Auxiliary dialysis phototherapy device and method of operation

By designing an auxiliary dialysis phototherapy device, the problems of inconvenient installation of dialysis tubes and poor heat dissipation have been solved, thereby improving the effectiveness of dialysis treatment and ensuring the health of users.

CN118236576BActive Publication Date: 2026-08-25SUZHOU SHIZHIGUAN MEDICAL EQUIP CO LTD
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Patent Information

Application Number
CN202410423687.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-09
Publication Date
2026-08-25
Estimated Expiration
2044-04-09

AI Technical Summary

Technical Problem

Existing dialysis phototherapy equipment has an unreasonable structure, inconvenient dialysis tubing installation, and poor heat dissipation, which affects users' health.

Method used

An auxiliary dialysis phototherapy device was designed, including a base, a heat sink bracket, a metal heat sink, a phototherapy lamp assembly, and an operation panel. It adopts a multi-layer heat dissipation structure and a temperature sensor to ensure that the dialysis tube is easy to install and keeps the temperature low.

Benefits of technology

It enhances the effectiveness of dialysis treatment, accelerates metabolism, and helps eliminate waste and toxins. The equipment has a reasonable structure, occupies a small area, and is easy to operate and safe and reliable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an auxiliary dialysis phototherapy device and an operation method thereof. The auxiliary dialysis phototherapy device comprises a base, a heat dissipation disc bracket, a metal heat dissipation disc, a phototherapy lamp group and an operation panel. The heat dissipation disc bracket is arranged on the top of the base. The metal heat dissipation disc is arranged on the top of the heat dissipation disc bracket. The outer side of the metal heat dissipation disc is provided with heat dissipation fins, and the top of the outer side is provided with a circular lamp strip groove. The inner top of the metal heat dissipation disc is provided with a circuit board, and the inner bottom of the metal heat dissipation disc is provided with a radiator. The phototherapy lamp group comprises an outer side lamp strip, an inner side lamp strip and a bottom lamp plate connected with the circuit board. The upper portion of the phototherapy lamp group is provided with a groove-shaped lamp shade. The shape and position of the groove-shaped lamp shade are matched with the lamp strip groove. The dialysis tube is arranged in the groove of the groove-shaped lamp shade through a dialysis tube mounting hole. The application can enhance the treatment effect of dialysis, help to accelerate metabolism, help the body to discharge waste and toxins, and has reasonable equipment structure, small floor area, convenient operation, low temperature, safe and reliable use.
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Description

Technical Field

[0001] This invention relates to an auxiliary dialysis phototherapy device and its operating method. Background Technology

[0002] Dialysis is a medical procedure used to treat kidney failure. It becomes a necessary treatment option when the kidneys are unable to effectively remove waste and water from the body. This can be caused by chronic kidney disease, acute kidney injury, hereditary kidney disease, or other health problems. Dialysis removes waste and excess water from the body by mimicking the function of the kidneys, maintaining the body's electrolyte balance.

[0003] Dialysis therapy is mainly divided into two types: hemodialysis and peritoneal dialysis. In hemodialysis, the patient's blood is drawn from outside the body, passes through a special dialyzer, and is then injected back into the body. In peritoneal dialysis, dialysate passes through the patient's peritoneum into the abdominal cavity, thereby removing waste and excess fluid.

[0004] Dialysis is a complex and vital medical procedure that requires comprehensive teamwork to ensure the patient's health and safety. Key components and considerations in dialysis include:

[0005] Dialysis equipment and dialysate: Both hemodialysis and peritoneal dialysis require specialized equipment and dialysate. The composition of the dialysate must be precisely controlled to ensure effective removal of waste and maintenance of fluid balance.

[0006] Dialyzers: Dialyzers used in hemodialysis must undergo strict sterilization and inspection to prevent infection and other complications.

[0007] Dialysis treatment plan: Each patient's dialysis treatment plan should be individually designed based on their specific circumstances. This includes dialysis frequency, duration, and dialysate composition.

[0008] Monitoring and Adjustment: Patients undergoing dialysis need regular monitoring of their fluid balance, electrolyte levels, and other biochemical parameters. Based on the monitoring results, the dialysis treatment plan may need to be adjusted.

