Shape-added sheet
The graphic-applied sheet body enhances physical performance by combining aesthetically pleasing geometric patterns with conductive or magnetic particles to stimulate tactile fibers and acupoints, addressing the limitations of existing medical adhesive sheets that rely solely on magnetic or chemical materials.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2025-12-19
- Publication Date
- 2026-04-02
Smart Images

Figure 0007839531000001_ABST
Abstract
Description
Technical Field
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[0001] The present invention relates to a graphic-applied sheet body that has a beneficial effect on the human body when brought into contact with the human body. More specifically, the present invention relates to a graphic-applied sheet body that can soften or strengthen muscles when brought into contact with human skin.
Background Art
[0002] Conventionally, medical adhesive sheets that can obtain medical effects by contacting or adhering to human skin have been developed. For example, medical adhesive sheets to which drugs, magnetic materials, conductors, etc. are applied as described in Patent Documents 1 to 9.
[0003] The invention described in Patent Document 1 is a first aid bandage type magnetic therapy device characterized in that a magnetic sheet (2) magnetized with S poles and N poles alternately is adhered to the adhesive surface of an adhesive sheet base material (1), and a peelable release paper (3) is removably adhered to the adhesive surface so as to cover the magnetic sheet (2), and it is used by being adhered to the skin.
[0004] The invention described in Patent Document 2 is an adhesive sheet type therapeutic device in which an adhesive sheet (3) having an ore powder layer (2) on the surface of a paper base material (1) is disposed on a release paper (4). The ore powder layer (2) contains ore powder that generates negative ions even in a normal temperature stationary state, and has a substantially uniform thickness of 10 to 1000 μm, and is an adhesive sheet type therapeutic device used by being adhered to the skin.
[0005] The invention described in Patent Document 3 is a magnetic sheet containing magnetized powder particles or flakes, and is used by being adhered to the skin.
[0006] The invention described in Patent Document 4 is a magnetic therapy sheet having a magnetic layer formed on one surface of a sheet material having elasticity and flexibility, characterized in that the magnetic layer is made up of a magnetic material containing at least one of a cast magnet (metallic magnet), a ferrite magnet (oxide-based magnet), or a rare earth magnet (rare earth-based magnet), mixed with a binder, and is used by being attached to the skin.
[0007] The invention described in Patent Document 5 is a magnetic ointment, such as a poultice, that contains fine particles of permanent magnets evenly mixed into an external application agent, such as a poultice, which is intended to treat or improve symptoms of muscle stiffness such as stiff shoulders, muscle fatigue, muscle pain such as lower back pain, etc., and is used by being applied to the skin.
[0008] The invention described in Patent Document 6 is a magnetic therapy sheet in which a magnetic layer is formed on at least one surface of a sheet material, wherein the magnetic layer is a mixture of a magnetic material and a binder, and is used by being attached to the skin.
[0009] The invention described in Patent Document 7 is a skin adhesive sheet characterized by having teardrop-shaped adhesives arranged in a dot pattern on the adhesive surface of a sheet-like support, and is used for applying drugs to the skin.
[0010] The invention described in Patent Document 8 is a medical soft magnetic sheet made of a skin-compatible, rubbery, soft plastic in which permanent magnet particles are embedded, wherein the effective surface of the sheet is magnetized with multiple magnetic poles of alternating polarity, and the multiple magnetic poles 2 of alternating polarity have a geometric pattern shape, and in this case, these magnetic poles 2 are arranged on the sheet 1 in multiple planes that are concentric, at angles and / or extending radially, and are used by being attached to the skin.
