Integrated transfer device for critically ill patients

By designing removable and retractable placement components and a stable storage platform, the shortcomings of equipment placement and pipeline management during transfer in critically ill patients are solved, and the safety and efficiency during transfer are improved.

CN120203945AInactive Publication Date: 2025-06-27HANGZHOU FUYANG DISTRICT TRADITIONAL CHINESE MEDICINE HOSPITAL (HANGZHOU FUYANG DISTRICT TRADITIONAL CHINESE MEDICINE HOSPITAL MEDICAL & HEALTH SERVICE COMMUNITY)
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Patent Information

Application Number
CN202510383659.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing transport methods for critically ill patients have serious shortcomings in equipment placement and pipeline management, resulting in safety hazards and inefficiency.

Method used

An integrated device for transporting critically ill patients is designed, including removable and retractable placement components, a storage platform and a plate frame with upper and lower layers of structures, and is equipped with slidable instrument straps and pipeline frames, which can fix medical equipment during transport and prevent pipelines from falling off.

Benefits of technology

Through flexible placement component design and stable storage platform, the device improves the fixity of medical equipment and the safety of pipeline management, reduces safety hazards and manpower consumption during the transfer process, and improves the transfer efficiency.

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Abstract

The invention discloses a critical patient transfer integrated device which can flexibly adapt to mounting scenes with different widths through detachable and telescopic design. Meanwhile, the device is designed to be provided with an upper layer and a lower layer, the lower layer of film placing frame can be used for placing examination data of a patient, the upper layer of object placing platform provides a stable placing space for medical equipment, and the sliding function of the object placing platform facilitates rapid placing and taking of instruments. And the sheet placing groove formed in the transfer plate of the device can be used for placing DR sheets, so that the medical personnel can conveniently carry out radiography operation at the bedside, and the practicability of the device is further improved. Meanwhile, due to the universal design of the device, the upper side and the lower side of the device can be connected with fixing rods and used independently, the device can be independently fixed to a transfer bed and a CT table in a matched mode, the upper-layer storage platform can be independently taken down and placed on a handrail of a patient's sickbed, and the requirements of various complex medical scenes are met.
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Description

Technical Field

[0001] The present invention belongs to the technical field of medical devices, and particularly relates to an integrated device for transporting critically ill patients. Background Art

[0002] Currently, the main tool relied on for transporting severely traumatized patients is a transfer board. Such patients are in extremely critical conditions and often have multiple catheters for maintaining vital signs and treatment connected to their bodies, such as central venous catheters, endotracheal intubation, closed thoracic drainage tubes, urinary catheters, etc. During the transfer process, a large number of key medical devices also need to be equipped, including transfer ventilators, multiple micropumps, emergency medicine kits, resuscitation bags, oxygen cylinders, defibrillators, and transfer monitors, etc. However, the existing transfer methods have obvious defects. On the one hand, there is a lack of effective and stable methods for handling and placing the devices. It mainly relies on manual handling, or simply hanging the devices beside the bed or placing them on the bed. This way cannot properly fix the devices, not only posing great safety hazards. Once the devices shake or fall during the transfer, it may directly endanger the patient's life; moreover, it requires a large amount of manpower during the handling process, with low efficiency and being extremely time-consuming and laborious. On the other hand, complex pipeline management problems are involved during the transfer process. Especially when changing the patient's bed for a CT examination, due to the numerous and complex pipelines on the patient's body, serious problems such as tube entanglement, tube kinking, and even various pipeline disconnections are very likely to occur. Once these situations occur, it may lead to life-threatening consequences such as the patient having difficulty breathing and the liquid delivery being blocked. At the same time, when the patient is on the CT bed, there is no dedicated placement position for the supporting medical devices, and it can only rely on medical staff to hold or watch by hand. This not only increases the workload of medical staff, but also makes it difficult to ensure that the devices are always in a stable and safe state during the examination, further increasing the transfer risk. In summary, the existing methods for transporting critically ill patients have serious deficiencies in device placement and pipeline management, and there is an urgent need for an innovative, efficient, and safe integrated transfer device to solve these problems in order to improve the safety and reliability during the transfer of critically ill patients. Summary of the Invention

