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

When displaying brain image data, due to the influence of light transmission and reflection, the visual effect is unclear, and details are easily missed, reducing the intuitive display effect.

Method used

The brain tumor image data segmentation display device including a display panel, a protective cover, a positioning shell, a positioning adjustment component, a control panel, a horizontal separation component and a longitudinal separation component are adopted to prevent light from overflowing through the protective cover, and the direction is adjusted using the positioning adjustment component, and regional observation is carried out in combination with the horizontal and longitudinal separation components, and careful observation is carried out in conjunction with a microscope and a magnifying glass.

Benefits of technology

It improves the intuitive display effect of brain image data, prevents light interference, and can observe the details of complex brain areas more clearly, improving the accuracy and meticulousness of observation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120255163A_ABST
    Figure CN120255163A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of image display devices, in particular to a brain tumor image data segmentation display device and a use method thereof. According to the technical scheme, the brain tumor image data segmentation display device comprises a display screen plate, a protective cover, a positioning shell sleeve, a positioning adjusting assembly, a control panel, a transverse separation assembly and a longitudinal separation assembly; the positioning shell sleeves are symmetrically arranged on the periphery of the protective cover, the internal display screen plate can be kept to be steered and adjusted to a proper observation angle, and positioning operation is conducted through the positioning holes by means of the transverse separation assembly and the longitudinal separation assembly so as to complete division of transverse sequence areas. The longitudinal separation assembly and the transverse separation assembly can be alternately used and can also be independently used for amplification operation, so that separation of a plurality of key areas and marking of a single area are formed, and regionalized detailed observation is carried out.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of image display devices, and particularly to a brain tumor image data segmentation and display device and a method for using the same. Background Art

[0002] Brain tumor image data generally refers to the brain tumor image information obtained through medical imaging techniques (such as CT, magnetic resonance imaging MRI, etc.). The image data is processed by a brain tumor image data segmentation and display device, which can divide the brain region. When making a clinical diagnosis, these data are of great significance for the diagnosis, treatment, and research of brain tumors.

[0003] In order to display these data more intuitively, image films are made and placed on a light board, and backlight irradiation is performed to make it in a state with distinct black and white. Due to light transmission and reflection, it is easy to affect people's vision, and the brain region is complex, so it is easy to miss details, reducing the intuitive display effect.

[0004] Therefore, in view of the above-mentioned brain data being processed by an image processing device to make image films, which are placed on a display panel and backlight irradiation is performed to make it in a state with distinct black and white. Due to light transmission and reflection, it is easy to affect people's vision, a corn seed processing device can be designed. Summary of the Invention

[0005] In order to overcome the problems that brain data is processed by an image processing device to make image films, which are placed on a display panel and backlight irradiation is performed to make it in a state with distinct black and white. Due to light transmission and reflection, it is easy to affect people's vision, and the brain region is complex, so it is easy to miss details, reducing the intuitive display effect.

[0006] The technical solution of the present invention is: A brain tumor image data segmentation and display device, including a display panel, a protective cover, a positioning housing sleeve, a positioning and adjusting component, a control panel, a horizontal separation component, and a vertical separation component; a display panel for projecting brain tumor image data and placing brain tumor image films, a protective cover is sleeved outside the display panel to prevent light from overflowing and affecting the internal image observation, a positioning and adjusting component for adjusting the direction and installing and connecting is provided at the rear end of the display panel, a control panel for adjusting the picture control is electrically provided at the bottom of the display panel, positioning housing sleeves for keeping the internal display panel turned and adjusted to a suitable viewing angle are symmetrically sleeved outside the protective cover, and a horizontal separation component and a vertical separation component for dividing the brain tumor image data and brain tumor image films for regionalized detailed observation are respectively provided at the longitudinal and horizontal positions inside the display panel.

[0007] Preferably, a positioning and adjusting component is provided at the rear end of the display panel, which can be used for adjusting the direction and installation connection. Through the positioning shell sleeve, symmetrically arranged around the protective cover, the internal display panel can be turned and adjusted to a suitable viewing angle. By using the horizontal separation component and the vertical separation component, arranged at the longitudinal and horizontal positions inside the display panel, the brain tumor image data and brain tumor imaging films can be segmented for detailed regional observation.

