Multi-dimensional polymerization microwave treatment system

The multidimensional microwave therapy system, utilizing a movable mattress and a three-dimensional spiral coil design, solves the problem of electromagnetic wave attenuation within the human body, achieving effective treatment temperature and uniform irradiation at the lesion site, thus improving treatment efficacy and ease of use.

CN224180106UActive Publication Date: 2026-05-01HENAN LIXINGHE MEDICAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN LIXINGHE MEDICAL TECHNOLOGY CO LTD
Filing Date
2025-05-22
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

In existing electromagnetic wave therapy equipment, electromagnetic waves gradually attenuate within the human body, making it difficult to reach an effective treatment temperature at the lesion site. Furthermore, traditional treatment beds are inconvenient to use.

Method used

A multidimensional convergent microwave therapy system was designed, including an electromagnetic wave therapy machine and a treatment bed. The mattress can move on a transmission element and is equipped with a non-contact applicator. The non-contact applicator includes a cover and a three-dimensional spiral coil, which is used to irradiate electromagnetic waves from top to bottom inside the cover. Combined with guide rails and guiding elements, the mattress can move stably to ensure that the electromagnetic waves irradiate the lesion evenly.

Benefits of technology

The design of the mattress, with its movement and three-dimensional spiral coils, effectively eliminates the problem of electromagnetic wave heat attenuation, ensuring that the lesion reaches an effective treatment temperature, thus improving treatment effectiveness and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multidimensional polymerization microwave therapy system, relates to medical equipment technical field, including electromagnetic wave therapeutic machine and treatment couch, treatment couch includes bed body, transfer element and mattress, transfer element installs on the bed body, and the mattress installs on transfer element, the mattress can be driven by transfer element to move relative to bed body, and the transfer element is equipped on the bed body. The electromagnetic wave therapeutic machine is arranged close to the therapeutic bed, the therapeutic end of the electromagnetic wave therapeutic machine is provided with a non-contact application device, the non-contact application device is used for carrying out electromagnetic wave irradiation on the focus in the body of the patient, the non-contact application device comprises a cover body and a coil, and the cover body is arranged on the periphery of the coil in a sleeving mode; a radiation opening is formed in the bottom end of the cover body and used for facing a focus in a patient, the top end of the cover body is used for being connected with an electromagnetic wave generator of an electromagnetic wave therapeutic machine, and the coil is arranged in a three-dimensional spiral shape. The temperature control device can ensure that the lesion in the body of a patient reaches the effective treatment temperature, improves the treatment effect, and is convenient to use.
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Description

A multidimensional polymer microwave therapy system Technical Field

[0001] This utility model relates to the field of medical equipment technology, and in particular to a multidimensional convergence microwave therapy system. Background Technology

[0002] Currently, when using electromagnetic waves for treatment, a common problem is the gradual attenuation of these waves within the human body. This makes it difficult to reach the lesions in the patient's body at an effective therapeutic temperature. This issue significantly impacts treatment outcomes and poses a challenge to the patient's recovery.

[0003] Traditional electromagnetic wave therapy equipment typically consists of an electromagnetic wave therapy machine and a treatment bed. The electromagnetic wave therapy machine suffers from the aforementioned electromagnetic wave attenuation problem. As for the treatment bed, since the mattress cannot be moved directly relative to the bed body, the entire treatment bed must be moved when the patient's position needs to be adjusted, which is inconvenient to use. Summary of the Invention

[0004] The purpose of this invention is to provide a multidimensional polymer microwave therapy system to solve the problems existing in the prior art, ensure that the lesion in the patient's body can reach an effective treatment temperature, improve the treatment effect, and be easy to use.

