Intelligent light source kickstand device applied to treatment of pedopathy and use method of intelligent light source kickstand device

Through the design of the intelligent light source foot support device, the problems of inconvenient support, incomplete disinfection and cross-infection risks during foot treatment in the prior art are solved, and convenient fixation, fine disinfection and automated treatment of the foot are achieved, which significantly reduces the workload of medical staff and the pain of patients.

CN120053101APending Publication Date: 2025-05-30GENERAL HOSPITAL OF THE CENT WAR ZONE OF THE CHINESE PEOPLES LIBERATION ARMY
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Patent Information

Application Number
CN202510159096.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

In the prior art, it is difficult to achieve convenient and comfortable support and height adjustment of the foot when treating foot skin diseases, and intertotal diagnosis and treatment requires collaboration among multiple people to increase the risk of cross-infection and waste of medical resources.

Method used

An intelligent light source foot support device is designed, including a foot support fixed structure, a board disinfection structure and a toe disinfection structure. The automated disinfection and massage functions are realized through servo motors and pressure sensors to reduce the workload of medical staff.

Benefits of technology

Directional fixation and fine disinfection of foot positions are achieved, reducing the risk of foot displacement and cross-infection, and reducing the workload of medical staff and the pain of patients.

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Abstract

The invention relates to the technical field of medical instruments and equipment, and discloses an intelligent light source kickstand device applied to treatment of foot diseases and a using method thereof.The intelligent light source kickstand device comprises a kickstand box body, and the upper surface of the kickstand box body is provided with a kickstand fixing structure for limiting the positions of feet; the foot support box body is internally provided with a plate surface disinfection structure for carrying out pavement disinfection towards a foot position and a toe disinfection structure for finely disinfecting the foot position, and the foot support box body is internally provided with an upper massage structure and a lower massage structure which are positioned on two sides of the plate surface disinfection structure; and the up-down massage structure, the plate surface disinfection structure and the toe disinfection structure are synchronously driven to operate. Intelligent disinfection before foot treatment and auxiliary work such as fixation, massage and illumination during treatment are preliminarily achieved through positioning, the workload of medical staff is relieved, meanwhile, the treatment efficiency is improved, and risks such as cross infection are reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical equipment, and in particular to an intelligent light source foot support device for treating foot diseases and a method of using the same. Background Art

[0002] Skin disease is a general term for diseases that occur in the skin and skin appendages. The most common pathogenic factors of skin diseases are infection and allergic dermatitis. The diagnosis of skin diseases, like other diseases, must be based on a comprehensive analysis of medical history, physical examination, and laboratory tests. Skin diseases can be divided into facial skin diseases, hand skin diseases, and foot skin diseases according to the affected area.

[0003] Foot skin diseases mainly refer to the diseased part of the patient's foot, and mainly include tinea pedis, eczema, plantar warts and corns. When medical staff observe and examine the patient's feet and provide nursing treatment, they need to lift the patient's feet to the required height so that they can check and treat them conveniently and clearly. In addition, the toes between the toes often require the assistance of multiple people to separate the toes before they can be treated.

[0004] In the existing hospital dermatology departments for the medical care and treatment of patients with foot skin diseases, there is no dedicated foot placement equipment to place the patient's feet. Usually, chairs and stools are used to place the patient's feet, which makes it difficult to achieve convenient and comfortable support for the patient's feet. In addition, during the medical care and treatment process, it is also difficult to adjust the support height of the patient's feet as needed, which cannot meet the needs of medical care. In addition, the diagnosis and treatment of special parts such as toes usually requires the collaboration of multiple people, which not only increases the risk of cross infection, but also greatly wastes medical resources.

[0005] In order to solve the above technical problems, a Chinese patent document (publication number CN215689505U) discloses a foot support mechanism for treating foot skin diseases, wherein a lifting and adjusting support is arranged on the upper side of a translation adjustment base, and both sides of the lifting and adjusting screw rod are horizontally threadedly connected to the reciprocating translation guide plates on both sides above the adjustment guide support plate, and the lifting and adjusting guide rods on both sides below the foot lifting bracket are vertically slidably arranged on the lifting and adjusting support, and lifting and pushing connecting plates are respectively arranged on the reciprocating translation guide plates on both sides of the adjustment guide support plate, and foot support roller mounting plates are respectively arranged on both sides of the foot support adjustment shaft, and three treatment foot support rollers are evenly arranged between the two foot support roller mounting plates.

[0006] The above technical solution raises the treatment foot support roller by lifting and adjusting the support to raise the patient's foot to meet the inspection and treatment needs of medical staff. However, the above technical solution still has the following technical problems:

[0007] 1. The above technical solution does not fix the position of the patient's foot to be treated in a directional manner during the lifting and lowering process of the lifting and adjusting support, which causes the patient's foot to be easily displaced when the lifting and adjusting support is lifted and lowered. When the lifting and adjusting support is lifted and lowered to a specified height, the patient's foot position needs to be adjusted to facilitate medical staff to check and treat, which still increases the operation time of medical staff and is prone to causing injuries to the patient's foot again during the adjustment process.

[0008] 2. Since some patients have plantar warts or corns on their feet that require treatment, medical staff will disinfect the patients' feet before treating them, and then remove the lesions by using liquid nitrogen freezing, laser or direct scraping. During this process, the patients will feel pain, and the stress response will cause the position of the patients' feet to shift, increasing the risk of injury, causing trouble for medical staff and wasting time and effort.

[0009] 3. When treating lesions in adjacent parts of the toes, due to the physiological structure of the adjacent toes, medical staff usually use their fingers to separate the two adjacent toes during the treatment process, and use the other hand to hold the tools for treatment. Sometimes, it even requires the cooperation of multiple people. The whole process is time-consuming and laborious, which is not convenient for medical staff to operate, and the treatment will be affected due to the narrow space. In addition, it will also increase the risk of cross-infection. Summary of the invention

[0010] The present invention is intended to provide an intelligent light source foot support device for treating foot diseases, so as to intelligently locate the patient's foot position for initial treatment and reduce the workload of medical staff.

[0011] In order to achieve the above object, the present invention adopts the following technical scheme:

[0012] 1) An intelligent light source foot support device for treating foot diseases, comprising a foot support box, wherein the upper surface of the foot support box has a foot support fixing structure for limiting the position of the foot, the foot support box has a board surface disinfection structure for paving and disinfecting the foot, and a toe disinfection structure for fine disinfection of the foot, the foot support box has upper and lower massage structures located on both sides of the board surface disinfection structure, and the upper and lower massage structures, the board surface disinfection structure and the toe disinfection structure are driven and operated synchronously.

