High-energy red light treatment platform
By designing a high-energy red light treatment platform that includes movement, lifting, pitching, irradiation and cooling mechanisms, the existing red light treatment instruments cannot collect light and cause scalding, achieving efficient red light beam closing and safe cooling during the treatment process.
Patent Information
- Application Number
- CN202421254033.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-04
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-04
AI Technical Summary
Existing red light treatment instruments are unable to converge the light, resulting in red light scattering and possible patient burns.
A high-energy red light treatment platform is designed, including a mobile mechanism, a lifting mechanism, a pitch mechanism, an illumination mechanism and a cooling mechanism. Through the coordinated work of these mechanisms, the red light beam can be closed and the affected area can be cooled during the irradiation process to prevent scalding.
It effectively prevents red light scattering, improves energy utilization, and prevents patients from burning through cooling mechanisms, significantly improving treatment safety and efficiency.
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Figure CN222900016U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical devices, in particular to a high-energy red light treatment platform. Background Art
[0002] A red light therapeutic apparatus is a new type of light therapy device that can be used in hospitals and families. Its basic principle is through the red visible light band mainly in the range of 600 - 700 nm. This band has a deep penetration into the human body and better curative effects.
[0003] For existing red light therapeutic apparatuses, such as the high-energy red light therapeutic apparatus disclosed in the utility model patent with the application number 201320214534.5, its main structure includes a chassis, a control host, an operation control panel, a red light irradiation treatment head, and a bendable shaped snake tube support arm. There are two control hosts in the chassis, and a microcomputer temperature control air cooling system is provided between the two control hosts. The operation control panel is installed on the upper surface of the chassis, and two bendable shaped snake tube support arms are connected to the rear side of the chassis. A U-shaped bracket is hinged at the end of the bendable shaped snake tube support arm, and a fixed head is provided at the end of the U-shaped bracket. The fixed head is movably embedded in the guide rails on both sides of the red light irradiation treatment head. When in use, the red light irradiation treatment head is aligned with the injured part of the patient through the bendable shaped snake tube support arm, and the host is controlled through the operation control panel to make the red light irradiation treatment head irradiate red light on the affected part of the patient.
[0004] However, most of the existing red light therapeutic apparatuses cannot converge the light, which easily causes red light scattering, and it is very easy to cause scalding of patients during long-term irradiation. Summary of the Utility Model
[0005] To solve the above technical problems, the utility model provides a high-energy red light treatment platform that can not only converge the red light beam to prevent energy waste caused by red light scattering, but also cool the affected part to prevent the patient from being scalded by the red light.
[0006] A high-energy red light treatment platform of the utility model includes a moving mechanism; it also includes a lifting mechanism, two pitching mechanisms, two irradiation mechanisms, and a cooling mechanism. The lifting mechanism is installed on the moving mechanism to adjust the height of the device. The two pitching mechanisms are both installed on the lifting mechanism to facilitate approaching the patient. The two irradiation mechanisms are respectively installed on the two pitching mechanisms to perform red light treatment on the patient. The cooling mechanism is installed on the irradiation mechanism to lower the temperature at the red light irradiation site; move the moving mechanism to the side of the patient, then adjust the height of the treatment head through the lifting mechanism, make the treatment head approach the affected part of the patient through the pitching mechanism, turn on the irradiation mechanism to perform red light treatment on the affected part, and set the cooling mechanism to cool the red light irradiation site to prevent the patient from being scalded.
[0007] Preferably, the moving mechanism includes four sets of universal wheels, a base, two sets of baffles, two sets of connecting frames, a controller, and a main unit. The tops of the four sets of universal wheels are connected to the bottom of the base. The bottoms of the two sets of baffles are connected to the top of the base. The two sets of connecting frames are installed between the two sets of baffles. The controller is installed on the front baffle. The bottom of the main unit is connected to the top of the universal wheels. The staff pushes the universal wheels to move beside the patient. By setting four bases, the flexibility of the device is enhanced. Then, the staff controls the opening and closing of the main unit through the controller to treat the patient. By setting two sets of connecting frames, not only the stability of the device is enhanced, but also the weight of the device is reduced.