[0005] To achieve the above objectives, this utility model provides the following solution:

[0006] This utility model provides a multidimensional convergent microwave therapy system, including an electromagnetic wave therapy machine and a treatment bed. The treatment bed includes a bed frame, a transmission element, and a mattress. The transmission element is mounted on the bed frame, and the mattress is mounted on the transmission element. The mattress can move relative to the bed frame under the drive of the transmission element, and the patient lies on the mattress. The electromagnetic wave therapy machine is positioned close to the treatment bed, and the treatment end of the electromagnetic wave therapy machine is equipped with a non-contact applicator. The non-contact applicator is used to irradiate lesions in the patient's body with electromagnetic waves. The non-contact applicator includes a cover and a coil. The cover is fitted around the outer periphery of the coil, and the bottom end of the cover has a radiation opening that faces the lesion in the patient's body. The top end of the cover is used to connect to the electromagnetic wave generator of the electromagnetic wave therapy machine. The coil is arranged in a three-dimensional spiral shape.

[0007] Preferably, the transmission element includes a support bed board, multiple guide rails, and multiple guide elements. The multiple guide rails are arranged parallel to each other on the upper surface of the bed body, and the length direction of the guide rails is perpendicular to the length direction of the bed body. The arrangement direction of the multiple guide rails is parallel to the length direction of the bed body. Each of the multiple guide rails corresponds one-to-one with the multiple guide elements, and the guide elements are movably connected within the guide rails. Each guide element is installed on the lower surface of the support bed board, and the support bed board is installed at the lower end of the mattress.

[0008] Preferably, the guiding element is a slider, and each slider is connected to a linear motor, which drives the slider to move along the guide rail.

[0009] Preferably, the guiding element is a roller, and each roller is connected to a drive motor. The drive motor is used to drive the roller to rotate and move the roller along the guide rail.

[0010] Preferably, the cross-sectional area of ​​the supporting bed board is larger than the cross-sectional area of ​​the bed body.

[0011] Preferably, the mattress includes a base layer and a composite wave-absorbing layer, the composite wave-absorbing layer being fixed to the upper end of the base layer, and the upper end of the composite wave-absorbing layer being used to support the patient.

[0012] Preferably, the base layer is made of a water-based polymer foam material; the composite absorbing layer includes a plurality of composite ferrite absorbing layers and a plurality of chiral absorbing material layers, and the plurality of composite ferrite absorbing layers and the plurality of chiral absorbing material layers are stacked one on top of the other.

[0013] Preferably, the outer surface of the bed is provided with an electroplated coating, and the cover of the non-contact applicator is made of aluminum alloy.

[0014] Preferably, the lower end of the electromagnetic wave therapy machine is provided with multiple wheels.

[0015] Preferably, the first end of the coil is located near the inner top surface of the cover, and the second end of the coil extends to near the radiation opening. From the top end of the cover to the bottom end of the cover, the outer diameter of the coil gradually increases, and the winding spacing of the coil gradually increases. The coil is formed by connecting multiple turn units in sequence, and each turn unit is circular. Several recessed segments are also formed on each turn unit. The recessed segments bend towards the first end of the coil, and the number and position of the recessed segments on each turn unit are equal.

[0016] The present invention achieves the following technical advantages over the prior art:

[0017] This utility model provides a multidimensional convergent microwave therapy system, including an electromagnetic wave therapy machine and a treatment bed. The treatment bed includes a bed frame, a transmission element, and a mattress. The transmission element is installed on the bed frame, and the mattress is installed on the transmission element. The mattress can move relative to the bed frame under the drive of the transmission element, and the patient lies on the mattress, thus enabling the patient to move via the mattress, making it convenient for patients with limited mobility. The electromagnetic wave therapy machine is positioned close to the treatment bed, and the treatment end of the electromagnetic wave therapy machine is equipped with a non-contact applicator. The non-contact applicator is used to irradiate the lesions in the patient's body with electromagnetic waves, thereby achieving treatment of the lesions. The non-contact applicator includes a cover and... The coil is surrounded by a cover, with a radiation opening at the bottom. This opening is positioned towards the lesion inside the patient's body, allowing electromagnetic waves to irradiate from top to bottom within the cover. The coil concentrates the electromagnetic waves, ensuring they reach the lesion. The top of the cover connects to the electromagnetic wave generator of the electromagnetic wave therapy machine, enabling the introduction of electromagnetic waves. The coil is arranged in a three-dimensional spiral shape, allowing it to be distributed throughout the cover, effectively eliminating thermal attenuation and ensuring the lesion reaches an effective treatment temperature. This improves the uniformity of irradiation and enhances the therapeutic effect. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 is a schematic diagram of the electromagnetic wave therapy machine of this utility model;