[0003] To solve the above technical problems, the present invention designs an integrated device for transporting critically ill patients. Two placement components are detachably arranged on the transfer board for placing medical devices; the first placement component arranged in the middle of the transfer board can place the medical devices that the patient is using, and the second placement component arranged at the rear end of the transfer board can place the medical devices that the patient may need or is about to use. When in use, the placement components can be fixed on components such as the transfer board or the CT bed according to needs. Therefore, the device needs to be able to expand and contract in width to adapt to different-width installation scenarios; at the same time, the device consists of two layers. The lower layer is a film placement frame where the patient's examination materials can be placed; the upper layer is a storage platform that can slide to facilitate the placement and retrieval of different instruments. At the same time, the storage platform can also be fixed to ensure that the instruments do not shake during transportation; in addition, slidable instrument straps are arranged on both sides of the instrument frame of the storage platform, which can be adjusted according to the size of the instrument to be transported to ensure that the instrument can always be stably fixed; at the same time, pipeline frames and infusion tube frames are arranged on both sides of the instrument frame to facilitate the cleaning of various pipelines and prevent the pipelines from being pulled off during transportation. In addition, a film placement groove is arranged inside the transfer board of the device, which can hold DR films for bedside radiography. Finally, considering the versatility of the device, the upper and lower sides of the device can be respectively connected to the fixing rods of the device and used independently, and can be separately fixed to the transfer bed and the CT table. At the same time, the storage platform on the upper layer of the device can also be separately removed and placed on the railing of the patient's hospital bed.

[0004] To achieve the above technical effects, the present invention discloses an integrated device for transporting critically ill patients, including: a transfer board, a first placement component, and a second placement component; the first placement component is detachably installed in the middle of the transfer board; the second placement component is detachably installed at the rear end of the transfer board; Further, the first placement component includes: a fixing rod, a first connection pile, a second connection pile, a first telescopic rod, a second telescopic rod, a film placement frame, and a storage platform; the first connection pile is detachably connected to the fixing rod; the first telescopic rod is fixedly connected between the first connection piles; the second connection pile is detachably connected to the top of the first connection pile; the second telescopic rod is fixedly connected between the second connection piles; the film placement frame is slidably connected to the first telescopic rod; the storage platform is slidably sleeved outside the second telescopic rod; Further, the storage platform includes: an instrument frame, a pipeline frame, instrument straps, pipeline straps, and a third locking bolt; the pipeline frame is fixedly arranged on both sides of the instrument frame; the instrument straps are slidably arranged on both sides of the instrument frame; the pipeline straps are fixedly connected to the pipeline frame; the third locking bolt is threadedly connected to the instrument frame; Further, an infusion tube frame is fixedly arranged outside the pipeline frame; Further, an opening is provided on one side of the sheet placing frame; a baffle is rotatably arranged on the opening side of the sheet placing frame; Further, a first locking bolt is threadedly connected to the lower side of the first connecting pile; a connecting rod is fixedly arranged on the top of the first connecting pile; Further, a second locking bolt is threadedly connected to the lower side of the second connecting pile; Further, the fixing rod includes: an extension rod, a sleeve rod, a fourth locking bolt, and a quick connector; the extension rod is slidably sleeved inside the sleeve rod; the fourth locking bolt is threadedly connected to the sleeve rod; the quick connector is fixedly connected to the bottom of the sleeve rod.

[0005] Further, a sheet placing groove is provided at the center of the transfer plate; Further, a quick connection groove is fixedly arranged on the upper surface of the transfer plate; Further, the structure of the second placement assembly is exactly the same as the components and connection methods of the first placement assembly, and the length and width of the second placement assembly are greater than those of the first placement assembly.

[0006] The beneficial effects of the present invention are: The present invention discloses an integrated device for transporting critically ill patients. Through the detachable and telescopic design, the device can be flexibly adapted to installation scenarios of different widths. Whether it is a transfer bed, a CT bed or other medical equipment, rapid installation and disassembly can be achieved, greatly improving the versatility and applicability of the device. At the same time, the device is designed with two layers. The sheet placing frame on the lower layer can be used to place the patient's examination materials, facilitating medical staff to consult at any time, while the placing platform on the upper layer provides a stable placing space for medical equipment. Its sliding function facilitates the rapid placement and retrieval of instruments, and the fixing function ensures that the instruments will not shift or be damaged due to shaking during transportation, effectively guaranteeing the safety and stability of medical equipment.

[0007] In addition, the slidable instrument straps equipped on both sides of the instrument frame of the placing platform can be flexibly adjusted according to the sizes of different instruments, further enhancing the fixing effect on medical equipment and ensuring the stability of the instruments during transportation. The designs of the pipeline frame and the infusion tube frame effectively solve the problem of pipeline management, can prevent the pipelines from being pulled off during transportation, avoid medical risks caused by pipeline problems, and improve the safety of transportation.

[0008] The film placement groove provided inside the device transfer board can be used to place DR films, facilitating the radiography operation by medical staff at the bedside, and further enhancing the practicality of the device. At the same time, the versatile design of the device enables it to be connected to the fixed rods on both its upper and lower sides and used independently. It can be separately matched and fixed to the transfer bed and the CT table. Even the upper storage platform can be separately removed and placed on the railing of the patient's hospital bed. This high degree of flexibility and versatility provides great convenience for medical staff and meets the needs of various complex medical scenarios. Brief Description of the Drawings

[0009] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for describing the embodiments will be briefly introduced below.

