A dispensing device and transcranial light regulation equipment

By designing the bridging part and the hair inlet component in the hair-pulling device, the problem that optical components in the existing technology cannot directly touch the root of the hair is solved, realizing efficient transcranial light transmission and stable wearing, adapting to different head shapes, and reducing costs.

CN114367058BActive Publication Date: 2025-11-07DANYANG HUICHUANG MEDICAL EQUIP CO LTD
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Patent Information

Application Number
CN202210100177.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-27
Publication Date
2025-11-07
Estimated Expiration
2042-01-27

AI Technical Summary

Technical Problem

In existing transcranial light control products, the optical components and hair-splitting components are fixedly assembled, making it difficult to directly contact the hair roots. This results in poor transcranial light transmission, complex structure, and high cost.

Method used

A hair-parting device was designed, including a bridging part and a hair-inlet component. The hair-inlet component parts the hair to form a light path. The hair-inlet component is intersected with the bridging part, and a limiting component presses the hair to achieve direct transmission of transcranial light to the scalp.

Benefits of technology

It improves the transmission efficiency of transcranial light, reduces the impact of hair blocking light, adapts to different head shapes, has a simple structure, low cost, and high adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The disclosure provides a hair parting device and a transcranial light regulation device. The hair parting device comprises at least one hair parting assembly, the hair parting assembly comprises a bridging part, a limiting part and a plurality of hair entry parts for transmitting transcranial light. The bridging part extends at least partially in the circumferential direction and has elasticity. The plurality of hair entry parts are arranged on the bridging part, the length direction of each hair entry part intersects with the extension direction of the bridging part, and each hair entry part has a spacing cavity on both sides in the extension direction of the bridging part. The limiting part is arranged in the spacing cavity between two adjacent hair entry parts, the limiting part has oppositely arranged free ends and fixed ends, and the fixed end of the limiting part is connected to the hair entry part to compress the hair parted by the hair entry part. The above structure can part the hair on the scalp of the user through the hair entry part to form a light path, so that the transcranial light can be directly transmitted to the scalp after the hair is parted, effectively reducing the influence of the hair on the light transmission rate, and achieving the purpose of improving the light transmission efficiency.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the field of transcranial light regulation methods and devices, and more particularly, to a hair parting device and a transcranial light regulation device. BACKGROUND

[0002] Studies have shown that red light or near-infrared light with a certain wavelength can penetrate the human skull and produce beneficial effects on cells by stimulating cells, thereby achieving the purpose of treating brain diseases, such as treating neurodegenerative diseases, mental diseases, traumatic diseases, etc.

[0003] In existing transcranial light regulation products, the optical assembly and the hair parting assembly are correspondingly arranged and fixedly assembled together. The hair is parted by driving the hair parting assembly to change from a gathering state to an expanded state, or the hair is parted by inserting the light guide column into the hair. The former is difficult to directly contact the hair root to transmit the transcranial light to the scalp, and the latter can only part the hair at the corresponding position of the optical assembly, and the transcranial light transmission effect is poor, so that the effect of transcranial light treatment is poor. The above two methods have complex structure and high cost. SUMMARY

[0004] In view of the above technical problems in the prior art, the present disclosure provides a hair parting device and a transcranial light regulation device, which can part the hair on the scalp of a user by the hair parting assembly to form a light path, so that the transcranial light can be directly transmitted to the scalp after the hair is parted, thereby effectively reducing the influence of the hair on the light transmission rate.

[0005] The present disclosure provides a hair parting device, which comprises at least one hair parting assembly, and the hair parting assembly comprises:

[0006] a bridge portion which extends at least partially in a circumferential direction and has elasticity;

[0007] a plurality of hair parting members for transmitting transcranial light, the plurality of hair parting members are arranged on the bridge portion, the length direction of each hair parting member intersects with the extension direction of the bridge portion, and each hair parting member has a spacing cavity on both sides in the extension direction of the bridge portion;

[0008] a limiting member arranged in the spacing cavity between two adjacent hair parting members, the limiting member has a free end and a fixed end arranged oppositely, and the fixed end of the limiting member is connected to the hair parting member to compress the hair parted by the hair parting member.