[0011] The invention described in Patent Document 9 is a wet drug sheet in which a therapeutic drug is impregnated or coated on a skin-contact surface that comes into contact with the skin, characterized in that fine protruding bodies, each having at least one minute needle-like projection, are scattered on the skin-contact surface such that at least one of the needle-like projections protrudes from the skin-contact surface, and the drug sheet is used by being attached to the skin. [Prior art documents] [Patent Documents]
[0012] [Patent Document 1] Japanese Patent Application Publication No. 11-290465 [Patent Document 2] Registered Utility Model No. 3103228 Gazette [Patent Document 3] Japanese Utility Model Publication No. 57-17650 [Patent Document 4] Registered Utility Model No. 3229462 Gazette [Patent Document 5] Japanese Patent Application Publication No. 8-133965 [Patent Document 6] Japanese Patent Publication No. 2004-147970 [Patent Document 7] Japanese Patent Publication No. 2014-34558 [Patent Document 8] Japanese Patent Application Publication No. 60-68867 [Patent Document 9] Japanese Patent Publication No. 2009-61018 [Overview of the project] [Problems that the invention aims to solve]
[0013] The inventions described in Patent Documents 1 to 9 induce physiological effects on the human body through the action of magnetic materials and other elements contained in the sheet. On the other hand, it has been proposed in papers that physical contact with the skin itself has a physiological effect on the human body, and that the physiological effect changes depending on whether the object being touched is desirable to the person (Hajime Yamaguchi, "Why Does Touch Heal Mind and Body?", "Medicine of the Body, No. 6, pp. 12-20 (2021)", Hajime Yamaguchi, "Skin Sensation and the Mind", "Journal of the Japan Society of Cosmetic Scientists, Vol. 46, No. 1, pp. 51-58 (2022)"). According to this, contact with something a person finds pleasing stimulates C tactile fibers, which in turn promotes the secretion of oxytocin, a hormone associated with feelings of happiness. In other words, it is believed that physiological effects can be efficiently produced by exposing the subject to something they find desirable, without the need for chemicals or magnetic materials. In the inventions described in the above-mentioned Patent Documents 1 to 9, none of them aim to achieve physiological effects solely through the contact of something that is simply considered desirable with the skin.
[0014] This invention was developed in response to the problems described above. In other words, the present invention aims to provide a sheet that, when in contact with the skin, brings about desirable physiological effects on the human body. [Means for solving the problem]
[0015] As a result of diligent research, the inventors have discovered that by positioning a specific figure that is perceived as beautiful by humans in a way that brings it into contact with the human body, desirable physiological effects can be obtained. This invention is based on this finding.
[0016] The present invention relates to a graphic-added sheet body A with a graphic M, wherein the graphic M includes a circle 5 which is a circular line segment, a first line segment 1 and a second line segment 2 which are diameters of the circle 5 and are perpendicular to each other and pass through the center of the circle 5, a third line segment 3 which is inside the circle 5, passes through a midpoint between the end of the second line segment 2 and the center of the circle 5 on the second line segment 2, and is parallel to the first line segment 1, a fourth line segment 4 which is inside the circle 5, passes through a midpoint between the end of the first line segment 1 and the center of the circle 5 on the first line segment 1, and is parallel to the second line segment 2, and a hollow small circle 6 indicating the center of the circle 5. The present invention resides in the graphic-added sheet body A characterized by this.
[0017] Furthermore, the present invention relates to a structure comprising a plurality of layers each having a graphic M, laminated such that the graphics M of the plurality of layers overlap, and the graphics M of the plurality of layers are colored with different colors respectively. The present invention resides in the graphic-added sheet body A described above characterized by this.
[0018] Furthermore, the present invention relates to the graphic-added sheet body A described above, wherein the graphic M is formed by a paint containing conductive particles or magnetic particles.
[0019] Furthermore, the present invention relates to the graphic-added sheet body A described above, wherein the conductive particles are silver particles.
[0020] Furthermore, the present invention relates to the graphic-added sheet body A described above, which is clothing.
[0021] Furthermore, the present invention relates to a shirt, wherein the graphic M is formed at a position corresponding to a wind door. The present invention resides in the graphic-added sheet body A described above characterized by this.
[0022] Furthermore, the present invention can adopt a combination of the above configurations as appropriate.