[0008] Preferably, a shock-absorbing plate is provided at the center of the rear end of the display panel. Access tubes for accessing cables are symmetrically provided on the shock-absorbing plate. An insulating plate is provided between the access tubes and the shock-absorbing plate. A central control box for adjusting the picture access is provided above the shock-absorbing plate. An indicator light board for showing whether the overall operation is normal is provided above the central control box. A conversion socket electrically connected to the control panel is provided below the central control box.

[0009] Preferably, first cables are provided on both sides of the central control box, which are sequentially electrically connected to the indicator light board and the access tubes. Second cables electrically connected to the conversion socket are symmetrically provided at the bottom of the central control box.

[0010] Preferably, multiple groups of first positioning grooves are linearly opened horizontally at both ends of the inner wall of the protective cover. Second positioning grooves are linearly opened on both sides of the inner wall of the protective cover. Positioning holes are opened at the bottom of the first positioning grooves and the second positioning grooves inside the protective cover. First adjustment grooves are opened at the positions along the multiple groups of first positioning grooves inside the protective cover. Second adjustment grooves are opened at the positions along the multiple groups of second positioning grooves inside the protective cover.

[0011] Preferably, adjustment shafts are fixedly connected to both sides of the periphery of the protective cover. Steering sleeves are sleeved on the adjustment shafts. A first gear is provided at one end of the adjustment shaft away from the protective cover.

[0012] Preferably, a light strip is provided along the inner side of the positioning shell sleeve. A connection hole is opened in the middle of the positioning shell sleeve. Supports are symmetrically provided outside the lower part of the positioning shell sleeve. A positioning bolt is provided between the support and the positioning shell sleeve. A balance block is fixedly connected to the end of the support away from the positioning shell sleeve. A positioning shaft is fixedly connected above the connection hole outside the positioning shell sleeve. A second gear is sleeved on the positioning shaft. A curved frame is provided at the outer end of the second gear. A balance plate is fixedly connected to one end of the curved frame away from the second gear. Three microscopes are linearly arranged horizontally on the balance plate.

[0013] Preferably, the positioning and adjusting assembly includes a first fixing plate, a second fixing plate, mounting clamping plates, a first sleeve, a second sleeve, a cylinder, a push rod, mounting holes, disassembly bolts, a connecting ring and a steering shaft. The first fixing plate and the second fixing plate are arranged in parallel. On one side of the first fixing plate and the second fixing plate away from the display screen plate, two groups of mounting clamping plates are linearly arranged. On the opposite sides of the mounting clamping plates, clamping grooves are formed. On the mounting clamping plates, multiple groups of mounting holes are linearly formed. At both ends of the first fixing plate and the second fixing plate, a first sleeve and a second sleeve are respectively provided. Between the first fixing plate and the first sleeve, a mounting shaft is provided. The outer end of the mounting shaft is sleeved with a disassembly bolt. Between the first fixing plate and the first sleeve, a connecting ring is provided. Inside the connecting ring, a steering shaft is provided. Inside the first sleeve and the second sleeve, push rods passing through the mounting clamping plates are provided. At the ends of the push rods away from the first sleeve and the second sleeve, cylinders are provided.

[0014] Preferably, the transverse partitioning assembly and the longitudinal partitioning assembly are arranged with the same structure. The transverse partitioning assembly and the longitudinal partitioning assembly both include a partitioning ruler, docking holes, magnifying glasses and clamping holes. On the partitioning ruler, three groups of magnifying glasses are linearly arranged. Between two groups of magnifying glasses on the partitioning ruler, docking holes penetrate through. At both ends of the partitioning ruler, clamping holes are formed.

[0015] According to another aspect of the present invention, there is provided a brain tumor image data segmentation and display device and its usage method, including the following steps:

[0016] S1. First, the data cable can be connected to the CT machine through the access wire tube to directly transmit the data to the display screen plate. Additionally, the CT image film can also be directly pasted on the display screen plate. These two methods can be used separately according to actual needs or can be used in combination with each other. Then, place the positioning shell sleeve in a stable position, and by adjusting the positioning bolts, use the bracket to firmly support the entire device. Finally, perform planar installation using the mounting clamping plates and the mounting holes to complete the overall reinforcement work;