[0020] Figure 2 is a schematic diagram of the coil structure in this utility model;

[0021] Figure 3 is a schematic diagram of the structure of the treatment bed in this utility model;

[0022] In the diagram: 1-Electromagnetic wave therapy machine, 2-Non-contact applicator, 3-Coil, 31-Turn unit, 32-Recessed section, 4-Mattress, 5-Supporting bed board, 6-Guide rail, 7-Bed body, 8-Main unit, 9-Robotic arm, 10-Walking wheels. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] The purpose of this invention is to provide a multidimensional polymer microwave therapy system to solve the problems existing in the prior art, ensure that the lesion in the patient's body can reach an effective treatment temperature, improve the treatment effect, and be easy to use.

[0025] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0026] As shown in Figures 1-3, this embodiment provides a multidimensional convergent microwave therapy system, including an electromagnetic wave therapy machine 1 and a treatment bed. The treatment bed includes a bed body 7, a transmission element, and a mattress 4. The transmission element is installed on the bed body 7, and the mattress 4 is installed on the transmission element. The mattress 4 can move relative to the bed body 7 under the drive of the transmission element, and the patient lies on the mattress 4, thus enabling the patient to move by the mattress 4, making it convenient for patients with limited mobility to use. The electromagnetic wave therapy machine 1 is positioned close to the treatment bed, and the treatment end of the electromagnetic wave therapy machine 1 is equipped with a non-contact applicator 2. The non-contact applicator 2 is used to irradiate the lesions in the patient's body with electromagnetic waves, thereby achieving the treatment of the lesions in the patient's body. The device 2 includes a cover and a coil 3. The cover is fitted around the outer periphery of the coil 3, and the bottom of the cover has a radiation opening. The radiation opening is set towards the lesion in the patient's body, so that electromagnetic waves can be irradiated from top to bottom in the cover. The electromagnetic waves are focused by the coil 3 to ensure that the electromagnetic waves can irradiate the lesion in the patient's body. The top of the cover is used to connect to the electromagnetic wave generator of the electromagnetic wave therapy machine 1 to realize the introduction of electromagnetic waves. The coil 3 is arranged in a three-dimensional spiral shape, so that the coil 3 can be distributed in different spaces in the cover, effectively eliminating the problem of electromagnetic wave thermal attenuation, ensuring that the lesion in the patient's body can reach an effective treatment temperature, improving the uniformity of irradiation to the lesion in the patient's body, and thus improving the treatment effect.

[0027] Specifically, as shown in Figure 3, the transmission element includes a support bed board 5, multiple guide rails 6, and multiple guiding elements. The multiple guide rails 6 are arranged parallel to the upper end surface of the bed body 7, and the length direction of the guide rails 6 is perpendicular to the length direction of the bed body 7. Thus, when guiding the mattress 4, the mattress 4 can move in a direction perpendicular to the length direction of the bed body 7. The arrangement direction of the multiple guide rails 6 is parallel to the length direction of the bed body 7. By guiding the mattress 4 simultaneously through the multiple guide rails 6, the stability of the mattress 4 during movement is improved. The multiple guide rails 6 correspond one-to-one with the multiple guiding elements, and the guiding elements are movably connected inside the guide rails 6. Through the cooperation of the guiding elements and the guide rails 6, the mattress 4 can move stably within a small range. Each guiding element is installed on the lower end surface of the support bed board 5, and the support bed board 5 is installed at the lower end of the mattress 4. The support bed board 5 supports the mattress 4, improving the stability when supporting the patient.