[0008] Preferably, the lifting mechanism includes a telescopic shaft, four sets of reinforcing ribs, a lock, four sets of rib plates, and a connecting seat. The bottom of the telescopic shaft is connected to the top of the main unit. The four sets of reinforcing ribs are all installed on the telescopic shaft and are respectively connected to the two sets of baffles and the two sets of connecting frames. A positioning groove is formed on the telescopic shaft. The lock is inserted into the positioning groove of the telescopic shaft. The four sets of rib plates are all installed on the telescopic shaft. The bottom of the connecting seat is connected to the top of the four sets of rib plates. Pull out the lock. After adjusting the height of the telescopic shaft, insert the lock into the positioning groove of the telescopic shaft to lock the height of the telescopic shaft. By setting four sets of reinforcing ribs, the stability of the telescopic shaft is enhanced. By setting four sets of rib plates, the stability of the connecting seat is enhanced. The connecting seat and the main unit are connected by an electrical signal.
[0009] Preferably, the pitching mechanism includes a rotating shaft, a telescopic plate, two sets of fixed seats, an electric cylinder, and a hanging bracket. The rotating shaft is rotatably installed on the connecting seat. The telescopic plate is installed on the rotating shaft. The two sets of fixed seats are respectively installed at the front end and the rear end of the telescopic plate. The electric cylinder is installed on the two sets of fixed seats. The top of the hanging bracket is connected to the bottom of the telescopic plate. Rotate the rotating shaft and start the electric cylinder to push the fixed seat located at the front end of the telescopic plate, so as to adjust the angle and length of the telescopic plate, so that the irradiation mechanism is exactly above the affected part of the patient.
[0010] Preferably, the irradiation mechanism includes a universal joint, a treatment head, multiple sets of irradiation lamps, a light-shielding bag, and a tightening belt. The top of the universal joint is connected to the bottom of the telescopic plate. The top of the treatment head is rotatably connected to the bottom of the universal joint. The multiple sets of irradiation lamps are all installed on the treatment head. The top of the light-shielding bag is connected to the bottom of the treatment head. The tightening belt is installed on the light-shielding bag. Adjust the irradiation angle of the treatment head through the universal joint so that the treatment head faces the affected part of the patient. Control the opening and closing of the multiple sets of irradiation lamps through the connecting seat. Adjust the tightening degree of the tightening belt according to the area of the affected part of the patient, so that the light-shielding bag converges the light emitted by the irradiation lamp, and the red light is completely irradiated on the affected part.
[0011] Preferably, the temperature reduction mechanism includes an air compressor, a filter plate, and an air delivery hose. The air compressor is installed on the baffle, the filter plate is installed on the air compressor, and the air delivery hose is installed on the air compressor and passes through the hanging bracket to communicate with the inside of the light-shielding bag. Start the air compressor. The air compressor inhales external air through the filter plate, compresses and cools the air, and then transports it into the light-shielding bag through the air delivery hose, delivering cold air to the affected area to prevent the patient from being scalded by excessive red light irradiation. The air delivery hose is sorted and positioned by the hanging bracket.
[0012] Preferably, the number of the pitching mechanisms and the irradiation mechanisms is two groups each. The two groups of pitching mechanisms are oppositely installed on the connecting seat, and the two groups of irradiation mechanisms are respectively installed on the two groups of pitching mechanisms. By providing two groups of pitching mechanisms and two groups of irradiation mechanisms, the device can treat two patients simultaneously, improving the treatment efficiency.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: Move the moving mechanism to the side of the patient, then adjust the height of the treatment head through the lifting mechanism, make the treatment head close to the affected area of the patient through the pitching mechanism, turn on the irradiation mechanism to perform red light treatment on the affected area, and set a temperature reduction mechanism to cool the red light irradiation area to prevent the patient from being scalded. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is an axonometric structural schematic diagram of the present utility model;
[0015] Figure 2 is a partially enlarged axonometric structural schematic diagram of the moving mechanism of the present utility model;
[0016] Figure 3 is a left-view structural schematic diagram of the lifting mechanism of the present utility model;
[0017] Figure 4 is a partially enlarged sectional axonometric structural schematic diagram of the pitching mechanism and the irradiation mechanism of the present utility model;
[0018] Figure 5 is a partially enlarged axonometric structural schematic diagram of the temperature reduction mechanism of the present utility model.
