Health care apparatus and use thereof
By designing a health care device that amplifies the intensity of low-frequency waves and combining it with a negative ion generator, the number of endothelial precursor cells is increased while the number of circulating endothelial cells is reduced, thereby enhancing blood purification and self-healing abilities and reducing the risk of cardiovascular disease.
Patent Information
- Application Number
- PCT/IB2024/061076
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-10-21
- Filing Date
- 2024-11-08
- Publication Date
- 2026-04-30
AI Technical Summary
Existing low-frequency wave transmitters emit low-frequency waves with insufficient intensity, which cannot effectively increase the number of endothelial precursor cells (EPCs) and reduce the number of circulating endothelial cells (CECs), leading to an increased risk of cardiovascular disease.
A health care device comprising a housing, power supply, speed controller, rotation mechanism, linkage mechanism, percussion device, and conical platform was designed. It amplifies the intensity of low-frequency waves through a resonant cavity structure and, combined with a negative ion generator, delivers low-frequency waves and negative ions to specific parts of the human body to stimulate the blood circulation system.
It significantly increases the number of endothelial precursor cells, reduces the number of circulating endothelial cells, enhances blood purification and self-healing capabilities, and reduces the risk of cardiovascular disease.
Smart Images

Figure IB2024061076_30042026_PF_FP_ABST
Abstract
Description
[0001] Health care devices and their uses
[0002] Technical Field
[0003] This invention relates to a health care device and its use, and more particularly to a health care device and its use that has a percussion device for generating low-frequency waves, which can increase the number of EPCs and simultaneously reduce the number of CECs.
[0004] Background Technology
[0005] Existing literature indicates that endothelial progenitor cells (EPCs) are precursor cells of vascular endothelial cells and play a crucial role in angiogenesis and endothelial repair. Therefore, increasing the number of EPCs can prevent cardiovascular disease or delay its progression. Conversely, circulating endothelial cells (CECs) are an indicator of vascular damage. They facilitate the adhesion of platelets and white blood cells to the vessel walls, leading to inflammation and fat accumulation, and gradually hardening of the blood vessels, resulting in a narrowing of the vessel diameter. This ultimately leads to thrombosis, arteriosclerosis, and other lesions. Therefore, reducing the number of CECs can reduce the risk of cardiovascular-related adverse events.
[0006] According to Traditional Chinese Medicine (TCM) theory, the navel is the Shenque acupoint, where the Ren, Du, Dai, and Chong meridians pass through. Therefore, stimulating the Shenque acupoint can regulate the entire body by connecting with the five internal organs through the meridians. Furthermore, according to Western medicine, the navel has the thinnest stratum corneum of the epidermis in the abdomen and lacks subcutaneous fat, making its barrier function weakest. In addition to the microcirculatory vessels found in normal skin, the navel skin also has a rich venous network and branches of the hypogastric artery. Therefore, any action or alteration to the blood flow within the microcirculatory vessels of the navel skin can introduce this effect or alteration into the body's circulatory system. Similarly, the spine is covered only by a thin epidermis and contains blood vessels and capillaries. Therefore, any action or alteration to the blood flow within the blood vessels or capillaries of the spine can also introduce this effect or alteration into the body's circulatory system.
