Brain function quantitative imaging device

By designing a quantitative brain function imaging device that combines the detection of brain function subject structure and surrounding detection structure, the problem of incomplete scanning performance of existing devices is solved, comprehensive and accurate detection of the brain is achieved, and medical personnel's judgment and treatment capabilities are improved.

CN112426146BActive Publication Date: 2025-06-27WUHAN ZHIPU TIANCHUANG TECH CO LTD
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
CN202011358251.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-11-27
Publication Date
2025-06-27
Estimated Expiration
2040-11-27

AI Technical Summary

Technical Problem

When used, the existing quantitative brain function imaging device has incomplete scanning performance, which affects medical staff's judgment and treatment of the disease.

Method used

A quantitative imaging device for brain function was designed, and the coordination of the main structure of the brain function and the surrounding detection structure was used to realize multi-faceted scanning detection. The device includes an electric telescopic cable structure, a strap structure, an installation limit structure, a distribution area control board, a connecting line, a clamping board and an infrared scanner. Through the combination of these structures, the comprehensiveness and accuracy of brain detection are achieved.

Benefits of technology

Through multi-faceted scanning and testing, the medical staff's judgment and treatment of the condition are effectively improved, the accuracy and comfort of the detection are improved, and the practical performance of the device is enhanced.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN112426146B_ABST
    Figure CN112426146B_ABST
Patent Text Reader

Abstract

The present invention discloses a brain function quantitative imaging device, comprising: a main structure for detecting brain function, and an electric telescopic cable structure arranged at the upper end of the main structure for detecting brain function; a hanging strap structure arranged at the lower end of the main structure for detecting brain function, wherein an adjusting structure is arranged on one side of the hanging strap structure, and the adjusting structure is fixedly connected to one side of the hanging strap structure; an installation limiting structure arranged above the adjusting structure, and a surrounding detection structure is arranged above the installation limiting structure; a distribution area control board arranged on one side of the surrounding detection structure, and detection dots are arranged on the surface of the distribution area control board; a connecting line arranged at one end of the detection dots, and the connecting line is integrally formed with one end of the detection dots. It realizes multi-faceted scanning and detection during the use of the brain function quantitative imaging device, thereby effectively avoiding the problem of affecting the judgment and treatment of medical staff.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of brain function quantitative imaging, and in particular to a brain function quantitative imaging device. Background Art

[0002] Brain imaging enables neuroscientists to "see inside the living brain" through the latest technologies. These brain imaging methods can assist neuroscientists in the following aspects: understanding the relationship between specific brain regions and their functions, localizing brain regions affected by neurological diseases, inventing new methods for treating brain diseases. Brain function imaging technology is a non-invasive neurofunctional activity measurement-imaging technology. Brain function research mainly explores the neural basis of cognition and emotion, and brain function imaging is very important. Abnormal results include tumors inside or around the neurofunctional area, weak neuronal activity, which may be related to certain neurological diseases. The population in need of examination includes those with neurofunctional impairment, Alzheimer's disease. Brain function imaging is a type of magnetic resonance examination, abbreviated as fMRI, which is mainly used for the evaluation before epilepsy surgery treatment, the study of cognitive function in patients with cognitive impairment, etc. fMRI mainly shows the changes in the brain functional areas during high-level thinking activities, limb movements, auditory, and visual activities of the brain through magnetic resonance scanning technology, which is reflected on the magnetic resonance image by the changes in cerebral blood flow, blood flow velocity, blood oxygen content, and local perfusion status.

[0003] When some existing brain function quantitative imaging devices are in use, their scanning performance is not comprehensive, which is likely to affect the judgment and treatment when medical staff analyze the condition. Summary of the Invention

[0004] One object of the present invention is to solve at least the above problems and provide at least the advantages described later.

[0005] Another object of the present invention is to provide a brain function quantitative imaging device, which realizes multi-faceted scanning and detection when the brain function quantitative imaging device is in use, thus effectively avoiding the problem of affecting the judgment and treatment of medical staff.

