Patient rehabilitation cognitive training evaluation device
The cognitive rehabilitation device stabilizes display height adjustment through a balanced structure and secure locking mechanisms, addressing instability issues in existing devices and ensuring reliable operation.
Patent Information
- Application Number
- CN202510441598.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-07-15
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing cognitive rehabilitation training devices are prone to shaking, breaking or stuck when adjusting the height, and cannot be stable due to unstable single-group lifting members.
By setting the parallel plate and balanced structure at the bottom of the insulating frame on the training display, combining the electrical connection design of the locking member and the speaker, the stability and stable reset of the lifting member are ensured.
It improves the stability of the height adjustment of the training monitor, prevents deformation and fracture due to external factors, and ensures stable reset and safe use of the device.
Smart Images

Figure CN120305532A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cognitive rehabilitation training evaluation, and more specifically to a device for evaluating the cognitive training of patients during rehabilitation. Background Art
[0002] Cognitive rehabilitation training is a training method aimed at improving and enhancing an individual's cognitive abilities. It is usually designed for aspects such as attention, memory, calculation ability, thinking ability, and perceptual disorders to meet the specific needs of different patients. Therefore, by using a cognitive training evaluation device, users can select training modules such as memory, attention, language, or executive function according to their actual needs. Before the training task, the system will provide detailed instructions and demonstrations. Then, the user completes the tasks provided by the device through touch, verbal communication, etc. Therefore, after the user completes the relevant tasks, the system will provide real-time feedback, point out the error areas, and give encouraging effects. In summary, it can effectively complete the cognitive rehabilitation training effect for patients, ensuring that patients can gradually recover normal cognition according to the relevant task requirements. In summary, the inventor found that the existing cognitive rehabilitation training devices mainly have the following defects: based on the existing cognitive rehabilitation training devices, the height of the training display can be adjusted. It only sets the height through a single set of lifting components to form a perpendicular state. However, due to the influence of the single set of vertical lifting components, it is extremely easy to cause the overall display to shake unstably during lifting. At the same time, affected by factors such as space air flow and external personnel (force majeure), when impacted, it is easy to cause the lifting rod of the lifting component to break or deform, ultimately resulting in the inability to perform stable reset and jamming during reset. Summary of the Invention
[0003] The technical solution adopted by the present invention to achieve the technical purpose is: a device for evaluating the cognitive training of patients during rehabilitation, the structure of which includes: a printer, a placement table, a lifting component, a speaker, and a training display. The printer is installed in the lower part of the placement table and is spaced from the lower end area of the lifting component. The lifting component vertically penetrates the center of the placement table. Speakers are also equipped on the left and right sides of the surface of the placement table. The training display connected to the top of the lifting component is electrically connected to the speakers on the left and right sides of the placement table through wires.
[0004] As a further improvement of the present invention, the training display is provided with a touch screen. An insulating frame is connected to the outside of the touch screen, and a parallel plate is connected to the bottom of the insulating frame. A splicing block is fixed at the center of the bottom of the parallel plate and is fixedly connected to the lifting component. Convex blocks are also connected to the left and right sides of the bottom of the parallel plate. A balance structure is fixed at the center of the surface of the parallel plate.
[0005] As a further improvement of the present invention, the balancing structure is further provided with a locking member. The locking device is embedded in the left and right sides of the surface layer of the overlapping plate, and an extension plate is fixed at the center of the overlapping plate. A vertical member is also welded at the lower end of the extension plate. The vertical member is embedded in the center of the sliding groove and contacts the pulleys on both sides. The sliding groove is opened at the center of the support column, and the pulley is embedded in the inner wall area of the support column. An anti-detachment member is also connected to the lower end of the support column.