[0007] Furthermore, existing literature indicates that human tissues and organs possess inherent oscillation frequencies. For example, the head has a frequency of 8-12 Hz, the chest cavity 4-6 Hz, the heart 5 Hz, the abdominal cavity 6-9 Hz, blood flow 1.2 Hz, and bone tissue 1.8 Hz. When a part of the human body is exposed to a low-frequency wave field of 0-20 Hz, such as bass waves or infrasound (as opposed to ultrasound or sound waves above 20 kHz), if the sound pressure level (in dB) reaches a certain threshold, the elastic wall of the corresponding tissue or organ will first vibrate, and this vibration will then be transmitted to the interior of the tissue or organ. In particular, resonance occurs when the frequency of the bass wave is synchronized with the aforementioned inherent oscillation frequency of the tissue or organ, at which point the stimulation received by the tissue or organ is greatest. When low-frequency waves induce resonance and act on tissues and organs, they also affect the cellular structures, such as mitochondria. Mitochondria are the primary sites of oxidative phosphorylation and ATP synthesis within cells, providing chemical energy for cellular activities; hence, they are often called "the cell's power station." Furthermore, the resonance induced by the aforementioned low-frequency waves acting on mitochondria also influences the binding state of some enzymes to the cell membrane and their activity. Simultaneously, when low-frequency waves of a certain intensity act, their energy can be converted into heat, biochemical energy, and bioelectric energy, directly acting on tissues and organs. This allows damaged tissues to repair themselves and restore normal function under low-frequency wave stimulation. Using health care devices that generate low-frequency waves avoids the risk of harm caused by excessive energy from high-frequency microwave oscillators. As mentioned above, a health care device with a low-frequency wave transmitter is currently known, which emits low-frequency waves of a specific frequency at a predetermined location near the user's navel to achieve health care effects. For example, Taiwan patent applications TW202339822A, TW202415360A, and TW112113480A disclose a health care device that emits low-frequency waves of a specific frequency towards the navel, thereby increasing the content of activated T cells, the content of activated T cells and B cells in the blood, and the cytotoxic ability of NK cell lines against cancer cell line (K562), respectively. Additionally, Taiwan patent applications TW112209745U and TWM657714U disclose that negative ions have effects such as blood purification, cell repair, enhanced resistance and self-healing ability, and regulation of the autonomic nervous system.
[0008] However, the intensity of the low-frequency waves emitted by the aforementioned health care device that uses a low-frequency wave transmitter to emit low-frequency waves still has room for further improvement.
[0009] Therefore, developing a health care device that can emit low-frequency waves of greater intensity, increase the number of EPCs, and simultaneously reduce the number of CECs is a problem that researchers urgently need to solve.
[0010] Summary of the Invention
[0011] The purpose of this invention is to provide a health care device comprising a housing and a group of components within the housing capable of generating low-frequency waves. Through the resonant cavity structure created by the housing, the low-frequency waves generated by the component group can resonate, thereby amplifying the intensity of the low-frequency waves.
[0012] An embodiment of the present invention discloses a health care device comprising: a housing and a power supply, a speed controller, a rotation mechanism, a linkage mechanism, a percussion device, and a conical platform disposed within the housing; wherein the power supply is electrically connected to the speed controller to output power to the speed controller; the speed controller is electrically connected to the rotation mechanism and controls the rotation mechanism to rotate at a predetermined speed, the predetermined speed causing the percussion device to strike the conical platform at a frequency between 24 times / minute and 64 times / minute, and the percussion device generating a low-frequency wave of the predetermined frequency; and the rotation mechanism is connected to the percussion device via the linkage mechanism to drive the percussion device to strike a plane of the conical platform, causing the conical platform to transmit the low-frequency wave of the predetermined frequency. The health care device according to the above embodiments further includes: a block and at least one negative ion generator, wherein the block is disposed on the at least one negative ion generator, the negative ion generator is electrically connected to the power source, one side surface of the block is connected to the metal back plate, and the block faces the tip of the conical platform.
[0013] According to the health care device described in the above embodiments, the conical platform is a wooden cone.
[0014] According to the health care device described in the above embodiments, the rotating mechanism includes a motor and a cam, the cam is disposed on one side of the motor and is connected to the linkage mechanism; the linkage mechanism includes a connecting rod, the tapper includes a column and a cone, one end of the column is connected to the connecting rod and the other end of the column is connected to the cone; and the column is a wooden cylinder, the cone is a wooden cone, and the column and the cone are integrally formed.
[0015] In the health care device described in the above embodiments, the block is a wooden block.
[0016] According to the health care device described in the above embodiments, at least one surface of the at least one negative ion generator is exposed outside the casing.
[0017] According to the health care device described in the above embodiment, the predetermined frequency is between 1.18 and 1.81 Hz, and the low-frequency wave is a low-frequency wave.
[0018] In the health care device according to the above embodiment, the predetermined frequency is 1.45 Hz.
[0019] According to the health care device described in the above embodiments, the health care device of the present invention can be further applied to the purpose of transmitting low-frequency waves to the spine or navel.
[0020] According to the health care device described in the above embodiments, the block also generates vibration and resonance of low-frequency waves transmitted from the tip of the conical platform, thereby enhancing the resonance of the enclosure. Furthermore, the negative ions generated by the negative ion generator exposed outside the enclosure have effects such as blood purification, cell repair, and enhanced immunity and self-healing ability.
