CN116099098A - Acousto-optic induction electroencephalogram treatment equipment - Google Patents
Acousto-optic induction electroencephalogram treatment equipment Download PDFInfo
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- CN116099098A CN116099098A CN202211355611.9A CN202211355611A CN116099098A CN 116099098 A CN116099098 A CN 116099098A CN 202211355611 A CN202211355611 A CN 202211355611A CN 116099098 A CN116099098 A CN 116099098A
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Abstract
The invention relates to the technical field of medical equipment, in particular to acousto-optic induction brain electrical therapy equipment, which comprises a control component and a wearing component, wherein the wearing component comprises a helmet, a decorative shell, a protective layer, guide rods, connecting springs, eye components and ear components; the helmet is worn on the head of a human body, the protective layer is contacted with the head, if the head is larger, the protective layer slides towards the direction of the helmet, the guide rod compresses the connecting spring, the interaction force of the connecting spring enables the protective layer to be clung to the head of the human body, the helmet is suitable for users of various types, the helmet is fastened, the helmet cannot fall off, and the use effect is guaranteed in the moving process of the user.
Description
Technical Field
The invention relates to the technical field of medical equipment, in particular to acousto-optic induction brain electrical therapy equipment.
Background
The modern society people bear more and more pressure, the incidence rate of mental and psychological diseases such as depression and sleep disorder is higher and higher at present, great burden is caused for families and society, three functional therapies of pulse light stimulation, transcranial microcurrent stimulation and music are effective methods for preventing and treating mental diseases such as insomnia, anxiety and depression, and the traditional acousto-optic and electric insomnia and depression resistant therapeutic apparatus is mainly fixed through a binding belt with elastic elasticity when being worn, and the comfort is not enough when being worn.
The prior bulletin No. CN213609225U discloses an acousto-optic electric insomnia and depression resistant therapeutic apparatus, which comprises a fixed cheek and an elastic adjusting belt, wherein the fixed cheek is arranged at the left end and the right end of the elastic adjusting belt, an inserting block clamping seat is arranged on the elastic adjusting belt, an inserting rod inlet is arranged at the right end of the inserting block clamping seat, when a rotating inserting rod is inserted into the bottom of the inserting rod inlet, a triangular clamping foot at one end at the outer side of the rotating inserting rod can jack up a wedge-shaped inserting block outwards, so that a disassembly button can extend out of a button clamping groove, and when the disassembly button is extruded inwards, two rotating inserting rods are drawn towards the inner side under the pushing of the wedge-shaped inserting block, so that the two rotating inserting rods can be pulled out from the inserting rod inlet, thereby completing the separation of the fixed inserting block and the inserting block clamping seat, and taking down the therapeutic apparatus from the head of a patient.
However, the acousto-optic and electric insomnia and depression resistant therapeutic apparatus is fixed on the brain of a person only by means of an elastic adjusting belt, is not firm in fixation, and easily falls off in the process of movement of a user, so that the use effect is affected.
Disclosure of Invention
The invention aims to provide acousto-optic induction brain-electric therapeutic equipment, which solves the problems that the acousto-optic anti-insomnia and depression therapeutic equipment is fixed on the brain of a human body only by means of an elastic adjusting belt, is not firm in fixation, easily falls off in the process of the activity of a user and influences the use effect.
In order to achieve the above purpose, the invention provides an acousto-optic induction electroencephalogram treatment device, which comprises a control component and a wearing component;
the wearing assembly comprises a helmet, a decorative shell, a protective layer, guide rods, connecting springs, eye components and ear components, wherein the decorative shell is located on the outer side of the helmet, the protective layer is located on the inner side of the helmet, the guide rods are multiple in number and fixedly connected with the protective layer respectively, the guide rods penetrate through the helmet respectively, the connecting springs are fixedly connected with one side, away from the protective layer, of each guide rod, and are located between the decorative shell and the guide rods, the eye components are connected with the decorative shell, the ear components are connected with the helmet, and the control assembly is connected with the helmet.
Wherein the wearing assembly further comprises a cranium generator and a cranium electricity generator, the cranium generator being connected with the helmet; the cranium electricity generator is connected with the protective layer.
The eye components comprise a front mask and a light bead plate, and the front mask is rotationally connected with the decorative shell and is positioned on the outer side of the decorative shell; the light bead plate is fixedly connected with the front face mask and is positioned on one side of the front face mask, which is close to the helmet.