[0019] Reference numerals in the drawings: 01, moving mechanism; 11, universal wheel; 12, base; 13, baffle; 14, connecting frame; 15, controller; 16, host; 02, lifting mechanism; 21, telescopic shaft; 22, reinforcing rib; 23, lock; 24, rib plate; 25, connecting seat; 03, pitching mechanism; 31, rotating shaft; 32, telescopic plate; 33, fixed seat; 34, electric cylinder; 35, hanging bracket; 04, irradiation mechanism; 41, universal joint; 42, treatment head; 43, spotlight; 44, light-shielding bag; 45, drawstring; 05, temperature reduction mechanism; 51, air compressor; 52, filter plate; 53, air delivery hose. Detailed implementation mode
[0020] For the convenience of understanding the present utility model, the present utility model will be described more comprehensively below with reference to the relevant drawings. The present utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present utility model more thorough and comprehensive.
[0021] Embodiment 1
[0022] A high-energy red light therapy platform of the utility model includes a moving mechanism 01; it also includes a lifting mechanism 02, two pitching mechanisms 03, two irradiation mechanisms 04 and a cooling mechanism 05. The lifting mechanism 02 is installed on the moving mechanism 01 to adjust the height of the device. The two pitching mechanisms 03 are both installed on the lifting mechanism 02 to facilitate approaching the patient. The two irradiation mechanisms 04 are respectively installed on the two pitching mechanisms 03 to perform red light therapy on the patient. The cooling mechanism 05 is installed on the irradiation mechanism 04 to reduce the temperature at the red light irradiation site; The moving mechanism 01 includes four universal wheels 11, a base 12, two baffles 13, two connecting frames 14, a controller 15 and a mainframe 16. The top ends of the four universal wheels 11 are connected to the bottom end of the base 12. The bottom ends of the two baffles 13 are connected to the top end of the base 12. The two connecting frames 14 are installed between the two baffles 13. The controller 15 is installed on the front baffle 13. The bottom end of the mainframe 16 is connected to the top ends of the universal wheels 11; The lifting mechanism 02 includes a telescopic shaft 21, four reinforcing ribs 22, a locking buckle 23, four rib plates 24 and a connecting seat 25. The bottom end of the telescopic shaft 21 is connected to the top end of the mainframe 16. The four reinforcing ribs 22 are all installed on the telescopic shaft 21 and are respectively connected to the two baffles 13 and the two connecting frames 14. A positioning groove is opened on the telescopic shaft 21. The locking buckle 23 is inserted into the positioning groove of the telescopic shaft 21. The four rib plates 24 are all installed on the telescopic shaft 21. The bottom end of the connecting seat 25 is connected to the top ends of the four rib plates 24; The pitching mechanism 03 includes a rotating shaft 31, a telescopic plate 32, two fixed seats 33, an electric cylinder 34 and a hanging bracket 35. The rotating shaft 31 is rotatably installed on the connecting seat 25. The telescopic plate 32 is installed on the rotating shaft 31. The two fixed seats 33 are respectively installed at the front end and the rear end of the telescopic plate 32. The electric cylinder 34 is installed on the two fixed seats 33. The top end of the hanging bracket 35 is connected to the bottom end of the telescopic plate 32; The irradiation mechanism 04 includes a universal joint 41, a treatment head 42, multiple irradiation lamps 43, a light-shielding bag 44 and a drawstring 45. The top end of the universal joint 41 is connected to the bottom end of the telescopic plate 32. The top end of the treatment head 42 is rotatably connected to the bottom end of the universal joint 41. The multiple irradiation lamps 43 are all installed on the treatment head 42. The top end of the light-shielding bag 44 is connected to the bottom end of the treatment head 42. The drawstring 45 is installed on the light-shielding bag 44;When it is in operation, first, the staff member pushes the caster 11 to move beside the patient. The flexibility of the device is enhanced by setting four groups of bases 12. Then, the staff member controls the opening and closing of the main unit 16 through the