[0021] The above description of the invention and the following description of the embodiments are used to demonstrate the principles of the invention and to provide a further explanation of the claims of the invention.
[0022] Attached Figure Description
[0023] Figure 1 is a schematic diagram of the health care device according to the first embodiment of the present invention;
[0024] Figure 2 is a schematic diagram of the health care device according to the second embodiment of the present invention;
[0025] Figure 3 is a schematic diagram of an embodiment of the health care device shown in Figure 2 of the present invention;
[0026] Figure 4 is a schematic diagram of the implementation of the health care device shown in Figure 2 of the present invention installed on the frame.
[0027] The attached figures are labeled as follows:
[0028] 1: User 11: Spine
[0029] 12: Navel
[0030] 2, 2: Health care device
[0031] 20: Frame
[0032] 21, 21': Box
[0033] 211, 211': Metal back plate 22, 22 , : power supply
[0034] 23, 23': Speed controller; 24, 24': Rotation mechanism; 241, 241': Motor.
[0035] 242, 242': Cam
[0036] 25, 25': Linkage mechanism; 251, 251': Linkage.
[0037] 26, 26': Percussion instrument
[0038] 261, 261': Prism
[0039] 262, 262': Cone
[0040] 263, 263': Vibrating element; 27, 27': Conical platform
[0041] 271, 27F: Plane of the frustum; 272, : Tip of the frustum.
[0042] 29: Block
[0043] 30: Negative ion generator
[0044] D: Pre-determined distance
[0045] N: Negative ions
[0046] V: Surface
[0047] U: Reserved location
[0048] W: Low-frequency wave
[0049] Please refer to Figure 1 for a detailed description of the implementation method. Figure 1 is a schematic diagram of the structure of a health care device according to a first embodiment of the present invention. The health care device 2 provided in the first embodiment of the present invention includes a housing 21 and a power supply 22, a speed controller 23, a rotating mechanism 24, a linkage mechanism 25, a percussion device 26, and a conical platform 27 disposed in the housing 21.
[0050] In this embodiment, power supply 22 is electrically connected to speed controller 23 to output power to speed controller 23. Speed controller 23 is electrically connected to rotation mechanism 24 and controls rotation of rotation mechanism 24 at a predetermined speed. Rotation mechanism 24 is connected to percussionist 26 via linkage mechanism 25. Percussionist 26 generates a low-frequency wave W of a predetermined frequency, thereby driving percussionist 26 to strike a plane 271 of conical platform 27, so that conical platform 27 transmits the low-frequency wave W of the predetermined frequency. The predetermined speed results in a striking frequency of percussionist 26 striking conical platform 27 between 24 times / minute and 64 times / minute.
[0051] In this embodiment, the power supply 22 may be, for example, a lithium iron phosphate battery. The speed controller 23 may be, for example, a device that controls the output speed of the motor 241 by adjusting the voltage or current. The housing 21 may include at least one metal backplate 211.
[0052] In this embodiment, the rotating mechanism 24 includes a motor 241 and a cam 242. The cam 242 is disposed on one side of the motor 241 and is connected to the linkage mechanism 25. The motor 241 in this embodiment can be, for example, a reciprocating motor mechanism.
[0053] In this embodiment, the reciprocating motor mechanism rotates back and forth in opposite directions, thereby driving the linkage mechanism 25 to move up and down, so that the striker 26 repeatedly strikes the plane 271 of the conical platform 27.
[0054] In this embodiment, the linkage mechanism 25 includes a link 251. The striker 26 includes a column 261 and a cone 262. One end of the column 261 is connected to the link 251, and the other end of the column 261 is connected to the cone 262. The percussion device 26 further includes a vibrating element 263 disposed on the surface of the column 261 or the cone 262. The vibrating element 263 is electrically connected to the power supply 22. The vibrating element 263 is a disc-shaped piezoelectric ceramic transducer made of a thickness-polarized piezoelectric material. The power supply 22 provides power to the vibrating element 263, causing it to vibrate in the thickness direction to generate a low-frequency wave at a predetermined frequency. This predetermined frequency is not greater than 1.81 Hz, or not less than 1.18 Hz, or between 1.18 and 1.81 Hz. Preferably, the predetermined frequency is 1.45 Hz.