[0009] In some embodiments, the bridge portion is arranged on the side of the hair parting member away from the scalp.

[0010] In some embodiments, the hair-entry member comprises an arc-shaped body having a leading end and a trailing end, and the leading end of the arc-shaped body is formed with a pointed portion.

[0011] In some embodiments, the hair-entry member has a height distribution attribute corresponding to a thickness distribution attribute of a hair region where the hair-entry member is worn, such that a region with a greater hair thickness has a higher height of the corresponding hair-entry member; and / or the height of the hair-entry member gradually decreases from the crown of the head to the sides of the head.

[0012] In some embodiments, the hair-entry assembly is integrally formed, and the hair-entry assembly is made of a light-transmissive material; and / or at least one sensor for detecting a physiological parameter of a user is arranged on the hair-entry assembly.

[0013] In some embodiments, the upper and lower end surfaces of the hair-entry member are light-transmissive, and the opposite side surfaces of the hair-entry member are provided with a reflective layer; and / or the hair-entry member is made of an elastic material.

[0014] In some embodiments, the limiting members are a plurality of limiting members arranged along the length direction of the hair-entry member.

[0015] In some embodiments, the ratio of the spacing between adjacent hair-entry members to the width of the hair-entry member ranges from 0.67 to 1.5.

[0016] In some embodiments, the hair-entry device comprises a plurality of hair-entry assemblies, and the hair-entry members of the hair-entry assemblies are sequentially connected in a head-to-tail manner, wherein adjacent hair-entry assemblies are detachably connected, and / or adjacent hair-entry assemblies are rotatably connected relative to each other.

[0017] The transcranial light regulation device provided by the embodiments of the present disclosure comprises a bearing member and an optical assembly for transmitting transcranial light arranged on the bearing member, and further comprises the hair-entry device.

[0018] Compared with the prior art, the embodiments of the present disclosure have the beneficial effects that the hair-entry member arranged on the bridging portion is used to push the hair on the scalp of the user apart to form a light path, so as to realize the transmission of transcranial light to the scalp, effectively reducing the influence of the hair on the light transmission rate, and achieving the purpose of improving the light transmission efficiency. The bridging portion and the limiting member can stably wear the hair-entry assembly on the head of the user, and can also adapt to the head size of different users, effectively improving the adaptability of the hair-entry device, so that each hair-entry member can stably abut against the scalp. Moreover, the above structure is not limited by factors such as the structure and arrangement position of the external optical assembly, and has the advantages of simple structure, low cost, and high adaptability. BRIEF DESCRIPTION OF DRAWINGS

[0019] In the drawings, which are not necessarily drawn to scale, like numerals describe similar components throughout the several views. Like numerals having different letter extensions can represent different instances of like components. The drawings illustrate generally, by way of example, various embodiments discussed herein, and are not intended to limit the disclosure to the embodiments pictured and described. Identical reference numbers in different figures represent similar or identical elements. Such embodiments are illustrative, and not intended to be exhaustive or limiting of the present devices and methods.

[0020] Figure 1 Structure schematic diagram of the dispensing device for the embodiment of the present disclosure;

[0021] Figure 2 Top view of the dispensing device for the embodiment of the present disclosure;

[0022] Figure 3 Front view of the dispensing device for the embodiment of the present disclosure;

[0023] Figure 4 For Figure 3 Enlarged view of part A in the middle.

[0024] Components represented by the reference numerals in the drawings:

[0025] 1 - dispensing assembly; 2 - bridge; 21 - mounting portion; 3 - hair entering member; 31 - arc-shaped body; 32 - leading end; 33 - trailing end; 34 - pointed portion; 4 - limiting member; 5 - sensor. DETAILED DESCRIPTION

[0026] In order for those skilled in the art to better understand the technical solutions of the present disclosure, the present disclosure will be described in detail below in combination with the drawings and specific embodiments. The embodiments of the present disclosure will be further described in detail below in combination with the drawings and specific embodiments, but not as a limitation on the present disclosure.