[0009] Nutritional support: Dialysis patients typically need to follow a special dietary plan to control waste and electrolyte levels in their blood. Dietitians play a crucial role in developing personalized dietary plans.

[0010] Complication management: Dialysis treatment may lead to several complications, such as low blood pressure, infection, and blood clots. Healthcare staff need to closely monitor and promptly manage these complications.

[0011] Psychological support: Long-term dialysis treatment can negatively impact a patient's mental health. Mental health professionals can provide support and counseling to help patients cope with the stress and challenges of treatment.

[0012] Dialysis is a lifeline for patients with kidney failure; however, it is also a complex medical process that requires comprehensive teamwork and close monitoring to ensure that patients receive the best treatment results and quality of life.

[0013] In the prior art, dialysis devices are equipped with phototherapy equipment, which can irradiate the blood in the dialysis tube to achieve phototherapy, thereby improving the treatment effect, helping to accelerate metabolism, and helping the body to excrete waste and toxins.

[0014] Existing phototherapy equipment suffers from defects such as unreasonable structure, inconvenient installation of dialysis tubing, and poor heat dissipation. The heat generated by the light source can seriously affect the blood in the dialysis tubing, thus impacting the user's health. Summary of the Invention

[0015] The technical problem to be solved by the present invention is to overcome the defects of existing phototherapy equipment, such as unreasonable structure, inconvenient installation of dialysis tubes, and poor heat dissipation. The invention provides an auxiliary dialysis phototherapy device and operation method that can enhance the therapeutic effect of dialysis, help accelerate metabolism, help the body excrete waste and toxins, and has a reasonable structure, small footprint, simple and convenient dialysis tube installation process, low temperature, and safe and reliable use.

[0016] The present invention solves the above-mentioned technical problems through the following technical solution:

[0017] An auxiliary dialysis phototherapy device, characterized in that the device includes a base, a heat sink bracket, a metal heat sink, a phototherapy lamp assembly, and an operation panel.

[0018] The heat sink bracket is located on top of the base;

[0019] The metal heat sink includes a heat sink body and a heat sink outer ring. The heat sink body is disposed inside the heat sink outer ring and is integrally formed with the heat sink outer ring. The front of the heat sink body has a circular LED strip groove. The back of the heat sink body has a central fin structure at the LED strip groove. The heat sink body is mounted on the base via a heat sink bracket. The operation panel is mounted on the top of the heat sink body. The heat sink outer ring protrudes from the edges of the heat sink bracket and the operation panel. The back of the heat sink outer ring has an outer edge fin structure. The bottom of the heat sink body has a heat sink.

[0020] The phototherapy lamp assembly includes an outer lamp strip, an inner lamp strip, and a bottom lamp plate. The outer lamp strip is located on the outer wall of the lamp strip groove, the inner lamp strip is located on the inner wall of the lamp strip groove, and the bottom lamp plate is located on the bottom surface of the lamp strip groove. A grooved lamp cover is provided above the phototherapy lamp assembly, and the shape and position of the grooved lamp cover match the lamp strip groove.

[0021] The control panel is mounted on top of the metal heat sink. The control panel is equipped with a device switch and a dialysis tube mounting hole. The dialysis tube is installed in the groove of the slotted lampshade through the dialysis tube mounting hole.

[0022] Preferably, the auxiliary dialysis phototherapy device further includes an upper cover, which is located above the operation panel and hinged to the operation panel. The lower surface of the upper cover has an upper cover protrusion, the shape and position of which match the grooved lampshade. The lower surface of the upper cover protrusion has a reflective coating. The center of the upper cover has an upper cover through hole, and the operation panel has an emergency stop button. The upper surface of the device switch and the emergency stop button is located inside the upper cover through hole.

[0023] Preferably, the operation panel is equipped with an identification code, and the auxiliary dialysis phototherapy device includes a control module, several temperature sensors disposed on the side wall of the lamp strip groove, a cover latch, and a cover closure detection switch. The control module is used for:

[0024] The identification code is used to obtain the user's identity information and the control commands transmitted by the server;

[0025] The upper cover latch is opened according to the control command;

[0026] The closing time of the upper cover is obtained using the cover detection switch, and the closing time is uploaded to the server.