Advantages of the Invention
[0023] The present invention provides a figure-applying sheet A in which the figure M comprises a circle 5 which is a circular line segment, a first line segment 1 and a second line segment 2 which are the diameters of circle 5 and pass orthogonal to each other through the center of circle 5, a third line segment 3 which is two line segments inside circle 5 that pass through the midpoint between the end of the second line segment 2 and the center of circle 5 on the second line segment 2 and are parallel to the first line segment 1, a fourth line segment 4 which is two line segments inside circle 5 that pass through the midpoint between the end of the first line segment 1 and the center of circle 5 on the first line segment 1 and are parallel to the second line segment 2, and a hollow small circle 6 which indicates the center of circle 5. In this way, the figure M can be made to have multiple silver ratios that are perceived as favorable by humans. Furthermore, since the graphic-applied sheet A of the present invention is applied to the graphic M, the graphic M can be made to come into contact with a person. These factors can lead to improved physical performance based on the contact of substances that are perceived as pleasant by humans with the skin. Furthermore, the inventors of this application have not fully elucidated the mechanism by which the graphic-applying sheet A of the present invention brings about the desirable effects described later. Even if the mechanism by which the graphic-applying sheet A of the present invention produces a favorable effect differs from that described herein, this does not affect the structure of the present invention.
[0024] The graphic-applying sheet A of the present invention comprises multiple layers, each having a graphic M, and can be constructed by laminating multiple layers of graphic M so that they overlap. When laminating multiple graphic Ms, it is preferable to provide a circular underlay layer with a different color from the graphic M directly above it, beneath each layer of graphic M. Furthermore, by superimposing the figure M on both the front and back surfaces of a sheet such as cloth, the figure M will be present on both the side that is visible from the outside and the side that is in contact with the skin and therefore not visible from the outside. This allows the user to visually confirm that the desirable shape M is in contact with their skin, and also to recognize that the desirable shape M is in direct contact with their skin. As a result, in addition to the effects on C tactile fibers through contact, physical performance is improved through physiological effects based on the aesthetic perception of the silver ratio. The fact that the multiple layers of shape M are each colored in different colors, for example, white and black, suggests an IN / OUT relationship between the front and back of shape M. This allows users to recall images such as the balance of yin and yang, or the regulation of energy, making it possible to improve physical performance from a psychological perspective.
[0025] In the present invention, the figure-forming sheet A is formed by a coating containing conductive particles or magnetic particles, resulting in a synergistic effect between the physiological effects of the conductive or magnetic particles and the physiological effects of the tactile fibers C based on contact between the figure M, which possesses the aesthetic appeal of the silver ratio, and the skin. Therefore, physical performance can be improved more efficiently.
[0026] The present invention provides a pattern-applying sheet A in which the conductive particles are silver particles, thereby exhibiting antibacterial and deodorizing effects due to the silver particles, making it possible to use the pattern-applying sheet A hygienically.
[0027] Because the graphic-impregnating sheet A of the present invention is a garment, wearing the graphic-impregnating sheet A makes it possible to have a desirable mark in contact with the skin, thereby easily improving physical performance.
[0028] The graphic-applied sheet A of the present invention is a shirt, and because the graphic M is formed in a position corresponding to the Fengmen point, it also has the effect of stimulating so-called acupoints, thereby obtaining physiological effects. [Brief explanation of the drawing]
[0029] [Figure 1] Figure 1 is a front view of the graphic-adding sheet. [Figure 2] Figure 2 shows the silver ratio of a figure according to an embodiment of the present invention. [Figure 3] Figure 3 illustrates the structure of a two-layer graphic-applying sheet body, which is another embodiment of the present invention. [Figure 4] Figure 4 is an explanatory diagram showing another embodiment of the graphic assignment sheet. [Figure 5] Figure 5 is an explanatory diagram showing another embodiment of the graphic assignment sheet. [Figure 6] Figure 6 is an explanatory diagram showing the sheet used in Comparative Example 6. [Modes for carrying out the invention]
[0030] Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the drawings as necessary. In the drawings, identical elements will be denoted by the same reference numeral, and redundant explanations will be omitted. Furthermore, unless otherwise specified, positional relationships such as up, down, left, and right shall be based on the positional relationships shown in the drawings. In addition, the dimensional ratios in the drawings are not limited to those shown.