[0017] S2. Next, start the device through the control panel, and the signal will be transmitted sequentially through the first cable and the second cable. The central control box is responsible for signal distribution work, and observe the indicator light board to ensure signal stability. Once the signal is stable, the signal will control the cylinder to drive the push rod, so that the first sleeve pushes the display screen plate to generate a deflection. At the same time, the first fixing plate swings with the second sleeve through the steering shaft to complete the adjustment action. At this time, the protective cover will effectively prevent the influence of external light on the device, and at the same time, the light strip will light up synchronously to provide concentrated light inside;

[0018] S3. To observe an appropriate area, the longitudinal separation component can be slid and adjusted along the first adjustment slot until the appropriate position is reached, and positioning operations can be performed through the positioning holes, thereby completing the division of the longitudinal sequence area. Subsequently, a magnifying glass can be used to magnify and observe local positions. Similarly, the transverse separation component can be slid and adjusted along the second adjustment slot, and positioning operations can be performed through the positioning holes to complete the division of the transverse sequence area. The longitudinal separation component and the transverse separation component can be used alternately or separately for magnification operations, thereby forming the separation of multiple key areas and the annotation of a single area;

[0019] S4. Each time the display panel deflects, the adjustment shaft will, through the meshing of the first gear and the second gear, cause the curved frame to drive the balance plate to swing. At the same time, the microscope will magnify the image data area and can cooperate with the magnifying glass for further magnification processing, thereby realizing in-depth observation and processing of the details of the image data.

[0020] Advantages of the present invention:

[0021] 1. Different from the past, where brain data was processed by an imaging device to produce individual imaging films, placed on a display panel, and backlit to create a black-and-white state, due to light transmission and reflection, it is easy to affect human vision, and the brain area is complex, making it easy to miss details and reducing the intuitive display effect. By using the display panel, it can be used to project brain tumor image data and place brain tumor imaging films. The protective cover is arranged outside the display panel and can be used to prevent light from overflowing and affecting the internal image observation. The positioning and adjustment component is arranged at the rear end of the display panel and can be used to adjust the direction and install and connect. The positioning shell sleeves are symmetrically arranged around the protective cover and can keep the internal display panel turned and adjusted to an appropriate viewing angle. The transverse separation component and the longitudinal separation component are arranged at the longitudinal and transverse positions inside the display panel and can be used to divide the brain tumor image data and brain tumor imaging films for detailed regional observation, improving the overall observation and use effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic diagram of the overall structure of the brain tumor image data segmentation and display device of the present invention;

[0023] Figure 2 is a schematic diagram of the display panel of the brain tumor image data segmentation and display device of the present invention;

[0024] Figure 3 is a schematic diagram of the protective cover of the brain tumor image data segmentation and display device of the present invention;

[0025] Figure 4 is a schematic diagram of the positioning shell sleeve of the brain tumor image data segmentation and display device of the present invention;

[0026] Figure 5 Schematic diagram of the positioning and adjusting component of the brain tumor image data segmentation and display device of the present invention;

[0027] Figure 6 Schematic diagram of the horizontal partitioning component of the brain tumor image data segmentation and display device of the present invention.

[0028] Description of reference numerals: 1, display screen board; 2, protective cover; 3, positioning housing sleeve; 4, positioning and adjusting component; 5, control panel; 6, horizontal partitioning component; 7, vertical partitioning component; 101, shock-absorbing board; 102, insulating board; 103, access wire tube; 104, central control box; 105, first cable; 106, indicator light board; 107, second cable; 108, conversion socket; 201, first positioning groove; 202, second positioning groove; 203, positioning hole; 204, first adjustment groove; 205, second adjustment groove; 206, adjustment shaft; 207, steering sleeve; 208, first gear; 301, connection hole; 302, light strip; 303, positioning shaft; 304, second gear; 305, balance plate; 306, microscope; 307, bracket; 308, positioning bolt; 309, balance weight; 310, curved frame; 401, first fixing plate; 402, second fixing plate; 403, mounting clamping plate; 404, first sleeve; 405, second sleeve; 406, cylinder; 407, push rod; 408, mounting hole; 409, disassembly bolt; 410, connection ring; 411, steering shaft; 601, dividing ruler; 602, docking hole; 603, magnifying glass; 604, clamping hole. Detailed implementation manners

[0029] The present invention will be further described below with reference to the drawings and embodiments.