[0028] As a preferred embodiment, the guiding element is a slider, and each slider is connected to a linear motor. The linear motor is used to drive the slider to slide along the guide rail 6, thereby realizing the movement and guidance of the mattress 4 through the cooperation of the slider and the guide rail 6.

[0029] As another preferred embodiment, the guiding element is a roller, and each roller is connected to a drive motor. The drive motor is used to drive the roller to rotate and make the roller roll along the guide rail 6. Thus, through the cooperation between the roller and the guide rail 6, the movement and guidance of the mattress 4 are realized.

[0030] In this embodiment, the design of the transmission element is based on medical-grade linear guide rails and servo drive technology to achieve horizontal displacement control of the mattress 4. At the same time, the guide rail 6 and the slider (or roller) are designed with a silent structure and are driven by a linear motor or drive motor to achieve stepless speed regulation, meeting various needs from fine adjustment to rapid movement. Meanwhile, the control system can effectively suppress vibration and noise during the movement process, ensuring that the displacement stability meets the standards of medical equipment.

[0031] To ensure the stability of the mattress 4 in supporting the patient during treatment, the cross-sectional area of ​​the supporting bed board 5 is larger than that of the bed body 7. This allows the outer edge of the supporting bed board 5 to extend beyond the outer edge of the bed body 7 in the initial state. As a preferred embodiment, the width of the portion of the supporting bed board 5 extending beyond the bed body 7 is 1 / 4 of the width of the bed body 7. This prevents the mattress 4 and the patient from losing balance and causing the entire structure to tip over when the supporting bed board 5 and the mattress 4 move outward.

[0032] In this embodiment, the mattress 4 includes a base layer and a composite wave-absorbing layer. The composite wave-absorbing layer is fixed to the upper end of the base layer and forms a multi-layer impedance gradient structure. The upper end of the composite wave-absorbing layer is used to support the patient.

[0033] As a preferred embodiment, the mattress 4 is also filled with water. The water absorbs electromagnetic waves and provides support, while also improving the patient's comfort when lying down. The outer wall of the mattress 4 is provided with multiple water inlets and outlets to facilitate the filling and drainage of water. The water inlets and outlets can be set on the side wall of the mattress 4, which can both prevent the patient from directly contacting the water inlets and affecting comfort when lying down, and ensure that the mattress is not deformed during use.

[0034] The base layer is made of water-based polymer foam material; the composite absorbing layer includes several composite ferrite absorbing layers and several chiral absorbing material layers, which are stacked one on top of the other. The composite ferrite absorbing layer is formed by ball milling and blending nickel-zinc ferrite with titanium dioxide and graphene nanosheets, followed by casting. Broadband absorption performance is achieved by controlling the powder particle size and dielectric filler ratio. Its thin-layer design and the selection of water-based polyurethane binder ensure the material's flexibility. The chiral absorbing layer is based on a helical carbon fiber composite system. Through microscopic anisotropic structural design, it utilizes the Faraday rotation effect to generate multiple reflection losses and employs a high-temperature sintering process to enhance structural stability.

[0035] In this embodiment, the mattress 4 is manufactured using a layered hot-pressing composite technology. Under specific process conditions, the composite ferrite absorbing layer, the chiral absorbing material layer, and the base layer made of water-based polymer foam are bonded at the molecular level, ultimately forming a gradient impedance matching system. The mattress 4 in this embodiment has undergone biocompatibility verification and possesses excellent flexibility and bending resistance. It maintains stable absorption performance across a wide temperature range, simultaneously meeting the electromagnetic protection requirements and ergonomic requirements of medical beds.