[0031] Figure 1 is a front view of the graphic-adding sheet A. The present invention provides a sheet A onto which a figure M is applied, and which is used so that the figure M comes into contact with human skin. Therefore, the graphic-applied sheet A can be suitably used as fabric that comes into direct contact with human skin, such as clothing, bedding, hand towels, etc.
[0032] Figure M consists of the following lines. In other words, circle 5 and the first line segment 1 and the second line segment 2, which are the diameters of circle 5 and pass through the center of circle 5 at a right angle, are arranged. Inside of it are two line segments, a third line segment 3, which is parallel to the first line segment 1 and passes through the midpoint between the end of the second line segment 2 and the center of circle 5 on the second line segment 2, inside circle 5; two line segments, a fourth line segment 4, which is parallel to the second line segment 2 and passes through the midpoint between the end of the first line segment 1 and the center of circle 5 on the first line segment 1, inside circle 5; and a hollow small circle 6 that indicates the center of circle 5.
[0033] Figure 2 shows the silver ratio of figure M, which is an embodiment of the present invention. As shown in Figure 1, the figure M can be created by a geometrically simple drawing, while the above configuration results in multiple silver ratios as shown in Figure 2. Here, the silver ratio refers to the 1:√2 (≈1.414) ratio found in traditional Japanese crafts and is also used as a standard for paper sizes such as A4 and B5. The multiple silver ratios that appear in figure M can also be understood as being obtained by successively multiplying a figure possessing a silver ratio by imaginary numbers and rotating it, similar to how multiplying an xy graph by an imaginary number i rotates it by 90°. Furthermore, some of the silver ratios obtained by inverting one of the silver ratios found in figure M are obtained by multiplying by the square of the so-called imaginary number i, and possess mathematical beauty. The silver ratio is already known to be a ratio that many people find aesthetically pleasing, and it can be said that it is a ratio that users of the shape-assigned sheet A will find "favorable." Because shape M contains multiple silver ratios in this way, shape M will be perceived favorably by users.
[0034] Figure 3 is a diagram illustrating the structure of a two-layer graphic-applying sheet A, which is an embodiment of the present invention. The graphic-applying sheet A is preferably made up of multiple layers, each of which has a graphic M of the same size. In this case, the figures M provided in each of the multiple layers are arranged so as to overlap each other. Furthermore, it is preferable that each of the multiple figures M be colored differently. For example, when stacking multiple shapes M, a circular base layer with a different color is provided for each layer of shape M. The figure M may be provided on both the front and back surfaces of the sheet using inverted black and white coloring. Furthermore, since the shape-assigned sheet A is provided on both the front and back surfaces of the sheet, the shape M will exist on both the side that is visible from the outside and the side that is in contact with the skin and therefore not visible from the outside. This allows the user to visually confirm that the desirable shape M is in contact with their skin, and also to recognize that the desirable shape M is in direct contact with their skin. This suggests that physical performance is improved not only through physical contact but also through psychological effects based on perception.
[0035] Figure M is formed using an appropriate method such as printing or embroidery, and then applied to the figure-assigning sheet A. In the case of printing, functional particles in the paint can be conductive particles or magnetic particles. By using conductive particles or magnetic particles, a synergistic effect is achieved between the physiological effects they have on the human body, the aesthetically pleasing figure M possessing the silver ratio, and the physiological effects mediated by tactile fibers C when it comes into contact with the skin. Therefore, it is possible to improve physical performance more efficiently. Silver particles are preferred as the conductive particles. By using silver particles, antibacterial and deodorizing effects are achieved, making it possible to use the pattern-designed sheet A hygienically.
[0036] Furthermore, when the shape M is created by embroidery, an uneven surface is created along the shape M, allowing the user to be more aware of the preferred contact with the shape M. This improves physical performance.