[0013] The present invention limits and places the foot position of the patient through the footrest fixing structure, preventing the patient from shifting during the treatment process and affecting the treatment effect of medical staff; disinfects the foot position by spreading disinfectant through the board surface disinfection structure to achieve large-scale disinfection of the patient's foot position and avoid cross-infection of germs at the foot position of the patient; and performs refined disinfection of the foot position through the toe disinfection structure to avoid missed disinfection positions on the toes of the foot. Therefore, the present invention can comprehensively disinfect the foot position through the board surface disinfection structure and the toe disinfection structure, realizing intelligent disinfection work before the initial treatment for positioning, eliminating the need for medical staff to disinfect again and reducing the workload of medical staff.

[0014] In addition, when medical staff treat the foot position of the patient, the foot position of the patient will have a stress response due to being stimulated. Therefore, in addition to using the footrest fixing structure to limit and fix the foot position of the patient, the present invention also has an up-and-down massage structure that runs synchronously with the board surface disinfection structure and the toe disinfection structure to perform up-and-down lifting and stimulating massage on both sides of the lower surface of the foot position, which can distract the patient's attention from pain, reduce the pain felt by the patient himself, and also facilitate medical staff to treat the foot position of the patient.

[0015] 2) The intelligent light source footrest device applied to the treatment of foot diseases according to 1), wherein:

[0016] The footrest fixing structure includes a footrest board arranged on the top of the footrest box body. The footrest board is provided with a strip-shaped hole penetrating through the top of the footrest box body along its radial direction. The board surface disinfection structure moves towards the strip-shaped hole and passes through the strip-shaped hole, so that the disinfectant stored in the board surface disinfection structure is extruded through the strip-shaped hole to perform spreading disinfection on the foot position.

[0017] Among them, the board surface disinfection structure includes a driving unit that is synchronously connected to the toe disinfection structure and a disinfection rod arranged in the footrest box body. A disinfection cotton capable of absorbing and storing disinfectant is attached to the side of the disinfection rod facing the strip-shaped hole. The disinfection cotton passes through the strip-shaped hole and is extruded by the strip-shaped hole to extrude the disinfectant stored in it.

[0018] The present invention designs the footrest board to facilitate the placement of the patient's foot position. The surface of the footrest board has a strip-shaped hole along its radial direction that communicates with the internal space of the footrest box body. The position of this strip-shaped hole corresponds to the disinfection rod in the internal space of the footrest box body. When the driving unit operates, it drives the disinfection rod in the board surface disinfection structure to move towards the strip-shaped hole and pass through the strip-shaped hole. During the process of the disinfection rod passing through the strip-shaped hole, the disinfection cotton on the side of the disinfection rod is squeezed by the aperture of the strip-shaped hole, forcing the disinfectant stored in the disinfection cotton itself to be extruded. The extruded disinfectant performs spreading disinfection on the bottom surface of the patient's foot position, playing a role in sterilizing the patient's foot position and avoiding cross-infection of germs at the patient's foot position.

[0019] 3) The intelligent light source footrest device applied to the treatment of foot diseases according to 2), wherein:

[0020] Raised blocks are respectively arranged on both sides of the footrest plate. A short elastic rubber rod is provided on the side of the raised block facing the footrest plate. The end of the short elastic rubber rod away from the raised block can abut against the rear side of the patient's foot position. A long elastic rubber rod is provided on the raised block. The long elastic rubber rod is perpendicular to the short elastic rubber rod. The long elastic rubber rod extends along the axial direction of the footrest plate and abuts against the front side of the patient's foot position.

[0021] In order to better adapt to the foot shape of each patient and fix it better, the short elastic rubber rod and the long elastic rubber rod designed in the present invention can fix the rear end and the front end of the patient's foot position. The raised block plays a role in supporting the short elastic rubber rod and the long elastic rubber rod. The elastic potential energy of the short elastic rubber rod is used to be stuck between the raised block and the rear side of the patient's foot position, and the rear part of the patient's foot position is limited by the short elastic rubber rod; the elastic potential energy of the long elastic rubber rod is used to be stuck between the raised block and the front side of the patient's foot position, and the front part of the patient's foot position is limited by the long elastic rubber rod, so as to fix the front part and the rear part of the patient's foot position, and reduce the displacement phenomenon of the patient during the treatment of foot diseases due to pain.

[0022] 4) The intelligent light source footrest device applied to the treatment of foot diseases according to 3), wherein:

[0023] An arc-shaped elastic strip and several toe separating blocks arranged at the front end of the elastic strip and slidable along the strip-shaped holes are provided on the footrest plate. A toe separating plate is connected to the top between adjacent toe separating blocks. A toe separating hole for the patient's toe to insert is formed between the toe separating plate and the adjacent toe separating blocks. All the toe separating plates are respectively communicated with the toe disinfection structure. The toe disinfection structure sprays disinfectant liquid into the toe separating holes to the patient's foot position for fine disinfection.

[0024] In addition to the above technical solution of using the short elastic rubber rod and the long elastic rubber rod to clamp and fix the patient's foot position, the present invention also uses an arc-shaped elastic strip to limit the overall position of the patient's foot, and fixes the toes of the patient's foot position through several toe separating holes of the toe plate, which is convenient for the toe disinfection structure to spray disinfectant liquid into the toe separating holes to finely disinfect the toe parts of the patient's foot position, thereby reducing the disinfection work of the medical staff in the early stage of treatment and reducing the workload of the medical staff in treatment.

[0025] Meanwhile, according to the verruca vulgaris or corn on the adjacent position of the toe part that needs to be treated on the patient's foot, the verruca vulgaris or corn in the gap between the toes is exposed by moving the toe separator block, which facilitates the treatment by the medical staff's both hands. At the same time, after the treatment, the toes can be kept separated for a long time, avoiding the contact of the toes with the treated verruca vulgaris or corn and affecting the treatment effect.

[0026] 5) The intelligent light source foot support device applied to the treatment of foot diseases according to 4), wherein:

[0027] The toe disinfection structure includes a liquid storage tank arranged in the foot support box body and used for storing disinfectant solution. A liquid delivery pipe extending outward to the toe separator plate is arranged in the liquid storage tank. A delivery pump is installed on the liquid delivery pipe. The liquid delivery pipe is arranged in a support plate located in the foot support box body;

[0028] The end of the liquid infusion delivery pipe far from the liquid storage tank is communicated with a branch pipe located in the toe separator plate. The branch pipe extends towards the top of the toe separator plate and is communicated with a liquid outlet pipe located at the top of the toe separator plate. A plurality of diversion pipes are evenly distributed along the axial direction of the liquid outlet pipe. The pipe orifices of all the diversion pipes respectively face a cotton absorbent pad arranged in the top of the toe separator plate. The cotton absorbent pad is arranged on the inner top wall of the toe separation hole.