[0006] To achieve the above object and some other objects, the present invention adopts the following technical solutions:

[0007] A brain function quantitative imaging device, comprising:

[0008] A main structure for detecting brain function, and an electric telescopic cable structure arranged at the upper end of the main structure for detecting brain function;

[0009] A hanging strap structure, which is arranged at the lower end of the main structure for detecting brain function. One side of the hanging strap structure is provided with an adjusting structure, and the adjusting structure is fixedly connected to one side of the hanging strap structure;

[0010] An installation limit structure is provided above the adjustment structure, and a surrounding detection structure is provided above the installation limit structure;

[0011] A distribution area control board is provided on one side of the surrounding detection structure, and detection dots are provided on the surface of the distribution area control board;

[0012] A connecting wire is provided at one end of the detection dot, and the connecting wire is integrally formed with one end of the detection dot;

[0013] A clamping plate is provided inside the surrounding detection structure, and an infrared scanner is provided in the middle of the clamping plate, and the infrared scanner is fixedly connected to the middle of the clamping plate.

[0014] Preferably, an auricle opening structure is installed on the outer wall of the strap structure, and the auricle opening structure is integrally formed with the outer wall of the strap structure. A placement groove is provided at the bottom of the strap structure, and the placement groove is fixedly connected to the bottom of the strap structure.

[0015] Preferably, a memory foam layer is installed inside the placement groove, and the memory foam layer is fixedly connected to the inside of the placement groove. A sponge sandwich layer is provided on one side of the memory foam layer, and a shock-absorbing rubber sheath is installed on one side of the sponge sandwich layer, and the shock-absorbing rubber sheath is integrally formed with one side of the sponge sandwich layer.

[0016] Preferably, a sliding groove is installed on the surface of the installation limit structure, and the sliding groove is fixedly connected to the surface of the installation limit structure. A protective plate is provided at the bottom of the installation limit structure.

[0017] Preferably, an adjustment knob is installed on the surface of the adjustment structure, and the adjustment knob is integrally formed with the surface of the adjustment structure. An adjustment tightener is installed inside the adjustment structure. One end of the adjustment tightener is provided with an adjustment tightening rope, and the adjustment tightening rope is fixedly connected to one end of the adjustment tightener.

[0018] Preferably, an electric telescopic cable rod is installed on one side of the electric telescopic cable structure. A pressing adjustment button is installed on the surface of the electric telescopic cable structure, and the pressing adjustment button is fixedly connected to the surface of the electric telescopic cable structure. A transmission line is arranged inside the electric telescopic cable rod. A transmission controller is installed at one end of the electric telescopic cable rod, and the transmission controller is fixedly connected to one end of the electric telescopic cable rod. A connection structure is arranged at one end of the electric telescopic cable structure. A signal lamp is installed at the upper end of the connection structure, and the signal lamp is fixedly connected to the upper end of the connection structure. A heat dissipation hole plate is installed on the outer wall of the electric telescopic cable structure. A limiting structure is installed on the front surface of the connection structure. A main line transmission port is arranged on one side of the limiting structure. A connection hole is installed inside the limiting structure, and the connection hole is fixedly connected to the inside of the limiting structure. A hole connector is arranged inside the main line transmission port, and the hole connector is integrally formed with the inside of the main line transmission port.

[0019] Preferably, a head-wearing space is installed inside the main body structure for detecting brain functions. A sliding groove side strip is installed on the outer wall of the main body structure for detecting brain functions, and the sliding groove side strip is fixedly connected to the outer wall of the main body structure for detecting brain functions. A card slot structure is arranged on one side of the sliding groove side strip. A wire insertion hole structure is installed inside the card slot structure, and the wire insertion hole structure is fixedly connected to the inside of the card slot structure.

[0020] Preferably, a tin foil protective layer is installed on the inner wall of the head-wearing space, and the tin foil protective layer is fixedly connected to the inner wall of the head-wearing space.

[0021] Preferably, a wear-resistant plate is installed at the bottom of the surrounding detection structure, and the wear-resistant plate is fixedly connected to the bottom of the surrounding detection structure. An operation lamp is arranged on one side of the surrounding detection structure. An induction working lamp is installed on one side of the operation lamp. A fixing plate is installed on the back of the surrounding detection structure. A slider is arranged on the surface of the fixing plate, and the slider is integrally formed with the surface of the fixing plate.