The ear component comprises two audio generators, a laminating layer and a connecting part, wherein the two audio generators are respectively and oppositely positioned at two sides of the helmet; the two audio generators are fixedly connected with the laminating layers on one sides close to the protective layers respectively; the connection member is connected with the audio generator.
The ear component further comprises a sound insulation layer which is fixedly connected with the helmet and is positioned on one side of the helmet, which is close to the audio generator.
The control assembly comprises a control module, an adjusting module and a functional module, wherein the control module is respectively connected with the adjusting module and the functional module;
the adjusting module is used for acquiring a user instruction and sending the user instruction to the control module;
the control module is used for acquiring the user instruction, generating corresponding control data by the user instruction, and uploading the control data to the functional module;
the functional module is used for acquiring the control data and controlling corresponding functional devices to operate according to the control data.
The function module comprises a light unit, an audio unit and a current unit, wherein the light unit is connected with the control module, the audio unit is connected with the control module, and the current unit is connected with the control module;
the light unit is used for generating light rays;
the audio unit is used for generating sound;
the current unit is used for generating low-intensity micro-current.
The invention relates to acousto-optic induction electroencephalogram treatment equipment, which is suitable for being worn on the head of a human body, wherein a decorative shell is arranged on the outer side of the helmet to play an attractive role, the protective layer is arranged in the helmet and is used for being contacted with the human body, one ends of a plurality of guide rods are fixedly connected with the protective layer respectively, the other ends of the guide rods penetrate through the helmet and are connected with connecting springs, the other ends of the connecting springs are connected with the inner side of the decorative shell, eye members are arranged on the decorative shell and are close to eyes of the human body, ear members are arranged on the helmet and are close to ears of the human body, so that the helmet is worn on the head of the human body, the protective layer contacts with the head of the human body, if the head is large, the protective layer slides towards the direction of the helmet, the connecting springs are compressed by the guide rods, the interaction force of the connecting springs enables the protective layer to be tightly attached to the head of the human body, the protective layer is suitable for being worn by users of various body types, the eye members are fastened, the eye members are not shed, the effect of the user is ensured in the activity process of the user, and the ear members and the control assembly are controlled by a control assembly to perform acousto-optic stimulation.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below.
Fig. 1 is a schematic structural view of an acousto-optic induction brain electrical therapy apparatus according to a first embodiment of the present invention.
Fig. 2 is a cross-sectional view of an acousto-optic induced brain wave therapeutic apparatus according to a first embodiment of the present invention.
Fig. 3 is a schematic structural diagram of an acousto-optic induction brain electrical therapy device according to a second embodiment of the present invention.
Fig. 4 is a cross-sectional view of an acousto-optic induced brain electrical treatment device according to a second embodiment of the present invention.
Fig. 5 is a cross-sectional view of an audio generation of a second embodiment of the present invention.
Fig. 6 is a schematic structural view of a connecting member according to a second embodiment of the present invention.
Fig. 7 is a schematic structural view of a control assembly according to a third embodiment of the present invention.
In the figure: 101-helmets, 102-decorative housings, 103-protective layers, 104-guide rods, 105-connecting springs, 201-cranium generators, 202-cranium generators, 203-front masks, 204-light bead plates, 205-audio generators, 206-bonding layers, 207-sound insulation layers, 208-adjusting rods, 209-sliding blocks, 210-guide blocks, 301-control modules, 302-adjusting modules, 303-function modules, 304-light units, 305-audio units, 306-current units.
Detailed Description
The following detailed description of embodiments of the invention, examples of which are illustrated in the accompanying drawings and, by way of example, are intended to be illustrative, and not to be construed as limiting, of the invention.
The first embodiment of the application is as follows:
referring to fig. 1 and 2, fig. 1 is a schematic structural diagram of an acousto-optic induction brain electrical therapy device according to a first embodiment of the present invention. Fig. 2 is a cross-sectional view of an acousto-optic induced brain wave therapeutic apparatus according to a first embodiment of the present invention.
The invention provides an acousto-optic induction electroencephalogram treatment device, which comprises: comprising a control assembly and a wearing assembly comprising a helmet 101, a decorative shell 102, a protective layer 103, a guide rod 104, a connecting spring 105, an eye member and an ear member. The problems that the acousto-optic electric insomnia-resistant and depression-resistant therapeutic apparatus in the background technology is fixed on the brain of a person only by means of the elastic adjusting belt, the fixation is unstable, the falling off is easy to cause in the process of the movement of a user, and the using effect is affected are solved through the scheme, and the scheme can be used for the wearing scene of therapeutic equipment and also can be used for the solving of mental and psychological diseases such as depression and sleep disorder.