[0027] After the top cover is closed, a temperature change curve is obtained using a temperature sensor. The temperature change curve is used to determine whether the equipment is operating safely. If not, the phototherapy lamp group stops working and a prompt is issued.

[0028] Preferably, the operation of the assisted dialysis phototherapy device includes:

[0029] A dialysis machine is used to perform hemodialysis on the target user, and an extracorporeal circulation is established for the target user using a dialysis tubing;

[0030] The identification code is used to obtain the target user's identity information and the control commands transmitted by the server;

[0031] Obtain the target user's startup parameters based on user identity information and control commands;

[0032] The power of the phototherapy lamp assembly is set using the aforementioned startup parameters;

[0033] Install the dialysis tubing into the groove of the slotted lamp shade through the dialysis tubing mounting hole;

[0034] The closing time of the cover is obtained using the cover detection switch, the effective usage time of the user is obtained using the closing time, and the effective usage time is transmitted to the server.

[0035] Preferably, the fins in the central fin structure are arranged radially outward from the center of the heat sink body on the back of the lamp strip groove, and the lamp strip groove and the central fins protrude downward from the plane where the center of the heat sink body is located.

[0036] Preferably, the radiator is a cooling fan, which is mounted on the heat sink bracket and the airflow direction of the cooling fan is directed toward the center of the heat sink body.

[0037] The top of the LED strip groove is provided with several pairs of groove ventilation openings, and each pair of groove ventilation openings is respectively located on the top of the two side walls of the LED strip groove.

[0038] The light therapy lamp assembly is provided with a groove-shaped lamp cover above it. The shape and position of the groove-shaped lamp cover match the groove of the lamp strip. The groove-shaped lamp cover is provided with a lamp cover ventilation opening at the position corresponding to the groove ventilation opening.

[0039] Preferably, the bottom surface of the heat sink bracket is provided with bracket ventilation holes, the bracket ventilation holes are matched with the position of the cooling fan, an air inlet hole is provided between the heat sink bracket and the base, and an air inlet filter is provided on the ventilation hole.

[0040] Preferably, the front side of the operation panel is provided with a cross mounting position for accommodating dialysis tubes. The depth of the cross mounting position is greater than the depth of the lamp strip groove. The dialysis tubes are placed crosswise at the position of the cross mounting position. The front side of the cross mounting position is provided with a dialysis tube guide groove. Both the dialysis tube guide groove and the dialysis tube mounting hole are connected to the cross mounting position.

[0041] Preferably, the operation panel is provided with a dialysis tube clip, which protrudes from the edge of the dialysis tube mounting hole.

[0042] The present invention also provides an operating method for operating the auxiliary dialysis phototherapy device as described above.

[0043] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of the present invention.

[0044] The positive and progressive effects of this invention are as follows:

[0045] This invention can enhance the therapeutic effect of dialysis, help accelerate metabolism, help the body eliminate waste and toxins, and the equipment has a reasonable structure, small footprint, is easy to operate, operates at low temperature, and is safe and reliable to use.

[0046] This invention can also significantly reduce the temperature of the auxiliary dialysis phototherapy device, prevent the blood temperature in the dialysis tube from rising, and enhance the therapeutic effect of dialysis. Attached Figure Description

[0047] Figure 1 This is a schematic diagram of the auxiliary dialysis phototherapy device according to Embodiment 1 of the present invention.

[0048] Figure 2 This is another structural schematic diagram of the auxiliary dialysis phototherapy device of Embodiment 1 of the present invention.

[0049] Figure 3 This is another structural schematic diagram of the auxiliary dialysis phototherapy device of Embodiment 1 of the present invention.

[0050] Figure 4 This is another structural schematic diagram of the auxiliary dialysis phototherapy device of Embodiment 1 of the present invention.

[0051] Figure 5 This is another structural schematic diagram of the auxiliary dialysis phototherapy device of Embodiment 1 of the present invention.

[0052] Figure 6 This is a schematic diagram of the structure of the metal heat sink in Embodiment 1 of the present invention.

[0053] Figure 7 This is another structural schematic diagram of the metal heat sink of Embodiment 1 of the present invention.

[0054] Figure 8 This is a schematic diagram of the groove-shaped lampshade of Embodiment 1 of the present invention.