[0022] The present invention has at least the following beneficial effects:

[0023] 1. Through the mutual cooperation of the main body structure for detecting brain functions and the surrounding detection structure provided in the present invention, more comprehensive detection of the brain can be achieved. When the brain function quantitative imaging device is in use, multi-faceted scanning detection is carried out, thereby effectively improving the judgment and treatment of the condition by medical staff. The installed limiting structure can facilitate the installation of the surrounding detection structure while ensuring that the surrounding detection structure detects the internal head-wearing space through an infrared scanner, thereby effectively improving the detection performance. By the mutual cooperation of the multiple wire insertion hole structures and the transmission controller on the main body structure for detecting brain functions, the detection can be effectively improved. At the same time, the detection dots are controlled by the distribution area control board, making the detection more accurate.

[0024] 2. Through the mutual cooperation of the provided adjustment structure and the hanging strap structure, it is very convenient for the wearer to use. At the same time, the placed groove and auricle opening structure provided inside can effectively place the chin and extend the ears. A sponge sandwich layer and a memory cotton layer are installed inside the placed groove, which can effectively improve the comfort of the wearer, can well relax the mood of the wearer, and improve the accuracy of detection. By using the tension adjuster and the tension adjusting rope, the hanging strap structure can be well adjusted to increase the practical performance.

[0025] 3. Through the provided connection structure and the electric telescopic cable structure, data can be well transmitted. By using multiple limiting structures, multiple internal wiring holes can be effectively protected, thereby effectively improving the convenience of wiring. At the same time, it can be connected to a suitable detection device, thereby effectively improving the detectability and increasing the practical performance. By using the operation lamp and the induction working lamp, the operation of the device can be visually viewed, increasing the practical performance. At the same time, by using the connection holes and the main line transmission ports on the connection structure, a suitable detection device can be connected according to specific needs, thus facilitating the connection. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 is the overall structural schematic diagram of the brain function quantitative imaging device provided by the present invention;

[0027] Figure 2 is the sectional structural schematic diagram of the brain function quantitative imaging device provided by the present invention;

[0028] Figure 3 is the top view structural schematic diagram of the brain function quantitative imaging device provided by the present invention;

[0029] Figure 4 is the partial enlarged schematic diagram of the connection structure of the brain function quantitative imaging device provided by the present invention;

[0030] Figure 5 is the partial enlarged schematic diagram of the surrounding detection structure of the brain function quantitative imaging device provided by the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0031] The following will make a detailed description of the present invention with reference to the accompanying drawings, so that those of ordinary skill in the art can implement it after referring to this specification.

[0032] As Figures 1-5 shown, a brain function quantitative imaging device includes:

[0033] The main structure for detecting brain function, and the electric telescopic cable structure 10 arranged at the upper end of the main structure 1 for detecting brain function, the hanging strap structure 3, which is arranged at the lower end of the main structure 1 for detecting brain function, one side of the hanging strap structure 3 is provided with an adjusting structure 6, and the adjusting structure 6 is fixedly connected to one side of the hanging strap structure 3, the installation limiting structure 7, which is arranged above the adjusting structure 6, the surrounding detection structure 9 is arranged above the installation limiting structure 7, the distribution area control board 21, which is arranged on one side of the surrounding detection structure 9, the surface of the distribution area control board 21 is provided with detection dots 20, the connecting line 22, which is arranged at one end of the detection dot 20, and the connecting line 22 is integrally formed with one end of the detection dot 20, the clamping plate 40, which is arranged inside the surrounding detection structure 9, an infrared scanner 36 is arranged in the middle of the clamping plate 40, and the infrared scanner 36 is fixedly connected to the middle of the clamping plate.

[0034] In the above solution, the mutual cooperation between the main structure for detecting brain function and the surrounding detection structure can play a role in making the brain detection more comprehensive. When the brain function quantitative imaging device is in use, multi-faceted scanning detection is carried out, thereby effectively improving the medical staff's judgment and treatment of the condition. Ensure that the surrounding detection structure detects the internal head-wearing space through the infrared scanner, thereby effectively improving the detectability. By the mutual cooperation of the multiple wiring hole structures and the transmission controller on the main structure for detecting brain function, the detection can be effectively improved. By setting the adjusting structure and the hanging strap structure, the wearer's mood can be well relaxed, and the detection accuracy can be improved. By using the tension adjuster and the tension adjusting rope, the hanging strap structure can be well regulated, increasing the practical performance. At the same time, by using the connection holes and the main line transmission ports on the connection structure, the appropriate detection equipment can be connected according to specific needs, thus facilitating the connection.

