Strap type laser treatment device

By designing a strap-type laser treatment device, the fixed handle and flexible strap are used to facilitate the portability of the host to the patient's bedside for treatment, which solves the problem of the patient's need to move to the treatment room and reduces the patient's pain and the work intensity of the medical staff.

CN223054928UActive Publication Date: 2025-07-04武汉翊晟科技有限公司
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Patent Information

Application Number
CN202422015872.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-07-04
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

Existing laser treatment equipment requires patients to move to the treatment room for treatment, resulting in high work intensity and pain in the patient.

Method used

A strap-type laser therapy device is designed, including a host and portable assembly, which is convenient for portability using a fixed handle and a flexible strap, and is moved directly to the patient's bedside for treatment.

Benefits of technology

It reduces the patient's metastasis pain and improves the convenience and efficiency of treatment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of medical instruments, in particular to a strap type laser treatment device which comprises a shell, a main control board, a laser driving module and a semiconductor laser, the main control board, the laser driving module and the semiconductor laser are all installed in the shell, one end of the laser driving module is electrically connected with the main control board, and the other end of the laser driving module is electrically connected with the semiconductor laser. And the other end is electrically connected with the semiconductor laser. The portable assembly comprises a fixed handle and a flexible strap, and the fixed handle and the flexible strap are fixedly connected to the shell. The shell is carried by utilizing the fixed handle or the flexible strap, so that the host can be conveniently transferred, the transfer of a patient in the treatment process is reduced, and the pain of the patient is reduced. The device has the effect of conveniently treating a patient.
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Description

Technical Field

[0001] This application relates to the technical field of medical instruments, and particularly relates to a backpack-type laser treatment device. Background Art

[0002] Laser treatment equipment irradiates blood with low-intensity laser, causing biochemical reactions in the human body. Through promoting blood circulation and stasis removal, activating or inducing lymphocyte factors, it improves blood circulation and lymphatic circulation, thereby restoring blood function, activating the body's immune system, promoting the metabolism of pain-causing substances, and relieving pain.

[0003] Currently, laser treatment equipment is fixedly placed in a specific treatment room. When in use, the patient is moved to the treatment room for treatment. However, when the patient has difficulty moving independently due to physical reasons, medical staff need to use a wheelchair or a mobile bed to move the patient to the treatment room.

[0004] Regarding the above related technologies, moving the patient to the treatment room with a wheelchair or a mobile bed not only increases the working intensity of medical staff, but also increases the patient's pain during the transfer process, thus making it inconvenient to treat the patient. Utility Model Content

[0005] In order to facilitate the treatment of patients, this application provides a backpack-type laser treatment device.

[0006] The backpack-type laser treatment device provided by this application adopts the following technical solutions:

[0007] A backpack-type laser treatment device includes:

[0008] A main unit, including a housing, a main control board, a laser driving module, and a semiconductor laser. The main control board, the laser driving module, and the semiconductor laser are all installed in the housing. One end of the laser driving module is electrically connected to the main control board, and the other end is electrically connected to the semiconductor laser;

[0009] A portable component, including a fixed handle and a flexible strap. The fixed handle and the flexible strap are both fixedly connected to the housing.

[0010] By adopting the above technical solutions, it is convenient to carry the housing by using the fixed handle or the flexible strap, thereby facilitating the transfer of the main unit. When it is necessary to treat a patient, the main unit can be transferred to the patient's bedside by using the portable component. The laser is irradiated into the blood for treatment through the cooperation of the main control board, the laser driving module, and the semiconductor laser. Thus, during the treatment process, the transfer of the patient is avoided, the patient's pain is reduced, and further it is convenient to treat the patient.

[0011] Optionally, the fixed handle and the flexible strap are located on the same side of the housing, and the length of the flexible strap is greater than that of the fixed handle.