For this specific embodiment, the decorative shell 102 is located on the outer side of the helmet 101, the protective layer 103 is located on the inner side of the helmet 101, the number of the guide rods 104 is multiple, the guide rods 104 are respectively and fixedly connected with the protective layer 103, the guide rods 104 respectively penetrate through the helmet 101, one side, away from the protective layer 103, of each guide rod 104 is fixedly connected with the connecting spring 105, the connecting springs 105 are located between the decorative shell 102 and the guide rods 104, eye members are connected with the decorative shell 102, ear members are connected with the helmet 101, and the control assembly is connected with the helmet 101. The helmet 101 is suitable for wearing on the head of a human body, the decorative shell 102 is fixedly connected with the helmet 101, the decorative shell 102 is arranged on the outer side of the helmet 101, a containing space is formed between the decorative shell 102 and the helmet 101, the decorative shell 102 plays a double protection and attractive role, the protective layer 103 is made of latex materials and is used for being attached to the head of the human body, one ends of the guide rods 104 are fixedly connected with the protective layer 103, the other ends of the guide rods 104 penetrate through the helmet 101 and are connected with the connecting springs 105, the other ends of the connecting springs 105 are abutted to the inner side of the decorative shell 102, eye members are connected with the decorative shell 102 and are arranged on eyes of the human body, ear members are connected with the helmet 101 and are arranged on ears of the human body, and the control assembly is used for treatment.
When the acousto-optic induction electroencephalogram treatment equipment is used for treating a human body, the helmet 101 is worn on the head of the human body, the protective layer 103 is contacted with the head of the human body, if the head of the user is large, the protective layer 103 is driven to move towards the helmet 101, the guide rod 104 slides to abut against the connecting spring 105, the connecting spring 105 abuts against the decorative shell 102, the protective layer 103 is tightly attached to the head of the human body due to the interaction force of elasticity, the helmet 101 is further fastened, the equipment is suitable for users with various body types, falling off does not occur in the activity process of the user, the control assembly controls the eye members and the ear members to operate, acousto-optic treatment is carried out, and the helmet 101 is firmly worn, so that the user can normally treat the equipment in the activity process, and the use effect is guaranteed.
The second embodiment of the present application is:
referring to fig. 3 to 6 on the basis of the first embodiment, fig. 3 is a schematic structural diagram of an acousto-optic induction brain electrical therapy device according to a second embodiment of the present invention. Fig. 4 is a cross-sectional view of an acousto-optic induced brain electrical treatment device according to a second embodiment of the present invention. Fig. 5 is a cross-sectional view of an audio generation of a second embodiment of the present invention. Fig. 6 is a schematic structural view of a connecting member according to a second embodiment of the present invention.
The wear assembly of this embodiment further includes a cranial generator 201 and a cranial electricity generator 202, the eye member includes a front face mask 203 and a light bead plate 204, the ear member includes an audio generator 205, a lamination layer 206, connection components including an adjustment bar 208, a slider 209, and a guide block 210, and a sound insulation layer 207.
For this particular embodiment, the cranium generator 201 is connected to the helmet 101; the cranial electricity generator 202 is connected to the shielding 103. The cranium generator 201 is arranged on the helmet 101, a power supply is arranged in the accommodating space between the helmet 101 and the decorative shell 102 to supply power to various electronic devices, and the cranium electricity generator 202 is arranged on the protective layer 103 and is used for generating low-intensity micro-current close to the head of a human body for treatment.
Wherein the front face mask 203 is rotatably connected with the decorative shell 102 and is positioned outside the decorative shell 102; the light bead plate 204 is fixedly connected with the front cover 203, and is located at one side of the front cover 203 close to the helmet 101. The front mask 203 is rotatably disposed on the decorative housing 102 and is close to eyes of a human body, the light bead plate 204 is disposed on the inner side, and the light bead plate 204 is formed by combining a plurality of light beads.
Second, the number of the audio generators 205 is two, and the two audio generators 205 are respectively located at two sides of the helmet 101; the two audio generators 205 are fixedly connected with the attaching layers 206 on one sides of the two audio generators near the protecting layer 103 respectively; the connection means is connected to the audio generator 205. The audio generator 205 is used for emitting sound, is arranged on two sides of the helmet 101, one side, close to the bonding layer 206, is adhered with the bonding layer 206, the bonding layer 206 is made of non-woven fabrics or cotton cloth materials, the user can feel more comfortable when pressed close to the ears, and the connecting component is used for connecting the helmet 101 with the audio generator 205.