[0027] The terms "first", "second", and similar terms used in the present disclosure do not indicate any order, number, or importance, but are only used to distinguish different parts. The terms "include" or "contain" and similar terms mean that the elements before the terms cover the elements listed after the terms, and do not exclude the possibility of also covering other elements. "Up", "down", "left", "right", and the like are only used to represent relative positional relationships, and when the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0028] In the present disclosure, when it is described that a specific device is located between a first device and a second device, there can be or can not be an intervening device between the specific device and the first device or the second device. When it is described that a specific device is connected to another device, the specific device can be directly connected to the other device without an intervening device, or can not be directly connected to the other device with an intervening device.

[0029] All the terms used in the present disclosure, including technical terms or scientific terms, have the same meanings as those understood by a person of ordinary skill in the art to which the present disclosure belongs, unless otherwise specifically defined. It should also be understood that the terms defined in general dictionaries should be interpreted in a manner consistent with their meanings in the context of the relevant art, and should not be interpreted in an idealized or extremely formalized sense, unless otherwise specifically defined herein.

[0030] The technologies, methods, and devices known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered as part of the specification where appropriate.

[0031] The present disclosure provides a hair-pushing device, as shown in the accompanying drawings, Figures 1 to 4 The hair-pushing device at least includes a hair-pushing assembly 1, which includes a bridging portion 2, a plurality of hair-entering members 3, and a limiting member 4. The bridging portion 2 extends at least partially in a circumferential direction and has elasticity. The plurality of hair-entering members 3 are used to transmit transcranial light, and the plurality of hair-entering members 3 are arranged on the bridging portion 2. The length direction of each hair-entering member 3 intersects the extension direction of the bridging portion 2, and each hair-entering member 3 has a spacing cavity on both sides in the extension direction of the bridging portion 2. The limiting member 4 is arranged in the spacing cavity between two adjacent hair-entering members 3. The limiting member 4 has oppositely arranged free ends and fixed ends. The fixed end of the limiting member 4 is connected to the hair-entering member 3 to compress the hair pushed away by the hair-entering member 3.

[0032] It should be noted that the hair-pushing device in the present disclosure can be part of a transcranial light regulation device, which is used to push hair. The transcranial light regulation device can further include an optical assembly and a bearing member for mounting the optical assembly. The hair-pushing device can be first worn on the head of a user, and then the bearing member bearing the optical assembly is worn on the head of the user. In this way, the cooperation can effectively reduce the shielding of the light emitted by the optical assembly caused by the hair.

[0033] Specifically, the hair-pushing device can be independently arranged, that is, the hair-pushing device can have no connection relationship with the optical assembly or other assemblies of the transcranial light regulation device. The hair-pushing device and the above-mentioned other components can be worn on the head of a user in sequence. Of course, the hair-pushing device can also be connected to the optical assembly or other assemblies of the transcranial light regulation device to achieve the purpose of stable installation. The present application does not make specific limitations in this regard.

[0034] Specifically, the entry hairs 3 can be inserted into the user's hair and contact the scalp, the bridge 2 bridges each entry hair 3 at an angle (intersects), so that the multiple entry hairs 3 distributed on the bridge 2 cooperate to form a comb tooth shape. When the bridge 2 is pushed in the direction of the scalp, the end of the entry hair 3 is close to the scalp and expands outward along the contour of the head, and in the process of gradually expanding on the user's head, the entry hair 3 gradually pushes the hair away, exposing the scalp on the path of the entry hair 3, forming a light path that can reduce the obstruction of light, so that after the optical assembly of the transcranial light regulation device is worn on the head, the transcranial light emitted by the optical assembly can transmit light to the user's scalp through the light path, effectively improving the light transmission efficiency.