[0055] Figure 9 This is a flowchart of the operation method of the auxiliary dialysis phototherapy device according to Embodiment 1 of the present invention.

[0056] Figure 10 This is a flowchart of another operation method of the auxiliary dialysis phototherapy device according to Embodiment 1 of the present invention.

[0057] Reference numerals: 100, base; 101, heat sink bracket; 102, metal heat sink; 1021, heat sink fin; 1022, LED strip groove; 1023, circuit board; 1024, heat sink; 1031, outer LED strip; 1032, inner LED strip; 1033, bottom light panel; 104, control panel; 1041, equipment switch; 1042, dialysis tube mounting hole; 1043, emergency stop button; 1044, dialysis tube clip; 1 045. Cross mounting position; 1046. Dialysis tube guide groove; 105. Slotted lampshade; 106. Air inlet filter; 107. Top cover; 1071. Top cover through hole; 1072. Cover closure detection switch; 1073. Top cover protrusion; 1074. Detection component; 201. Heat sink body; 202. Heat sink outer ring; 203. Temperature sensor groove; 204. Middle fin structure; 205. Outer fin structure; 1051. Lampshade ventilation opening. Detailed Implementation

[0058] The present invention will be further illustrated by way of embodiments below, but the present invention is not limited to the scope of the embodiments described herein.

[0059] Example 1

[0060] In this embodiment, the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the present invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the present invention. In addition, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0061] In this application, "front" refers to the position near the front of the device, and "rear" refers to the position near the back of the device.

[0062] See Figures 1 to 8 This embodiment provides a dialysis phototherapy system, which includes an auxiliary dialysis phototherapy device and a computing server.

[0063] The computing server can be an independent physical server, a server cluster or distributed system composed of multiple physical servers, or a cloud server that provides basic cloud computing services such as cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communication, middleware services, domain name services, security services, CDN (Content Delivery Network), and big data and artificial intelligence platforms.

[0064] The auxiliary dialysis phototherapy device includes a base 100, a heat sink bracket 101, a metal heat sink 102, a phototherapy lamp assembly, and an operation panel 104.

[0065] The heat sink bracket 101 is located on the top of the base 100.

[0066] The metal heat sink 102 is mounted on top of the heat sink bracket 101.

[0067] The metal heat sink 102 has a heat sink 1021 on the bottom outer side and a circular LED strip groove 1022 on the top outer side.

[0068] The metal heat sink 102 has a circuit board 1023 on its inner top.

[0069] The metal heat sink 102 has a heat sink 1024 located at its lower interior.

[0070] The phototherapy lamp assembly includes an outer lamp strip 1031, an inner lamp strip 1032, and a bottom lamp plate 1033, all connected to a circuit board.

[0071] The outer light strip 1031 is located on the outer wall of the light strip groove 1022.

[0072] The inner light strip 1032 is located on the inner wall of the light strip groove 1022.

[0073] The bottom light panel 1033 is located on the bottom surface of the light strip groove 1022.

[0074] The phototherapy lamp assembly is provided with a grooved lampshade 105 above it.

[0075] The shape and position of the grooved lampshade 105 match the groove of the light strip. The grooved lampshade is embedded in the groove of the light strip, and the space between the grooved lampshade and the metal heat sink is a phototherapy lamp assembly.

[0076] The operation panel 104 is mounted on top of the metal heat sink 102.

[0077] The operation panel 104 is equipped with a device switch 1041 and a dialysis tube mounting hole 1042.

[0078] The dialysis tube 109 is installed in the groove of the slotted lampshade through the dialysis tube mounting hole 1042.

[0079] The user bends the dialysis tubing into a circle and installs it into the dialysis tubing mounting hole, which is located above the slotted lampshade. Preferably, a transparent partition plate can be installed on the dialysis tubing mounting hole, and the shape of the transparent partition plate matches the slotted lampshade.

[0080] The radiator 1024 is a cooling fan.

[0081] The cooling fan is mounted on the heat sink bracket.

[0082] The cooling fan's exhaust direction is directed towards the metal heat sink. Specifically, the cooling fan's exhaust direction is directed towards the center of the heat sink body.