[0035] In a preferred solution, the outer wall of the hanging strap structure 3 is provided with an auricle opening structure 5, and the auricle opening structure 5 is integrally formed with the outer wall of the hanging strap structure 3. The bottom of the hanging strap structure 3 is provided with a placement groove 4, and the placement groove 4 is fixedly connected to the bottom of the hanging strap structure 3.

[0036] In the above solution, it can be well used by the wearer. At the same time, the placement groove and the auricle opening structure arranged inside can effectively place the chin and extend the ears, effectively improving the comfort of the wearer. The quantitatively set placement groove can be well placed, increasing the usability.

[0037] In a preferred embodiment, a memory foam layer 30 is installed inside the placement groove 4, and the memory foam layer 30 is fixedly connected to the inside of the placement groove 4. A sponge interlayer 29 is provided on one side of the memory foam layer 30. A shock-absorbing rubber sheath 28 is installed on one side of the sponge interlayer 29, and the shock-absorbing rubber sheath 28 is integrally formed with one side of the sponge interlayer 29.

[0038] In the above solution, the sponge interlayer and the memory foam layer can effectively improve the comfort of the chin and ears, effectively enhance the comfort of the wearer, and can well relax the mood of the wearer, thereby improving the accuracy of detection.

[0039] In a preferred embodiment, a sliding groove 8 is installed on the surface of the installation limiting structure, and the sliding groove is fixedly connected to the surface of the installation limiting structure 7. A protective plate 26 is provided at the bottom of the installation limiting structure 7.

[0040] In the above solution, the installation limiting structure can facilitate the installation of the surrounding detection structure while ensuring that the surrounding detection structure detects the internal head-wearing space through the infrared scanner, thereby effectively improving the detectability. The overall structure can be effectively protected by the provided protective plate, increasing the practical performance and improving the protection performance, thereby extending the service life of the structure.

[0041] In a preferred embodiment, an adjustment knob 11 is installed on the surface of the adjustment structure 6, and the adjustment knob 11 is integrally formed with the surface of the adjustment structure 6. An adjustment tightener 27 is installed inside the adjustment structure 6. One end of the adjustment tightener 27 is provided with an adjustment tightening rope 41, and the adjustment tightening rope 41 is fixedly connected to one end of the adjustment tightener 27.

[0042] In the above solution, by using the adjustment tightener and the adjustment tightening rope, the hanging strap structure can be well regulated, increasing the practical performance. At the same time, the adjustment structure can be conveniently adjusted by using the adjustment knob on the outside, increasing the practical performance.

[0043] In a preferred embodiment, an electric telescopic cable rod 15 is installed on one side of the electric telescopic cable structure 10. A pressing adjustment button 16 is installed on the surface of the electric telescopic cable structure 10, and the pressing adjustment button 16 is fixedly connected to the surface of the electric telescopic cable structure 10. A transmission line 24 is arranged inside the electric telescopic cable rod 15. A transmission controller 19 is installed at one end of the electric telescopic cable rod 15, and the transmission controller 19 is fixedly connected to one end of the electric telescopic cable rod 15. A connection structure 2 is arranged at one end of the electric telescopic cable structure 10. A signal lamp 25 is installed at the upper end of the connection structure 2, and the signal lamp 25 is fixedly connected to the upper end of the connection structure 2. A heat dissipation hole plate 34 is installed on the outer wall of the electric telescopic cable structure 10. A limiting structure 31 is installed on the front end face of the connection structure 2. A main line transmission port 33 is arranged on one side of the limiting structure 31. A connection hole 32 is installed inside the limiting structure 31, and the connection hole 32 is fixedly connected to the inside of the limiting structure 31. A hole connector 42 is arranged inside the main line transmission port 33, and the hole connector 42 is integrally formed with the inside of the main line transmission port 33.