[0030] Please refer to Figures 1-6 , the present invention provides an embodiment: a brain tumor image data segmentation and display device, including a display screen board 1, a protective cover 2, a positioning housing sleeve 3, a positioning and adjusting component 4, a control panel 5, a horizontal partitioning component 6 and a vertical partitioning component 7; a display screen board 1 for projecting brain tumor image data and placing brain tumor imaging films, a protective cover 2 is sleeved outside the display screen board 1 for preventing light from overflowing and affecting the internal image observation, a positioning and adjusting component 4 for adjusting the direction and installing and connecting is arranged at the rear end of the display screen board 1, a control panel 5 for adjusting the picture control is electrically arranged at the bottom of the display screen board 1, positioning housing sleeves 3 for keeping the internal display screen board 1 turned and adjusted to a suitable viewing angle are symmetrically sleeved outside the protective cover 2, and a horizontal partitioning component 6 and a vertical partitioning component 7 for segmenting the brain tumor image data and the brain tumor imaging films for regionalized detailed observation are respectively arranged at the longitudinal and horizontal positions inside the display screen board 1.

[0031] Please refer to Figures 2-3, in this embodiment, a shock-absorbing plate 101 is provided at the center of the rear end of the display panel 1. Access wire tubes 103 for accessing cables are symmetrically provided on the shock-absorbing plate 101. An insulating plate 102 is provided between the access wire tubes 103 and the shock-absorbing plate 101. Above the shock-absorbing plate 101, a central control box 104 for adjusting the picture access is provided. The model of the central control box 104 is VWRK5. Above the central control box 104, an indicator light board 106 for displaying whether the whole is operating normally is provided. Below the central control box 104, a conversion socket strip 108 electrically connected to the control panel 5 is provided. On both sides of the central control box 104, first cables 105 are provided that are sequentially electrically connected to the indicator light board 106 and the access wire tubes 103. Symmetrically at the bottom of the central control box 104, second cables 107 electrically connected to the conversion socket strip 108 are provided;

[0032] In order to avoid overheating damage caused by continuous electric contact during the operation process, a conversion socket strip 108 is added to form a transfer protection. The conversion socket strip 108, also known as a conversion socket or socket converter, is an electrical accessory that can convert one socket into multiple sockets or convert one type of plug into another type of plug.

[0033] Please refer to Figures 3-4 , in this embodiment, a plurality of groups of first positioning grooves 201 are linearly opened horizontally at both ends of the inner wall of the protective cover 2. Second positioning grooves 202 are linearly opened on both sides of the inner wall of the protective cover 2. Positioning holes 203 are opened at the bottoms of the first positioning grooves 201 and the second positioning grooves 202 inside the protective cover 2. First adjustment grooves 204 are opened at the positions along the plurality of groups of first positioning grooves 201 inside the protective cover 2. Second adjustment grooves 205 are opened at the positions along the plurality of groups of second positioning grooves 202 inside the protective cover 2. Adjusting shafts 206 are fixedly connected to both sides of the periphery of the protective cover 2. Steering sleeves 207 are sleeved on the adjusting shafts 206. A first gear 208 is provided at one end of the adjusting shaft 206 away from the protective cover 2;

[0034] When at the same level, the first adjustment groove 204 is closer to the display panel 1 than the second adjustment groove 205. Thus, when the dividing ruler 601 is slidably adjusted, an interactive misalignment state is formed, enabling rapid positioning of the coordinate system for the brain tumor image area and rapid magnification observation of the local area.