[0029] During use, the delivery pump is started. The delivery pump introduces the disinfectant solution in the liquid storage tank into the liquid delivery pipe. The liquid delivery pipe transports the disinfectant solution to the branch pipe located in the toe separator plate. The branch pipe transports the disinfectant solution to the liquid outlet pipe located at the top of the toe separator plate. The liquid outlet pipe shunts the disinfectant solution and the disinfectant solution flows through a plurality of diversion pipes to the corresponding cotton absorbent pads. After the cotton absorbent pads absorb a certain amount of disinfectant solution, due to the fact that the cotton absorbent pads are arranged on the inner top wall of the toe separation hole and the flowing gravity of the disinfectant solution, the disinfectant solution will drip into the toe separation hole through the cotton absorbent pads. During the dripping process, the toes in the toe separation hole will be disinfected in a refined manner, so that the disinfectant solution can evenly disinfect the toes comprehensively, reducing the workload of the medical staff. At the same time, it also reduces the discomfort caused by the medical staff's too long contact time with patients with beriberi.

[0030] 6) The intelligent light source foot support device applied to the treatment of foot diseases according to 5), wherein:

[0031] A square sleeve is sleeved on the support plate. A connecting rod fixed in the internal space of the foot support box body is arranged on the square sleeve. A pressure sensor located below the disinfection rod is arranged at the top of the square sleeve. The pressure sensor can abut against the disinfection rod and start the delivery pump through a driving unit. The side surface of the support plate facing the disinfection rod is slidably connected with the disinfection rod. A plurality of spray holes are respectively opened on the side surface of the support plate facing the disinfection rod along the height direction of the foot support box body. All the spray holes are communicated with the liquid delivery pipe and spray the disinfectant solution towards the disinfection cotton on the disinfection rod through all the spray holes.

[0032] The present invention is based on the above technical solution, and realizes the operation of disinfecting the patient's toes and adding disinfectant to the disinfection cotton for disinfecting the pavement at the foot position simultaneously through the liquid delivery tube. The support plate is fixed by a square sleeve, and the liquid delivery tube is fixed by the support plate; wherein, several injection holes connected to the liquid delivery tube are opened on the side of the support plate facing the disinfection rod. When the delivery pump is started, during the process of the liquid delivery tube transporting disinfectant to the branch pipe on the toe plate, part of the disinfectant will be sprayed outward through the injection holes and sprayed onto the disinfection cotton, which absorbs and stores the disinfectant;

[0033] During this process, the present invention drives the disinfection rod to move downward through the driving unit. During the downward movement of the disinfection rod, the pressure sensor arranged on the upper surface of the square sleeve is touched. The pressure sensor sends the pressure information to the driving unit. The driving unit sends a command to the delivery pump to start the delivery pump, so that the delivery pump can synchronously deliver the disinfectant in the liquid storage tank to the toe holes of the toe plate through the liquid delivery pipe, and spray the disinfectant onto the disinfection cotton through the spray hole, thereby adding disinfectant to the disinfection cotton, thereby ensuring that in the process of refined disinfection, the amount of disinfectant added to the disinfection cotton for pavement disinfection can ensure the next pavement disinfection.

[0034] 7) The intelligent light source foot support device for treating foot diseases according to 6), wherein:

[0035] The driving unit includes a microprocessor and a servo motor arranged in a foot support box. The servo motor and the pressure sensor are electrically connected to the microprocessor respectively. The output shaft of the servo motor is coaxially connected to the driving shaft. The driving shaft is coaxially connected to a threaded rod extending along the height direction of the foot support box to the foot support plate. A nut sleeve that moves up and down along the axial direction of the threaded rod is threadedly connected to the threaded rod, and the nut sleeve is fixedly connected to the disinfection rod.

[0036] In order to realize the up and down movement of the disinfection rod in the above technical solution, the present invention drives the threaded rod to rotate through the servo motor via the driving shaft. The spiral cooperation between the threaded rod and the nut sleeve enables the nut sleeve to move up and down along the axial direction of the threaded rod, and drives the disinfection rod to move up and down along the outer side of the support plate. At the same time, the disinfection rod is driven to pass through the strip hole of the foot support plate and disinfect the sole of the patient's foot through the disinfection cotton. When the disinfectant stored in the disinfection cotton is squeezed and moves downward along the foot support box, after the disinfection rod touches the pressure sensor, disinfectant is added to the disinfection cotton, and the patient's toes are disinfected.

[0037] 8) The intelligent light source foot support device for treating foot diseases according to 7), wherein:

[0038] A first bevel gear is fixed on the drive shaft. The up-and-down massage structure includes a movable frame that can move up and down along the height direction of the footrest box body. A second bevel gear that can mesh with the first bevel gear is provided on the movable frame. A rotating rod is coaxially connected inside the second bevel gear. The rotating rod is linked with a jacking massage unit arranged on the movable frame. The rotating rod can drive the jacking massage unit arranged on the movable frame to perform up-and-down massage on the patient's foot position.

[0039] During use, the movable frame moves upward along the height direction of the footrest box body. During the movement of the movable frame, the movable frame will drive the jacking massage unit, the rotating rod and the second bevel gear to move upward synchronously. Since the position of the second bevel gear corresponds to the position of the first bevel gear, the second bevel gear can mesh with the first bevel gear during the upward movement. At this time, when the drive shaft rotates, it drives the first bevel gear to rotate. The first bevel gear drives the second bevel gear to rotate, and the second bevel gear drives the rotating rod to rotate, so as to be linked with the jacking massage unit and perform up-and-down massage on the patient's foot position.

[0040] Therefore, the present invention uses a servo motor to synchronously drive the rotating rod and the threaded rod to rotate. The rotation of the rotating rod drives the jacking massage unit to perform up-and-down massage on the patient's foot position. The threaded rod drives the disinfection rod and the liquid delivery pipe to be linked to realize surface disinfection and toe disinfection of the patient's foot position, reducing the workload of medical staff.

[0041] 9) The intelligent light source footrest device applied to the treatment of foot diseases according to 8), wherein:

[0042] An inner base is provided at the inner bottom of the footrest box body. A telescopic pump is installed inside the inner base. The telescopic shaft of the telescopic pump extends upward through the inner base. Guide columns corresponding to the movable frame are respectively provided on both sides of the inner base. The movable frame includes two columns for the guide columns to be inserted and slidably connected. The bottoms of the two columns are connected through a bottom plate. The bottom plate is fixed to the free end of the telescopic shaft. The tops of the two columns are connected through a connecting plate. The connecting plate is connected to the jacking massage unit.

[0043] During use, the telescopic shaft of the telescopic pump drives the bottom plate to move up and down along the height direction of the footrest box body. During the movement, the sliding fit between the guide column and the column is used to guide the up-and-down movement of the movable frame along the height direction, avoiding the displacement phenomenon of the movable frame during the up-and-down movement along the height direction. At the same time, the movable frame is connected to the jacking massage unit through its connecting plate, realizing the connection of the jacking massage unit through the movable frame and ensuring the operation of the jacking massage unit.