[0012] By adopting the above technical solution, the fixed handle facilitates holding the host, making the host not easy to shake randomly, while the flexible strap facilitates the operator to carry it on the shoulder. At the same time, setting the fixed handle and the flexible strap on the same side not only saves the occupied space of the portable components, but also facilitates winding the flexible strap around the fixed handle, thereby facilitating the storage of the flexible strap.

[0013] Optionally, a main display screen and a secondary display screen are installed on the housing. The main display screen is located on the side of the housing with a larger surface area, and the secondary display screen and the fixed handle are located on the same side of the housing.

[0014] By adopting the above technical solution, the setting of the main display screen facilitates reading data and operating the device functions. At the same time, the wavelength, power magnitude, and data on the main display screen will be synchronously displayed on the secondary display screen, facilitating the operator to read and process data when carrying the host on the back or across the body.

[0015] Optionally, legs are provided on the side of the housing away from the main display screen, and anti-slip rubber sleeves are sleeved on the legs.

[0016] By adopting the above technical solution, the setting of the legs and the anti-slip rubber sleeves facilitates placing the host on one side of the patient for support and reduces the wear of the host during use.

[0017] Optionally, a battery module is also installed on the housing, and the main control board, the laser drive module, and the semiconductor laser are all electrically connected to the battery module.

[0018] By adopting the above technical solution, the setting of the battery module enables the use of the host to avoid relying on the power interface.

[0019] Optionally, the housing is recessed inward to form a mounting groove, and the battery module is installed in the mounting groove.

[0020] By adopting the above technical solution, setting the mounting groove on the outer side of the housing facilitates the disassembly and replacement of the battery module.

[0021] Optionally, a host switch and an emergency stop switch are installed on the housing. The host switch is used to control the operation of the main control board, and the emergency stop switch is used to disconnect the electrical connection between the main control board, the laser drive module, and the semiconductor laser and the battery module.

[0022] By adopting the above technical solution, the setting of the main switch facilitates the control of the main control board. At the same time, the setting of the emergency stop switch cuts off the power supply to the internal equipment of the main unit urgently when an accident occurs, reducing the losses caused by accidents.

[0023] Optionally, the semiconductor laser is a plurality of laser diodes, and the laser diodes are connected to the laser driving module in one-to-one correspondence.

[0024] By adopting the above technical solution, multiple laser diodes can respectively correspond to lasers of different wavelengths, so that the semiconductor laser can generate lasers of different wavelengths, realizing the output of multi-wavelength lasers and improving the treatment effect.

[0025] Optionally, a heat dissipation module is installed in the housing, and the heat dissipation module is attached to the semiconductor laser.

[0026] By adopting the above technical solution, the setting of the heat dissipation module improves the heat dissipation effect of the semiconductor laser, enabling the semiconductor laser to work stably.

[0027] Optionally, the heat dissipation module includes a radiator and a cooling fan. The radiator is attached to one side of the semiconductor laser, and heat dissipation holes are formed in the side wall of the housing. One side of the cooling fan is attached to the heat dissipation module, and the other side faces the heat dissipation holes.

[0028] By adopting the above technical solution, the contact area of the semiconductor is increased by using the radiator, and then the air convection of the heat dissipation module is improved by using the settings of the cooling fan and the heat dissipation holes, improving the heat dissipation effect of the heat dissipation module.

[0029] In summary, the present application includes at least one of the following beneficial technical effects:

[0030] 1. Through the cooperation of the housing, the main control board, the laser driving module, the semiconductor laser, the fixed handle and the flexible strap, it is convenient to carry the housing by using the fixed handle or the flexible strap, so as to facilitate the transfer of the main unit. When it is necessary to treat a patient, the main unit can be transferred to the patient's bedside by using the portable component, and then the laser is irradiated into the blood for treatment through the cooperation of the main control board, the laser driving module and the semiconductor laser. Therefore, during the treatment process, the transfer of the patient is avoided, the pain of the patient is reduced, and thus it is convenient to treat the patient;

[0031] 2. By arranging the fixed handle, the flexible strap and the secondary display screen on the same side of the housing, it is convenient for the operator to read and process data when carrying the main unit on the back or obliquely across the body;

[0032] 3. Through the cooperation of the radiator and the cooling fan, the heat dissipation effect of the semiconductor laser is improved. Description of the Drawings

[0033] Figure 1 It is a schematic structural diagram of the backpack-type laser treatment device in the embodiment of the present application.