controller 15, pulls out the lock catch 23, locks the height of the telescopic shaft 21 by inserting the lock catch 23 into the positioning groove of the telescopic shaft 21 after adjusting the height of the telescopic shaft 21. The stability of the telescopic shaft 21 is enhanced by setting four groups of reinforcing ribs 22, and the stability of the connecting seat 25 is enhanced by setting four groups of rib plates 24. The connecting seat 25 and the main unit 16 are connected by an electrical signal. Rotate the rotating shaft 31, start the electric cylinder 34 to push the fixed seat 33 located at the front end of the telescopic plate 32, so as to adjust the angle and length of the telescopic plate 32, making the irradiation mechanism 04 just above the patient's affected area. Then, adjust the irradiation angle of the treatment head 42 through the universal joint 41, making the treatment head 42 face the patient's affected area. Control the opening and closing of multiple groups of irradiation lamps 43 through the connecting seat 25, and adjust the tightening degree of the drawstring 45 according to the area of the patient's affected area, so that the light-shielding bag 44 converges the light emitted by the irradiation lamp 43, making the red light fully irradiate the affected area.;
[0023] Embodiment 2
[0024] As Figures 1 to 5As shown in the figure, a high-energy red light therapy platform of the present utility model is based on Embodiment 1; the cooling mechanism 05 includes an air compressor 51, a filter plate 52, and an air delivery hose 53. The air compressor 51 is installed on the baffle 13, the filter plate 52 is installed on the air compressor 51, and the air delivery hose 53 is installed on the air compressor 51 and passes through the hanging bracket 35 to communicate with the inside of the light-shielding bag 44; the number of the pitching mechanisms 03 and the irradiation mechanisms 04 is two groups each. The two groups of pitching mechanisms 03 are relatively installed on the connecting seat 25, and the two groups of irradiation mechanisms 04 are respectively installed on the two groups of pitching mechanisms 03; when it works, first, the staff pushes the universal wheels 11 to move beside the patient. By setting four groups of bases 12, the flexibility of the device is enhanced. Then, the staff controls the opening and closing of the host 16 through the controller 15, pulls out the lock catch 23, adjusts the height of the telescopic shaft 21, and then inserts the lock catch 23 into the positioning groove of the telescopic shaft 21 to lock the height of the telescopic shaft 21. By setting four groups of reinforcing ribs 22, the stability of the telescopic shaft 21 is enhanced. By setting four groups of rib plates 24, the stability of the connecting seat 25 is enhanced. The connecting seat 25 and the host 16 are connected by an electrical signal. Rotate the rotating shaft 31, start the electric cylinder 34 to push the fixed seat 33 located at the front end of the telescopic plate 32, so as to adjust the angle and length of the telescopic plate 32, so that the irradiation mechanism 04 is exactly above the affected part of the patient. Then, adjust the irradiation angle of the treatment head 42 through the universal joint 41 so that the treatment head 42 faces the affected part of the patient. Control the opening and closing of multiple groups of irradiation lamps 43 through the connecting seat 25, and adjust the tightening degree of the tightening belt 45 according to the area of the affected part of the patient, so that the light-shielding bag 44 converges the light emitted by the irradiation lamp 43, and makes the red light completely irradiate the affected part. Start the air compressor 51. The air compressor 51 inhales the outside air through the filter plate 52 and compresses and cools the air, and then transports it into the light-shielding bag 44 through the air delivery hose 53, and transports the cold air to the affected part to prevent the patient from being scalded by the long-time red light irradiation. The air delivery hose 53 is sorted and positioned by the hanging bracket 35. And by setting two groups of pitching mechanisms 03 and two groups of irradiation mechanisms 04, the device can treat two patients at the same time, improving the treatment efficiency.