[0035] Further, as shown in Figure 1 and Figure 2 Each entry hair 3 has a spacing cavity on both sides of the extension direction of the bridge 2, that is, the adjacent entry hairs 3 have a spacing, which is used to collect the hair pushed away by the entry hair 3, to avoid messy hair, and further avoid the problem of affecting the light transmission efficiency caused by the light path being covered by scattered hair. Specifically, the size of the spacing cavity can be determined according to the hair properties of the user to achieve better transcranial light transmission effect, and the above-mentioned hair properties can include hair sparseness, hair thickness, etc. For example, the size of the spacing cavity can be determined according to the sparseness of the user's hair. For users with sparse hair, a smaller space can collect the hair pushed away by the entry hair 3.

[0036] Specifically, Figures 1 to 3 The number of the hair pushing assembly 1 shown in the figure is two, of course, the number of the hair pushing assembly 1 can also be one, three or more. In the case of one hair pushing assembly 1, the hair pushing assembly 1 can be used to push the hair of part of the head region. The hair pushing assembly 1 can also be used in cooperation with an elastic head cover on the user's head, that is, one side of the hair pushing assembly 1 can be connected with an elastic head cover, the hair pushing assembly 1 can be used for hair pushing, and the elastic head cover can make the hair pushing assembly 1 more stably set on the head; When the number of the hair pushing assembly 1 is two or more, multiple hair pushing assemblies 1 can be connected and cooperatively set on the head to push the hair of more head regions. Multiple hair pushing assemblies 1 can also be connected by an elastic band, which is not limited in the present application.

[0037] Specifically, as shown in Figure 3 and Figure 4As shown, the length direction of the limiting piece 4 can intersect or be perpendicular to the length direction of the hair entering piece 3, and the free end of the limiting piece 4 is not directly connected to the hair entering piece 3, so that the deformation range of the hair pushing assembly 1 is larger, which can adapt to different head shapes and can be stably worn on the head during light treatment. Compared with the setting mode that the two ends of the limiting piece 4 are fixedly connected to the two adjacent hair entering pieces 3 respectively, the hair pushing assembly 1 involved in the present disclosure has better adaptability, and can keep the distance between the adjacent hair entering pieces 3 above the preset interval while pressing the hair pushed by the hair entering piece 3, avoiding that the distance between the hair entering pieces 3 is too close to affect the hair pushing effect, and preventing the change of the distance between the hair entering pieces 3 from affecting the light guiding effect and further affecting the treatment effect.

[0038] It can be understood that the intersection angle between the length direction of the hair entering piece 3 and the extension direction of the bridging part 2 can be set according to the distribution position of the hair on the scalp, the head shape size, the target irradiation position of the transcranial light, etc., so as to achieve better hair pushing effect and transmit as much transcranial light as possible to the scalp of the user, improve the light transmission rate. For example, the length direction of the hair entering piece 3 corresponding to the middle position of the head of the user on the bridging part 2 can be set to be perpendicular to the extension direction of the bridging part 2, so that the hair entering piece 3 can better push the hair in the forehead and top area, thereby transmitting more transcranial light to the scalp in the forehead and top area.

[0039] Specifically, the bridging part 2 can be configured as an elastic structure or made of an elastic material, as long as it has a certain elasticity and can be stably worn on the head of the user, and the present disclosure does not make specific limitation thereon.

[0040] In addition, in order to further improve the adaptability of the bridging part 2 to the head shape of the user, the bridging part 2 can be in the shape of a hair band, which can expand or contract relative to the two sides of the head, has a large deformation range and comfort, and is beneficial to the user. Specifically, the bridging part 2 can also be configured in any structure that can adapt to the shape of the head of the user, such as arc, semi-arc, ellipse, etc., and the present disclosure does not make specific limitation thereon.

[0041] Specifically, the present disclosure does not make specific limitation on the structure, shape, size, hardness of the material and other parameters of the hair entering piece 3, as long as it can be smoothly inserted into the hair of the user and push the hair. For example, the hair entering piece 3 can be configured in any shape such as plate, comb teeth, circular arc, etc. In addition, the number and size of the hair entering piece 3 can be set according to the hair properties of the user to achieve better hair pushing effect. Preferably, the hair entering piece 3 can be made of a material with a certain elasticity, so that the hair can be smoothly pushed while not causing harm to the scalp of the user.