[0037] In this embodiment, a sheet A with a graphic M printed on it was used as the graphic-applied sheet A. As an example, a 20cm x 20cm piece of fabric with a 56.7mm diameter shape M printed on it was used in the experiment described later, with shape M in contact with the skin at a position corresponding to the wearer's air gate. Incidentally, Fengmen is a pressure point located on the upper side of both shoulder blades, and in traditional East Asian medicine, it is believed that stimulating this point through acupressure, acupuncture, or moxibustion can produce physiological effects. Similarly, in the present invention, by positioning the side of the graphic-applying sheet A that comes into contact with the skin at a location corresponding to a pressure point, physiological effects can be obtained more efficiently. Furthermore, because the shape-attached sheet A is a piece of clothing, wearing it allows the shape M to naturally come into contact with the skin, making it possible to easily improve physical performance by wearing the shape-attached sheet A.
[0038] The following describes an example in which physical performance was improved by using the graphic-applying sheet A of the present invention.
[0039] (Experimental result 1: Grip strength) In Experimental Result 1, grip strength was measured for multiple subjects in two states: without wearing the shape-applying sheet A of the present invention (Comparative Example 1), and while wearing multiple types of shape-applying sheet A with different stacking arrangements of the shape M (Examples 1-3).
[0040] In the experiment, each subject was unaware of whether or not the clothing they were wearing had the graphic-applying sheet A of the present invention attached to it, and the experiment was conducted without any actions or statements from the experimenter that could lead to any results. These findings are also true in the other experiments described below.
[0041] The graphic-added sheet A of Example 1 was created as follows. On a 20cm x 20cm piece of white fabric, a 56.7mm diameter circle of black paint was applied as a base layer and allowed to dry. Then, white paint was applied in a grid pattern on top of the base layer and allowed to dry, resulting in figure M1. Subsequently, an extremely thin layer was added, and then a circular area with a diameter of 56.7 mm was applied as a base layer of white paint and allowed to dry. On top of this base layer, black paint was applied in a grid pattern and allowed to dry, resulting in figure M2. In this process, small circles are formed at the intersection points on the grid located at the center point of figure M2, so that black paint is not applied to these intersections. The pattern-applied sheet A used in Example 2 has the same color scheme for each layer as that of Example 1, but differs in that a paint containing conductive silver nanoparticles was used for the black base layer of pattern M1, and a paint containing conductive silver nanoparticles was used for the black grid-like lines of pattern M2. Otherwise, it was formed in the same way as in Example 1. As shown in Figure 5, the graphic assignment sheet A used in Example 3 includes graphics M1 and M2, which have a different color scheme order than those in Example 1. Specifically, a circular base layer was formed with white paint, and then black paint containing magnetic particles was applied in a grid pattern on top of this base layer to create figure M1. Subsequently, a circular base layer of black paint containing conductive particles was formed, and then a grid-like layer of white paint was applied on top of it to create the figure M2.
[0042] After the measurements in Examples 1-3, grip strength was measured again without wearing the graphic-applied sheet A (Comparative Example 2). In all cases, grip strength was measured using a commercially available mechanical dynamometer, in the same manner as in a standard sports test. The results are shown in Table 1.
[0043] (Table 1) TIFF0007839531000002.tif216146
[0044] As shown above, no trend of gradual improvement or decline in results was observed in measurements performed multiple times on the same subject, indicating that habituation or fatigue did not have an effect. On the other hand, when wearing the graphic-applying sheet A of the present invention, there was a significant tendency for the results to improve (grip strength to increase). The measurement results shown above, compared to Comparative Example 1, yielded p-values of 0.025 (Example 1), 0.024 (Example 2), and 0.014 (Example 3), respectively. Since all of these p-values are < 0.05, a t-test indicates a statistically significant difference, demonstrating the effectiveness of the graphic assignment sheet A.