[0044] In the above solution, the provided connection structure and electric telescopic cable structure can transmit data well. The use of the connection hole and the hole connector makes the connection transmission stable, facilitating the connection device to observe data and improving stability. The use of the operation lamp and the induction working lamp allows for an intuitive view of the operation of the device, increasing practical performance. The mutual cooperation of the multiple wiring hole structures on the detection brain function main body structure and the transmission controller can effectively improve detection. By using multiple limiting structures, the multiple wiring hole structures inside can be effectively protected, thus effectively improving the convenience of wiring. At the same time, suitable detection devices can be connected, thereby effectively enhancing detectability and increasing practical performance.

[0045] In a preferred embodiment, a head-wearing space 18 is installed inside the detection brain function main body structure 1. A sliding groove side strip 12 is installed on the outer wall of the detection brain function main body structure 1, and the sliding groove side strip 12 is fixedly connected to the outer wall of the detection brain function main body structure 1. A card slot structure 13 is arranged on one side of the sliding groove side strip 12. A wiring hole structure 14 is installed inside the card slot structure 13, and the wiring hole structure 14 is fixedly connected to the inside of the card slot structure 13.

[0046] In the above solution, by providing the sliding groove side strip on the outer wall of the detection brain function main body structure, on the one hand, it can effectively protect the detection brain function main body structure from external factors. At the same time, it can provide a good track for the surrounding detection structure, thus facilitating the surrounding detection structure to perform detection around the detection brain function main body structure, effectively enhancing detectability and increasing practical performance.

[0047] In a preferred embodiment, a tin foil protective layer 17 is installed on the inner wall of the head-wearing space 18, and the tin foil protective layer 17 is fixedly connected to the inner wall of the head-wearing space 18.

[0048] In the above solution, by using the tin foil protective layer of the head-wearing space, the influence of external magnetic field factors on the interior can be effectively isolated, improving the accuracy of internal detection. At the same time, by using the surrounding detection structure to detect the internal head-wearing space through an infrared scanner, the detectability can be effectively improved. By using the cooperation between the multiple wiring holes on the brain function main structure and the transmission controller, the detection can be effectively improved. By using the distribution area control board to control the detection dots at the same time, the detection area can be divided for detection, and finally summarized to the transmission controller, thus effectively improving the accuracy of detection and the detection efficiency.

[0049] In a preferred embodiment, a wear-resistant plate 38 is installed at the bottom of the surrounding detection structure 9, and the wear-resistant plate 38 is fixedly connected to the bottom of the surrounding detection structure 9. An operation lamp is arranged on one side of the surrounding detection structure 9. An induction working lamp 23 is installed on one side of the operation lamp 37. A fixing plate 39 is installed on the back of the surrounding detection structure 9. A slider 35 is arranged on the surface of the fixing plate 39, and the slider 35 is integrally formed with the surface of the fixing plate 39.

[0050] In the above solution, by setting the wear-resistant plate at the bottom of the surrounding detection structure, the surrounding detection structure can be kept stable during multiple surrounding detections, increasing the wear resistance. The operation lamp and the induction working lamp can directly view the operation of the device, increasing the practical performance. The slider and the fixing plate can slide around well, increasing the stability and practical performance at the same time. The clamping plate can clamp the infrared scanner well, increasing the stability and detectability.

[0051] Although the embodiments of the present invention have been disclosed as above, it is not limited to only the applications listed in the specification and embodiments. It can be fully applied to various fields suitable for the present invention. For those familiar with the field, other modifications can be easily made. Therefore, without departing from the general concept defined by the claims and the equivalent scope, the present invention is not limited to the specific details and the examples shown and described here.