[0055] In other words, in this embodiment, the low-frequency wave W is the bass wave. The predetermined frequency of the low-frequency wave W transmitted when the percussionist 26 strikes the conical platform 27 is between 1.18 and 1.81 Hz. Preferably, the predetermined frequency of the low-frequency wave W transmitted when the percussionist 26 strikes the conical platform 27 is 1.45 Hz.
[0056] In this embodiment, the cone 262 is a wooden cone. The column 261 is a wooden cylinder, and the column 261 and the cone 262 can be integrally formed. Furthermore, the truncated cone 27 is also a wooden cone. It is understood that, since wood is an elastic material, it will vibrate and resonate with low-frequency sound waves. When the wooden truncated cone 27 is struck by the percussion instrument 26, the low-frequency wave W transmitted will resonate with its own resonance or natural frequency, and the vibration will emit low-frequency waves into the surrounding air, generating a series of low-frequency sound waves. Therefore, the enclosure 21 is a resonant cavity structure, which can cause the generated low-frequency wave W to resonate, thereby amplifying the intensity of the low-frequency wave W. Preferably, the enclosure 21 is a wooden enclosure.
[0057] In this embodiment, the low-frequency wave W is generated by a series of actions of components such as the power supply 22, speed controller 23, rotation mechanism 24, linkage mechanism 25, percussion device 26, and conical platform 27, which are disposed in the housing 21. In addition, the resonance effect generated by the resonant cavity structure of the housing 21 amplifies the intensity of the low-frequency wave W, thereby enhancing the beneficial effects of the low-frequency wave W on the human body.
[0058] Please refer to Figure 2. Figure 2 is a schematic diagram of the structure of the health care device 2' according to the second embodiment of the present invention. The health care device 2 of the second embodiment of the present invention includes a housing 21, and a power supply 22', a speed controller 23', a rotating mechanism 24', a linkage mechanism 25', a tapper 26', a conical platform 27', a block 29, and two negative ion generators 30 disposed in the housing 21'.
[0059] In this embodiment, power supply 22 is electrically connected to speed controller 23' to output power to speed controller 23'. Speed controller 23' is electrically connected to rotation mechanism 24' and controls rotation of rotation mechanism 24' at a predetermined speed. Rotation mechanism 24' is connected to percussionist 26' via linkage mechanism 25' to drive percussionist 26' to strike a plane 271' of conical platform 27. Since percussionist 26' generates a low-frequency wave W of a predetermined frequency, conical platform 27' can transmit the low-frequency wave W of the predetermined frequency.
[0060] In this embodiment, the health care device 2 further includes a block 29 and two negative ion generators 30, which are electrically connected to a power supply 22'. The block 29 is disposed on the two negative ion generators 30, and one side surface of the block 29 is connected to a metal back plate 211, with the block 29 facing the tip 272 of the conical truncated pyramid 27'.
[0061] In this embodiment, there are two negative ion generators, but the invention is not limited to this. The number of negative ion generators can also be one, three, or more.
[0062] In this embodiment, the power supply 22' may be, for example, a lithium iron phosphate battery. The speed controller 23' may be, for example, a device that controls the output speed of the motor 241 by adjusting the voltage or current. The housing 21' may include at least one metal back plate 211', and the block 29 may be a wooden block.
[0063] In this embodiment, at least one surface V of each of the two negative ion generators 30 is exposed outside the housing 21'. In this embodiment, the rotating mechanism 24' includes a motor 241' and a cam 242'. The cam 242' is disposed on one side of the motor 241' and is connected to the linkage mechanism 25'. In this embodiment, the motor 241' can be, for example, a reciprocating motor mechanism. The reciprocating motor mechanism rotates back and forth in opposite directions, driving the linkage mechanism 25' to move up and down, so that the striker 26' reciprocates to strike the plane 271' of the conical platform 27'.
