Intelligent organ transfer system
The intelligent organ transport system utilizes drones and various sensors and communication methods to solve the problem that traditional transportation methods cannot meet the needs of organ transport in complex environments, achieving safe and rapid organ transport and improving transport efficiency and safety.
Patent Information
- Application Number
- CN202520558317.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-27
AI Technical Summary
In special circumstances where traditional land and sea transportation is disrupted, organ transport cannot meet the needs for safety and speed, affecting the success rate of transplant surgery and patient prognosis.
The system employs an intelligent organ transport system, including organ transport boxes, ground-based 5G base stations, transport drones, and communication satellites. It utilizes anti-collision radar, explosion-proof shells, stealth coatings, 360-degree panoramic cameras, multiple sensors, and control units to achieve stable and efficient organ transport.
To ensure the safe and rapid transport of organs in complex environments, reduce delays, improve transport efficiency, lower the risk of organ inactivation, and provide a basis for ethical review and safety assurance.
Smart Images

Figure CN223870976U_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of organ transport technology, specifically an intelligent organ transport system. Background Technology
[0002] With the rapid development of medical technology, organ transplantation has become an important means of treating end-stage organ failure, bringing hope to many critically ill patients. However, organ transport, as a crucial link in the organ transplantation process, faces many severe challenges. Time is one of the most critical factors in organ transport. After leaving the donor, organs gradually lose their viability over time, and different organs have significantly different ischemia tolerance times. Within this extremely limited time, organs must be transported safely and quickly to the recipient hospital; every minute of delay can reduce organ quality, affecting the success rate of the transplant surgery and the patient's prognosis. However, in certain situations, such as severe natural disasters or wartime when land and sea transportation are blocked, traditional ground transportation methods cannot meet the needs of organ transport. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide an intelligent organ transport system with stable and efficient transport capabilities in complex environments, especially in special scenarios where traditional land and sea transportation is blocked, such as in the event of severe natural disasters or wartime, which can ensure the safe and rapid transport of organs to their destination.
[0004] To solve the above-mentioned technical problems, this utility model provides the following technical solution:
[0005] An intelligent organ transport system includes an organ transport box, a ground 5G base station, a transport drone, and a communication satellite. The organ transport box is equipped with a control unit. The control unit communicates with the transport drone via the ground 5G base station and the transport drone via the communication satellite. The control unit also communicates with ground institutions.
[0006] Optionally, the control unit includes a microprocessor and a button module, an image recognition module, a vibration sensor, an acceleration sensor, a power supply module, a positioning module, a temperature and humidity sensor, a satellite communication module, a 5G communication module, a display module, and an alarm module electrically connected to the microprocessor.
[0007] Optionally, the transport drone is equipped with anti-collision radar, an outer shell made of explosion-proof material, and a stealth coating.
[0008] Optionally, the transport drone is also equipped with a 360-degree panoramic camera.
[0009] Optionally, the microprocessor is an ARM processor.
[0010] Optionally, the image recognition module is a face recognition camera module.
[0011] Optionally, the power module is a lithium battery.
[0012] Optionally, the positioning module is a BeiDou module.
[0013] Optionally, the alarm module is an audible and visual alarm.
[0014] Compared with the prior art, the above-mentioned technical solution of this utility model has at least the following beneficial effects:
[0015] The aforementioned solution incorporates anti-collision radar, an explosion-proof shell, and a stealth coating to prevent collisions, withstand explosion threats, and reduce the probability of detection, ensuring safe transport. A 360-degree panoramic camera records the entire transport process, providing evidence for ethical review and facilitating retrospective analysis. The control unit integrates 5G and satellite communication; high-speed data transmission is possible when the 5G base station is functioning normally, and automatic switching to satellite communication is possible when the base station is damaged, ensuring stable transmission of transport information.
[0016] Equipped with various sensors, such as vibration sensors, acceleration sensors, and temperature and humidity sensors, it can collect vibration signals, acceleration signals, and temperature and humidity signals inside the transport box in real time during the transport process. Once the sensor parameters are abnormal, the alarm module will immediately issue an audible and visual alarm to remind staff to take timely measures to ensure a safe and comfortable internal and external environment for the organ during transport and to maintain organ viability to the greatest extent possible.
[0017] The control unit on the transport box is equipped with an image recognition module, which unlocks the box via facial recognition, increasing security and preventing unauthorized access. If facial recognition is impossible due to facial damage, obstruction, or poor lighting conditions, a password can be entered via a button module, ensuring safe and smooth opening of the transport box under all circumstances and guaranteeing the confidentiality and security of the organ transport process.
[0018] The control unit on the transport container is equipped with a Beidou module, enabling automatic positioning. It can automatically locate itself based on the recipient's position or allow manual input of location coordinates, providing precise navigation information for the transport drone to guide it accurately to the target location, improving transport efficiency, reducing transport time, and lowering the risks to organs during transport. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the topology of the control system of the intelligent organ transport system of this utility model;
[0020] Figure 2 This is a block diagram of the control unit of the intelligent organ transport system of this utility model. Detailed Implementation
[0021] To make the technical problems, technical solutions and advantages of this utility model clearer, a detailed description will be given below in conjunction with the accompanying drawings and specific embodiments.
[0022] like Figure 1 As shown, an embodiment of this utility model proposes an intelligent organ transport system, including an organ transport box 2, a ground 5G base station 3, a transport drone 4, and a communication satellite 5. A control unit 1 is installed on the organ transport box 2. The control unit 1 communicates with the transport drone 4 via the ground 5G base station 3 using 5G, and with the transport drone 4 via the communication satellite 5. The control unit 1 also communicates with ground-based institutions. The control unit 1 is responsible for receiving signals from the ground (such as organ request signals from hospitals), including target location and organ information, and transmitting this information to the transport drone 4 via the ground 5G base station 3 using high-speed 5G transmission signals.