[0044] 10) The intelligent light source footrest device applied to the treatment of foot diseases according to 9), wherein:

[0045] The jacking massage unit includes a massage rod and multiple groups of sliders. Slide holes for the multiple groups of sliders to slide and connect are formed on the side surface of the connecting plate. A directional hole is formed on the slider, and the inner diameter of the directional hole is equal to the inner diameter of the strip-shaped hole. A directional block is slidably connected in the directional hole, and an inner hole for the massage rod to pass through is provided in the directional block. The bottom end of the massage rod is hinged to one end of the connecting rod;

[0046] Multiple crankshaft segments are provided on the rotating rod, and each crankshaft segment corresponds to the positions of multiple groups of massage rods respectively. The crankshaft segment includes an arc-shaped plate, a rotating rod, and a waist-shaped block. The arc-shaped plate is connected to the end of the rotating rod. The other end of the connecting rod is fixedly connected with a waist-shaped block, and the waist-shaped block is rotatably connected to the rotating rod.

[0047] 11) A usage method of an intelligent light source foot support device applied to the treatment of foot diseases includes the following steps:

[0048] Step 1: Place the patient's foot position on the foot support plate, and integrally fix the patient's foot position through the elastic strip and the toe separator. Point-fix the front part and the rear part of the patient's foot position through the short elastic rubber rod and the long elastic rubber rod;

[0049] Step 2: Start the servo motor. The servo motor drives the disinfection cotton on the disinfection rod to move upward along the height direction of the foot support box body through the screw connection of the threaded rod and the nut sleeve, and passes through the strip-shaped hole on the foot support plate to disinfect the bottom surface of the patient's foot position; when the disinfection rod moves downward along the height direction of the foot support box body under the drive of the servo motor until it touches the pressure sensor, the pressure sensor sends pressure information to the microprocessor, and the microprocessor issues an instruction to the delivery pump. The delivery pump conveys the disinfectant liquid in the liquid storage tank to the toe separator through the liquid delivery pipe respectively to disinfect the patient's toe position in the toe separation hole, and sprays the disinfectant liquid to the disinfection cotton through the spray hole for liquid adding operation. Thereafter, treat the positions on both sides of the patient's toes by moving the toe separating block;

[0050] Step 3: According to the actual treatment situation of the patient, the telescopic pump can be selectively started. The telescopic pump drives the moving frame to move up and down along the height direction of the foot support box body. When the moving frame moves upward to the first bevel gear, the second bevel gear on the moving frame meshes with the first bevel gear. The first bevel gear is driven to rotate by the drive shaft, thereby driving the second bevel gear to rotate. During the rotation of the rotating rod, the crankshaft segments provided on the rotating rod are driven to cyclically push the four massage rods, so that the massage rods pass through the strip-shaped holes and reciprocally massage the two sides of the patient's foot position up and down.

[0051] Compared with the prior art, the present invention also has the following technical effects:

[0052] The present invention is more intelligent. The transfer pump is started through a pressure sensor to synchronously transfer the disinfectant liquid to the toe separation holes and the disinfection cotton. The toe separation holes are used to separate the toes at the position of the patient's foot, effectively disinfecting the position of the patient's foot in all directions with high precision to avoid cross-infection of germs. At the same time, the amount of disinfectant liquid on the disinfection cotton is maintained, effectively enabling the toes and the soles of the feet to fully contact the disinfectant liquid. Similarly, the workload of medical staff is also reduced. The servo motor is used to synchronously drive the linkage effects of massage, disinfection, and adding disinfectant liquid. The massage rod driven by the crankshaft cycle in the jacking massage unit massages and stimulates both sides of the inner bottom surface of the patient's foot position to distract the patient's attention during treatment, relieve the pain of the patient during treatment, and at the same time, delay the soreness of the foot muscles, which is more comfortable than the long-term compression or toe separation in the prior art. BRIEF DESCRIPTION OF THE DRAWINGS

[0053] Figure 1 FIG. is a schematic structural diagram of an intelligent light source foot support device applied to the treatment of foot diseases according to the present invention;

[0054] Figure 2 is Figure 1 a cross-sectional view taken along A-A in

[0055] Figure 3 is Figure 2 a schematic structural diagram of the massage linkage structure in

[0056] Figure 4 is Figure 3 a partial enlarged view at B in

[0057] Figure 5 is Figure 1 a partial enlarged view at C1 in DETAILED DESCRIPTION OF THE EMBODIMENTS

[0058] The following is a further detailed description through specific embodiments:

[0059] The reference numerals in the accompanying drawings of the specification include: foot support box body 1, foot support plate 2, raised block 3, short elastic rubber rod 4, long elastic rubber rod 5, elastic strip 6, toe separation plate 7, sponge pad 8, strip-shaped hole 9, support plate 10, square sleeve 11, liquid delivery pipe 12, delivery pump 13, liquid storage tank 14, inner base 15, telescopic rod 16, bottom plate 17, guide post 18, servo motor 19, drive shaft 20, threaded rod 21, nut sleeve 22, disinfection rod 23, disinfection cotton 24, massage rod 25, connecting plate 26, column 27, ball bearing 28, rotating rod 29, sliding hole 30, slider 31, connecting rod 32, orientation hole 33, injection hole 34, branch pipe 35, cotton absorbing pad 36, diversion pipe 37, liquid outlet pipe 38.

[0060] Embodiment 1

[0061] See Figure 1and Figure 2 As shown, the intelligent light source foot support device used for treating foot diseases in this embodiment 1 includes a foot support box 1, the upper surface of the foot support box 1 has a foot support fixing structure for limiting the position of the foot, the foot support box 1 has a board surface disinfection structure for paving and disinfecting the foot position, and a toe disinfection structure for fine disinfection of the foot position, the foot support box 1 has upper and lower massage structures located on both sides of the board surface disinfection structure, and the upper and lower massage structures, the board surface disinfection structure and the toe disinfection structure are driven and operated synchronously.

[0062] This solution uses a foot support fixing structure to limit the position of the patient's foot to prevent the patient from shifting during treatment and affecting the treatment effect of medical staff; the board disinfection structure is used to disinfect the foot position to achieve large-scale disinfection of the patient's foot position to avoid cross-infection of pathogens in the patient's foot position; the toe disinfection structure is used to perform fine disinfection of the foot position to avoid missing disinfection positions on the toes. Therefore, this solution can comprehensively disinfect the foot position through the board disinfection structure and the toe disinfection structure, realize intelligent disinfection work before positioning the initial treatment, and medical staff do not need to perform disinfection again, reducing the workload of medical staff.