[0064] In this embodiment, the linkage mechanism 25' includes a link 251'. The striker 26' includes a column 261' and a cone 262'. One end of the column 261' is connected to the link 251', and the other end of the column 261' is connected to the cone 262'. The percussion device 26' further includes a vibrating element 263' disposed on the surface of the column 261' or the cone 262'. The vibrating element 263' is electrically connected to the power supply 22'. The vibrating element 263' is a disc-shaped piezoelectric ceramic transducer made of a thickness-polarized piezoelectric material. The power supply 22' provides power to the vibrating element 263', causing it to vibrate in the thickness direction to generate a low-frequency wave at a predetermined frequency. This predetermined frequency is not greater than 1.81 Hz, or not less than 1.18 Hz, or between 1.18 and 1.81 Hz. Preferably, the predetermined frequency is 1.45 Hz.
[0065] In other words, in this embodiment, the low-frequency wave is the bass wave. The predetermined frequency of the low-frequency wave W transmitted when the percussionist 26' strikes the conical platform 27' is between 1.18 and 1.81 Hz. Preferably, the predetermined frequency of the low-frequency wave W transmitted when the percussionist 26' strikes the conical platform 27' is 1.45 Hz.
[0066] In this embodiment, cone 262 is a wooden cone. Column 261' is a wooden cylinder, and column 261' and cone 262' can be integrally formed. Furthermore, truncated cone 27' is also a wooden cone. It is understood that, since wood is an elastic material, it will vibrate and resonate with low-frequency sound waves. When the wooden truncated cone 27' is struck by the percussion instrument 26' and transmits the low-frequency wave W, it will resonate with its own resonance or natural frequency, and the vibration will emit low-frequency waves into the surrounding air, generating a series of low-frequency sound waves. Therefore, the enclosure 21' is a resonant cavity structure, which can cause the generated low-frequency wave W to resonate, thereby amplifying the intensity of the low-frequency wave W. Preferably, the enclosure 21' is a wooden enclosure.
[0067] In this embodiment, the cone-shaped platform 27' is designed to be wider at its plane 271 and narrower at its tip 272, causing the low-frequency wave W to accumulate energy as it travels towards the tip 272. Therefore, when the low-frequency wave W reaches the tip 272 of the cone-shaped platform 27', its energy is maximized. This allows the low-frequency wave W to concentrate its energy at the tip, similar to a "point discharge" principle in electrical engineering, and then release it towards the wooden block 29. Consequently, the low-frequency wave W transmitted from the tip 272' of the cone-shaped platform 27' vibrates and resonates on the wooden block 29. Furthermore, one surface of the wooden block 29 is connected to the back plate 2ir, resulting in a better box resonance phenomenon. Therefore, this tapping frequency setting can create intermittent low-frequency waves W that vibrate and resonate on the wooden block 29, thus avoiding continuous vibration and resonance and preventing injury to the user.
[0068] Furthermore, in this embodiment, the negative ions N generated by the negative ion generator 30 exposed outside the housing 21' can have effects such as blood purification, cell restoration, and enhancing resistance and self-healing ability in the human body.
[0069] <Implementation Methods and Effects>
[0070] Please refer to Figure 3. Figure 3 is a schematic diagram of an embodiment of the health care device shown in Figure 2 of the present invention. The health care device 2 is positioned above the spine 11 on the back of the user 1, and at a predetermined position U at a predetermined distance D from the spine 11. One end of the negative ion generator 30 of the health care device 2 faces the spine 11 on the back of the user 1. Through the operation of the components in the health care device 2, a low-frequency wave W and negative ions N of a predetermined frequency are transmitted to the spine 11. The predetermined distance D can be between 0 and 8 cm, or less than or equal to 5 cm; the present invention is not limited thereto. The predetermined frequency is not greater than 1.81 Hz, or not less than 1.18 Hz, or between 1.18 and 1.81 Hz. Preferably, the predetermined frequency is 1.45 Hz.