[0006] As a further improvement of the present invention, the splicing block at the bottom of the parallel plate of the outer insulating frame of the touch screen of the training display is used to complete the fixed connection with the top of the lifting member. Then, the convex blocks on both sides coincide with the center of the top of the speaker. Subsequently, the balancing structure installed at the center of the surface can make the vertical member slide along with the up and down sliding of the training display driven by the lifting member through the sliding groove in the support column. During the process, the spherical pulleys on the inner wall of the support column can be driven to rotate by the vertical member.
[0007] As a further improvement of the present invention, the printer is vertically connected to the lower edge of the placement table and has a safety distance from the lifting member at the center. The two speakers at the upper end of the lifting member are set in a left-right symmetric orientation and overlap with the left and right sides of the surface layer at the lower end of the training display.
[0008] As a further improvement of the present invention, the bottom of the outer insulating frame of the touch screen coincides with the parallel plate. The splicing block at the center of the lower layer of the parallel plate is in the shape of a "concave" character, and the convex blocks on both sides are set in a symmetric orientation and then coincide with the positions of the speakers. The balancing structure is installed at the center of the surface layer of the parallel plate and is spaced from the lifting member.
[0009] As a further improvement of the present invention, two groups of the locking members are provided on the overlapping plate. The vertical member of the extension plate is in a solid form and its size coincides with the size of the sliding groove. The left and right spherical pulleys inside the sliding groove contact the left and right edges of the vertical member.
[0010] As a further improvement of the present invention, the locking member is provided with a central block. The central block is embedded in the center of the bottom plate, and the bottom plate covers the bottom of the rectangular block. A threaded sleeve is connected to the center of the surface layer of the rectangular block. The locking bolt vertically penetrates the rectangular block and the central block through the threaded sleeve to complete the overlapping and fixed connection of the overlapping plate and the parallel plate.
[0011] As a further improvement of the present invention, the central block is perpendicular to the bottom plate, and the shape of the bottom plate coincides with the shape of the rectangular block. The threaded sleeve is vertically embedded in the center of the rectangular block and coincides with the center point of the locking bolt.
[0012] As a further improvement of the present invention, the bottom plate is further provided with a border. The border covers the edge part of the block body, and a clamping frame is connected to the center of the block body to cover the edge of the slot. The clamping block is fixed through the slot and contacts the edge of the central block.
[0013] As a further improvement of the present invention, the frame is in a rectangular shape that fits with the shape of the block, the slot of the block is in a rectangular shape, and two rubber clamping blocks are carried to fix the central block.
[0014] As a further improvement of the present invention, the speaker is further provided with an electrical connection plug block, the electrical connection plug block is installed at the center of the bottom of the fixing plate, and the upper end of the fixing plate coincides with the bottom of the speaker body. A recording groove is opened at the front end of the speaker body, and a limiting rail is also opened at the top to determine the position of the groove through the limiting rail.
[0015] As a further improvement of the present invention, the electrical connection plug block intersects with the fixing plate, and the width of the limiting rail of the speaker body at the top is the same as the width of the parallel plate at the bottom of the training display, and then the center groove overlaps with the center point of the convex block.
[0016] As a further improvement of the present invention, a connecting block is also provided at the edge of the groove, the connecting block is welded to the edge part of the combination frame, and a restraint frame is connected inside the combination frame to fix the elastic block.
[0017] As a further improvement of the present invention, there are four connecting blocks in total at the edge of the combination frame, and the shape of the restraint frame inside the combination frame fits with the shape of the convex block and is clamped by the elastic block.
[0018] Compared with the prior art, the present invention has the following beneficial effects: 1. After the present invention is further improved from the training display, based on positioning the balance structure through the surface layer of the parallel plate at the bottom of the insulating frame, when the lifting member adjusts the height of the touch screen, it can drive the vertical member of the extension plate to slide up and down. Thus, the cooperation of the vertical member and the strut chute can effectively improve the stability of the up and down height adjustment of the training display, prevent the unstable situation generated when a single set of lifting members adjusts the height of the training display, and further avoid the deformation and fracture caused by external factors, ensuring the stability of the device during height adjustment and reset.