[0063] In addition, when medical staff are treating the patient's foot, the patient's foot will produce a stress response due to stimulation. Therefore, in addition to using the foot support fixing structure to limit the patient's foot position, the upper and lower massage structures that are driven and operated synchronously with the board disinfection structure and the toe disinfection structure perform up and down stimulating massage on both sides of the lower surface of the foot, which can divert the patient's attention from the pain, reduce the patient's self-perceived pain, and also facilitate medical staff to treat the patient's foot.

[0064] More specifically, the foot support fixing structure in the present solution includes a foot support plate 2 arranged on the top of the foot support box 1, and the foot support plate 2 is provided with a strip hole 9 penetrating the top of the foot support box 1 along its radial direction, and the board surface disinfection structure moves toward the strip hole 9 and passes through the strip hole 9, so that the board surface disinfection structure squeezes out the stored disinfectant through the strip hole 9 and performs paving disinfection on the foot position;

[0065] Among them, the board surface disinfection structure includes a driving unit that is synchronously connected to the toe disinfection structure, and a disinfection rod 23 arranged in the foot support box 1. The disinfection rod 23 is attached to the side facing the strip hole 9 with disinfection cotton 24 that can absorb and store disinfectant. The disinfection cotton 24 passes through the strip hole 9 and is squeezed by the strip hole 9 to squeeze out the stored disinfectant.

[0066] At the same time, in addition to the above-mentioned disinfection by disinfectant, this solution can also design a light on the foot support plate 2, which can dry the skin through the light (such as red and blue light), and can also play an anti-inflammatory, sterilizing and astringent role. In order to make the patient's foot position more comfortable when contacting the foot support plate 2, this solution is provided with a sponge pad 8 on the rear part of the upper surface of the foot support to make the patient's foot position feel comfortable.

[0067] The foot support plate 2 of the present solution is designed to be convenient for placing the patient's foot. The surface of the foot support plate 2 has a strip hole 9 along its radial direction that is connected to the internal space of the foot support box 1. The position of this strip hole 9 corresponds to the disinfection rod 23 in the internal space of the foot support box 1. When the driving unit is running, the disinfection rod 23 in the board surface disinfection structure is driven to move toward the strip hole 9 and pass through the strip hole 9. In the process of the disinfection rod 23 passing through the strip hole 9, the disinfection cotton 24 on the side of the disinfection rod 23 is squeezed by the aperture of the strip hole 9, forcing the disinfectant stored in the disinfection cotton 24 itself to be squeezed out. The extruded disinfectant is used to pave and disinfect the bottom surface of the patient's foot position, thereby sterilizing the patient's foot position and avoiding cross infection of bacteria at the patient's foot position.

[0068] See also Figure 1 As shown, in the present embodiment, raised blocks 3 are respectively provided on both sides of the foot support plate 2, and short elastic rubber rods 4 are provided on the sides of the raised blocks 3 facing the foot support plate 2, and the ends of the short elastic rubber rods 4 away from the raised blocks 3 can abut against the rear end side of the patient's foot position, and long elastic rubber rods 5 are provided on the raised blocks 3, and the long elastic rubber rods 5 are perpendicularly arranged to the short elastic rubber rods 4, and the long elastic rubber rods 5 extend along the axial direction of the foot support plate 2 and abut against the front end side of the patient's foot position.

[0069] In order to better adapt to the foot shape of each patient and better fix it, the short elastic rubber rod 4 and the long elastic rubber rod 5 designed in this scheme can fix the rear end and the front end of the patient's foot position. The short elastic rubber rod 4 and the long elastic rubber rod 5 are supported by the raised block 3. The elastic potential energy of the short elastic rubber rod 4 is clamped between the raised block 3 and the rear end side of the patient's foot position, and the short elastic rubber rod 4 is used to limit the rear end of the patient's foot position; the elastic potential energy of the long elastic rubber rod 5 is clamped between the raised block 3 and the front end side of the patient's foot position, and the long elastic rubber rod 5 is used to limit the front end of the patient's foot position, thereby fixing the front end and the rear end of the patient's foot position, reducing the displacement phenomenon caused by pain when the patient is treated for foot diseases.

[0070] Meanwhile, an arc-shaped elastic strip 6 is provided on the footrest plate 2, and several toe separating blocks are arranged at the front end of the elastic strip 6 and can slide along the strip-shaped holes. A toe separating plate 7 is connected to the top between adjacent toe separating blocks. A toe separating hole for the patient's toes to insert is formed between the toe separating plate 7 and the adjacent toe separating blocks. All the toe separating plates 7 are respectively communicated with the toe disinfection structure, and the toe disinfection structure sprays disinfectant liquid into the toe separating holes to the position of the patient's foot for fine disinfection.

[0071] In addition to the above technical solution that uses the short elastic rubber rod 4 and the long elastic rubber rod 5 to clamp and fix the position of the patient's foot, this solution also uses the arc-shaped elastic strip 6 to limit the position of the patient's foot as a whole, and fixes the toes at the position of the patient's foot through several toe separating holes of the toe plate, which is convenient for the toe disinfection structure to spray disinfectant liquid into the toe separating holes to finely disinfect the toe parts at the position of the patient's foot, thereby reducing the disinfection work of the medical staff in the early stage of treatment and reducing the workload of the medical staff in treatment.

[0072] Meanwhile, according to the verruca plantaris or corn at the adjacent position of the toe part to be treated on the patient's foot, by moving the toe separating blocks, the verruca plantaris or corn in the gap between the toes is exposed, which is convenient for the medical staff to perform treatment with both hands. At the same time, after the treatment, the toes can be kept separated for a long time, avoiding the toes of the treated verruca plantaris or corn from touching each other and affecting the treatment effect.

[0073] See Figure 2 and Figure 5 As shown in

[0074] In this embodiment 1, the toe disinfection structure includes a liquid storage tank 14 arranged in the footrest box body 1 and used for storing disinfectant liquid. A liquid delivery pipe 12 extending outward to the toe separating plate 7 is arranged in the liquid storage tank 14. A delivery pump 13 is installed on the liquid delivery pipe 12. The liquid delivery pipe 12 is arranged in a support plate 10 located in the footrest box body 1;

[0075] When in use, the delivery pump 13 is started, and the delivery pump 13 introduces the disinfectant in the liquid storage tank 14 into the liquid delivery pipe 12. The liquid delivery pipe 12 delivers the disinfectant to the branch pipe 35 located in the toe-parting plate 7. The branch pipe 35 delivers the disinfectant to the liquid outlet pipe 38 located at the top of the toe-parting plate 7. The liquid outlet pipe 38 diverts the disinfectant and flows to the corresponding absorbent pad 36 through several guide pipes 37. After the absorbent pad 36 absorbs the disinfectant to a certain amount of liquid, because the absorbent pad 36 is arranged on the inner top wall of the toe-parting hole and the water gravity of the disinfectant, the disinfectant will drip into the toe-parting hole through the absorbent pad 36. In the process of dripping, the toes in the toe-parting hole will be finely disinfected by dripping, so that the disinfectant can evenly and comprehensively disinfect the toes, reducing the workload of medical staff. At the same time, it also reduces the discomfort caused by the long contact time between medical staff and patients with athlete's foot.