Claims

1. A brain function quantitative imaging device, characterized in that Including: A main structure for detecting brain function, and an electric telescopic cable structure arranged at the upper end of the main structure for detecting brain function; A hanging strap structure arranged at the lower end of the main structure for detecting brain function. One side of the hanging strap structure is provided with an adjusting structure, and the adjusting structure is fixedly connected to one side of the hanging strap structure; An installation limiting structure arranged above the adjusting structure, and a surrounding detection structure is arranged above the installation limiting structure; A distribution area control board arranged on one side of the surrounding detection structure, and detection dots are arranged on the surface of the distribution area control board; A connecting wire arranged at one end of the detection dot, and the connecting wire is integrally formed with one end of the detection dot; A clamping plate arranged inside the surrounding detection structure. An infrared scanner is arranged in the middle of the clamping plate, and the infrared scanner is fixedly connected to the middle of the clamping plate; A sliding groove is installed on the surface of the installation limiting structure, and the sliding groove is fixedly connected to the surface of the installation limiting structure. A protective plate is arranged at the bottom of the installation limiting structure; A head-wearing space is installed inside the main structure for detecting brain function. A sliding groove edge strip is installed on the outer wall of the main structure for detecting brain function, and the sliding groove edge strip is fixedly connected to the outer wall of the main structure for detecting brain function; A card slot structure is arranged on one side of the sliding groove edge strip, and a wire insertion hole structure is installed inside the card slot structure, and the wire insertion hole structure is fixedly connected to the inside of the card slot structure; A pressing adjustment button is installed on the surface of the electric telescopic cable structure, and the pressing adjustment button is fixedly connected to the surface of the electric telescopic cable structure. An electric telescopic cable rod is arranged on one side of the electric telescopic cable structure. A transmission line is arranged inside the electric telescopic cable rod. One end of the electric telescopic cable rod is fixedly connected to a transmission controller. A connecting structure is arranged on the other side of the electric telescopic cable structure. A signal lamp is installed at the upper end of the connecting structure, and the signal lamp is fixedly connected to the upper end of the connecting structure. A heat dissipation hole plate is installed on the outer wall of the electric telescopic cable structure. A limiting structure is installed on the front end face of the connecting structure. A main circuit transmission port is arranged on one side of the limiting structure. A connecting hole is installed inside the limiting structure, and the connecting hole is fixedly connected to the inside of the limiting structure. A hole connecting head is arranged inside the main circuit transmission port, and the hole connecting head is integrally formed with the inside of the main circuit transmission port.

2. The brain function quantitative imaging device according to claim 1, wherein An auricle opening structure is installed on the outer wall of the hanging strap structure, and the auricle opening structure is integrally formed with the outer wall of the hanging strap structure. A placement groove is arranged at the bottom of the hanging strap structure, and the placement groove is fixedly connected to the bottom of the hanging strap structure; 3. The brain function quantitative imaging device according to claim 2, wherein, A memory cotton layer is installed inside the placement groove, and the memory cotton layer is fixedly connected to the inside of the placement groove. A sponge interlayer is arranged on one side of the memory cotton layer. A shock-absorbing rubber sleeve is arranged on one side of the sponge interlayer, and the shock-absorbing rubber sleeve is integrally formed with one side of the sponge interlayer.

4. The brain function quantitative imaging device according to claim 1, wherein An adjustment knob is surface-mounted on the adjustment structure, and the adjustment knob is integrally formed with the surface of the adjustment structure. An adjustment tightener is installed inside the adjustment structure, and one end of the adjustment tightener is provided with an adjustment tightening rope, and the adjustment tightening rope is fixedly connected to one end of the adjustment tightener.

5. The brain function quantitative imaging device according to claim 1, characterized in that, A tin foil protective layer is installed on the inner wall of the head-wearing space, and the tin foil protective layer is fixedly connected to the inner wall of the head-wearing space.

6. The brain function quantitative imaging device according to claim 1, wherein, A wear-resistant plate is installed at the bottom of the surrounding detection structure, and the wear-resistant plate is fixedly connected to the bottom of the surrounding detection structure. An operation lamp is arranged on one side of the surrounding detection structure, an induction working lamp is installed on one side of the operation lamp, a fixing plate is installed on the back of the surrounding detection structure, and a slider is arranged on the surface of the fixing plate, and the slider is integrally formed with the surface of the fixing plate.

Citation Information

Patent Citations

  • Helmet for acquiring brain signal by combining electroencephalography with near-infrared spectroscopy

    CN102894971A

  • Anti-falling circular array electrode for brain electrical impedance tomography

    CN211094101U

  • Brain function quantitative imaging device

    CN213883198U

  • Apparatus for detecting brain function

    US20090171181A1