Meanwhile, the sound insulation layer 207 is fixedly connected to the helmet 101 and located at a side of the helmet 101 near the audio generator 205. The sound insulation layer 207 is arranged on one side of the helmet 101 close to the audio generator 205, and the sound insulation layer 207 is made of a sound insulation material, so that the sound generated by the audio generator 205 is prevented from leaking.
In addition, the number of the adjusting rods 208 is two, the two adjusting rods 208 are respectively connected with the helmet 101 in a rotating way, and the two adjusting rods 208 are respectively positioned at the sides of the two audio generators 205; the sliding blocks 209 are respectively connected between the two adjusting rods 208 and the two audio generators 205. The two audio generators 205 are fixedly connected with the guide blocks 210 respectively, and the guide blocks 210 are slidably connected with the helmet 101. The two sides of the two audio generators 205 are respectively provided with an adjusting rod 208, the adjusting rods 208 penetrate through the decorative shell 102 and are in rotary connection with the helmet 101, the sliding blocks 209 are in threaded fit with the adjusting rods 208 relatively and are connected between the adjusting rods 208 and the audio generators 205, the other sides of the audio generators 205 are fixedly connected with guide blocks 210, the guide blocks 210 are in sliding connection with the helmet 101 and play a guiding role on the movement of the audio generators 205, and the sliding blocks 209 follow forward rotation or reverse rotation of the adjusting rods 208, move back and forth on the adjusting rods 208 and further move back and forth on the helmet 101.
After the helmet 101 is worn on the head of a human body, the protection layer 103 is adjusted, the cranium electric generator 202 is made to be close to the brain of the human body, the front mask 203 is put down, the light bead plate 204 is placed in front of eyes of the human body, the audio generator 205 is placed in ears of the human body, at the moment, the adjusting rod 208 is rotated to drive the sliding block 209 to move, and then the audio generator 205 is driven to move back and forth on the helmet 101, so that the audio generator is close to the ears of the human body, and is suitable for users with various body types, then the control assembly controls the light bead plate 204, the audio generator 205 and the cranium generator 201 to operate, the user is treated through acousto-optic electric induction, and three functional therapies of pulse light stimulation, transcranial micro-current stimulation and music are integrated, so that the therapeutic effect is better.
The third embodiment of the present application is:
referring to fig. 7 on the basis of the second embodiment, fig. 7 is a schematic structural diagram of a control assembly according to a third embodiment of the present invention.
The control component of the present embodiment includes a control module 301, an adjustment module 302, and a functional module 303, where the functional module 303 includes a light unit 304, an audio unit 305, and a current unit 306.
For the present embodiment, the control component includes a control module 301, an adjustment module 302, and a functional module 303, where the control module 301 is connected to the adjustment module 302 and the functional module 303 respectively;
the adjusting module 302 is configured to obtain a user instruction, and send the user instruction to the control module 301;
the control module 301 is configured to obtain the user instruction, generate corresponding control data from the user instruction, and upload the control data to the functional module 303;
the function module 303 is configured to obtain the control data, and control operation of a corresponding functional device according to the control data. The control module 301, the adjusting module 302 and the functional module 303 are integrated into a circuit board, the circuit board is arranged between the helmet 101 and the decorative shell 102, a battery is arranged between the helmet 101 and the decorative shell 102 to supply power, the adjusting module 302 is provided with a control button, a user sends a user instruction by pressing the control button, the adjusting module 302 uploads the user instruction to the control module 301, the control module 301 generates control data according to the corresponding user instruction and uploads the control data to the functional module 303, and the functional devices of the functional module 303 react correspondingly to realize acousto-optic channel treatment.