[0042] The present disclosure achieves the transmission of transcranial light to the scalp by setting the hair on the user's scalp apart with the hair-dispelling component 3 on the bridge 2 to form a light path, effectively reducing the impact of hair on the light transmission rate, and achieving the purpose of improving the light transmission efficiency. And through the bridge 2 and the limiting piece 4, the hair-dispelling component 1 can be stably worn on the user's head, and can also adapt to the head size of different users, effectively improving the adaptability of the hair-dispelling device, so that each hair-dispelling component 3 can be stably in contact with the scalp. And the above structure is not limited by factors such as the structure, setting position, etc. of the external optical assembly, and has the advantages of simple structure, low cost, and high adaptability.

[0043] In some embodiments, as shown in Figures 1 to 3 The bridge 2 is arranged on the side of the hair-dispelling component 3 away from the scalp, so that the side of the hair-dispelling component 3 close to the scalp can better adhere to the scalp, and the deformation range of the hair-dispelling component 1 can be further improved, further improving the adaptability of the hair-dispelling device.

[0044] In some embodiments, as shown in Figure 3 The hair-dispelling component 3 includes an arc-shaped body 31, the arc-shaped body 31 has a leading end 32 and a trailing end 33, and the leading end 32 of the arc-shaped body 31 is formed with a sharp portion 34.

[0045] Specifically, Figure 3 Two hair-dispelling components 1 are shown in the figure, and the arc-shaped body 31 of each hair-dispelling component 1 has a leading end 32 and a trailing end 33. The leading end 32 can be understood as the end for inserting into the hair when wearing the hair-dispelling device, and the sharp portion 34 on the leading end 32 can better insert into the hair.

[0046] Specifically, the trailing end 33 of the arc-shaped body 31 can be configured to hold the end of the light path, and the cross-sectional area thereof should be greater than that of the sharp portion 34, so as to maintain the light path formed by the hair dispelled by the sharp portion 34.

[0047] In some embodiments, the hair-dispelling component 3 has a height distribution attribute corresponding to the thickness distribution attribute of the hair region where it is worn, so that the thicker the hair region, the higher the corresponding height of the hair-dispelling component 3. The height of the hair-dispelling component 3 can be understood as the distance between the side of the hair-dispelling component 3 close to the scalp and the side of the hair-dispelling component 3 away from the scalp.

[0048] Specifically, there are more hairs on the top of the head (middle part) when dispelling, and the thickness of the hair on both sides of the head is lower than that on the top of the head. Therefore, the thickness of the hair-dispelling component 3 corresponding to the top of the head can be higher than that of the hair-dispelling component 3 corresponding to the sides of the head, so that the height of the side of each hair-dispelling component 3 away from the scalp can exceed the thickness of the hair, so as to better conduct transcranial light to the scalp.

[0049] In some embodiments, such as Figure 1 As shown, the height of the hair inlet 3 gradually decreases from the top of the head to the sides, effectively addressing the situation where the hair thickness at the top of the head is greater than that on the sides, thus further achieving the desired hair combing effect.

[0050] In some embodiments, the hair-guiding component 1 is integrally formed and is made of a light-transmitting material.

[0051] Specifically, the hair-pulling component 1 can be made of a light-transmitting material or constructed as a light-transmitting structure. For example, the hair-pulling component 1 can be made of acrylic material to achieve a good light transmission effect.

[0052] Specifically, the transceiver 3 can be constructed as a light-transmitting hollow structure. In another embodiment, an optical fiber for transmitting transcranial light can be provided in the hollow structure. In yet another embodiment, the transceiver 3 can be made of a light-transmitting material. As long as the transceiver 3 can be used to transmit transcranial light, this disclosure does not impose any specific limitations on it.