[0036] The outer surface of the bed frame 7 is coated with an electroplated layer to absorb electromagnetic waves generated during machine operation. When used with the mattress 4, this ensures that the surrounding electromagnetic field remains within normal human range during machine operation. The housing of the non-contact applicator 2 is made of aluminum alloy, which possesses excellent thermal conductivity and electromagnetic shielding properties. This allows the non-contact applicator 2 to quickly dissipate the heat generated by the coil 3 during operation, preventing performance degradation or damage to the internal coil 3 due to overheating. It also blocks electromagnetic interference, ensuring stable operation of the electromagnetic wave therapy machine 1. Furthermore, the non-contact applicator 2 has a stable structure and is not easily worn, avoiding high maintenance and replacement costs due to damage. In addition, the aluminum alloy non-contact applicator 2 is lightweight, effectively reducing the overall weight of the electromagnetic wave therapy machine 1 and facilitating installation and relocation by operators.

[0037] As shown in Figure 1, the electromagnetic wave therapy machine 1 also includes a main unit 8 and a robotic arm 9. The working state of the non-contact application device 2 is controlled by the main unit 8. At the same time, multiple robotic arms 9 are provided, and each robotic arm 9 corresponds to a multiple non-contact application device 2. The non-contact application device 2 is installed at the end of the robotic arm 9, and the robotic arm 9 can drive the corresponding non-contact application device 2 to move so as to treat different positions of the patient. The overall structure is simple and compact.

[0038] The lower end of the electromagnetic wave therapy machine 1 is equipped with multiple wheels 10 to facilitate the movement of the electromagnetic wave therapy machine 1.

[0039] As shown in Figure 2, the first end of coil 3 is positioned near the inner top surface of the enclosure, and the second end of coil 3 extends near the radiation opening. This allows coil 3 to be distributed from top to bottom within the enclosure. From the top to the bottom of the enclosure, the outer diameter of the coil 3 gradually increases, and the winding spacing also gradually increases. This ensures that when electromagnetic waves irradiate from top to bottom within the enclosure, the upper center of coil 3 is relatively dense, resulting in higher irradiation intensity and greater distance from the acupoint. Conversely, towards the lower end of coil 3, the density decreases, while the coil is closer to the lesion, ensuring more uniform irradiation intensity. Furthermore, multiple tests have verified that, regardless of the output power, the entire acupoint receives uniform irradiation, meeting the treatment requirements. Coil 3 is formed by sequentially connecting multiple turn units 31. That is, each turn of the coil 3 forms a circular coil unit 31. Each coil unit 31 has several recessed segments 32, which bend towards the first end of the coil 3. This allows the recessed segments 32 on each coil unit 31 to cooperate with the adjacent coil unit 31, making the electromagnetic waves more evenly distributed when applied to the lesion. The number and position of the recessed segments 32 on each coil unit 31 are equal. By designing the coil 3 in this way, compared to the traditional planar structure, the problem of rapid electromagnetic wave attenuation during use is effectively solved. In this embodiment, by designing the coil 3 as a stepped structure, the problem of gradual attenuation of electromagnetic waves within the body is effectively overcome, ensuring that the lesion reaches an effective treatment temperature, thus improving the effectiveness and safety of the treatment. In this embodiment, the coil unit 31 can also be set to other shapes besides circular, as long as the problem of rapid electromagnetic wave attenuation can be solved.

[0040] As a preferred embodiment, the coil 3 is formed by wrapping a single copper wire around multiple times. In this embodiment, the number of turns of the copper wire is preferably 9, and the overall height of the coil 3 after winding is 60mm, the outermost diameter (i.e. the maximum diameter) is 158mm, and the width of the copper wire is 2.3mm.

[0041] In this embodiment, through the above design, the density of coil 3 is precisely adjusted during the shape design of coil 3 to reasonably control the generation of heat. At the same time, the heat is superimposed from multiple directions by the diagonal heating, so that the heat can be more concentrated on the lesion area. This effectively overcomes the gradual attenuation of electromagnetic waves in the human body, ensures that the lesion can reach an effective treatment temperature, and improves the effectiveness and safety of treatment.