[0019] 2. After the present invention is further improved from the locking member, the central block of the rectangular block can be parallelly embedded and overlapped on the left and right sides of the overlapping plate and connected to the left and right sides of the parallel plate, and then the locking bolt is vertically penetrated by the cooperation of the threaded sleeve, achieving a firmly locked state to prevent the unstable falling situation during use. On the contrary, the threaded connection facilitates later disassembly and replaces the snap connection to prevent instability caused by the influence of gaps. Then, the block of the bottom plate can complete the splicing with the central block according to the clip frame, slot, and clamping block, ensuring the vertical stability effect of the overall components.
[0020] 3. After the speaker of the present invention is further improved, the electrical connection between the electrical connection plug of the fixing plate and the internal circuit of the placement table enables the speaker body to be stably electrically connected to the training display. Then, the sound emitted by the patient can be recorded through the recording groove to achieve the effect of interactive training. Furthermore, the limiting rail at the top can embed the bottom of the parallel plate when the height of the training display is reset, and at the same time, the convex block can be inserted into the groove through the groove, thereby improving the parallelism of the training display after reset. Description of the Drawings
[0021] Figure 1 It is a schematic structural diagram of a patient rehabilitation cognitive training evaluation device.
[0022] Figure 2 It is a schematic cross-sectional structural diagram after the improvement of the training display.
[0023] Figure 3 It is a schematic front view structural diagram after the improvement of the balance structure.
[0024] Figure 4 It is a schematic three-dimensional structural diagram after the improvement of the locking member.
[0025] Figure 5 It is a schematic top view structural diagram after the improvement of the bottom plate.
[0026] Figure 6 It is a schematic three-dimensional structural diagram after the improvement of the speaker.
[0027] Figure 7 It is a schematic top view structural diagram of the newly added component at the edge of the groove.
[0028] In the figure: Printer - 1, Placement table - 2, Lifting member - 3, Speaker - 4, Training display - 5; Touch screen - 51, Insulating frame - 52, Parallel plate - 53, Splicing block - 54, Convex block - 55, Balance structure - 56; Locking member - 561, Overlapping plate - 562, Extension plate - 563, Vertical member - 564, Slide groove - 565, Pulley - 566, Support pillar - 567, Anti - detachment member - 568; Central block - 5611, Bottom plate - 5612, Rectangular block - 5613, Threaded sleeve - 5614, Locking bolt - 5615; Frame - 6121, Block - 6122, Clamping frame - 6123, Slot - 6124, Clamping block - 6125; Electrical connection plug - 41, Fixing plate - 42, Speaker body - 43, Recording groove - 44, Limiting rail - 45, Groove - 46; Connection block - 461, Combination frame - 462, Restraining frame - 463, Elastic block - 464. Detailed implementation mode
[0029] The present invention will be further described below with reference to the accompanying drawings: Embodiment
[0030] Figures 1 to 5 As shown in the figure: The present invention provides a patient rehabilitation cognitive training evaluation device, Its structure includes a printer 1, a placement table 2, a lifting member 3, a speaker 4, and a training display 5. The printer 1 is installed at the lower part of the placement table 2 and is spaced from the lower end area of the lifting member 3. The lifting member 3 vertically penetrates the center of the placement table 2. Speakers 4 are also provided on the left and right sides of the surface of the placement table 2. The training display 5 connected to the top of the lifting member 3 is electrically connected to the speakers 4 on the left and right sides of the placement table 2 by wires.
[0031] Among them, the training display 5 is provided with a touch screen 51. An insulating frame 52 is connected to the outside of the touch screen 51, and a parallel plate 53 is connected to the bottom of the insulating frame 52. A splicing block 54 is fixed at the center of the bottom of the parallel plate 53 and is fixedly connected to the lifting member 3. Convex blocks 55 are also connected to the left and right sides of the bottom of the parallel plate 53. A balance structure 56 is fixed at the center of the surface of the parallel plate 53.
