Wearable microwave treatment device
By designing a wearable microwave therapy device that uses bandages and supports to fix the radiator, the problem of patients needing to remain static during treatment is solved, allowing patients to move freely during treatment, reducing the difficulty of treatment and the risk of injury, making it especially suitable for pediatric patients.
Patent Information
- Application Number
- CN202422487674.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-10-15
AI Technical Summary
When using existing microwave equipment to treat the nasal cavity, ear canal, and throat, patients need to remain still, which makes the treatment difficult, especially for children who have difficulty maintaining the position for a long time, increasing the difficulty of care and disinfection.
Design a wearable microwave therapy device, including a bandage, a U-shaped main support, a front support, a lower support, a buckle, and a radiator support. The radiator is fixed by connecting the bandage and the support, allowing the patient to move freely within a certain range.
It reduces the difficulty of the treatment process, allows patients to move freely during ear canal treatment, reduces damage to the nasal mucosa, simplifies the treatment procedure, and is especially suitable for pediatric patients.
Smart Images

Figure CN223504712U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical devices, and in particular to a wearable microwave therapy device. Background Technology
[0002] Currently, most microwave treatments for the nasal cavity, ear canal, and throat involve either using a support arm to hold the radiator in place or directly holding it in the hand. When using the support arm method, the patient needs to remain still, with each treatment session typically lasting 20 to 30 minutes. Most patients find it difficult to maintain a single position for extended periods; even slight movement can cause the radiator to touch the nasal mucosa, resulting in pain or secondary injury, or damage to the ear canal. This is especially challenging for children, as it's impossible to ensure they remain still throughout the treatment. Therefore, some parents hold the radiator themselves, but even then, they still need to remain still, increasing the difficulty of caregiving and making the radiator less clean and harder to disinfect.
[0003] Therefore, how to avoid requiring patients to remain still during treatment and reduce the difficulty of treatment is a problem that needs to be solved by those skilled in the art. Utility Model Content
[0004] The purpose of this application is to provide a wearable microwave therapy device to solve the problem that when using microwave devices to treat the nasal cavity, ear canal and throat, patients need to remain in one position, which makes the treatment difficult.
[0005] To solve the above-mentioned technical problems, this application provides a wearable microwave therapy device, including: a bandage, a first U-shaped main support, a second U-shaped main support, a front support, a lower support, a buckle, and a radiator support;
[0006] The two ends of the bandage are respectively connected to the bent portions of the first U-shaped main support and the second U-shaped main support. The two ends of the front support are respectively connected to the first end of the first U-shaped main support and the first end of the second U-shaped main support. The two ends of the lower support are respectively connected to the second end of the first U-shaped main support and the second end of the second U-shaped main support. The straight tube portions of the first U-shaped main support and the second U-shaped main support are both provided with the buckles. The buckles are used to engage the ear cavity radiator and the nasal cavity radiator. The radiator bracket is located in the middle of the lower support. The radiator bracket is used to install the laryngeal radiator.
[0007] In one feasible embodiment, the bandage includes a first bandage and a second bandage. The first end of the first bandage is connected to the bent portion of the first U-shaped main support, and the first end of the second bandage is connected to the bent portion of the second U-shaped main support. The second end of the first bandage is provided with a first hook and loop fastener, and the second end of the second bandage is provided with a second hook and loop fastener. The first bandage and the second bandage are detachably connected by the first hook and loop fastener and the second hook and loop fastener.
[0008] In one feasible embodiment, the front support includes a hose, a first connecting tube, and a second connecting tube. One end of the hose is connected to a first end of the first connecting tube, and the other end of the hose is connected to a first end of the second connecting tube. The hose, the first connecting tube, and the second connecting tube constitute a U-shaped front support.
[0009] In one feasible embodiment, the lower support includes a third connecting tube, a first transition tube, an arc-shaped tube, a second transition tube, and a fourth connecting tube. The two ends of the first transition tube are smoothly connected to the first end of the third connecting tube and the first end of the arc-shaped tube, respectively. The two ends of the second transition tube are smoothly connected to the first end of the fourth connecting tube and the second end of the arc-shaped tube, respectively. The angle between the extension direction of the first end of the third connecting tube and the extension direction of the first end of the arc-shaped tube is an obtuse angle, and the angle between the extension direction of the first end of the fourth connecting tube and the extension direction of the second end of the arc-shaped tube is an obtuse angle.
[0010] In one feasible embodiment, the first connecting pipe is adjustablely sleeved inside the first straight pipe section of the first U-shaped main support, the second connecting pipe is adjustablely sleeved inside the second straight pipe section of the second U-shaped main support, the third connecting pipe is adjustablely sleeved inside the third straight pipe section of the first U-shaped main support, and the fourth connecting pipe is adjustablely sleeved inside the fourth straight pipe section of the second U-shaped main support.