Wherein the light unit 304 is connected with the control module 301, the audio unit 305 is connected with the control module 301, and the current unit 306 is connected with the control module 301;
the light unit 304 is configured to generate light;
the audio unit 305 is configured to generate sound;
the current unit 306 is configured to generate a low-intensity micro-current. The light unit 304 is composed of the light bead plate 204, and emits specific light to perform light stimulation, the visual nerve impulse is transmitted from retina to brain, the light is projected onto retina after being bent by cornea, lens, etc., the light stimulus is converted into nerve impulse, the visual impulse reaches outer knee of thalamus via optic nerve, visual cross, optic bundle, the latter emits visual radiation, and finally is projected to the center of pillow She Shijiao, therefore, the light stimulus with specific frequency can influence human brain by influencing outer knee, thalamus, cortex and then adjusting human brain function and rhythm, so as to be beneficial to treatment, the audio unit 305 is composed of the audio generator 205, and emits sound wave to perform stimulation, especially pulsation sound and binaural beating, binaural beating: when the sound heard by one ear and the sound heard by the other ear have some slight difference, and the brain is actually synchronous with the difference between the two, when the frequency of the two sounds is different by 10Hz, the brain can correspondingly generate 10Hz brain waves; when the frequency of two sounds is different by 6Hz, brain waves of 6Hz can be correspondingly generated by the brain, special sound signals compiled by a special technology are acted on ears of a person according to the brain wave synchronization principle, the brain electrical activity level and the excitation degree of the human body are influenced and regulated by utilizing the rhythm change of the sound signal frequency, and the brain blood supply is enhanced, so that the aims of relieving anxiety and tension and physiological psychology are achieved, the circuit unit is composed of the cranium generator 201 and the cranium electrical generator 202, and the brain is stimulated by low-intensity trace current to change the brain wave of the abnormal brain of a patient, so that the brain is promoted to secrete a series of neurotransmitters and hormones which are closely related with anxiety, depression, insomnia and other diseases, and the treatment of the diseases is realized.
When the helmet 101 is worn to perform treatment, a user controls the adjusting module 302 by pressing a button to adjust the adjusting module to a proper mode, then sends a user instruction to the functional module 303 through the control module 301, and the light unit 304, the audio unit 305 and the current unit 306 perform corresponding reactions to perform acousto-optic therapy.
The foregoing disclosure is only illustrative of one or more preferred embodiments of the present application and is not intended to limit the scope of the claims hereof, as it is to be understood by those skilled in the art that all or part of the process of implementing the described embodiment may be practiced otherwise than as specifically described and illustrated by the appended claims.
Claims (7)
1. An acousto-optic induction brain electrical therapy device comprises a control component, and is characterized in that,
the wearing assembly is also included;
the wearing assembly comprises a helmet, a decorative shell, a protective layer, guide rods, connecting springs, eye components and ear components, wherein the decorative shell is located on the outer side of the helmet, the protective layer is located on the inner side of the helmet, the guide rods are multiple in number and fixedly connected with the protective layer respectively, the guide rods penetrate through the helmet respectively, the connecting springs are fixedly connected with one side, away from the protective layer, of each guide rod, and are located between the decorative shell and the guide rods, the eye components are connected with the decorative shell, the ear components are connected with the helmet, and the control assembly is connected with the helmet.
2. The acousto-optic induction brain wave therapeutic apparatus according to claim 1, wherein,
the wearing assembly further comprises a cranium generator and a cranium electricity generator, wherein the cranium generator is connected with the helmet; the cranium electricity generator is connected with the protective layer.
3. The acousto-optic induction brain wave therapeutic apparatus according to claim 1, wherein,
the eye part component comprises a front face mask and a light bead plate, and the front face mask is rotationally connected with the decorative shell and is positioned on the outer side of the decorative shell; the light bead plate is fixedly connected with the front face mask and is positioned on one side of the front face mask, which is close to the helmet.
4. The acousto-optic induction brain wave therapeutic apparatus according to claim 1, wherein,
the ear component comprises two audio generators, a fitting layer and a connecting part, wherein the two audio generators are respectively and oppositely positioned at two sides of the helmet; the two audio generators are fixedly connected with the laminating layers on one sides close to the protective layers respectively; the connection member is connected with the audio generator.
5. The acousto-optic induction brain wave therapeutic apparatus according to claim 4, wherein,
the ear member also includes a sound barrier fixedly connected to the helmet and positioned on a side of the helmet adjacent to the audio generator.
6. The acousto-optic induction brain wave therapeutic apparatus according to claim 1, wherein,
the control assembly comprises a control module, an adjusting module and a functional module, and the control module is respectively connected with the adjusting module and the functional module;
the adjusting module is used for acquiring a user instruction and sending the user instruction to the control module;
the control module is used for acquiring the user instruction, generating corresponding control data by the user instruction, and uploading the control data to the functional module;
the functional module is used for acquiring the control data and controlling corresponding functional devices to operate according to the control data.
7. The acousto-optic induction brain wave therapeutic apparatus according to claim 6, wherein,
the functional module comprises a light unit, an audio unit and a current unit, wherein the light unit is connected with the control module, the audio unit is connected with the control module, and the current unit is connected with the control module;
the light unit is used for generating light rays;
the audio unit is used for generating sound;
the current unit is used for generating low-intensity micro-current.
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