[0035] Please refer to Figures 4-5, in this embodiment, a light strip 302 is provided along the inner side of the positioning housing sleeve 3. A connection hole 301 is provided in the middle of the positioning housing sleeve 3. Symmetrically arranged brackets 307 are provided outside the lower part of the positioning housing sleeve 3. A positioning bolt 308 is provided between the bracket 307 and the positioning housing sleeve 3. A balance weight 309 is fixedly connected to the end of the bracket 307 away from the positioning housing sleeve 3. A positioning shaft 303 is fixedly connected above the connection hole 301 outside the positioning housing sleeve 3. A second gear 304 is sleeved on the positioning shaft 303. A curved frame 310 is provided at the outer end of the second gear 304. A balance plate 305 is fixedly connected to one end of the curved frame 310 away from the second gear 304. Three groups of microscopes 306 are linearly arranged horizontally on the balance plate 305. The positioning and adjusting assembly 4 includes a first fixing plate 401, a second fixing plate 402, an installation clamping plate 403, a first sleeve 404, a second sleeve 405, a cylinder 406, a push rod 407, an installation hole 408, a disassembly bolt 409, a connection ring 410 and a steering shaft 411. The first fixing plate 401 and the second fixing plate 402 are arranged in parallel. Two groups of installation clamping plates 403 are linearly arranged on the side of the first fixing plate 401 and the second fixing plate 402 away from the display screen plate 1. Claw slots are provided on the opposite sides of the installation clamping plates 403. A plurality of installation holes 408 are linearly provided on the installation clamping plates 403. The first fixing plate 401 and the second fixing plate 402 are respectively provided with a first sleeve 404 and a second sleeve 405 at both ends. An installation shaft is provided between the first fixing plate 401 and the first sleeve 404. The outer end of the installation shaft is sleeved with a disassembly bolt 409. A connection ring 410 is provided between the first fixing plate 401 and the first sleeve 404. A steering shaft 411 is provided inside the connection ring 410. Push rods 407 passing through the installation clamping plates 403 are provided inside both the first sleeve 404 and the second sleeve 405. A cylinder 406 is provided at the end of the push rod 407 away from the first sleeve 404 and the second sleeve 405;

[0036] Using the claw slot, when docking the installation clamping plates, a middle clamping state can be formed, which is used to cooperate with the installation hole 408 for positioning operation during shaking. The signal will control the cylinder 406 to drive the push rod 407, so that the first sleeve 404 pushes the display screen plate 1 to produce a deviation. The other group of cylinders 406 is not driven and retracts passively. Each time, only a single group of cylinders 406 is controlled to deflect the display screen plate 1 downward or upward, so as to complete the observation of the film.

[0037] Please refer to Figures 4-6 , in this embodiment, the transverse partitioning assembly 6 and the longitudinal partitioning assembly 7 are provided with the same structure. The transverse partitioning assembly 6 and the longitudinal partitioning assembly 7 both include a dividing ruler 601, a docking hole 602, a magnifying glass 603 and a clamping hole 604. Three groups of magnifying glasses 603 are linearly arranged on the dividing ruler 601. The docking hole 602 penetrates through the dividing ruler 601 between two groups of magnifying glasses 603. Clamping holes 604 are provided at both ends of the dividing ruler 601;

[0038] When the display panel 1 is deflected, the adjusting shaft 206 will drive the balance plate 305 to swing through the meshing of the first gear 208 and the second gear 304. At the same time, the microscope 306 will magnify the image data area and can cooperate with the magnifying glass 603 for further magnification processing.

[0039] According to another aspect of the present invention, there is provided a brain tumor image data segmentation display device and a method of using the same, including the following steps:

[0040] S1. First, the data cable can be connected to the CT machine through the access cable tube 103 to directly transmit the data to the display panel 1. Additionally, the CT image film can also be directly pasted on the display panel 1. These two methods can be used separately according to actual needs or in combination with each other. Then, place the positioning housing sleeve 3 in a stable position and adjust the positioning bolt 308 to firmly support the entire device using the bracket 307. Finally, use the mounting card plate 403 and the mounting hole 408 for planar mounting to complete the overall reinforcement work;

[0041] S2. Next, start the device by operating the control panel 5, and the signal will be transmitted sequentially through the first cable 105 and the second cable 107. The central control box 104 is responsible for signal distribution, and observe the indicator light board 106 to ensure signal stability. Once the signal is stable, the signal will control the cylinder 406 to drive the push rod 407, causing the first sleeve 404 to push the display panel 1 to deflect. At the same time, the first fixing plate 401 swings with the second sleeve 405 through the steering shaft 411 to complete the adjustment action. At this time, the protective cover 2 will effectively prevent the influence of external light on the device, and at the same time, the light strip 302 will light up synchronously to provide concentrated illumination inside;

[0042] S3. To observe the appropriate area, the longitudinal separation component 7 can be slidably adjusted along the first adjustment slot 204 until the appropriate position is reached, and positioning operation is performed through the positioning hole 203 to complete the division of the longitudinal sequence area. Subsequently, the magnifying glass 603 can be used to magnify and observe the local position. Similarly, the transverse separation component 6 is slidably adjusted along the second adjustment slot 205 and positioning operation is performed through the positioning hole 203 to complete the division of the transverse sequence area. The longitudinal separation component 7 and the transverse separation component 6 can be used alternately or separately for magnification operations to form the separation of multiple key areas and the marking of a single area;

[0043] S4. Each time the display panel 1 deflects, the adjustment shaft 206 will, through the meshing of the first gear 208 and the second gear 304, cause the curved frame 310 to drive the balance plate 305 to swing. At the same time, the microscope 306 will magnify the image data area and can cooperate with the magnifying glass 603 for further magnification processing, so as to realize in-depth observation and processing of the details of the image data.