[0011] In one feasible embodiment, a plurality of first spring pin holes are provided near the second end of the first connecting pipe, and a plurality of second spring pin holes are provided at the second end away from the first connecting pipe. The plurality of first spring pin holes and the plurality of second spring pin holes are spaced apart along the length direction of the first connecting pipe. The first spring pin holes are located on the opposite side of the second spring pin holes. A plurality of third spring pin holes are spaced apart along the length direction of the first straight tube portion of the first U-shaped main bracket. The spring pin includes a straight plate, a first pin shaft, a second pin shaft, an upper protrusion, a lower protrusion, and a U-shaped plate. The middle portion of the straight plate is hinged to the first pin shaft. The upper protrusion is located at the first end of the straight plate and on the front side of the straight plate, the lower protrusion is located at the second end of the straight plate and on the back side of the straight plate, one end of the U-shaped plate is connected to the second end of the straight plate, the middle part of the U-shaped plate is hinged to the second pin, the U-shaped plate is located on the front side of the straight plate, the first end of the straight plate is located inside the first connecting tube, the second end of the straight plate and the U-shaped plate are located inside the first straight tube of the first U-shaped main bracket, the lower protrusion is used to pass through the first spring pin hole and the third spring pin hole, and the upper protrusion is used to pass through the second spring pin hole.
[0012] In one feasible embodiment, a sheath is further included, which is detachably fitted around the outer periphery of the first transition tube, the arcuate tube, and the second transition tube.
[0013] In one feasible embodiment, the throat radiator is a circular radiator, and the radiator support includes an arc-shaped cabin and a strap. One end of the strap is connected to one end of the arc-shaped cabin, and the other end of the strap is detachably connected to the other end of the arc-shaped cabin. The arc-shaped cabin is detachably connected to the arc-shaped tube.
[0014] In one feasible embodiment, the arc-shaped cabin includes an arc-shaped support plate, a first arc-shaped baffle, a second arc-shaped baffle, and a hook. The arc-shaped edges on both sides of the arc-shaped support plate are respectively connected to the first arc-shaped baffle and the second arc-shaped baffle. The first arc-shaped baffle or the second arc-shaped baffle is connected to the hook, and the hook is used to engage with the arc-shaped tube.
[0015] In one feasible embodiment, the output lines of the ear cavity radiator and the nasal cavity radiator are semi-rigid lines.
[0016] This application provides a wearable microwave therapy device, comprising: a bandage, a first U-shaped main support, a second U-shaped main support, a front support, a lower support, buckles, and a radiator support. The two ends of the bandage are connected to the curved portions of the first and second U-shaped main supports, respectively. The two ends of the front support are connected to the first ends of the first and second U-shaped main supports, respectively. The two ends of the lower support are connected to the second ends of the first and second U-shaped main supports, respectively. Buckles are provided on the straight sections of both the first and second U-shaped main supports for engaging an ear radiator and a nasal radiator. The radiator support is located in the middle of the lower support and is used to mount a laryngeal radiator. This wearable microwave therapy device can simultaneously treat the ear canal, nasal cavity, and throat. No external force is required to maintain the radiator during treatment. Patients can move freely within a certain range during use, and even when treating the ear canal, it does not affect their normal activities such as eating, drinking, or working, reducing the difficulty of treatment and making the treatment process simple and easy, especially simplifying treatment for pediatric patients. Attached Figure Description
[0017] To more clearly illustrate the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 A structural diagram of a wearable microwave therapy device provided in an embodiment of this application;
[0019] Figure 2 A schematic diagram of a radiator bracket mounted on a wearable microwave therapy device, provided in an embodiment of this application;
[0020] Figure 3 A structural diagram of a bandage, a first U-shaped main support, and a second U-shaped main support provided in this application embodiment;
[0021] Figure 4 A structural diagram of a front support provided in an embodiment of this application;
[0022] Figure 5 A structural diagram of a lower support provided in an embodiment of this application;
[0023] Figure 6 A schematic diagram of a wearable microwave therapy device provided in an embodiment of this application;
[0024] Figure 7 A schematic diagram of another wearable microwave therapy device provided in the embodiments of this application;
[0025] Figure 8 A structural diagram of a spring pin provided in an embodiment of this application;
[0026] Figure 9 Another structural diagram of a spring pin provided in the embodiments of this application;
[0027] Figure 10 A schematic diagram showing a spring pin disposed inside a first connecting pipe and a first straight pipe section, provided for an embodiment of this application;
[0028] Figure 11 A schematic diagram showing a spring pin disposed inside the third connecting pipe and the third straight pipe section, provided for an embodiment of this application;
[0029] Figure 12 A schematic diagram of a protective sleeve applied to a wearable microwave therapy device according to an embodiment of this application;
[0030] Figure 13 A schematic diagram of a sheath provided for an embodiment of this application;
[0031] Figure 14 A structural diagram of a radiator support provided in an embodiment of this application;
[0032] Figure 15 This application provides a schematic diagram of a laryngeal radiator installed on a wearable microwave therapy device.