[0076] At the same time, a square sleeve 11 is sleeved on the support plate 10, and a connecting rod 32 fixed in the inner space of the foot support box 1 is provided on the square sleeve 11. A pressure sensor located below the disinfection rod 23 is provided on the top of the square sleeve 11. The pressure sensor can abut against the disinfection rod 23 and start the delivery pump 13 through the drive unit. The support plate 10 is slidably connected to the disinfection rod 23 toward the side of the disinfection rod 23. The support plate 10 is provided with several injection holes 34 toward the side of the disinfection rod 23 and along the height direction of the foot support box 1. All the injection holes 34 are connected to the liquid delivery pipe 12, and the disinfectant is sprayed toward the disinfection cotton 24 on the disinfection rod 23 through all the injection holes 34.

[0077] This solution is based on the above technical solution, and realizes the operation of disinfecting the patient's toes and adding disinfectant to the disinfection cotton 24 for disinfecting the pavement at the foot position simultaneously through the liquid delivery tube 12. The support plate 10 is fixed by the square sleeve 11, and the liquid delivery tube 12 is fixed by the support plate 10; wherein, several injection holes 34 connected to the liquid delivery tube 12 are opened and arranged on the side of the support plate 10 facing the disinfection rod 23. When the delivery pump 13 is started, during the process of the liquid delivery tube 12 delivering disinfectant to the branch pipe 35 on the toe plate 7, part of the disinfectant will be sprayed outward through the injection holes 34 and sprayed onto the disinfection cotton 24, and the disinfection cotton 24 will absorb and store the disinfectant;

[0078] During this process, in this solution, the driving unit drives the disinfection rod 23 to move downward. During the downward movement of the disinfection rod 23, it will touch the pressure sensor arranged on the upper surface of the square sleeve 11. The pressure sensor sends the pressure information to the driving unit, and the driving unit issues an instruction to the delivery pump 13 to start the delivery pump 13, so that the delivery pump 13 conveys the disinfectant liquid in the liquid storage tank 14 through the liquid delivery pipe 12 to the toe holes of the toe separating plate 7 synchronously and sprays the disinfectant liquid onto the disinfection cotton 24 through the spray holes 34 to add disinfectant liquid to the disinfection cotton 24, thereby ensuring that during the refined disinfection process, the amount of disinfectant liquid added to the disinfection cotton 24 for paving surface disinfection guarantees the next paving surface disinfection.

[0079] In addition, in this solution, the driving unit includes a microprocessor and a servo motor 19 arranged in the footrest box body 1. The servo motor 19 and the pressure sensor are electrically connected to the microprocessor respectively. The output shaft of the servo motor 19 is coaxially connected with a driving shaft 20. The driving shaft 20 is coaxially connected with a threaded rod 21 extending along the height direction of the footrest box body 1 to the footrest plate 2. A nut sleeve 22 that moves up and down along the axial direction of the threaded rod 21 is threadedly connected to the threaded rod 21. The nut sleeve 22 is fixedly connected to the disinfection rod 23.

[0080] In order to realize the up and down movement of the disinfection rod 23 in the above technical solution, in this solution, the servo motor 19 drives the threaded rod 21 to rotate through the driving shaft 20. Due to the spiral cooperation between the threaded rod 21 and the nut sleeve 22, the nut sleeve 22 can move up and down along the axial direction of the threaded rod 21 and drive the disinfection rod 23 to move up and down along the outer side surface of the support plate 10. At the same time, it drives the disinfection rod 23 to pass through the strip-shaped hole 9 of the footrest plate 2 and disinfect the bottom surface of the patient's foot position through the disinfection cotton 24. When the disinfectant liquid stored in the disinfection cotton 24 is squeezed and moves downward along the footrest box body 1, after the disinfection rod 23 touches the pressure sensor, disinfectant liquid is added to the disinfection cotton 24 and the patient's toes are disinfected.

[0081] A first bevel gear is fixed on the driving shaft 20. The up and down massage structure includes a moving frame that can move up and down along the height direction of the footrest box body 1. A second bevel gear that can mesh with the first bevel gear is arranged on the moving frame. A rotating rod 29 is coaxially connected inside the second bevel gear. The rotating rod 29 is linked with a jacking massage unit arranged on the moving frame. The rotating rod 29 can drive the jacking massage unit arranged on the moving frame to massage the patient's foot position up and down.

[0082] In use, the moving frame moves upward along the height direction of the footrest box body 1. During the movement of the moving frame, the moving frame will drive the lifting massage unit, the rotating rod 29 and the second bevel gear to move upward synchronously. Since the position of the second bevel gear corresponds to the position of the first bevel gear, the second bevel gear can mesh with the first bevel gear during the upward movement. At this time, when the drive shaft 20 rotates, it drives the first bevel gear to rotate. The first bevel gear drives the second bevel gear to rotate, and the second bevel gear drives the rotating rod 29 to rotate, so as to be linked with the lifting massage unit and perform up and down massage on the patient's foot position;

[0083] Therefore, in this solution, the servo motor 19 can drive the rotating rod 29 and the threaded rod 21 to rotate synchronously. The rotation of the rotating rod 29 drives the lifting massage unit to perform up and down massage on the patient's foot position. The threaded rod 21 drives the disinfection rod 23 and the liquid delivery pipe 12 to be linked to realize surface disinfection and toe disinfection of the patient's foot position, reducing the workload of medical staff.

[0084] An inner base 15 is provided at the inner bottom of the footrest box body 1. A telescopic pump is installed inside the inner base 15. The telescopic shaft of the telescopic pump extends upward through the inner base 15. Guide columns 18 corresponding to the moving frame are respectively provided on both sides of the inner base 15. The moving frame includes two columns 27 for the guide columns 18 to be inserted and slidably connected. The bottom parts of the two columns 27 are communicated through a bottom plate 17. The bottom plate 17 is fixed to the free end of the telescopic shaft. The tops of the two columns 27 are connected through a connecting plate 26, and the connecting plate 26 is connected to the lifting massage unit.

[0085] In use, the telescopic shaft of the telescopic pump drives the bottom plate 17 to move up and down along the height direction of the footrest box body 1. During the movement, the sliding fit between the guide column 18 and the column 27 is used to guide the up and down movement of the moving frame along the height direction, avoiding the displacement of the moving frame during the up and down movement along the height direction. At the same time, the moving frame is connected to the lifting massage unit through its connecting plate 26, realizing the connection of the lifting massage unit through the moving frame and ensuring the operation of the lifting massage unit.