[0053] In some embodiments, the upper and lower end faces of the transcranial laser device 3 are translucent, and the opposite sides of the transcranial laser device 3 are provided with reflective layers, so that the transcranial light can enter from the upper end face and exit from the lower end face, effectively preventing the transcranial light from escaping from the opposite sides of the transcranial laser device 3, and allowing as much transcranial light as possible to enter the scalp, thereby further improving the transcranial light therapy effect. The lower end face of the transcranial laser device 3 can be understood as the end face of the transcranial laser device 3 close to the scalp, the upper end face can be understood as the end face of the transcranial laser device 3 away from the scalp, and the opposite sides can be understood as the end faces adjacent to the upper and lower end faces.

[0054] Specifically, the input element 3 is made of a material that can transmit transcranial light with a wavelength range of 600 nm to 1100 nm. Transcranial light in this wavelength range can be used to achieve good therapeutic effects on brain diseases. For example, at least one transcranial light with wavelengths of 810 nm, 635 nm, and 1064 nm can be used to treat Alzheimer's disease.

[0055] In some embodiments, such as Figures 1 to 4As shown, the limiting members 4 are multiple, and the multiple limiting members 4 are arranged along the length direction of the hair-entrance member 3, so that the relative position relationship of the adjacent hair-entrance assemblies 1 is more stable, and this is especially suitable for users with short hair. The hair gathered on both sides of the hair-entrance member 3 is pushed by the next limiting member 4 arranged in sequence after the hair-entrance member 3 travels a certain distance, so that the hair that tends to gradually spread is pressed, thereby avoiding blocking the light path. Therefore, the short hair can be better converged to prevent the light path from being affected by the scattered hair. Further, the adjacent limiting members 4 have a first predetermined distance along the length direction of the hair-entrance member 3, and the first predetermined distance is set according to the length of the user's hair, so that the shorter the user's hair, the shorter the first predetermined distance. In this way, by setting the number of limiting members 4 and the first predetermined distance between each limiting member 4, the convergence of the hair can be controlled, and a higher light transmission rate can be achieved.

[0056] In some embodiments, as shown in Figure 3 As shown, the hair-entrance assembly 1 is provided with at least one sensor 5 for detecting the physiological parameters of the user.

[0057] Specifically, the above-mentioned sensor 5 can be any physiological sensor such as a sweat sensor, an electroencephalogram sensor, a blood oxygen sensor, etc. By detecting or monitoring the physiological signals of the user's head, the treatment condition of the user can be determined. For example, when the sensor 5 is a sweat sensor, if the signal transmitted by the sweat sensor determines that the user is in a situation of excessive sweating, the working parameters of the optical assembly of the transcranial light regulation device and the working state of the cooling device of the transcranial light regulation device can be adjusted to improve the comfort of the user. In another embodiment, the sensor 5 is an electroencephalogram sensor, which can be an electroencephalogram dry electrode. The working parameters of the optical assembly can be regulated according to the electroencephalogram signals collected by the electroencephalogram sensor to achieve better treatment effect.

[0058] In some embodiments, the hair-entrance member 3 is made of elastic material, so that it can adapt to the shape of the user's head during wearing to tightly contact the scalp as much as possible. In addition, the end of the hair-entrance member 3 that contacts the scalp can be made of flexible material to increase the comfort of the user.

[0059] In some embodiments, the ratio of the spacing between adjacent hair-entrance members 3 to the width of the hair-entrance member 3 ranges from 0.67 to 1.5. The above-mentioned ratio range can ensure better hair-entrance effect, so that the hair-entrance assembly 1 has better transcranial light transmission effect, and the hair-entrance member 3 has certain structural strength, so that the structural design is more reasonable. Preferably, the ratio of the spacing between adjacent hair-entrance members 3 to the width of the hair-entrance member 3 is 1, so that the hair-entrance assembly 1 has higher transcranial light transmission rate.