[0033] The attached figures are labeled as follows: 1-Bandage, 2-First U-shaped main support, 3-Second U-shaped main support, 4-Front support, 5-Lower support, 6-Snap fastener, 7-Radiator support, 8-Ear cavity radiator, 9-Nose cavity radiator, 10-Laryngeal radiator, 11-Spring pin, 12-Sheath, 101-First bandage, 102-Second bandage, 201-First straight tube section, 202-Third straight tube section, 2011-Third spring pin hole, 2021-Ninth spring pin hole, 301-Second straight tube section, 302-Fourth straight tube section, 3011-Sixth spring pin hole, 3021-Twelfth spring pin hole, 401-Hose, 402-First connecting tube, 403-Second connecting tube, 4021-First spring pin hole, 40 22-Second spring pin hole, 4031-Fourth spring pin hole, 4032-Fifth spring pin hole, 501-Third connecting pipe, 502-First transition pipe, 503-Arc-shaped pipe, 504-Second transition pipe, 505-Fourth connecting pipe, 5011-Seventh spring pin hole, 5012-Eighth spring pin hole, 5051-Tenth spring pin hole, 5052-Eleventh spring pin hole, 701-Arc-shaped cabin, 702-Strap, 7011-Arc-shaped support plate, 7012-First arc-shaped baffle, 7013-Second arc-shaped baffle, 7014-Hook, 1101-Straight plate, 1102-First pin shaft, 1103-Second pin shaft, 1104-Upper protrusion, 1105-Lower protrusion, 1106-U-shaped plate. Detailed Implementation
[0034] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this application.
[0035] The core of this application is to provide a wearable microwave therapy device to avoid requiring the patient to remain still during treatment, thereby reducing the difficulty of treatment.
[0036] To enable those skilled in the art to better understand the present application, the present application will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0037] Figure 1 This is a structural diagram of a wearable microwave therapy device provided in an embodiment of this application. Figure 2 This is a schematic diagram illustrating a radiator bracket mounted on a wearable microwave therapy device, as provided in an embodiment of this application. Figure 1 and 2As shown, the wearable microwave therapy device includes a bandage 1, a first U-shaped main support 2, a second U-shaped main support 3, a front support 4, a lower support 5, a buckle 6, and a radiator support 7. The two ends of the bandage 1 are connected to the curved parts of the first U-shaped main support 2 and the second U-shaped main support 3, respectively. The two ends of the front support 4 are connected to the first ends of the first U-shaped main support 2 and the second U-shaped main support 3, respectively. The two ends of the lower support 5 are connected to the second ends of the first U-shaped main support 2 and the second U-shaped main support 3, respectively. The straight tubes of the first U-shaped main support 2 and the second U-shaped main support 3 are both equipped with buckles 6. The buckles 6 are used to attach the ear cavity radiator 8 and the nasal cavity radiator 9. The radiator support 7 is located in the middle of the lower support 5 and is used to install the laryngeal radiator 10.