[0034] Figure 2 It is an exploded view of the backpack-type laser treatment device in the embodiment of the present application.

[0035] Figure 3 It is a top view of the backpack-type laser treatment device in the embodiment of the present application.

[0036] Explanation of reference numerals:

[0037] 1. Main body; 11. Housing; 111. Upper housing; 112. Lower housing; 113. Base; 114. Installation cavity; 115. Installation groove; 12. Main control board; 13. Laser drive module; 14. Semiconductor laser; 2. Portable component; 21. Fixed handle; 22. Flexible strap; 3. Heat dissipation module; 31. Heat sink; 32. Cooling fan; 4. Heat dissipation hole; 5. Leg; 51. Anti-slip rubber sleeve; 6. Battery module; 7. Main body switch; 71. Emergency stop switch; 8. Main display screen; 81. Sub-display screen. Detailed implementation manners

[0038] The following Figures 1-3 further describes the present application in detail.

[0039] The embodiment of the present application discloses a backpack-type laser treatment device.

[0040] Referring to Figure 1 and Figure 2 , the backpack-type laser treatment device includes a main body 1 and a portable component 2. The main body 1 includes a housing 11, a main control board 12, a laser drive module 13 and a semiconductor laser 14. The main control board 12, the laser drive module 13 and the semiconductor laser 14 are all installed in the housing 11. One end of the laser drive module 13 is electrically connected to the main control board 12, and the other end is electrically connected to the semiconductor laser 14. The portable component 2 includes a fixed handle 21 and a flexible strap 22. The fixed handle 21 and the flexible strap 22 are both fixedly connected to the housing 11. The housing 11 can be carried conveniently by using the fixed handle 21 or the flexible strap 22, so that the main body 1 can be transferred conveniently, avoiding the transfer of the patient during the treatment process, reducing the pain of the patient, and thus facilitating the treatment of the patient.

[0041] The housing 11 includes an upper housing 111, a lower housing 112 and a base 113. The lower housing 112 is located between the upper housing 111 and the base 113. The two sides of the lower housing 112 are blocked by the upper housing 111 and the base 113 to form an installation cavity 114. The main control board 12, the laser drive module 13 and the semiconductor laser 14 are all installed in the installation cavity 114.

[0042] In this embodiment, the semiconductor laser 14 is also connected to the treatment handle through an optical fiber (not shown in the figure). The optical fiber and the treatment handle are used to align the laser emitted by the semiconductor laser 14 to the diseased area of the patient, so as to treat the patient.

[0043] The semiconductor laser 14 is a plurality of laser diodes, and the laser diodes are connected to the laser driving module 13 in one-to-one correspondence. In this embodiment, there are 5 laser diodes. In other embodiments, it can also be set to 1, 3, 6, etc. The laser wavelengths of the 5 laser diodes in this embodiment are: 650nm, 808nm, 915nm, 980nm, 1064nm. The 5 laser diodes are used to synthesize the semiconductor laser 14. The 5 laser diodes can respectively correspond to lasers of different wavelengths. At the same time, the 5 laser diodes are connected to the treatment handle through a multi-channel optical fiber. Preferably, the optical fiber and the semiconductor laser 14 are connected through a connector of model SMA905.

[0044] During use, lasers of different wavelengths are transmitted to the treatment handle through the corresponding optical fibers, so that the semiconductor laser 14 can generate lasers of different wavelengths to be transmitted to the treatment handle, realizing the output of multi-wavelength lasers, and thus selecting the laser of a suitable wavelength according to the patient's condition, thereby improving the treatment effect.