[0071] In this embodiment, the aforementioned health care device 2 is used to perform a health care program that delivers low-frequency waves W and negative ions N to the spine of users P, Q, and Q'. The predetermined distance D is 0 cm, meaning the health care device 2 is in contact with the spine. The predetermined frequency is 1.45 Hz, the low-frequency wave is a bass wave, and the negative ions N are 35,000 per milliliter. The tapping frequency is 24 times per minute, and each session lasts for 2 hours. User P is 75 years old and female. User Q is 72 years old and female. User Q' is 76 years old and male. Before performing the health care program, blood samples are taken from users P, Q, and Q' and sent to a medical laboratory for immunological testing to examine the number of endothelial progenitor cells (EPCs) in every 2 milliliters of blood. Within 48 hours of completing the health care procedure (80 hours prior), blood samples were drawn from personnel P, Q, and Q' and sent to a medical laboratory for immunological testing. The number of endothelial precursor cells in each 2 ml of blood was measured, and the results are recorded in Table 1. Table 1
[0072] Endothelial progenitor cell (EPC) count test
[0073] The percentage difference before and after implementation (P) was calculated as follows: Personnel: 3 - 5 (increase by 2), increase by 66%.
[0074] Q: Personnel 3, 10, 7 (increase), 233% increase.
[0075] Q's personnel: 3 or 6, plus 3 more, increasing by 100%.
[0076]
[0077] Table 1 shows that before the health care program, Person P had 3 endothelial precursor cells per 2 ml of blood (equivalent to a vascular age of 70 years), and after 80 hours of the program, this increased to 5 cells per 2 ml of blood (equivalent to a vascular age of 60 years), representing a 66% increase in endothelial precursor cell count. Person Q had 3 endothelial precursor cells per 2 ml of blood (equivalent to a vascular age of 70 years) before the program, and after 80 hours, this increased to 10 cells per 2 ml of blood (equivalent to a vascular age of 50 years), representing a 233% increase. Person Q' had 3 endothelial precursor cells per 2 ml of blood (equivalent to a vascular age of 70 years) before the program, and after 80 hours, this increased to 6 cells per 2 ml of blood (equivalent to a vascular age of 60 years), representing a 100% increase. Therefore, the health care device provided by the present invention can promote an increase in the number of endothelial precursor cells in the human body, and can significantly increase the number of endothelial precursor cells after only 2 hours of single execution and a total of 80 hours of execution.
[0078] In this embodiment, the aforementioned health care device 2 is used to perform a health care program that transmits low-frequency waves W and negative ions N to the navels (see Figure 4) of another group of personnel R, S, and T. The predetermined distance D is 0 cm, meaning the health care device 2' is in contact with the navel. The predetermined frequency is 1.45 Hz, the low-frequency wave is a bass wave, and the negative ions N are 35,000 per milliliter. The tapping frequency is 24 times / minute, and each session lasts for 2 hours. Person R is 76 years old and male. Person S is 72 years old and female. Person T is 44 years old and male. Before performing the health care program, blood samples were taken from personnel R, S, and T and sent to a medical laboratory for immunological testing to examine the number of circulating endothelial cells (CECs) in every 4 milliliters of blood. Within 48 hours of completing the health care procedure (60 hours prior), blood samples were drawn from R, S, and T personnel and sent to a medical laboratory for immunological testing. The number of circulating endothelial cells in every 4 ml of blood was measured, and the results were recorded in Table 2.
[0079] Table 2
[0080] Circulating endothelial cell (CEC) count test
[0081] The percentage difference (R) before and after implementation: 24 personnel, 7 (reduction), 17 (reduction), 71%.
[0082] S personnel: 41 (26) - 15 (37%)
[0083] T personnel: 34 (4), reduced to 30 (88%).
[0084]
[0085] Table 2 shows that before the health care program, the number of circulating endothelial cells in person R was 24 per 4 ml of blood. After 60 hours of the program, this number decreased to 7 per 4 ml of blood, representing a 71% reduction in the number of circulating endothelial cells. o Person S had 41 circulating endothelial cells per 4 ml of blood before the health care program, which decreased to 26 per 4 ml of blood after 60 hours of the program, representing a 37% reduction in circulating endothelial cells. Person T had 34 circulating endothelial cells per 4 ml of blood before the program, which decreased to 4 per 4 ml of blood after 60 hours of the program, representing an 88% reduction in circulating endothelial cells. As shown in Tables 1 and 2, the health care device provided in this embodiment of the invention can promote an increase in the number of endothelial precursor cells and a decrease in the number of circulating endothelial cells, and this effect can be achieved with a single 2-hour treatment and a total health care program duration of 80 hours or 60 hours. Since endothelial precursor cells are the precursor cells of vascular endothelial cells and play an important role in angiogenesis and vascular endothelial repair, increasing the number of EPCs can prevent the occurrence of cardiovascular diseases or delay their progression. Conversely, since circulating endothelial cells are an indicator of vascular damage... It makes platelets and white blood cells more likely to adhere to the vessel walls, causing inflammation, fat accumulation, and gradual hardening of the blood vessels, narrowing their inner diameter and ultimately leading to thrombosis, arteriosclerosis, and other diseases. Therefore, reducing the number of CECs can reduce the risk of cardiovascular-related adverse events.