[0044] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments, and various changes can be made without departing from the gist of the present invention within the scope of knowledge possessed by those skilled in the art.

Claims

1. Brain tumor image data segmentation display device, comprising a display panel (1); characterized in that: It also includes a protective cover (2), a positioning housing sleeve (3), a positioning and adjusting component (4), a control panel (5), a horizontal partitioning component (6) and a vertical partitioning component (7); a display panel (1) for projecting brain tumor image data and placing brain tumor imaging films, with a protective cover (2) sleeved outside the display panel (1) to prevent light from overflowing and affecting the internal image observation, a positioning and adjusting component (4) for adjusting the direction and for installation and connection provided at the rear end of the display panel (1), a control panel (5) for adjusting the screen control electrically provided at the bottom of the display panel (1), positioning housing sleeves (3) symmetrically sleeved around the periphery of the protective cover (2) to keep the internal display panel (1) turned and adjusted to a suitable viewing angle, and a horizontal partitioning component (6) and a vertical partitioning component (7) respectively provided at the longitudinal and horizontal positions inside the display panel (1) for partitioning the brain tumor image data and the brain tumor imaging films for regionalized detailed observation.

2. The brain tumor image data segmentation and display device according to claim 1, wherein: A shock-absorbing plate (101) is provided at the center of the rear end of the display panel (1), access wire tubes (103) for accessing cables are symmetrically provided on the shock-absorbing plate (101), an insulating plate (102) is provided between the access wire tubes (103) and the shock-absorbing plate (101), a central control box (104) for adjusting the screen access is provided above the shock-absorbing plate (101), an indicator light panel (106) for showing whether the overall operation is normal is provided above the central control box (104), and a conversion socket strip (108) electrically connected to the control panel (5) is provided below the central control box (104).

3. The brain tumor image data segmentation and display device according to claim 2, characterized in that: First cables (105) electrically connected to the indicator light panel (106) and the access wire tubes (103) in sequence are provided on both sides of the central control box (104), and second cables (107) electrically connected to the conversion socket strip (108) are symmetrically provided at the bottom of the central control box (104).

4. The brain tumor image data segmentation and display device according to claim 1, characterized in that: Multiple groups of first positioning grooves (201) are linearly opened horizontally at both ends of the inner wall of the protective cover (2), second positioning grooves (202) are linearly opened on both sides of the inner wall of the protective cover (2), positioning holes (203) are opened at the bottoms of the first positioning grooves (201) and the second positioning grooves (202) inside the protective cover (2), a first adjusting groove (204) is opened at the position along the multiple groups of first positioning grooves (201) inside the protective cover (2), and a second adjusting groove (205) is opened at the position along the multiple groups of second positioning grooves (202) inside the protective cover (2).

5. The brain tumor image data segmentation and display device according to claim 4, characterized in that: Adjusting shafts (206) are fixedly connected to both sides of the periphery of the protective cover (2), a steering sleeve (207) is sleeved on the adjusting shafts (206), and a first gear (208) is provided at one end of the adjusting shaft (206) away from the protective cover (2).

6. The brain tumor image data segmentation and display device according to claim 1, characterized in that: The inner side of the positioning housing sleeve (3) is provided with a light strip (302) along the edge. A connection hole (301) is opened in the middle of the positioning housing sleeve (3). The outer part below the positioning housing sleeve (3) is symmetrically provided with brackets (307). A positioning bolt (308) is arranged between the brackets (307) and the positioning housing sleeve (3). A balance weight (309) is fixedly connected to the end of the bracket (307) away from the positioning housing sleeve (3). A positioning shaft (303) is fixedly connected to the outside of the positioning housing sleeve (3) above the connection hole (301). A second gear (304) is sleeved on the positioning shaft (303). A curved frame (310) is arranged at the outer end of the second gear (304). A balance plate (305) is fixedly connected to one end of the curved frame (310) away from the second gear (304). Three groups of microscopes (306) are linearly arranged horizontally on the balance plate (305).