[0032] Among them, the balance structure 56 is also provided with a locking member 561. The locking device 561 is embedded in the left and right sides of the surface of the overlapping plate 562, and an extension plate 563 is fixed at the center of the overlapping plate 562. A vertical member 564 is welded to the lower end of the extension plate 563. The vertical member 564 is embedded in the center of the sliding groove 565 and contacts the pulleys 566 on the left and right sides. The sliding groove 565 is opened at the center of the support column 567, and the pulley 566 is embedded in the inner wall area of the support column 567. An anti - detachment member 568 is also connected to the lower end of the support column 567.
[0033] Among them, the splicing block 54 at the bottom of the parallel plate 53 of the insulating frame 52 outside the touch screen 51 of the training display 5 is used to complete the fixed connection with the top of the lifting member 3. Then, the convex blocks 55 on the left and right sides coincide with the center of the top of the speaker 4. Subsequently, the balance structure 56 installed at the surface center can enable the vertical member 564 to slide along with the up - and - down sliding of the training display 5 driven by the lifting member 3 through the sliding groove 565 in the support column 567. During the process, the spherical pulley 566 on the inner wall of the support column 567 can be driven to rotate by the vertical member 564.
[0034] Among them, the printer 1 is vertically connected to the lower edge of the placement table 2 and has a safety distance from the lifting member 3 at the center. The two speakers 4 at the upper end of the lifting member 3 are set in a left - right symmetric orientation and overlap with the left and right sides of the lower surface of the training display 5.
[0035] Among them, the bottom of the insulating frame 52 outside the touch screen 51 coincides with the parallel plate 53. The splicing block 54 at the center of the lower layer of the parallel plate 53 is in the shape of a "concave" character, and the convex blocks 55 on the left and right sides are set in a symmetrical orientation and then coincide with the position of the speaker 4. The balance structure 56 is installed at the center of the surface layer of the parallel plate 53 and is spaced from the lifting member 3.
[0036] Among them, two sets of locking members 561 are provided on the overlapping plate 562. The vertical member 564 of the extension plate 563 is in a solid form and its size coincides with the size of the sliding groove 565. The left and right spherical pulleys 566 inside the sliding groove 565 are in contact with the left and right edges of the vertical member 564.
[0037] Among them, the locking member 561 is provided with a central block 5611. The central block 5611 is embedded in the center of the bottom plate 5612, and the bottom plate 5612 covers the bottom of the rectangular block 5613. A threaded sleeve 5614 is connected to the center of the surface layer of the rectangular block 5613. Through the threaded sleeve 5614, the locking bolt 5615 vertically penetrates the rectangular block 5613 and the central block 5611 to complete the overlapping and fixed connection of the overlapping plate 562 and the parallel plate 53.
[0038] Among them, the central block 5611 is perpendicular to the bottom plate 5612, and the shape of the bottom plate 5612 coincides with the shape of the rectangular block 5613. The threaded sleeve 5614 is vertically embedded in the center of the rectangular block 5613 and coincides with the center point of the locking bolt 5615.
[0039] Among them, the bottom plate 5612 is further provided with a border 6121. The border 6121 covers the edge part of the block 6122, and a clamping frame 6123 is connected to the center of the block 6122 to cover the edge of the slot 6124. The clamping block 6125 is fixed through the slot 6124 and is in contact with the edge of the central block 5611.
[0040] Among them, the border 6121 is rectangular in shape and coincides with the shape of the block 6122, and the slot 6124 of the block 6122 is rectangular in shape and is provided with two rubber clamping blocks 6125 to fix the central block 5611.