[0025] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present utility model, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A high-energy red light therapy platform, comprising a moving mechanism (01); characterized in that: It also includes a lifting mechanism (02), two sets of pitch mechanisms (03), two sets of irradiation mechanisms (04) and a cooling mechanism (05), wherein the lifting mechanism (02) is mounted on the moving mechanism (01) and adjusts the height of the device, the two sets of pitch mechanisms (03) are both mounted on the lifting mechanism (02) and are convenient for approaching the patient, the two sets of irradiation mechanisms (04) are respectively mounted on the two sets of pitch mechanisms (03) and perform red light treatment on the patient, and the cooling mechanism (05) is mounted on the irradiation mechanism (04) and reduces the temperature at the red light irradiation location; The mobile mechanism (01) comprises four sets of universal wheels (11), a base (12), two sets of baffles (13), two sets of connecting frames (14), a controller (15) and a host (16); the top ends of the four sets of universal wheels (11) are connected to the bottom end of the base (12); the bottom ends of the two sets of baffles (13) are connected to the top end of the base (12); the two sets of connecting frames (14) are installed between the two sets of baffles (13); the controller (15) is installed on the front baffle (13); and the bottom end of the host (16) is connected to the top end of the universal wheels (11); The lifting mechanism (02) comprises a telescopic shaft (21), four groups of reinforcing ribs (22), a lock buckle (23), four groups of ribs (24) and a connecting seat (25); the bottom end of the telescopic shaft (21) is connected to the top end of the main machine (16); the four groups of reinforcing ribs (22) are all installed on the telescopic shaft (21) and are respectively connected to the two groups of baffles (13) and the two groups of connecting frames (14); a positioning groove is provided on the telescopic shaft (21); the lock buckle (23) is inserted into the positioning groove of the telescopic shaft (21); the four groups of ribs (24) are all installed on the telescopic shaft (21); and the bottom end of the connecting seat (25) is connected to the top end of the four groups of ribs (24); The pitch mechanism (03) comprises a rotating shaft (31), a telescopic plate (32), two groups of fixed seats (33), an electric cylinder (34) and a hanger (35); the rotating shaft (31) is rotatably mounted on the connecting seat (25); the telescopic plate (32) is mounted on the rotating shaft (31); the two groups of fixed seats (33) are respectively mounted on the front end and the rear end of the telescopic plate (32); the electric cylinder (34) is mounted on the two groups of fixed seats (33); and the top end of the hanger (35) is connected to the bottom end of the telescopic plate (32); The irradiation mechanism (04) comprises a universal joint (41), a treatment head (42), a plurality of groups of irradiation lamps (43), a light shielding bag (44) and a contraction belt (45); the top end of the universal joint (41) is connected to the bottom end of the telescopic plate (32); the top end of the treatment head (42) is rotatably connected to the bottom end of the universal joint (41); the plurality of groups of irradiation lamps (43) are mounted on the treatment head (42); the top end of the light shielding bag (44) is connected to the bottom end of the treatment head (42); and the contraction belt (45) is mounted on the light shielding bag (44).
2. A high energy red light therapy platform as claimed in claim 1, characterized in that: The cooling mechanism (05) comprises an air compressor (51), a filter plate (52) and an air supply hose (53); the air compressor (51) is mounted on the baffle (13); the filter plate (52) is mounted on the air compressor (51); the air supply hose (53) is mounted on the air compressor (51) and passes through the hanger (35) to communicate with the interior of the light-shielding bag (44).
3. A high energy red light therapy platform as claimed in claim 1, characterized in that: The number of the pitch mechanisms (03) and the number of the irradiation mechanisms (04) are both two groups, the two groups of pitch mechanisms (03) are relatively mounted on the connecting seat (25), and the two groups of irradiation mechanisms (04) are respectively mounted on the two groups of pitch mechanisms (03).
Citation Information
Patent Citations
High-energy red light therapy instrument
CN203280913U