[0083] The top of the LED strip groove is provided with several pairs of groove ventilation openings, and each pair of groove ventilation openings is respectively located on the top of the two side walls of the LED strip groove.

[0084] The light therapy lamp assembly is provided with a grooved lampshade 105 above it. The shape and position of the grooved lampshade 105 match the groove of the lamp strip. A lampshade ventilation port 1051 is provided at the position corresponding to the groove ventilation port of the groove.

[0085] This application features a multi-layered heat dissipation structure. The metal heat sink is preferably made of aluminum to quickly dissipate heat. A cooling fan and air inlet are also located on the back to accelerate heat dissipation and ensure the blood temperature in the dialysis tubing.

[0086] The bottom surface of the heat sink bracket is provided with ventilation holes, which are matched with the position of the cooling fan. An air inlet is provided between the heat sink bracket and the base.

[0087] The ventilation hole is equipped with an air inlet filter 106.

[0088] The auxiliary dialysis phototherapy device also includes an upper cover 107.

[0089] The upper cover 107 is located above the operation panel and is hinged to the operation panel.

[0090] The lower surface of the upper cover 107 is provided with an upper cover protrusion 1073, the shape and position of the upper cover protrusion 1073 are matched with the groove-shaped lampshade, and the lower surface of the upper cover protrusion is provided with a reflective coating.

[0091] The upper cover has a through hole 1071 at its center.

[0092] The control panel is equipped with an emergency stop button 1043.

[0093] The upper surface of the device switch and emergency stop button is located inside the through hole of the upper cover.

[0094] The auxiliary dialysis phototherapy device also includes a cover detection switch.

[0095] The lower surface of the upper cover 107 is provided with a detection element 1074 that matches the cover closure detection switch 1072, and the cover closure detection switch is connected to the circuit board.

[0096] The front side of the operation panel 104 is provided with a cross mounting position 1045 for accommodating two layers of dialysis tubes.

[0097] The depth of the cross mounting position 1045 is greater than the depth of the lamp strip groove, and the dialysis tube is placed crosswise at the position of the cross mounting position.

[0098] The front side of the cross mounting position 1045 is provided with a dialysis tube guide groove 1046, and both the dialysis tube guide groove and the dialysis tube mounting hole are connected to the cross mounting position.

[0099] The operation panel is provided with a dialysis tube clip 1044, which protrudes from the edge of the dialysis tube mounting hole.

[0100] Specifically, the metal heat sink includes a heat sink body 201 and a heat sink outer ring 202.

[0101] The heat sink body 201 is disposed inside the outer ring 202 of the heat sink and is integrally formed with the outer ring of the heat sink.

[0102] The front of the heat sink body is provided with a circular LED strip groove, and the back of the heat sink body is provided with a central fin structure 204 at the LED strip groove position.

[0103] The heat sink body is mounted on the base via a heat sink bracket, and the operation panel is mounted on top of the heat sink body.

[0104] The outer ring of the heat sink protrudes from the edge of the heat sink bracket and the control panel.

[0105] The outer ring of the heat sink has an outer edge fin structure 205 on its back side.

[0106] The operation panel is equipped with an identification code. The auxiliary dialysis phototherapy device also includes a control module, several temperature sensors located on the side wall of the lamp strip groove, a cover lock, and a cover detection switch.

[0107] The temperature sensor is located inside the temperature sensor recess 203.

[0108] The control module is used for:

[0109] The identification code is used to obtain the user's identity information and the control commands transmitted by the server;

[0110] The upper cover latch is opened according to the control command;

[0111] The closing time of the upper cover is obtained using the cover detection switch, and the closing time is uploaded to the server.

[0112] After the top cover is closed, a temperature change curve is obtained using a temperature sensor. The temperature change curve is used to determine whether the equipment is operating safely. If not, the phototherapy lamp group stops working and a prompt is issued.

[0113] Specifically, the operation of the auxiliary dialysis phototherapy device includes:

[0114] A dialysis machine is used to perform hemodialysis on the target user, and an extracorporeal circulation is established for the target user using a dialysis tubing;

[0115] The identification code is used to obtain the target user's identity information and the control commands transmitted by the server;

[0116] Obtain the target user's startup parameters based on user identity information and control commands;

[0117] The power of the phototherapy lamp assembly is set using the aforementioned startup parameters;

[0118] Install the dialysis tubing into the groove of the slotted lamp shade through the dialysis tubing mounting hole;

[0119] The closing time of the cover is obtained using the cover detection switch, the effective usage time of the user is obtained using the closing time, and the effective usage time is transmitted to the server.