[0038] Figure 3 A structural diagram of a bandage, a first U-shaped main support, and a second U-shaped main support provided in this application embodiment is shown below. Figure 3 As shown, the two ends of the bandage 1 are connected to the bent portions of the first U-shaped main support 2 and the second U-shaped main support 3, respectively. The bandage 1 in this embodiment can be an elastic band. The bent portions of the first U-shaped main support 2 and the second U-shaped main support 3 can be wrapped with soft materials, such as sponge. Both straight tubes of the first U-shaped main support 2 (first straight tube 201 and third straight tube 202) are provided with buckles 6, and both straight tubes of the second U-shaped main support 3 (second straight tube 301 and fourth straight tube 302) are provided with buckles 6. The buckles 6 are used to connect the output lines of the ear radiator 8 and the nasal radiator 9. The output lines of the ear radiator 8 and the nasal radiator 9 are semi-rigid lines. Semi-rigid lines usually refer to semi-rigid coaxial cables, which are cables with a certain rigidity but can be bent manually. Their outer conductors are usually made of seamless copper tubes. This structure gives them excellent shielding performance and electrical stability, and the semi-rigid lines have a certain rigidity to support the radiators. Figure 4 A structural diagram of a front support provided in an embodiment of this application is shown below. Figure 4 As shown, front bracket 4 is a U-shaped front bracket. Figure 5 A structural diagram of a lower support provided in an embodiment of this application is shown below. Figure 5 As shown, the lower bracket 5 can also be U-shaped. The two ends of the front bracket 4 are respectively connected to the first end of the first U-shaped main bracket 2 and the first end of the second U-shaped main bracket 3, and the two ends of the lower bracket 5 are respectively connected to the second end of the first U-shaped main bracket 2 and the second end of the second U-shaped main bracket 3. The front bracket 4 and the lower bracket 5 do not intersect. Figure 6 This is a schematic diagram of a wearable microwave therapy device provided in an embodiment of this application, as shown below. Figure 6As shown, the first U-shaped main support 2 and the second U-shaped main support 3 are hung on the patient's ear. The two output wires of the ear cavity radiator 8 are connected to one clip 6 of the first U-shaped main support 2 and one clip 6 of the second U-shaped main support 3. The two output wires of the nasal cavity radiator 9 are connected to the other clip 6 of the first U-shaped main support 2 and the other clip 6 of the second U-shaped main support 3. This embodiment does not specifically limit the radiator support 7; it can be specifically designed according to the shape of the laryngeal radiator 10. Figure 7 A schematic diagram of another wearable microwave therapy device provided in this application embodiment is shown below. Figure 7 As shown, the laryngeal radiator 10 is installed in the radiator bracket 7 so that the laryngeal radiator 10 is in close contact with the patient's larynx.
[0039] The first U-shaped main support 2, the second U-shaped main support 3, the front support 4, the lower support 5, and the radiator support 7 in this application can all be made of microwave lossless material. Microwave lossless material usually refers to material with very low or no energy loss in the microwave frequency band. The dielectric constant (ε) and permeability (μ) of these materials are usually pure real numbers, which means that no energy loss is generated when electromagnetic waves propagate in them.
[0040] The wearable microwave therapy device provided in this application includes: a bandage 1, a first U-shaped main support 2, a second U-shaped main support 3, a front support 4, a lower support 5, a buckle 6, and a radiator support 7. The two ends of the bandage 1 are respectively connected to the bent portions of the first U-shaped main support 2 and the second U-shaped main support 3. The two ends of the front support 4 are respectively connected to the first ends of the first U-shaped main support 2 and the second U-shaped main support 3. The two ends of the lower support 5 are respectively connected to the second ends of the first U-shaped main support 2 and the second U-shaped main support 3. The straight tube portions of the first U-shaped main support 2 and the second U-shaped main support 3 are each provided with a buckle 6. The buckle 6 is used to attach an ear radiator 8 and a nasal radiator 9. The radiator support 7 is located in the middle of the lower support 5 and is used to install a laryngeal radiator 10. The wearable microwave therapy device of this application can simultaneously treat the ear canal, nasal cavity, and throat. No external assistance is required to maintain the radiator during treatment. Patients can move freely within a certain range while using it. Even when treating the ear canal, it does not affect the patient's normal activities such as eating, drinking, and working, reducing the difficulty of treatment and making the treatment process simple and easy. It is especially simple for treating children.
[0041] Based on the above embodiments, the bandage 1 in this application embodiment includes a first bandage 101 and a second bandage 102. The first end of the first bandage 101 is connected to the bent portion of the first U-shaped main support 2, and the first end of the second bandage 102 is connected to the bent portion of the second U-shaped main support 3. The second end of the first bandage 101 is provided with a first hook and loop fastener, and the second end of the second bandage 102 is provided with a second hook and loop fastener. The first bandage 101 and the second bandage 102 are detachably connected by the first hook and loop fastener and the second hook and loop fastener.
[0042] In this embodiment, the first bandage 101 and the second bandage 102 are detachably connected for easy wearing. The first Velcro strap can extend along the length of the first bandage 101, and the second Velcro strap can extend along the length of the second bandage 102. By adjusting the relative positions of the first and second Velcro straps, the length of the bandage 1 can be changed to suit patients with different head circumferences.
[0043] Based on the above embodiments, such as Figure 4 As shown, the front bracket 4 in this embodiment of the application includes a hose 401, a first connecting tube 402 and a second connecting tube 403. One end of the hose 401 is connected to the first end of the first connecting tube 402, and the other end of the hose 401 is connected to the first end of the second connecting tube 403. The hose 401, the first connecting tube 402 and the second connecting tube 403 form a U-shaped front bracket.