[0041] The specific functions and operation procedures of this embodiment: In the present invention, the cognitive rehabilitation training evaluation device can determine the positions of components such as the printer 1, the lifting member 3, and the speaker 4 through the placement table 2. After being connected to an external power supply, the height of the training display 5 can be adjusted by the lifting member 3 to match the height of the patient. Then, based on the program of the training display 5 and the provided interactive tasks for the patient to operate, and in combination with the sound of the speaker 4, the evaluation of the cognitive training can be completed. Finally, the printer 1 is used to print the evaluation results. Furthermore, the touch screen 51 of the training display 5 can use the edge insulating frame 52 to prevent electric energy leakage. At the same time, the parallel plate 53 at the bottom can be connected to the top of the lifting member 3 through the central splicing block 54 at the lower end. The convex blocks 55 on both sides can overlap with the top of the speaker 4 after the height of the training display 5 is reset, achieving stable reset. Thus, the balance structure 56 installed at the center of the surface layer of the parallel plate 53 can operate along with the operation of the lifting member 3, ensuring the stability when the height of the touch screen 51 is adjusted, preventing instability caused by the independent support of a single set of lifting members 3 and deformation that cannot be reset due to external force. For this reason, the overlapping plate 562 of the balance structure 56 can cooperate with the locking member 561 to complete the connection with the surface layer of the parallel plate 53, enabling the extension plate 563 carried by the overlapping plate 562 to be installed parallel above the placement table 2. Furthermore, the vertical member 564 at the lower end of the extension plate 563 can vertically embed into the sliding groove 565 of the support column 567 and contact the internal pulley 566. At the same time, the support column 567 can be vertically fixed to the edge area of the surface layer of the placement table 2 through the anti-disconnection member 568. Therefore, when the lifting member 3 drives the training display 5 to slide up and down to adjust the height, the parallel plate 53 can drive the balance structure 56 to slide up and down together, enabling the vertical member 564 to perform vertical movement in the sliding groove 565 and driving the pulley 566 to rotate, improving the smoothness during up and down sliding and preventing jamming. Subsequently, the central block 5611 of the locking member 561 can combine with the bottom plate 5612 to install the rectangular block 5613 parallel to both sides of the overlapping plate 562. With the protrusion of the central block 5611 passing through the surface layer of the overlapping plate 562 and embedding into the parallel plate 53 for restraint, the mutually crossed threaded sleeves 5614 in the rectangular block 5613 can vertically lock the locking bolt 5615. Using thread locking instead of snap connection can avoid looseness and instability caused by assembly gaps. On the contrary, it can achieve the effect of being convenient for disassembly and assembly. The edge of the bottom plate 5612 is also connected with a frame 6121 to cover the edge of the block 6122. Furthermore, the built-in clamping frame 6123 of the block 6122 can determine the position of the slot 6124, enabling the central block 5611 to contact the clamping block 6125 after being embedded into the slot 6124. According to the clamping of the clamping block 6125, the mutual vertical stability between the central block 5611 and the bottom plate 5612 can be ensured, guaranteeing the precise overlapping effect between the overlapping plate 562 and the parallel plate 53. Embodiment
[0042] Figures 6 to 7As shown in the figure: The present invention provides a patient rehabilitation cognitive training evaluation device. Its structure includes that the speaker 4 is also provided with an electrical connection plug 41, the electrical connection plug 41 is installed at the center of the bottom of the fixing plate 42, and the upper end of the fixing plate 42 coincides with the bottom of the speaker body 43. A recording groove 44 is opened at the front end of the speaker body 43, and a limiting rail 45 is also opened at the top. The position of the groove 46 is determined by the limiting rail 45.
[0043] Among them, the electrical connection plug 41 intersects with the fixing plate 42, and the width of the limiting rail 45 of the speaker body 43 at the top is the same as the width of the parallel plate 53 at the bottom of the training display 5. Then, the center of the groove 46 overlaps with the center point of the convex block 55.
[0044] Among them, a connecting block 461 is further provided at the edge of the groove 46. The connecting block 461 is welded to the edge of the combination frame 462, and a restraint frame 463 is connected inside the combination frame 462 to fix the elastic block 464.