[0120] Specifically, the fins in the central fin structure are arranged radially outward from the center of the heat sink body on the back of the lamp strip groove, and the lamp strip groove and the central fins protrude downward from the plane where the center of the heat sink body is located.

[0121] See Figure 9 Using the aforementioned auxiliary dialysis phototherapy device, this embodiment provides an operating method, including:

[0122] Step S100: Use the identification code to obtain the user's identity information and the control commands transmitted by the server;

[0123] Step S101: Open the upper cover latch according to the control command;

[0124] Step S102: Obtain the closing time of the upper cover using the closing detection switch, and upload the closing time to the server;

[0125] Step S103: After the top cover is closed, use a temperature sensor to obtain the temperature change curve;

[0126] Step S104: Use the temperature change curve to determine whether the equipment is operating safely. If yes, execute step S104 again; otherwise, execute step S105.

[0127] Step S105: Stop the light therapy lamp assembly and issue a prompt.

[0128] See Figure 10 The operation method further includes:

[0129] Step S200: Perform hemodialysis on the target user using a dialysis machine and establish extracorporeal circulation for the target user using a dialysis tube;

[0130] Step S201: Use the identification code to obtain the target user's identity information and the control commands transmitted by the server;

[0131] Step S202: Obtain the target user's startup parameters based on user identity information and control commands;

[0132] Step S203: Set the power of the phototherapy lamp group using the startup parameters;

[0133] Step S204: Install the dialysis tube into the groove of the slotted lamp cover through the dialysis tube mounting hole;

[0134] Step S205: Obtain the closing time of the cover using the cover detection switch, obtain the user's effective usage time using the closing time, and transmit the effective usage time to the server.

[0135] Step S206: After the top cover is closed, use a temperature sensor to obtain the temperature change curve;

[0136] Step S207: Use the temperature change curve to determine whether the equipment is operating safely. If yes, execute step S207 again; otherwise, execute step S208.

[0137] Step S208: Stop the light therapy lamp assembly and issue a prompt.

[0138] This embodiment can enhance the therapeutic effect of dialysis, help accelerate metabolism, help the body eliminate waste and toxins, and the equipment has a reasonable structure, small footprint, is easy to operate, and operates at low temperature, making it safe and reliable to use.

[0139] While specific embodiments of the present invention have been described above, those skilled in the art should understand that these are merely illustrative examples, and the scope of protection of the present invention is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present invention, but all such changes and modifications fall within the scope of protection of the present invention.

Claims

1. A phototherapy device for assisted dialysis, characterized in that, The auxiliary dialysis phototherapy device includes a base, a heat sink bracket, a metal heat sink, a phototherapy lamp assembly, and an operation panel. The heat sink bracket is located on top of the base; The metal heat sink includes a heat sink body and a heat sink outer ring. The heat sink body is disposed inside the heat sink outer ring and is integrally formed with the heat sink outer ring. The front of the heat sink body has a circular LED strip groove. The back of the heat sink body has a central fin structure at the LED strip groove. The heat sink body is mounted on the base via a heat sink bracket. The operation panel is mounted on the top of the heat sink body. The heat sink outer ring protrudes from the edges of the heat sink bracket and the operation panel. The back of the heat sink outer ring has an outer edge fin structure. The bottom of the heat sink body has a heat sink. The phototherapy lamp assembly includes an outer lamp strip, an inner lamp strip, and a bottom lamp plate. The outer lamp strip is located on the outer wall of the lamp strip groove, the inner lamp strip is located on the inner wall of the lamp strip groove, and the bottom lamp plate is located on the bottom surface of the lamp strip groove. A grooved lamp cover is provided above the phototherapy lamp assembly, and the shape and position of the grooved lamp cover match the lamp strip groove. The control panel is mounted on top of the metal heat sink. The control panel is equipped with a device switch and a dialysis tube mounting hole. The dialysis tube is installed in the groove of the slotted lampshade through the dialysis tube mounting hole.