[0044] In this embodiment, the flexible hose 401 can be made of a soft material, such as sponge; the diameter of the flexible hose 401 can be larger than the diameter of the first connecting pipe 402 and the second connecting pipe 403. Figure 6 and Figure 7 As shown, when the wearable microwave therapy device is worn by the patient, the flexible tube 401 rests against the patient's chin, and the design of the flexible tube 401 can improve the patient's wearing comfort.
[0045] Based on the above embodiments, such as Figure 5 As shown, the lower support 5 in this embodiment includes a third connecting pipe 501, a first transition pipe 502, an arc-shaped pipe 503, a second transition pipe 504, and a fourth connecting pipe 505. The two ends of the first transition pipe 502 are smoothly connected to the first end of the third connecting pipe 501 and the first end of the arc-shaped pipe 503, respectively. The two ends of the second transition pipe 504 are smoothly connected to the first end of the fourth connecting pipe 505 and the second end of the arc-shaped pipe 503, respectively. The angle between the extension direction of the first end of the third connecting pipe 501 and the extension direction of the first end of the arc-shaped pipe 503 is an obtuse angle, and the angle between the extension direction of the first end of the fourth connecting pipe 505 and the extension direction of the second end of the arc-shaped pipe 503 is an obtuse angle.
[0046] In this embodiment, the third connecting pipe 501, the first transition pipe 502, the arc-shaped pipe 503, the second transition pipe 504, and the fourth connecting pipe 505 can be integrally connected, such as... Figure 7 As shown, the opening of the arc-shaped tube 503 faces upward, the angle between the first end extension direction of the third connecting tube 501 and the first end extension direction of the arc-shaped tube 503 is an obtuse angle, and the angle between the first end extension direction of the fourth connecting tube 505 and the second end extension direction of the arc-shaped tube 503 is an obtuse angle, so that the arc-shaped tube 503 can fit the patient's neck.
[0047] Based on the above embodiments, in this application embodiment, the first connecting pipe 402 is adjustablely sleeved inside the first straight pipe portion 201 of the first U-shaped main support 2, the second connecting pipe 403 is adjustablely sleeved inside the second straight pipe portion 301 of the second U-shaped main support 3, the third connecting pipe 501 is adjustablely sleeved inside the third straight pipe portion 202 of the first U-shaped main support 2, and the fourth connecting pipe 505 is adjustablely sleeved inside the fourth straight pipe portion 302 of the second U-shaped main support 3.
[0048] This application embodiment does not specifically limit the method of achieving positional adjustability. By adjusting the lengths of the two ends of the front support 4 inserted into the first straight tube 201 and the second straight tube 301 respectively, and by adjusting the lengths of the two ends of the lower support 5 inserted into the third straight tube 202 and the fourth straight tube 302 respectively, it is possible to facilitate the wearing of the device by patients of different body types.
[0049] Based on the above embodiments, Figure 8 This is a structural diagram of a spring pin provided in an embodiment of this application. Figure 9 Another structural diagram of a spring pin provided in the embodiments of this application is shown below. Figure 2 , Figure 4 , Figure 8 and Figure 9As shown, in this embodiment of the application, a plurality of first spring pin holes 4021 are provided at the second end near the first connecting pipe 402, and a plurality of second spring pin holes 4022 are provided at the second end away from the first connecting pipe 402. The plurality of first spring pin holes 4021 and the plurality of second spring pin holes 4022 are spaced apart along the length direction of the first connecting pipe 402. The first spring pin hole 4021 is located on the opposite side of the second spring pin hole 4022. A plurality of third spring pin holes 2011 are spaced apart along the length direction of the first straight pipe portion 201 of the first U-shaped main bracket 2. The spring pin 11 includes a straight plate 1101, a first pin 1102, a second pin 1103, an upper protrusion 1104, a lower protrusion 1105, and a U-shaped plate 1106. The middle part of the straight plate 1101 is connected to the first pin 11. 02 Hinged, the upper protrusion 1104 is located at the first end of the straight plate 1101 and on the front of the straight plate 1101, the lower protrusion 1105 is located at the second end of the straight plate 1101 and on the back of the straight plate 1101, one end of the U-shaped plate 1106 is connected to the second end of the straight plate 1101, the middle part of the U-shaped plate 1106 is hinged to the second pin 1103, the U-shaped plate 1106 is located on the front of the straight plate 1101, the first end of the straight plate 1101 is located inside the first connecting tube 402, the second end of the straight plate 1101 and the U-shaped plate 1106 are located inside the first straight tube part 201 of the first U-shaped main bracket 2, the lower protrusion 1105 is used to pass through the first spring pin hole 4021 and the third spring pin hole 2011, and the upper protrusion 1104 is used to pass through the second spring pin hole 4022.