[0045] Among them, four connecting blocks 461 are provided at the edge of the combination frame 462 in total. The shape of the restraint frame 463 inside the combination frame 462 fits the shape of the convex block 55, and the elastic block 464 is used to clamp it.
[0046] The specific functions and operation processes of this embodiment: In the present invention, the speaker body 43 of the speaker 4 can embed the electrical connection plug 41 into the placement table 2 through the bottom fixing plate 42 to be electrically connected to the built-in energized area, so that the speaker body 43 can be stably electrically connected to the training display 5. Therefore, the speaker body 43 can receive the instructions issued by the patient through the recording groove 44 and then interact with the tasks of the touch screen 51. At the same time, when the training display 5 is reset in height through the lifting member 3, the limiting rail 45 at the top of the speaker body 43 can receive the parallel plate 53 in parallel, so that the parallel plate 53 can be embedded and coincide with the limiting rail 45, ensuring the parallel descending effect of the parallel plate 53. At the same time, the groove 46 at the center of the limiting rail 45 can allow the convex block 55 to be embedded. Therefore, after the convex block 55 enters the groove 46, it can contact the elastic block 464 of the restraint frame 463 to complete clamping. With the position restraint of the limiting rail 45, it can ensure the verticality of the touch screen 51 after reset and prevent the occurrence of tilting phenomena. Furthermore, the combination frame 462 at the edge of the restraint frame 463 can be installed in the limiting rail 45 by using the four connecting blocks 461 at the edge, ensuring the parallel and stable use effect of the overall components and avoiding the situation of inadaptability caused by the deviation of the position center point.
[0047] Any technical solution using the technical solution of the present invention or designed by those skilled in the art inspired by the technical solution of the present invention and achieving the above technical effects shall fall within the protection scope of the present invention.
Claims
1. A patient rehabilitation cognitive training evaluation device, the structure of which includes: Printer (1), placement table (2), lifting member (3), speaker (4), training display (5). The printer (1) is installed at the lower part of the placement table (2) and is spaced from the lower end area of the lifting member (3). The lifting member (3) vertically penetrates the center of the placement table (2). Speakers (4) are also provided on the left and right sides of the surface of the placement table (2). The training display (5) connected to the top of the lifting member (3) is electrically connected to the speakers (4) on the left and right sides of the placement table (2) by wires. It is characterized in that: The training display (5) is provided with a touch screen (51). An insulating frame (52) is connected to the outside of the touch screen (51), and a parallel plate (53) is connected to the bottom of the insulating frame (52). A splicing block (54) is fixed to the center of the bottom of the parallel plate (53) and is fixedly connected to the lifting member (3). Protrusions (55) are also connected to the left and right sides of the bottom of the parallel plate (53). A balancing structure (56) is fixed to the center of the surface of the parallel plate (53); The balancing structure (56) is also provided with a locking member (561). The locking device (561) is embedded in the left and right sides of the surface of the overlapping plate (562), and an extension plate (563) is fixed to the center of the overlapping plate (562). A vertical member (564) is also welded to the lower end of the extension plate (563). The vertical member (564) is embedded in the center of the sliding groove (565) and contacts the pulleys (566) on the left and right sides. The sliding groove (565) is opened in the center of the support column (567), and the pulley (566) is embedded in the inner wall area of the support column (567). An anti - detachment member (568) is also connected to the lower end of the support column (567); The splicing block (54) on the parallel plate (53) at the bottom of the insulating frame (52) outside the touch screen (51) of the training display (5) is used to complete the fixed connection with the top of the lifting member (3). Then, the protrusions (55) on the left and right sides coincide with the center of the top of the speaker (4). Subsequently, the balancing structure (56) installed at the center of the surface can allow the vertical member (564) to slide along with the upward and downward sliding of the training display (5) driven by the lifting member (3) through the sliding groove (565) in the support column (567). During the process, the spherical pulley (566) on the inner wall of the support column (567) can be driven to rotate by the vertical member (564).