[0023] In the event of damage to the ground-based 5G base station 3, the control unit 1 can automatically switch to communication satellite 5 to communicate with the transfer drone 4 via satellite signal, ensuring stable signal transmission in extreme circumstances. The transfer drone 4 is equipped with anti-collision radar, an explosion-proof shell, and a stealth coating to enhance the organ's survival ability in complex environments. The transfer drone 4 is also equipped with a 360-degree panoramic camera, which can record the entire transfer process, providing evidence for ethical review.
[0024] like Figure 2 As shown, the control unit 1 includes a microprocessor 11 and a button module 12, an image recognition module 13, a vibration sensor 14, an acceleration sensor 15, a power supply module 16, a positioning module 17, a temperature and humidity sensor 18, a satellite communication module 19, a 5G communication module 110, a display module 111, and an alarm module 112, all electrically connected to the microprocessor 11.
[0025] The microprocessor 11 is an ARM processor, serving as the core of the control unit. It collects vibration and acceleration signals, as well as temperature and humidity signals (temperature and humidity sensors are located inside the container) during the transport process, ensuring a safe and comfortable internal and external environment for the organs. When sensor parameters are abnormal, an audible and visual alarm is triggered via the alarm module 112. The image recognition module 13 is a face recognition camera module used for facial recognition to open the transport container. If the recipient's face is damaged, obstructed, or lighting conditions prevent facial recognition, a password can be entered via a button module to open the organ transport container, ensuring the safety of the transport process. The power module 16 is a lithium battery, used to power all modules of the control unit. The positioning module 17 is a Beidou module, enabling automatic positioning of the control unit. It can automatically locate the recipient using the receiver or manually input location coordinates, guiding the transport drone 4 to transport the organ transport container to the target location.
[0026] Satellite communication module 19 and 5G communication module 110 are used to communicate with the transport drone via satellite communication or 5G communication, respectively. The display module is used to display information such as the internal and external environmental parameters of the transport box and the battery level.
[0027] This utility model's transport drone is equipped with anti-collision radar, enabling it to monitor the surrounding environment in real time during flight, detect obstacles in advance, effectively avoid collisions, and protect the organ transport container and its internal organs. Its shell, made of explosion-proof material, enhances the drone's resistance to explosions in complex environments, reducing the threat of explosions and other hazards to the organs. Furthermore, the application of a stealth coating gives the drone a certain degree of stealth capability, reducing the probability of detection by the enemy in special scenarios such as wartime, further ensuring the safety of organ transport.
[0028] The 360-degree panoramic camera equipped on the transport drone can record the entire transport process from all angles without blind spots. This video footage can not only provide detailed evidence for ethical review, ensuring that the transport process complies with ethical standards, but also be used for retrospective analysis to find the causes and summarize lessons learned in case of problems.
[0029] The microprocessor, equipped with various sensors such as vibration sensors, acceleration sensors, and temperature and humidity sensors, can collect vibration signals, acceleration signals, and temperature and humidity signals inside the transport container in real time during transport. If any sensor parameters become abnormal, the alarm module will immediately issue an audible and visual alarm, alerting staff to take timely measures to ensure a safe and comfortable internal and external environment for the organ during transport, thus maximizing organ viability.
[0030] The image recognition module uses a facial recognition camera module to open the transport box via facial recognition, increasing the security of opening the box and preventing unauthorized personnel from opening it. If the recipient's face is damaged, obstructed, or the lighting conditions are poor, preventing facial recognition, a password can be entered via a button module to open the box, ensuring safe and smooth opening of the transport box under all circumstances and guaranteeing the confidentiality and security of the organ transport process.
[0031] The positioning module uses a BeiDou system, enabling automatic positioning of the control unit. It can automatically locate the recipient based on their position or allow manual input of coordinates, providing precise navigation information for the transport drone. This guides the drone to accurately transport the organ transport box to its target location, improving transport efficiency, reducing transport time, and minimizing risks during organ transport.
[0032] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.
Claims
1. An intelligent organ transport system, characterized in that, The system includes an organ transport box, a ground-based 5G base station, a transport drone, and a communication satellite. The organ transport box is equipped with a control unit, which communicates with the transport drone via the ground-based 5G base station and the transport drone via the communication satellite. The control unit also communicates with ground-based institutions.
2. The intelligent organ transport system according to claim 1, characterized in that, The control unit includes a microprocessor and a button module, an image recognition module, a vibration sensor, an acceleration sensor, a power supply module, a positioning module, a temperature and humidity sensor, a satellite communication module, a 5G communication module, a display module, and an alarm module electrically connected to the microprocessor.
3. The intelligent organ transport system according to claim 1, characterized in that, The transport drone is equipped with anti-collision radar, an explosion-proof shell, and a stealth coating.
4. The intelligent organ transport system according to claim 1, characterized in that, The transport drone is also equipped with a 360-degree panoramic camera.
5. The intelligent organ transport system according to claim 2, characterized in that, The microprocessor is an ARM processor.
6. The intelligent organ transport system according to claim 2, characterized in that, The image recognition module is a face recognition camera module.
7. The intelligent organ transport system according to claim 2, characterized in that, The power module is a lithium battery.
8. The intelligent organ transport system according to claim 2, characterized in that, The positioning module is a Beidou module.
9. The intelligent organ transport system according to claim 2, characterized in that, The alarm module is an audible and visual alarm.