[0086] In order to make the rotation of the rotating rod 29 more stable, a mounting hole is opened on the column 27 near the second bevel gear, and a ball bearing 28 is installed in the mounting hole. The rotating rod 29 passes through the ball bearing 28 and is fixed.

[0087] Embodiment 2

[0088] See Figure 3 and Figure 4As shown, different from Embodiment 1, in this Embodiment 2, the lifting massage unit includes a massage rod 25 and multiple groups of sliders 31. Slide holes 30 for the multiple groups of sliders 31 to slidably connect are formed on the side surface of the connecting plate 26. A directional hole 33 is formed on the slider 31, and the inner diameter of the directional hole 33 is equal to the inner diameter of the strip-shaped hole 9. A directional block is slidably connected in the directional hole 33, and an inner hole for the massage rod 25 to pass through is formed in the directional block. The bottom end of the massage rod 25 is hinged to one end of the connecting rod 32;

[0089] Multiple crankshaft sections are provided on the rotating rod 29, and each crankshaft section corresponds to the positions of multiple groups of massage rods 25 respectively. The crankshaft section includes an arc-shaped plate, a rotating rod, and a waist-shaped block. The arc-shaped plate is connected to the end of the rotating rod. The other end of the connecting rod 32 is fixedly connected with a waist-shaped block, and the waist-shaped block is rotatably connected to the rotating rod.

[0090] The usage method of the intelligent light source footrest device applied to the treatment of foot diseases, based on the solutions of Embodiment 1 and Embodiment 2, includes the following steps:

[0091] Step 1: Place the patient's foot on the footrest plate 2, and integrally fix the patient's foot position through the elastic strip 6 and the toe separator 7. Point-fix the front part and the rear part of the patient's foot position through the short elastic rubber rod 4 and the long elastic rubber rod 5;

[0092] Step 2: Start the servo motor 19. The servo motor 19 drives the disinfection cotton 24 on the disinfection rod 23 to move upward along the height direction of the footrest box body 1 through the screw connection between the threaded rod 21 and the nut sleeve 22, and passes through the strip-shaped hole 9 on the footrest plate 2 to disinfect the bottom surface of the patient's foot position; when the disinfection rod 23 moves downward along the height direction of the footrest box body 1 under the drive of the servo motor 19 until it contacts the pressure sensor, the pressure sensor sends pressure information to the microprocessor, and the microprocessor issues an instruction to the delivery pump 13. The delivery pump 13 delivers the disinfectant liquid in the liquid storage tank 14 to the toe separator 7 through the liquid delivery pipe 12 respectively to disinfect the patient's toe position in the toe separation hole, and sprays the disinfectant liquid to the disinfection cotton 24 through the spray hole 34 for liquid addition operation. Thereafter, the toe positions on both sides of the foot are treated by moving the toe separating block;

[0093] Step 3: According to the actual treatment situation of the patient, the telescopic pump can be selectively started. The telescopic pump drives the moving frame to move up and down along the height direction of the footrest box body 1. When the moving frame moves upward to the first bevel gear, the second bevel gear on the moving frame meshes with the first bevel gear. The first bevel gear is driven to rotate by the drive shaft 20, thereby driving the second bevel gear to rotate. The second bevel gear drives the rotating rod 29 to rotate. During the rotation of the rotating rod 29, the crankshaft section provided on the rotating rod 29 cyclically pushes the four massage rods 25, so that the massage rods 25 pass through the strip-shaped hole 9 and reciprocally massage the two sides of the patient's foot position up and down.

[0094] This solution is more intelligent. The start of the transfer pump 13 is realized through a pressure sensor, and the disinfectant liquid is simultaneously transferred to the toe separation holes and the disinfection cotton 24. Through the toe separation holes, the toes at the patient's foot position are separated, effectively disinfecting the patient's foot position in all directions and in a refined manner to avoid cross-infection of germs. At the same time, the amount of disinfectant liquid on the disinfection cotton 24 is maintained, effectively enabling the toes and the soles of the feet to fully contact the disinfectant liquid. Similarly, the workload of medical staff is also reduced. The servo motor 19 is used to synchronously drive the linkage effects of massage, disinfection, and adding disinfectant liquid. The massage rod 25 driven by the crank cycle in the lifting massage unit massages and stimulates both sides of the inner bottom surface of the patient's foot position to distract the patient's attention during treatment, relieve the pain of the patient during treatment, and at the same time, can delay the soreness of the foot muscles, with better comfort compared to the long-term compression or toe separation in the prior art.

[0095] The above are only embodiments of the present invention. Specific technical solutions and / or common knowledge such as characteristics well known in the solution are not described in detail here. It should be noted that for those skilled in the art, without departing from the technical solution of the present invention, several deformations and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the implementation effect of the present invention and the practicality of the patent. The protection scope required by this application should be based on the content of its claims, and the specific implementation manners described in the specification can be used to interpret the content of the claims.

Claims

1. An intelligent light source foot support device for treating foot diseases, characterized in that: The invention comprises a foot support box, the upper surface of which is provided with a foot support fixing structure for limiting the position of the foot, the foot support box is provided with a board surface disinfection structure for paving and disinfecting the foot, and a toe disinfection structure for fine disinfection of the foot, the foot support box is provided with upper and lower massage structures located on both sides of the board surface disinfection structure, and the upper and lower massage structures, the board surface disinfection structure and the toe disinfection structure are driven and operated synchronously.

2. The intelligent light source foot support device for treating foot diseases according to claim 1 is characterized in that: The foot support fixing structure includes a foot support plate arranged on the top of the foot support box, the foot support plate is provided with a strip hole penetrating the top of the foot support box along its radial direction, the board surface disinfection structure moves toward the strip hole and passes through the strip hole, so that the board surface disinfection structure squeezes out the stored disinfectant through the strip hole and performs paving disinfection on the foot position; Among them, the board surface disinfection structure includes a driving unit that is synchronously connected to the toe disinfection structure, and a disinfection rod arranged in the foot support box. The disinfection rod has disinfection cotton that can absorb and store disinfectant attached to the side facing the strip hole. The disinfection cotton passes through the strip hole and is squeezed by the strip hole to squeeze out the stored disinfectant.