2. The patient rehabilitation cognitive training evaluation device according to claim 1, characterized in that: The printer (1) is vertically connected to the lower edge of the placement table (2) and has a safety distance from the lifting member (3) at the center. The two speakers (4) at the upper end of the lifting member (3) are set in a left - right symmetric orientation and overlap with the left and right sides of the lower surface of the training display (5).
3. The patient rehabilitation cognitive training evaluation device according to claim 1, wherein: The bottom of the insulating frame (52) outside the touch screen (51) coincides with the parallel plate (53). The splicing block (54) at the center of the lower layer of the parallel plate (53) is in the shape of a "concave" character, and the protrusions (55) on the left and right sides are set in a symmetric orientation and then coincide with the position of the speaker (4). The balancing structure (56) is installed at the center of the surface of the parallel plate (53) and is spaced from the lifting member (3).
4. A patient rehabilitation cognitive training evaluation device according to claim 1, characterized in that: There are two sets of the locking members (561) provided on the overlapping plate (562). The vertical member (564) of the extension plate (563) is in a solid form and its size matches the size of the sliding groove (565). The left and right spherical pulleys (566) inside the sliding groove (565) are in contact with the left and right edges of the vertical member (564).
5. The patient rehabilitation cognitive training evaluation device according to claim 1, wherein: The locking member (561) is provided with a central block (5611). The central block (5611) is embedded in the center of the bottom plate (5612), and the bottom plate (5612) covers the bottom of the rectangular block (5613). A threaded sleeve (5614) is connected to the center of the surface layer of the rectangular block (5613). Through the threaded sleeve (5614), the locking bolt (5615) vertically penetrates the rectangular block (5613) and the central block (5611) to complete the overlapping and fixed connection between the overlapping plate (562) and the parallel plate (53). The central block (5611) is perpendicular to the bottom plate (5612), and the shape of the bottom plate (5612) matches the shape of the rectangular block (5613). The threaded sleeve (5614) is vertically embedded in the center of the rectangular block (5613) and coincides with the center point of the locking bolt (5615).
6. The patient rehabilitation cognitive training evaluation device according to claim 5, characterized in that: The bottom plate (5612) is further provided with a frame (6121). The frame (6121) covers the edge part of the block (6122), and a clamping frame (6123) is connected to the center of the block (6122) to cover the edge of the slot (6124). Through the slot (6124), the clamping block (6125) is fixed and in contact with the edge of the central block (5611). The frame (6121) is rectangular in shape and matches the shape of the block (6122). The slot (6124) of the block (6122) is rectangular in shape and is provided with two rubber clamping blocks (6125) to fix the central block (5611).
7. A patient rehabilitation cognitive training evaluation device according to claim 1, characterized in that: The speaker (4) is further provided with an electrical connection plug (41). The electrical connection plug (41) is installed at the center of the bottom of the fixing plate (42), and the upper end of the fixing plate (42) coincides with the bottom of the speaker body (43). A recording groove (44) is opened at the front end of the speaker body (43), and a limiting rail (45) is also opened at the top. The position of the groove (46) is determined by the limiting rail (45). The electrical connection plug (41) intersects with the fixing plate (42), and the width of the limiting rail (45) of the speaker body (43) at the top is the same as the width dimension of the parallel plate (53) at the bottom of the training display (5). Then the center groove (46) coincides with the center point of the convex block (55).
8. The patient rehabilitation cognitive training evaluation device according to claim 7, characterized in that: A connecting block (461) is further provided at the edge of the groove (46). The connecting block (461) is welded to the edge part of the combination frame (462), and a restraint frame (463) is connected inside the combination frame (462) to fix the elastic block (464). There are four connecting blocks (461) in total at the edge of the combination frame (462). The shape of the restraint frame (463) inside the combination frame (462) matches the shape of the convex block (55), and it is clamped by the elastic block (464).