[0086] Please also refer to Figure 4. Figure 4 is a schematic diagram of the implementation of the health care device 2 of the present invention, which is set on the frame 20. In another embodiment, the health care device 2 is set on a frame 20, and the user 1 lies flat on the platform (not shown in the figure). The frame 20 is set on the platform, and the health care device 2' is located above the user 1's spine 11 or navel 12. In this way, the user 1 can also get proper rest during the health care process. It should be noted that the above low frequency wave is only one example of low frequency wave, and the present invention is not limited to this. Low frequency wave can also be electromagnetic waves such as radio waves or light waves.
[0087] The embodiments described above are merely illustrative of the technical ideas and features of the present invention, and are intended to enable those skilled in the art to understand the content of the present invention and implement it accordingly. They should not be construed as limiting the patent scope of the present invention. That is, all equivalent changes or modifications made in accordance with the spirit disclosed in the present invention should still be covered within the patent scope of the present invention.
Claims
Claims 1. A health care device, comprising: A housing (21) and a power supply (22), a speed controller (23), a rotating mechanism (24), a linkage mechanism (25), a striking device (26), and a conical platform (27) disposed within the housing (21); wherein, The power supply (22) is electrically connected to the speed controller (23) to output power to the speed controller (23); the speed controller (23) is electrically connected to the rotating mechanism (24) and controls the rotating mechanism (24) to rotate at a predetermined speed, the predetermined speed causing the percussionist (26) to strike the conical platform (27) at a frequency between 24 times / minute and 64 times / minute, and the percussionist (26) generates a low-frequency wave (W) at a predetermined frequency, the predetermined frequency being between 1.18 and 1.81 Hz, the low-frequency wave (W) being a bass wave; and the rotating mechanism (24) is connected to the percussionist (26) through the linkage mechanism (25) to drive the percussionist (26) to strike a plane (271) of the conical platform (27), so that the conical platform (27) transmits the low-frequency wave (W) of the predetermined frequency.
2. The health care device as claimed in claim 1, further comprising: a body (29) and at least one negative ion generator (30), wherein, The block (29) is disposed on the at least one negative ion generator (30), which is electrically connected to the power supply (22, ). One side surface of the block (29) is connected to a metal back plate (211) of the housing (21), and the block (29) faces the tip (272') of the conical platform (27).
3. The health care device as described in claim 2, wherein, The conical platform (27) is a wooden cone.
4. The health care device as described in claim 3, wherein, The rotating mechanism (24) includes a motor (241) and a cam (242). The cam (242) is located on one side of the motor (241) and is connected to the linkage mechanism (25). The linkage mechanism (25) includes a connecting rod (251). The percussion device (26) includes a column (261) and a cone (262). One end of the column (261) is connected to the connecting rod (251), and the other end of the column (261) is connected to the cone (262). The column (261) is a wooden cylinder, and the cone (262) is a wooden cone. The column (261) and the cone (262) are integrally formed.
5. The health care device as described in claim 4, wherein, The percussion device (26) also includes a vibrating element (263), which is disposed on the surface of the column (261) or the cone (262). The vibrating element (263) is electrically connected to the power supply (22). The vibrating element (263) vibrates in the thickness direction to generate the low-frequency wave of the predetermined frequency.
6. The health care device as described in claim 5, wherein, The block (29) is made of wood.
7. The health care device as described in claim 6, wherein, At least one surface (V) of the at least one negative ion generator (30) is exposed outside the housing (21).
8. The health care device as claimed in claim 7, wherein, The predetermined frequency is 1.45 Hz.
9. Use of a health care device as claimed in any one of claims 1 to 8, for transmitting the low-frequency wave (W) to the spine (11) or navel.
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