[0060] In some embodiments, as shown in Figures 1 to 3As shown, the hair brushing device comprises a plurality of hair brushing assemblies 1, the hair entry members 3 of each hair brushing assembly 1 are sequentially connected in head-to-tail manner, wherein, adjacent hair brushing assemblies 1 are detachably connected, and / or adjacent hair brushing assemblies 1 are rotatably connected relative to each other. The head end 32 of the hair entry member 3 can be understood as one end for brushing, and the tail end 33 is the opposite end of the head end 32. When the hair brushing device comprises a plurality of hair brushing assemblies 1, the connection between each hair brushing assembly 1 can cause the light path formed by the hair entry member 3 to be disconnected, and the hair at the disconnected light path will be scattered. Sequentially connecting the hair entry members 3 of each hair brushing assembly 1 in head-to-tail manner can enable the head end 32 of the hair entry member 3 of the adjacent hair brushing assembly 1 to further brush the scattered hair at the disconnected light path, thereby ensuring the light transmission effect.

[0061] Specifically, as shown in the figure, Figure 3 two hair brushing assemblies 1 shown in the figure are connected in a pivoted manner, so that adjacent hair brushing assemblies 1 can rotate relative to each other, further increasing the freedom of movement between hair brushing assemblies 1 and improving the adaptability of the hair brushing device, so that it can adapt to the head size of different users.

[0062] Specifically, the adjacent hair brushing assemblies 1 can be connected in a detachable manner such as clamping or inserting. After one of the hair brushing assemblies 1 is worn on the head of a user, the adjacent hair brushing assemblies 1 can be installed together, so that the entire hair brushing device can be stably placed on the head, avoiding falling off the head during light therapy.

[0063] In some embodiments, the adjacent hair brushing assemblies 1 can be connected by an elastic connecting band to ensure that each hair brushing assembly 1 can be stably placed on the head of a user.

[0064] Specifically, as shown in the figure, Figures 1 to 3 the bridge 2 can be provided with a mounting portion 21, and the two ends of the elastic connecting band (not shown in the figure) can be connected to the mounting portions 21 of adjacent hair brushing assemblies 1, respectively, to increase the stability of the hair brushing assemblies 1, thereby effectively preventing the hair brushing assemblies 1 from falling off during light therapy. In another embodiment, the mounting portion 21 can be provided on the hair entry member 3, and the present disclosure does not specifically limit the position and number of the mounting portion 21, as long as it can ensure the stability of the hair brushing assemblies 1.

[0065] The transcranial light regulation device provided by the embodiments of the present disclosure comprises a bearing member and an optical assembly for transmitting transcranial light arranged on the bearing member, and further comprises the hair-pushing device. The transcranial light regulation device with the hair-pushing device pushes the hair on the user's scalp apart by the hair-pushing member 3 arranged on the bridge 2 to form a light path, so as to realize the transmission of transcranial light to the scalp, effectively reducing the influence of the hair on the light transmission rate, and achieving the purpose of improving the light transmission efficiency. The bridge 2 and the limiting member 4 can stably wear the hair-pushing assembly 1 on the user's head, and can also adapt to the head size of different users, effectively improving the adaptability of the hair-pushing device, so that each hair-pushing member 3 can stably abut on the scalp. Moreover, the above structure is not limited by the structure, arrangement position and other factors of the external optical assembly, and has the advantages of simple structure, low cost and high adaptability.

[0066] It can be understood that the optical assembly can include LED lights, optical fibers, lasers and any other optical components capable of transmitting transcranial light.

[0067] In addition, although the exemplary embodiments have been described herein, the scope of their range includes any and all embodiments based on the present disclosure with equivalent elements, modifications, omissions, combinations (for example, solutions of various embodiments are crossed), adaptations or changes. The elements in the claims will be broadly interpreted based on the language used in the claims, and are not limited to the examples described in the specification or during the implementation of the application, and the examples will be interpreted as non-exclusive. Therefore, the specification and examples are intended to be considered only as examples, and the true scope and spirit are indicated by the following claims and the full scope of their equivalents.