[0045] (Experimental result 2: Forward bending) In Experimental Results 2, multiple subjects performed a seated forward bend while wearing the shape-imparting sheet A of the present invention (Comparative Example 3) and while wearing the shape-imparting sheet A (Examples 4-6), and the results were measured. The graphic-added sheet A of Example 4 was created as follows. On a 20cm x 20cm piece of white fabric, a 56.7mm diameter circle of white paint was applied as a base layer and dried. Then, black paint was applied in a grid pattern on top of the base layer and dried to create figure M1. Subsequently, an extremely thin layer was interposed, and then a circular area with a diameter of 56.7 mm was coated with black paint as a base layer and dried. On top of this base layer, white paint was applied in a grid pattern and dried to form figure M2 (see Figure 5). In this process, small circles are formed at the intersection points on the grid located at the center point of figure M2, so that white paint is not applied to these intersections. Furthermore, after the measurement in Example 4, a seated forward flexion was performed using a shape-applying sheet A, which had a shape M formed with a paint containing conductive particles or magnetic particles, and the results were measured, similar to Experimental Result 1.
[0046] In this example, the graphic-adding sheet A used in Example 5 was the same as that used in Example 2. Furthermore, the graphic-adding sheet A used in Example 6 was the same as that used in Example 3. After the measurements in Examples 4-6, the subjects again performed a seated forward bend without wearing the graphic-labeled sheet A (Comparative Example 4), and the results were measured. The measurement was performed using a commercially available seated forward flexion test device, in the same manner as a standard sports test. The results are shown in Table 2.
[0047] (Table 2) TIFF0007839531000003.tif209150
[0048] Similar to Experimental Result 1, as shown in Table 2, no trend of gradual improvement or decline in results was observed in measurements performed multiple times on the same subject, indicating that there was no influence from habituation or fatigue. On the other hand, when the figure-imparting sheet A of the present invention was worn (Example 4), a significant tendency was observed for the results to improve (forward bending length to increase) compared to Comparative Examples 3 and 4.
[0049] In Examples 5 and 6, a significant trend of improved results was observed compared to Comparative Examples 3 and 4. The measurement results shown above, compared to Comparative Example 3, yielded p-values of 0.00036 (Example 4), 0.000032 (Example 5), and 0.00036 (Example 6), respectively. Since all of these p-values are < 0.05, a t-test indicates a statistically significant difference, demonstrating the effectiveness of the graphic assignment sheet A.
[0050] Therefore, based on Experimental Results 1 and 2, it can be said that wearing the graphic-applying sheet A of the present invention improved physical performance.
[0051] (Experimental result 3) Figure 6 is an explanatory diagram showing the sheet used in Comparative Example 6. Furthermore, a comparative experiment was conducted comparing sheet A, which features a graphic design according to the present invention, with a sheet bearing a different mark. In this experiment, subjects first had their standing forward flexion and grip strength measured while wearing clothing without any attached sheets or other materials (Comparative Example 5). Subsequently, standing forward flexion and grip strength measurements were performed in the same manner for both the state in which the clothing with the graphic-labeled sheet A attached was worn (Example 6) and the state in which the clothing with the sheet shown in Figure 6 attached was worn (Comparative Example 6). For each subject, the order of measurements in Example 6 and Comparative Example 6 was randomly assigned. The results are shown in Table 3.
[0052] (Table 3) TIFF0007839531000004.tif204166
[0053] As shown in Table 3, in Example 7, in which the subject wore clothing with the graphic-imparting sheet A of the present invention attached, good measurement results were obtained, showing an increase in grip strength and forward flexion values compared to Comparative Example 5, in which the subject wore clothing without the sheet, and Comparative Example 6, in which the subject wore clothing with other sheets attached. The p-values for the measurement results shown above are 0.000000000038 (forward flexion) and 0.0025 (grip strength) between Example 7 and Comparative Example 5, and 0.00000072 (forward flexion) and 0.00000062 (grip strength) between Example 7 and Comparative Example 6. Since the p-values are all < 0.05, a t-test indicates a statistically significant difference, and statistically, the effectiveness of the shape-assigning sheet A is demonstrated.
[0054] (Hormone level measurement) Furthermore, the amount of hormones in saliva was compared between a state in which the clothing with the graphic-imparting sheet A of the present invention was not worn (Comparative Examples 7 and 8) and a state in which it was worn (Examples 8 and 9). First, saliva samples were collected from subjects while they were not wearing clothing to which the graphic-attached sheet A was attached (Comparative Examples 7 and 8). Next, saliva samples were collected from subjects while they were wearing clothing to which the graphic-labeled sheet A had been applied (Examples 8 and 9). All saliva samples were collected under the supervision of a qualified physician. All samples underwent component analysis by a third-party organization. The results are shown in Table 4.