[0050] Figure 10 A schematic diagram illustrating a spring pin disposed within a first connecting pipe and a first straight pipe section, as provided in an embodiment of this application, is shown below. Figure 10 As shown, the upper protrusion 1104 can be pressed into the first connecting tube 402. The straight plate 1101 rotates around the first pin 1102. The first end of the straight plate 1101 presses down, and the second end of the straight plate 1101 rises, causing the lower protrusion 1105 to retract into the first straight tube portion 201 of the first U-shaped main bracket 2. Pulling the first connecting tube 402 can adjust the length of the first connecting tube 402 extending into the first straight tube portion 201. The upper protrusion 1104 and the lower protrusion 1105 can be hemispherical.
[0051] The specific arrangements of the second connecting pipe 403 being adjustablely fitted inside the second straight pipe section 301 of the second U-shaped main support 3, the third connecting pipe 501 being adjustablely fitted inside the third straight pipe section 202 of the first U-shaped main support 2, and the fourth connecting pipe 505 being adjustablely fitted inside the fourth straight pipe section 302 of the second U-shaped main support 3 can be referenced to the connection arrangement between the first connecting pipe 402 and the first straight pipe section 201 described above. Specifically, the second end of the second connecting pipe 403 is provided with a plurality of fourth spring pin holes 4031, and the second end away from the second connecting pipe 403 is provided with a plurality of fifth spring pin holes 4032. The plurality of fourth spring pin holes 4031 and the plurality of fifth spring pin holes 4032 are spaced apart along the length direction of the second connecting pipe 403. The fourth spring pin hole 4031 is located on the opposite side of the fifth spring pin hole 4032. The second straight pipe part 301 of the second U-shaped main support 3 is provided with a plurality of sixth spring pin holes 3011 spaced apart along the length direction. The lower protrusion 1105 of the spring pin 11 is used to pass through the fourth spring pin hole 4031 and the sixth spring pin hole 3011, and the upper protrusion 1104 is used to pass through the fifth spring pin hole 4032. Figure 11 A schematic diagram illustrating a spring pin disposed within the third connecting pipe and the third straight pipe section, as provided in an embodiment of this application, is shown below. Figure 11 As shown, the second end of the third connecting pipe 501 is provided with a plurality of seventh spring pin holes 5011, and the second end away from the third connecting pipe 501 is provided with a plurality of eighth spring pin holes 5012. The plurality of seventh spring pin holes 5011 and the plurality of eighth spring pin holes 5012 are spaced apart along the length direction of the third connecting pipe 501. The seventh spring pin hole 5011 is located on the opposite side of the eighth spring pin hole 5012. The third straight pipe part 202 of the first U-shaped main support 2 is provided with a plurality of ninth spring pin holes 2021 spaced apart along the length direction. The lower protrusion 1105 of the spring pin 11 is used to pass through the seventh spring pin hole 5011 and the ninth spring pin hole 2021, and the upper protrusion 1104 is used to pass through the eighth spring pin hole 5012. The second end of the fourth connecting pipe 505 is provided with a plurality of tenth spring pin holes 5051, and the second end away from the fourth connecting pipe 505 is provided with a plurality of eleventh spring pin holes 5052. The plurality of tenth spring pin holes 5051 and the plurality of eleventh spring pin holes 5052 are spaced apart along the length direction of the fourth connecting pipe 505. The tenth spring pin hole 5051 is located on the opposite side of the eleventh spring pin hole 5052. The fourth straight pipe part 302 of the second U-shaped main support 3 is provided with a plurality of twelfth spring pin holes 3021 spaced apart along the length direction. The lower protrusion 1105 of the spring pin 11 is used to pass through the tenth spring pin hole 5051 and the twelfth spring pin hole 3021, and the upper protrusion 1104 is used to pass through the eleventh spring pin hole 5052.
[0052] Based on the above embodiments, Figure 12 This is a schematic diagram of a protective sleeve being fitted onto a wearable microwave therapy device, as provided in an embodiment of this application. Figure 13This is a schematic diagram of a sheath provided in an embodiment of this application, as shown below. Figure 12 and Figure 13 As shown, the embodiment of this application also includes a sheath 12, which is detachably sleeved on the outer periphery of the first transition tube 502, the arc-shaped tube 503 and the second transition tube 504.
[0053] The sheath 12 in this embodiment can be made of soft materials such as sponge or rubber. The specific manner in which the sheath 12 is detachably fitted around the outer periphery of the first transition tube 502, the arc-shaped tube 503, and the second transition tube 504 is not limited. Figure 12 As shown, a slit can be opened in the length direction of the sheath 12, and the slit extends from one end of the sheath 12 to the other end of the sheath 12. The sheath 12 can be fitted onto the outer periphery of the first transition tube 502, the arc tube 503 and the second transition tube 504 through the slit of the sheath 12. The shape of the sheath 12 is the same as the shape formed by the first transition tube 502, the arc tube 503 and the second transition tube 504.