[0042] This utility model uses specific examples to illustrate its principles and implementation methods. The above description of the embodiments is only for the purpose of helping to understand the method and core idea of ​​this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the idea of ​​this utility model. In summary, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. A multidimensional convergent microwave therapy system, characterized in that: The treatment includes an electromagnetic wave therapy machine and a treatment bed. The treatment bed includes a bed frame, a transmission element, and a mattress. The transmission element is mounted on the bed frame, and the mattress is mounted on the transmission element. The mattress can move relative to the bed frame under the drive of the transmission element, and the patient lies on the mattress. The electromagnetic wave therapy machine is positioned close to the treatment bed, and the treatment end of the electromagnetic wave therapy machine is equipped with a non-contact applicator. The non-contact applicator is used to irradiate lesions in the patient's body with electromagnetic waves. The non-contact applicator includes a cover and a coil. The cover is fitted around the outer periphery of the coil, and the bottom end of the cover has a radiation opening that faces the lesion in the patient's body. The top end of the cover is used to connect to the electromagnetic wave generator of the electromagnetic wave therapy machine. The coil is arranged in a three-dimensional spiral shape.

2. The multi-dimensional, aggregated microwave treatment system of claim 1, wherein: The transmission element includes a support bed board, multiple guide rails, and multiple guide elements. The multiple guide rails are arranged parallel to each other on the upper surface of the bed body, and the length direction of the guide rails is perpendicular to the length direction of the bed body. The arrangement direction of the multiple guide rails is parallel to the length direction of the bed body. Each of the multiple guide rails corresponds to one of the multiple guide elements, and the guide elements are movably connected within the guide rails. Each guide element is installed on the lower surface of the support bed board, and the support bed board is installed at the lower end of the mattress.

3. The multi-dimensional, aggregated microwave treatment system of claim 2, wherein: The guiding element is a slider, and each slider is connected to a linear motor. The linear motor is used to drive the slider to move along the guide rail.

4. The multidimensional convergence microwave therapy system according to claim 2, characterized in that: The guiding element is a roller, and each roller is connected to a drive motor. The drive motor is used to drive the roller to rotate and move the roller along the guide rail.

5. The multidimensional convergence microwave therapy system according to claim 2, characterized in that: The cross-sectional area of ​​the supporting bed board is larger than the cross-sectional area of ​​the bed body.

6. The multidimensional convergence microwave therapy system according to claim 1, characterized in that: The mattress includes a base layer and a composite wave-absorbing layer. The composite wave-absorbing layer is fixed to the upper end of the base layer, and the upper end of the composite wave-absorbing layer is used to support the patient.

7. The multi-dimensional, aggregated microwave treatment system of claim 6, wherein: The base layer is made of water-based polymer foam material; the composite absorbing layer includes several composite ferrite absorbing layers and several chiral absorbing material layers, and the composite ferrite absorbing layers and the chiral absorbing material layers are stacked one on top of the other.

8. The multi-dimensional, aggregated microwave treatment system of claim 1, wherein: The outer surface of the bed is coated with an electroplated coating, and the cover of the non-contact application device is made of aluminum alloy.

9. The multi-dimensional, aggregated microwave treatment system of claim 1, wherein: The lower end of the electromagnetic wave therapy machine is equipped with multiple wheels.

10. The multi-dimensional, aggregated microwave treatment system of claim 1, wherein: The first end of the coil is located near the inner top surface of the cover, and the second end of the coil extends to near the radiation opening. From the top end of the cover to the bottom end of the cover, the outer diameter of the coil gradually increases, and the winding spacing of the coil gradually increases. The coil is formed by connecting multiple turn units in sequence, and each turn unit is circular. Several recessed segments are also formed on each turn unit. The recessed segments bend towards the first end of the coil. The number of recessed segments on each turn unit is equal and their positions correspond.