2. The auxiliary dialysis phototherapy device as described in claim 1, characterized in that, The auxiliary dialysis phototherapy device also includes an upper cover, which is located above the operation panel and hinged to the operation panel. The lower surface of the upper cover has an upper cover protrusion, the shape and position of which match the groove-shaped lampshade. The lower surface of the upper cover protrusion has a reflective coating. The center of the upper cover has an upper cover through hole. The operation panel has an emergency stop button, and the upper surface of the device switch and the emergency stop button is located inside the upper cover through hole.

3. The auxiliary dialysis phototherapy device as described in claim 2, characterized in that, The operation panel is equipped with an identification code. The auxiliary dialysis phototherapy device includes a control module, several temperature sensors located on the sidewall of the lamp strip groove, a cover latch, and a cover closure detection switch. The control module is used for: The identification code is used to obtain the user's identity information and the control commands transmitted by the server; The upper cover latch is opened according to the control command; The closing time of the upper cover is obtained using the cover detection switch, and the closing time is uploaded to the server. After the top cover is closed, a temperature change curve is obtained using a temperature sensor. The temperature change curve is used to determine whether the equipment is operating safely. If not, the phototherapy lamp group stops working and a prompt is issued.

4. The auxiliary dialysis phototherapy device as described in claim 3, characterized in that, The working process of the auxiliary dialysis phototherapy device includes: A dialysis machine is used to perform hemodialysis on the target user, and an extracorporeal circulation is established for the target user using a dialysis tubing; The identification code is used to obtain the target user's identity information and the control commands transmitted by the server; Obtain the target user's startup parameters based on user identity information and control commands; The power of the phototherapy lamp assembly is set using the aforementioned startup parameters; Install the dialysis tubing into the groove of the slotted lamp shade through the dialysis tubing mounting hole; The closing time of the cover is obtained using the cover detection switch, the effective usage time of the user is obtained using the closing time, and the effective usage time is transmitted to the server.

5. The assisted dialysis phototherapy device as described in claim 1, characterized in that, The fins in the central fin structure are arranged radially outward from the center of the heat sink body on the back of the lamp strip groove, and the lamp strip groove and the central fins protrude downward from the plane where the center of the heat sink body is located.

6. The auxiliary dialysis phototherapy device as described in claim 5, characterized in that, The radiator is a cooling fan, which is mounted on the heat sink bracket and the airflow direction of the cooling fan is directed toward the center of the heat sink body. The top of the LED strip groove is provided with several pairs of groove ventilation openings, and each pair of groove ventilation openings is respectively located on the top of the two side walls of the LED strip groove. The light therapy lamp assembly is provided with a groove-shaped lamp cover above it. The shape and position of the groove-shaped lamp cover match the groove of the lamp strip. The groove-shaped lamp cover is provided with a lamp cover ventilation opening at the position corresponding to the groove ventilation opening.

7. The auxiliary dialysis phototherapy device as described in claim 6, characterized in that, The bottom surface of the heat sink bracket is provided with bracket ventilation holes, the bracket ventilation holes are matched with the position of the cooling fan, the heat sink bracket and the base are provided with air inlet holes, and the ventilation holes are provided with air inlet filters.

8. The auxiliary dialysis phototherapy device as described in claim 1, characterized in that, The front side of the operation panel is provided with a cross mounting position for accommodating dialysis tubes. The depth of the cross mounting position is greater than the depth of the lamp strip groove. The dialysis tubes are placed crosswise at the cross mounting position. The front side of the cross mounting position is provided with a dialysis tube guide groove. Both the dialysis tube guide groove and the dialysis tube mounting hole are connected to the cross mounting position.

9. The auxiliary dialysis phototherapy device as described in claim 1, characterized in that, The operation panel is equipped with a dialysis tube clip, which protrudes from the edge of the dialysis tube mounting hole.

10. An operating method for operating the assisted dialysis phototherapy device as described in any one of claims 1 to 9.

Citation Information

Patent Citations

  • Dialysis phototherapy device and system

    CN222341682U

  • Heat dissipation system for assisting dialysis phototherapy device and metal heat dissipation disc

    CN222899848U