[0054] Based on the above embodiments, Figure 14 This is a structural diagram of a radiator support provided in an embodiment of this application. Figure 15 This application provides a schematic diagram of a laryngeal radiator installed on a wearable microwave therapy device; as shown in the embodiments. Figure 2 , Figure 14 and Figure 15 As shown, in this embodiment of the application, the throat radiator 10 is a circular radiator. The radiator support 7 includes an arc-shaped cabin 701 and a strap 702. One end of the strap 702 is connected to one end of the arc-shaped cabin 701, and the other end of the strap 702 is detachably connected to the other end of the arc-shaped cabin 701. The arc-shaped cabin 701 is detachably connected to the arc-shaped tube 503.
[0055] In this embodiment, the arc-shaped housing 701 is snapped onto the lower half of the circular radiator. When the other end of the strap 702 is connected to the other end of the arc-shaped housing 701, the strap 702 wraps around the arc-shaped edge of the upper half of the circular radiator, thereby fixing the circular radiator in place. In this embodiment, the other end of the strap 702 and the other end of the arc-shaped housing 701 can be detachably connected via Velcro. The arc-shaped housing 701 is detachably connected to the lower support 5, and the sheath 12 is detachably connected to the lower support 5. When throat treatment is not required, the sheath 12 can be installed on the lower support 5, which can improve patient comfort. Specifically, the arc-shaped cabin 701 includes an arc-shaped support plate 7011, a first arc-shaped baffle 7012, a second arc-shaped baffle 7013, and a hook 7014. The arc-shaped edges on both sides of the arc-shaped support plate 7011 are respectively connected to the first arc-shaped baffle 7012 and the second arc-shaped baffle 7013. The first arc-shaped baffle 7012 or the second arc-shaped baffle 7013 is connected to the hook 7014, which is used to engage with the arc-shaped tube 503. The arc and arc length of the edge where the first arc-shaped baffle 7012 connects to the arc-shaped support plate 7011 match the arc and arc length of one side edge of the arc-shaped support plate 7011. The arc and arc length of the edge where the second arc-shaped baffle 7013 connects to the arc-shaped support plate 7011 match the arc and arc length of the other side edge of the arc-shaped support plate 7011.
[0056] The wearable microwave therapy device provided in this application has been described in detail above. The various embodiments in the specification are described in a progressive manner, with each embodiment focusing on its differences from other embodiments. Similar or identical parts between embodiments can be referred to interchangeably. It should be noted that those skilled in the art can make various improvements and modifications to this application without departing from the principles of this application, and these improvements and modifications also fall within the protection scope of the claims of this application.
[0057] It should also be noted that, in this specification, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
Claims
1. A wearable microwave therapy device, characterized in that, include: Bandage (1), first U-shaped main support (2), second U-shaped main support (3), front support (4), lower support (5), buckle (6) and radiator support (7); The two ends of the bandage (1) are respectively connected to the bent part of the first U-shaped main support (2) and the bent part of the second U-shaped main support (3). The two ends of the front support (4) are respectively connected to the first end of the first U-shaped main support (2) and the first end of the second U-shaped main support (3). The two ends of the lower support (5) are respectively connected to the second end of the first U-shaped main support (2) and the second end of the second U-shaped main support (3). The straight tube of the first U-shaped main support (2) and the straight tube of the second U-shaped main support (3) are both provided with the buckle (6). The buckle (6) is used to attach the ear cavity radiator (8) and the nasal cavity radiator (9). The radiator bracket (7) is located in the middle of the lower support (5). The radiator bracket (7) is used to install the laryngeal radiator (10).
2. The wearable microwave therapy device according to claim 1, characterized in that, The bandage (1) includes a first bandage (101) and a second bandage (102). The first end of the first bandage (101) is connected to the bent portion of the first U-shaped main support (2), and the first end of the second bandage (102) is connected to the bent portion of the second U-shaped main support (3). The second end of the first bandage (101) is provided with a first hook and loop fastener, and the second end of the second bandage (102) is provided with a second hook and loop fastener. The first bandage (101) and the second bandage (102) are detachably connected by the first hook and loop fastener and the second hook and loop fastener.
3. The wearable microwave therapy device according to claim 1, characterized in that, The front support (4) includes a hose (401), a first connecting tube (402), and a second connecting tube (403). One end of the hose (401) is connected to the first end of the first connecting tube (402), and the other end of the hose (401) is connected to the first end of the second connecting tube (403). The hose (401), the first connecting tube (402), and the second connecting tube (403) constitute a U-shaped front support.