[0055] (Table 4) TIFF0007839531000005.tif217163
[0056] Cortisol is also commonly known as the stress hormone, and its secretion is known to increase under stressful conditions. Therefore, it can be said that a decrease is desirable. Referring to Table 4, it can be seen that the amount of cortisol secreted in Example 8 is reduced compared to Comparative Example 7.
[0057] On the other hand, oxytocin is also commonly known as the love hormone, and it is known that increased secretion of oxytocin has a relaxing effect. Therefore, it can be said that doing so is desirable. Referring to Table 4, it can be seen that the amount of oxytocin secreted in Example 9 is increased compared to Comparative Example 8.
[0058] The measurement results shown above show a p-value of 0.0000087 between Comparative Example 7 and Example 8, and a p-value of 0.00036 between Comparative Example 8 and Example 9. Since both p-values are < 0.05, a t-test indicates a statistically significant difference, and statistically, the effectiveness of the graphic assignment sheet A is demonstrated.
[0059] Although preferred embodiments of the present invention have been described above, the present invention is not limited to the above embodiments.
[0060] In the embodiment described above, the figure-applied sheet A is a fabric on which the figure M is applied, and the figure M is used so as to be in contact with a position corresponding to the wind gate, but the embodiment is not limited to this. For example, the shape-assigned sheet A could be used as a pillowcase, and the shape M could be positioned to contact the Tianzhu (an acupoint at the center of the back of the head, at the base of the neck). This increases the user's flexibility during sleep, allowing them to fall asleep in a relaxed state.
[0061] Furthermore, by making the shape-assigned sheet A into a hand towel, the user can apply the shape M to any part of their skin. In particular, the location of acupuncture points is effective in areas of the skin where C tactile fibers are highly active.
[0062] In the above embodiment, the graphic-applying sheet A was made of cloth, but for example, the graphic-applying sheet A may be made of paper. This makes it easier to procure the graphic-applying sheet A. Furthermore, it is disposable and hygienic. [Industrial applicability]
[0063] The present invention's graphic-applied sheet A, by having multiple graphic shapes M that possess the silver ratio, which is considered favorable to humans, come into contact with a person, can exhibit improved physical performance based on the fact that something considered favorable to humans comes into contact with the skin. Therefore, it can be widely applied to sheet-like items that people come into contact with, such as clothing, bedding, and hand towels. [Explanation of Symbols]
[0064] A....Shape-added sheet M, M1, M2...shape 1...First line segment 2...Second line segment 3. Third line segment 4...Fourth line segment 5... yen 6... Small circle
Claims
1. A sheet with added shapes, The aforementioned figure, A circle is a circular line segment, The first and second line segments, which are the diameters of the circle, pass through the center of the circle and are perpendicular to it, Inside the circle, there are two line segments, a third line segment, that pass through the midpoint between the end of the second line segment and the center of the circle, and are parallel to the first line segment. Inside the circle, there are two line segments, a fourth line segment, that pass through the midpoint between the end of the first line segment and the center of the circle on the first line segment and are parallel to the second line segment. A hollow small circle indicating the center of the aforementioned circle, A graphic-applying sheet body characterized by having the following features.
2. Each of the layers comprises the aforementioned figure, The aforementioned multiple layers are stacked so that the aforementioned figures overlap, The graphic-applying sheet body according to claim 1, characterized in that the graphic shapes in the plurality of layers are each colored in a different color.
3. The figure-forming sheet body according to claim 1 or 2, characterized in that the figure is formed by a paint containing conductive particles or magnetic particles.
4. The graphic-applying sheet body according to claim 3, characterized in that the conductive particles are silver particles.
5. The graphic-applying sheet body according to claim 1 or 2, characterized in that it is clothing.
6. The graphic-applying sheet body according to claim 5, characterized in that it is a shirt and the graphic is formed at a position corresponding to the wind gate.
Citation Information
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