[0045] A heat dissipation module 3 is installed in the installation cavity 114. In this embodiment, the heat dissipation module 3 is a radiator 31 integrated with heat dissipation fins and a heat dissipation fan 32. The radiator 31 is attached to one side of the semiconductor laser 14. The radiator 31 can significantly increase the heat dissipation area. By attaching the heat dissipation module 3 to the semiconductor laser 14, the heat dissipation area of the semiconductor laser 14 is significantly increased by the setting of the heat dissipation module 3, and the heat dissipation effect of the semiconductor laser 14 is improved.

[0046] At the same time, heat dissipation holes 4 are opened on the side wall of the lower housing 112. One side of the heat dissipation fan 32 is attached to the heat dissipation module 3, and the other side faces the heat dissipation holes 4. By the setting of the heat dissipation fan 32 and the heat dissipation holes 4, the air convection of the radiator 31 is improved, and the heat dissipation effect of the radiator 31 is improved.

[0047] Legs 5 are provided on the side of the base 113 away from the lower housing 112, and heat dissipation holes 4 are also opened in the base 113. Anti-slip rubber sleeves 51 are sleeved on the legs 5. The legs 5 and the anti-slip rubber sleeves 51 are provided to facilitate placing the main unit 1 on one side of the patient for support, so that there is a certain gap between the base 113 and the support surface, which not only reduces the wear of the main unit 1 during use, but also facilitates the heat dissipation inside the housing 11.

[0048] A battery module 6 is also installed on the base 113, and the main control board 12, the laser driving module 13, and the semiconductor laser 14 are all electrically connected to the battery module 6. The setting of the battery module 6 enables the use of the host 1 to avoid dependence on a power supply interface.

[0049] In the working process of the host 1 in this embodiment, the power in the continuous mode can reach 60W, and the power in the pulse mode can reach 100W. The power value can be arbitrarily adjusted in the continuous mode or the pulse mode.

[0050] Referring to Figure 2 and Figure 3 , the base 113 is recessed towards the lower housing 112 to form a mounting groove 115, so that the opening of the mounting groove 115 faces the outside of the host 1, and the battery module 6 is installed in the mounting groove 115. Making the opening of the mounting groove 115 face the outside of the host 1 facilitates the disassembly and replacement of the battery module 6.

[0051] A host switch 7 is installed on one side of the lower housing 112, and an emergency stop switch 71 is installed on the other side. The host switch 7 is used to control the operation of the main control board 12, and the emergency stop switch 71 is used to disconnect the electrical connection between the main control board 12, the laser driving module 13, and the semiconductor laser 14 and the battery module 6.

[0052] The setting of the host switch 7 facilitates the control of the main control board 12. At the same time, the setting of the emergency stop switch 71 cuts off the power supply to the internal devices of the host 1 urgently when an accident occurs, reducing the losses caused when an accident occurs.

[0053] In this embodiment, the flexible strap 22 is fixedly connected to the housing 11 through the fixed handle 21, that is, the fixed handle 21 and the flexible strap 22 are on the same side of the housing 11, and the length of the flexible strap 22 is greater than the length of the fixed handle 21. The fixed handle 21 facilitates holding the host 1, making the host 1 not easy to shake randomly, while the flexible strap 22 facilitates the operator to carry it on the shoulder. At the same time, setting the fixed handle 21 and the flexible strap 22 on the same side not only saves the occupied space of the portable component 2, but also facilitates winding the flexible strap 22 around the fixed handle 21, thereby facilitating the storage of the flexible strap 22.

[0054] When the host 1 only needs to be transferred within a small range and there is a placement position, the fixed handle 21 can be directly used to facilitate holding the host 1, and the host 1 can be transferred to the placement platform on one side of the patient for treatment.

[0055] If it is necessary to carry the host 1 for a long time during disaster relief and there is no suitable placement platform, the operator needs to carry it on the shoulder at this time, and the host 1 can also be supported in a diagonal carrying manner during operation.