4. The wearable microwave therapy device according to claim 3, characterized in that, The lower support (5) includes a third connecting pipe (501), a first transition pipe (502), an arc-shaped pipe (503), a second transition pipe (504), and a fourth connecting pipe (505). The two ends of the first transition pipe (502) are smoothly connected to the first end of the third connecting pipe (501) and the first end of the arc-shaped pipe (503), respectively. The two ends of the second transition pipe (504) are smoothly connected to the first end of the fourth connecting pipe (505) and the second end of the arc-shaped pipe (503), respectively. The angle between the extension direction of the first end of the third connecting pipe (501) and the extension direction of the first end of the arc-shaped pipe (503) is an obtuse angle. The angle between the extension direction of the first end of the fourth connecting pipe (505) and the extension direction of the second end of the arc-shaped pipe (503) is an obtuse angle.
5. The wearable microwave therapy device according to claim 4, characterized in that, The first connecting pipe (402) is adjustablely fitted inside the first straight pipe section (201) of the first U-shaped main support (2), the second connecting pipe (403) is adjustablely fitted inside the second straight pipe section (301) of the second U-shaped main support (3), the third connecting pipe (501) is adjustablely fitted inside the third straight pipe section (202) of the first U-shaped main support (2), and the fourth connecting pipe (505) is adjustablely fitted inside the fourth straight pipe section (302) of the second U-shaped main support (3).
6. The wearable microwave therapy device according to claim 5, characterized in that, A plurality of first spring pin holes (4021) are provided at the second end near the first connecting pipe (402), and a plurality of second spring pin holes (4022) are provided at the second end away from the first connecting pipe (402). The plurality of first spring pin holes (4021) and the plurality of second spring pin holes (4022) are spaced apart along the length direction of the first connecting pipe (402). The first spring pin hole (4021) is located on the opposite side of the second spring pin hole (4022). A plurality of third spring pin holes (2011) are spaced apart along the length direction of the first straight pipe section (201) of the first U-shaped main bracket (2). The spring pin (11) includes a straight plate (1101), a first pin shaft (1102), a second pin shaft (1103), an upper protrusion (1104), a lower protrusion (1105), and a U-shaped plate (1106). The middle part of the straight plate (1101) is hinged to the first pin shaft (1102). The upper protrusion (1104) is located on the... The first end of the straight plate (1101) is located on the front side of the straight plate (1101), the lower protrusion (1105) is located at the second end of the straight plate (1101) and on the back side of the straight plate (1101), one end of the U-shaped plate (1106) is connected to the second end of the straight plate (1101), the middle part of the U-shaped plate (1106) is hinged to the second pin (1103), and the U-shaped plate (1106) is located on the straight plate (1101). On the front, the first end of the straight plate (1101) is located inside the first connecting tube (402), the second end of the straight plate (1101) and the U-shaped plate (1106) are located inside the first straight tube (201) of the first U-shaped main bracket (2), the lower protrusion (1105) is used to pass through the first spring pin hole (4021) and the third spring pin hole (2011), and the upper protrusion (1104) is used to pass through the second spring pin hole (4022).
7. The wearable microwave therapy device according to claim 4, characterized in that, It also includes a sheath (12), which is detachably fitted around the outer periphery of the first transition tube (502), the arc-shaped tube (503) and the second transition tube (504).
8. The wearable microwave therapy device according to claim 4, characterized in that, The throat radiator (10) is a circular radiator. The radiator support (7) includes an arc-shaped cabin (701) and a strap (702). One end of the strap (702) is connected to one end of the arc-shaped cabin (701), and the other end of the strap (702) is detachably connected to the other end of the arc-shaped cabin (701). The arc-shaped cabin (701) is detachably connected to the arc-shaped tube (503).
9. The wearable microwave therapy device according to claim 8, characterized in that, The arc-shaped cabin (701) includes an arc-shaped support plate (7011), a first arc-shaped baffle (7012), a second arc-shaped baffle (7013), and a hook (7014). The arc-shaped support plate (7011) has the first arc-shaped baffle (7012) and the second arc-shaped baffle (7013) connected to its two arc-shaped edges respectively. The first arc-shaped baffle (7012) or the second arc-shaped baffle (7013) is connected to the hook (7014), and the hook (7014) is used to engage with the arc-shaped tube (503).
10. The wearable microwave therapy device according to any one of claims 1 to 9, characterized in that, The output lines of the ear cavity radiator (8) and the nasal cavity radiator (9) are semi-rigid lines.