[0068] The above description is intended to be illustrative rather than limiting. For example, the above examples (or one or more solutions thereof) can be used in combination with each other. For example, other embodiments can be used by those of ordinary skill in the art upon reading the above description. In addition, in the above detailed description, various features can be grouped together to simplify the present disclosure. This should not be interpreted as an intent to require protection of a feature of the disclosure for any claim. On the contrary, the subject matter of the present disclosure can be less than all the features of a particular disclosed embodiment. Therefore, the following claims are incorporated into the detailed description as examples or embodiments, wherein each claim is independently a separate embodiment, and it is considered that these embodiments can be combined with each other in various combinations or arrangements. The scope of the present disclosure should be determined with reference to the appended claims and the full scope of equivalents granted to these claims.

[0069] The above examples are only exemplary embodiments of the present disclosure, and are not intended to limit the present disclosure, and the protection scope of the present disclosure is defined by the claims. Those skilled in the art can make various modifications or equivalent replacements to the present disclosure within the spirit and protection scope of the present disclosure, and such modifications or equivalent replacements are also considered to fall within the protection scope of the present disclosure.

Claims

1. A dispensing device for a transcranial light modulation device for treating brain disorders, characterized in that, At least one hair-pushing assembly is provided, the hair-pushing assembly comprising: a bridge portion extending at least partially in a circumferential direction and having elasticity; a plurality of light-transmitting hair-pushing members arranged on the bridge portion, each of the hair-pushing members having a length direction intersecting the extension direction of the bridge portion transversely with respect to the head, and each of the hair-pushing members having a spacing cavity on both sides of the extension direction of the bridge portion, the hair-pushing member comprising an arc-shaped body having a tail end configured to hold a light passage formed in a travel path of the hair-pushing member, so that transcranial light can be transmitted to the scalp of a user via the light passage held by the tail end; a limiting member arranged in the spacing cavity between two adjacent hair-pushing members, the limiting member having a free end and a fixed end arranged oppositely, and the fixed end of the limiting member being connected to the hair-pushing member to compress the hair pushed away by the hair-pushing member.

2. The dispensing device of claim 1, wherein, The bridge portion is arranged on a side of the hair-pushing member away from the scalp.

3. The dispensing device of claim 1, wherein, The hair-pushing member comprises an arc-shaped body further having a head end, and the head end of the arc-shaped body forms a pointed portion.

4. The hair-pushing device according to claim 1 or 2, wherein the hair-pushing member has a height distribution attribute corresponding to a thickness distribution attribute of a hair region where the hair-pushing member is worn, so that the greater the thickness of a region of hair, the higher the height of the corresponding hair-pushing member; and / or the height of the hair-pushing member gradually decreases from the crown of the head to the sides of the head.

5. The hair-pushing device according to claim 1, wherein the hair-pushing assembly is integrally formed, and the hair-pushing assembly is made of a light-transmitting material; and / or at least one sensor for detecting a physiological parameter of a user is arranged on the hair-pushing assembly.

6. The hair-pushing device according to claim 1, wherein the upper and lower end faces of the hair-pushing member are light-transmitting, and the opposite side faces of the hair-pushing member are provided with a light-reflecting layer; and / or the hair-pushing member is made of an elastic material.

7. The dispensing device of claim 1, wherein, The limiting member is a plurality of limiting members arranged along the length direction of the hair-pushing member.

8. The dispensing device according to any one of claims 1-7, wherein, The ratio of the spacing between adjacent hair-pushing members to the width of the hair-pushing member ranges from 0.67 to 1.

5.

9. The dispensing device according to any one of claims 1-8, wherein, The hair-pushing device comprises a plurality of hair-pushing assemblies, the hair-pushing members of each of the hair-pushing assemblies being sequentially connected in a head-to-tail manner, wherein adjacent hair-pushing assemblies are connected in a detachable manner, and / or adjacent hair-pushing assemblies are connected in a rotatable manner with respect to each other.

10. A transcranial light modulation device comprising a carrier member and an optical assembly configured to transmit transcranial light disposed on the carrier member, wherein the optical assembly comprises a plurality of light sources configured to emit light, and a plurality of optical elements configured to transmit the light emitted by the plurality of light sources, wherein the plurality of optical elements are configured to transmit the light emitted by the plurality of light sources in a plurality of directions. The hair-pushing device according to any one of claims 1-9 is further provided.

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