[0056] To facilitate the host 1 in observing data when placed on the platform and carried cross-body, a main display screen 8 is installed on the upper shell 111 of this embodiment, and a secondary display screen 81 is installed on the side of the lower shell 112 close to the fixed handle 21. The setting of the main display screen 8 facilitates reading data and operating device functions. At the same time, the wavelength, power magnitude, and data on the main display screen 8 will be synchronously displayed on the secondary display screen 81, facilitating the operator to read and process data when carrying the host 1 on the back or cross-body.

[0057] In an alternative embodiment, a microprocessor is connected between the main control board 12 and the laser driving module 13. The microprocessor precisely controls the semiconductor laser 14 and displays and operates on the main display screen 8 and the secondary display screen 81.

[0058] The implementation principle of a back-mounted laser treatment device according to an embodiment of the present application is as follows: The fixed handle 21 or the flexible strap 22 is used to carry the housing 11 and transfer the host 1, so that when it is necessary to treat a patient, the host 1 can be transferred to one side of the patient by using the portable component 2. Through the cooperation of the main control board 12, the laser driving module 13, and the semiconductor laser 14, the laser is irradiated into the blood for treatment, thereby avoiding the transfer of the patient during the treatment process, reducing the pain of the patient, and facilitating the treatment of the patient.

[0059] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A backpack-type laser treatment device, characterized in that, Comprising: A main unit (1), including a housing (11), a main control board (12), a laser driving module (13), and a semiconductor laser (14). The main control board (12), the laser driving module (13), and the semiconductor laser (14) are all installed inside the housing (11). One end of the laser driving module (13) is electrically connected to the main control board (12), and the other end is electrically connected to the semiconductor laser (14). A portable component (2), including a fixed handle (21) and a flexible strap (22). The fixed handle (21) and the flexible strap (22) are both fixedly connected to the housing (11).

2. The back-mounted laser treatment device according to claim 1, wherein: The fixed handle (21) and the flexible strap (22) are located on the same side of the housing (11), and the length of the flexible strap (22) is greater than the length of the fixed handle (21).

3. The back-mounted laser treatment device according to claim 2, wherein: A main display screen (8) and a secondary display screen (81) are installed on the housing (11). The main display screen (8) is located on the side of the housing (11) with a larger surface area, and the secondary display screen (81) and the fixed handle (21) are located on the same side of the housing (11).

4. The back-mounted laser treatment device according to claim 3, wherein: Legs (5) are provided on the side of the housing (11) away from the main display screen (8), and anti-slip rubber sleeves (51) are sleeved on the legs (5).

5. The back-mounted laser treatment device according to claim 1, wherein: A battery module (6) is also installed on the housing (11). The main control board (12), the laser driving module (13), and the semiconductor laser (14) are all electrically connected to the battery module (6).

6. The back-mounted laser treatment device according to claim 5, characterized in that: The housing (11) is recessed inward to form a mounting groove (115), and the battery module (6) is installed in the mounting groove (115).

7. The back-mounted laser treatment device according to claim 5, wherein: A main unit switch (7) and an emergency stop switch (71) are installed on the housing (11). The main unit switch (7) is used to control the operation of the main control board (12), and the emergency stop switch (71) is used to disconnect the electrical connection between the main control board (12), the laser driving module (13), and the semiconductor laser (14) and the battery module (6).

8. The back-mounted laser treatment device according to claim 1, wherein: The semiconductor laser (14) is a plurality of laser diodes, and the laser diodes are connected to the laser driving module (13) in one-to-one correspondence.

9. The back-mounted laser treatment device according to claim 1, wherein: A heat dissipation module (3) is installed inside the housing (11), and the heat dissipation module (3) is attached to the semiconductor laser (14).

10. The backstrap laser treatment device according to claim 9, wherein: The heat dissipation module (3) includes a radiator (31) and a cooling fan (32). The radiator (31) is attached to one side of the semiconductor laser (14), and heat dissipation holes (4) are formed on the side wall of the housing (11). One side of the cooling fan (32) is attached to the heat dissipation module (3), and the other side faces the heat dissipation holes (4).