3. The intelligent light source foot support device for treating foot diseases according to claim 2 is characterized in that: The two sides of the foot support plate are respectively provided with raised blocks, and the side of the raised block facing the foot support plate is provided with a short elastic rubber rod, and the end of the short elastic rubber rod away from the raised block can abut against the rear end side of the patient's foot position, and the raised block is provided with a long elastic rubber rod, and the long elastic rubber rod is arranged perpendicular to the short elastic rubber rod, and the long elastic rubber rod extends along the axial direction of the foot support plate and abuts against the front end side of the patient's foot position; The foot support plate is provided with an arc-shaped elastic strip and several toe-split blocks which are arranged at the front end of the elastic strip and can slide along the strip-shaped hole. The tops of adjacent toe-split blocks are connected with toe-split plates. Toe-split holes for inserting the patient's toes are formed between the toe-split plates and adjacent toe-split blocks. All toe-split plates are respectively connected to a toe disinfection structure, and the toe disinfection structure sprays disinfectant into the toe-split holes to the patient's foot for fine disinfection.

4. The intelligent light source foot support device for treating foot diseases according to claim 3 is characterized in that: The toe disinfection structure comprises a liquid storage tank disposed in the foot support box and used to store disinfectant, wherein the liquid storage tank is provided with a liquid delivery pipe extending outward to the toe plate, a delivery pump is installed on the liquid delivery pipe, and the liquid delivery pipe is disposed in a support plate located in the foot support box; The end of the infusion delivery pipe away from the liquid storage tank is connected to a branch pipe located in the toe plate, the branch pipe extends toward the top of the toe plate and is connected to the liquid outlet pipe located at the top of the toe plate, the liquid outlet pipe is evenly distributed with a plurality of guide pipes along its axial direction, the pipe openings of all the guide pipes are respectively directed toward the cotton suction pads arranged in the top of the toe plate, and the cotton suction pads are arranged on the inner top wall of the toe hole.

5. The intelligent light source foot support device for treating foot diseases according to claim 4 is characterized in that: A square sleeve is sleeved on the support plate, and a connecting rod fixed in the inner space of the foot support box is provided on the square sleeve. A pressure sensor located below the disinfection rod is provided on the top of the square sleeve, and the pressure sensor can abut against the disinfection rod and start the delivery pump through the driving unit. The support plate is slidably connected to the disinfection rod on the side facing the disinfection rod, and several spray holes are respectively opened on the support plate on the side facing the disinfection rod and along the height direction of the foot support box. All the spray holes are connected to the liquid delivery pipe, and disinfectant is sprayed toward the disinfection cotton on the disinfection rod through all the spray holes.

6. The intelligent light source foot support device for treating foot diseases according to claim 5, characterized in that: The driving unit includes a microprocessor and a servo motor arranged in a foot support box. The servo motor and the pressure sensor are electrically connected to the microprocessor respectively. The output shaft of the servo motor is coaxially connected to the driving shaft. The driving shaft is coaxially connected to a threaded rod extending along the height direction of the foot support box to the foot support plate. A nut sleeve that moves up and down along the axial direction of the threaded rod is threadedly connected to the threaded rod, and the nut sleeve is fixedly connected to the disinfection rod.

7. The intelligent light source foot support device for treating foot diseases according to claim 6, characterized in that: A first bevel gear is fixed on the driving shaft, and the up and down massage structure includes a movable frame that can move up and down along the height direction of the foot support box, and the movable frame is provided with a second bevel gear that can mesh with the first bevel gear. A rotating rod is coaxially connected to the second bevel gear, and the rotating rod is linked to the lifting massage unit arranged on the movable frame. The rotating rod can drive the lifting massage unit arranged on the movable frame to massage the patient's foot position up and down.

8. The intelligent light source foot support device for treating foot diseases according to claim 7, characterized in that: An inner base is provided at the bottom of the foot support box, a telescopic pump is installed in the inner base, a telescopic shaft of the telescopic pump passes through the inner base and extends upward, guide columns corresponding to the movable frame are respectively provided on both sides of the inner base, the movable frame includes two columns for the guide columns to be inserted and slidably connected, the bottoms of the two columns are connected through a bottom plate, the bottom plate is fixed to the free end of the telescopic shaft, the tops of the two columns are connected through a connecting plate, and the connecting plate is connected to the lifting massage unit.

9. The intelligent light source foot support device for treating foot diseases according to claim 8, characterized in that: The lifting massage unit comprises a massage rod and a plurality of groups of sliders, a sliding hole for sliding connection of the plurality of groups of sliders is provided on the side of the connecting plate, a directional hole is provided on the slider, the aperture of the directional hole is equal to the inner diameter of the strip hole, a directional block is slidably connected in the directional hole, the directional block has an inner hole for the massage rod to pass through, and the bottom end of the massage rod is hinged to one end of the connecting rod; The rotating rod is provided with multiple crankshaft sections, each crankshaft section corresponds to the position of multiple groups of massage rods, the crankshaft section includes an arc plate, a rotating rod and a waist-shaped block, the arc plate is connected to the end of the rotating rod, the other end of the connecting rod is fixedly connected to the waist-shaped block, and the waist-shaped block is rotatably connected to the rotating rod.

10. A method for using the intelligent light source foot support device for treating foot diseases, according to the intelligent light source foot support device for treating foot diseases according to claims 1-9, characterized in that: The following steps are involved: Step 1: Place the patient's foot on the foot support board, fix the patient's foot as a whole through the elastic strip and the toe-split board, and fix the front and rear ends of the patient's foot through the short elastic rubber rod and the long elastic rubber rod; Step 2: Start the servo motor, which is connected to the nut sleeve by the threaded rod, and drives the disinfection cotton on the disinfection rod to move upward along the height direction of the foot support box, and pass through the strip hole on the foot support plate to disinfect the sole of the patient's foot; When the disinfection rod moves downward along the height direction of the foot support box under the drive of the servo motor until it contacts the pressure sensor, the pressure sensor sends pressure information to the microprocessor, and the microprocessor sends instructions to the delivery pump, and the delivery pump delivers the disinfectant in the liquid storage tank to the toe plate through the liquid delivery pipe to disinfect the patient's toe position in the toe hole, and sprays the disinfectant to the disinfection cotton through the spray hole to perform liquid addition operation, and then treats the positions on both sides of the toes of the foot by moving the toe block; Step three, according to the actual treatment situation of the patient, the telescopic pump can be selectively started, and the telescopic pump drives the movable frame to move up and down along the height direction of the foot support box. When the movable frame moves upward to the first bevel gear, the second bevel gear on the movable frame is meshed with the first bevel gear, and the first bevel gear is driven to rotate by the driving shaft, thereby driving the second bevel gear to rotate. The rotation of the second bevel gear drives the rotating rod to rotate. During the rotation of the rotating rod, the crankshaft section set on the rotating rod is driven to circulate and push the four massage rods, so that the massage rods pass through the bar holes and perform reciprocating up and down massage on both sides of the patient's foot.

Citation Information

Patent Citations

  • Foot supporting mechanism for foot skin disease treatment

    CN215689505U