7. The brain tumor image data segmentation and display device according to claim 1, wherein: The positioning and adjusting assembly (4) includes a first fixing plate (401), a second fixing plate (402), mounting clamping plates (403), a first sleeve (404), a second sleeve (405), a cylinder (406), a push rod (407), mounting holes (408), disassembly bolts (409), a connecting ring (410) and a steering shaft (411). The first fixing plate (401) and the second fixing plate (402) are arranged in parallel. Two groups of mounting clamping plates (403) are linearly arranged on the side of the first fixing plate (401) and the second fixing plate (402) away from the display screen plate (1). Slots are opened on the opposite sides of the mounting clamping plates (403). Multiple groups of mounting holes (408) are linearly opened on the mounting clamping plates (403). The first sleeve (404) and the second sleeve (405) are respectively arranged at both ends of the first fixing plate (401) and the second fixing plate (402). A mounting shaft is arranged between the first fixing plate (401) and the first sleeve (404). The outer end of the mounting shaft is sleeved with a disassembly bolt (409). A connecting ring (410) is arranged between the first fixing plate (401) and the first sleeve (404). A steering shaft (411) is arranged inside the connecting ring (410). Push rods (407) passing through the mounting clamping plates (403) are arranged inside the first sleeve (404) and the second sleeve (405). A cylinder (406) is arranged at the end of the push rod (407) away from the first sleeve (404) and the second sleeve (405).

8. The brain tumor image data segmentation and display device according to claim 1, characterized in that: The transverse partition assembly (6) and the longitudinal partition assembly (7) are arranged with the same structure. The transverse partition assembly (6) and the longitudinal partition assembly (7) both include a dividing ruler (601), a docking hole (602), a magnifying glass (603) and a clamping hole (604). Three groups of magnifying glasses (603) are linearly arranged on the dividing ruler (601). A docking hole (602) penetrates through the dividing ruler (601) between two groups of magnifying glasses (603). Clamping holes (604) are opened at both ends of the dividing ruler (601).

9. A brain tumor image data segmentation and display device and a method for using the same, comprising the brain tumor image data segmentation and display device according to any one of claims 1-8, characterized in that, It includes the following steps: S1. First, the data cable can be connected to the CT machine through the access pipeline (103) to directly transfer data to the display panel (1). Additionally, it is also possible to directly paste the CT image film on the display panel (1). These two methods can be used independently according to actual needs or in combination with each other. Next, place the positioning shell sleeve (3) in a stable position and use the positioning bolt (308) to firmly support the entire device through the bracket (307). Finally, use the mounting card plate (403) and the mounting hole (408) for planar installation to complete the overall reinforcement work; S2. Next, start the device through the control panel (5), and the signal will be transmitted successively through the first cable (105) and the second cable (107). The central control box (104) is responsible for signal distribution, and observe the indicator light board (106) to ensure signal stability. Once the signal is stable, the signal will control the cylinder (406) to drive the push rod (407), causing the first sleeve (404) to push the display panel (1) to generate a deviation. At the same time, the first fixing plate (401) will swing with the second sleeve (405) through the steering shaft (411) to complete the adjustment action. At this time, the protective cover (2) will effectively prevent the influence of external light on the device, and at the same time, the light strip (302) will light up synchronously to provide concentrated light inside; S3. In order to observe the appropriate area, the longitudinal separation component (7) can be slid and adjusted along the first adjustment slot (204) until the appropriate position is reached, and positioning operation is carried out through the positioning hole (203) to complete the division of the longitudinal sequence area. Subsequently, the magnifying glass (603) can be used to magnify and observe the local position. Similarly, use the transverse separation component (6) to slide and adjust along the second adjustment slot (205) and carry out positioning operation through the positioning hole (203) to complete the division of the transverse sequence area. The longitudinal separation component (7) and the transverse separation component (6) can be used alternately or independently for magnification operation to form the separation of multiple key areas and the marking of a single area; S4. Each time the display panel (1) deviates, the adjustment shaft (206) will drive the curved frame (310) to drive the balance plate (305) to swing through the meshing of the first gear (208) and the second gear (304). At the same time, the microscope (306) will magnify the image data area and can cooperate with the magnifying glass (603) for further magnification processing to achieve in-depth observation and processing of the details of the image data.