[0010] Figure 1 is a schematic diagram of the overall structure of the integrated device for transporting critically ill patients; Figure 2 is a schematic diagram of the overall structure of the first placement component of the integrated device for transporting critically ill patients Figure 3 is an exploded view of the first placement component of the integrated device for transporting critically ill patients; Figure 4 is a schematic diagram of the first placement component of the integrated device for transporting critically ill patients with only the storage platform set; Figure 5 is a schematic diagram of the first placement component of the integrated device for transporting critically ill patients with only the film placement frame set; In the drawings, the list of components represented by each reference numeral is as follows: 1 - fixed rod, 2 - first connection pile, 3 - second connection pile, 4 - first telescopic rod, 5 - second telescopic rod, 6 - film placement frame, 7 - storage platform, 8 - transfer board, 9 - first placement component, 10 - second placement component, 101 - extension rod, 102 - sleeve rod, 103 - fourth locking bolt, 104 - quick connector, 201 - first locking bolt, 202 - connecting rod, 301 - second locking bolt, 601 - retaining piece, 701 - instrument frame, 702 - pipeline frame, 703 - instrument binding strap, 704 - pipeline binding strap, 705 - third locking bolt, 706 - infusion tube frame, 801 - film placement groove, 802 - quick connection groove. Detailed Embodiments

[0011] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention; obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Embodiment 1

[0012] The present invention discloses an integrated device for transporting critically ill patients. Refer to Figures 1 to 5, the device includes a transfer plate 8, a first placement component 9, and a second placement component 10. Among them, the first placement component 9 is installed in the middle position of the transfer plate 8 in a detachable manner, while the second placement component 10 is also installed in the rear part of the transfer plate 8 in a detachable form.

[0013] The first placement component 9 includes a fixed rod 1, a first connecting pile 2, a second connecting pile 3, a first telescopic rod 4, a second telescopic rod 5, a film placement frame 6, and a storage platform 7. The first connecting pile 2 and the fixed rod 1 are detachably connected, enabling them to be quickly assembled and disassembled according to actual needs. The first telescopic rod 4 is installed between the first connecting piles 2 in a fixed connection manner. The design of this telescopic rod can flexibly adjust the width of the device according to different usage scenarios, thus better adapting to the installation requirements of various medical devices. The second connecting pile 3 is detachably connected to the top of the first connecting pile 2, further enhancing the structural stability of the device. The second telescopic rod 5 is also installed between the second connecting piles 3 in a fixed connection manner. The film placement frame 6 is matched with the first telescopic rod 4 through a sliding connection and can be flexibly adjusted according to needs to facilitate the placement of the patient's examination materials. The storage platform 7 is slidably sleeved outside the second telescopic rod 5. This design not only facilitates medical staff to quickly adjust the position of the storage platform 7 according to actual needs but also ensures the stability of the storage platform 7 during transportation, preventing the medical device from shifting or being damaged due to shaking.

[0014] The storage platform 7 includes an instrument frame 701, a pipeline frame 702, instrument straps 703, pipeline straps 704, and a third locking bolt 705. The pipeline frame 702 is fixedly arranged on both sides of the instrument frame 701, providing a stable placement space for various medical pipelines and preventing the pipelines from being entangled or falling off during transportation. The instrument straps 703 are slidably arranged on both sides of the instrument frame 701 and can be flexibly adjusted according to the sizes of different medical devices, thus ensuring the stable fixation of the instrument on the storage platform 7. The pipeline straps 704 are fixedly connected to the pipeline frame 702, further enhancing the fixation effect on the medical pipelines. The third locking bolt 705 is matched with the instrument frame 701 through a threaded connection and is used to lock the position of the storage platform 7 to ensure that the storage platform 7 does not slide due to external forces during transportation, thereby guaranteeing the safety of the medical device.

[0015] In addition, in order to better manage special pipelines such as infusion tubes, an infusion tube frame 706 is fixedly arranged outside the pipeline frame 702. This design can effectively prevent the infusion tube from falling off due to pulling during transportation, further improving the practicability and safety of the device. At the same time, an opening is specially designed on one side of the film placement frame 6, and a baffle 601 is rotatably arranged on the opening side. This opening design facilitates medical staff to quickly place and take out the patient's examination materials, while the baffle 601 can close the opening when needed to prevent the materials from accidentally falling during transportation.

[0016] In terms of connection stability, a first locking bolt 201 is installed on the lower side of the first connection pile 2 by means of threaded connection. The design of this locking bolt can ensure a firm connection between the first connection pile 2 and the fixed rod 1, preventing the two from loosening due to external forces. A connecting rod 202 is fixedly arranged on the top of the first connection pile 2 to further enhance the structural stability of the device. Similarly, a second locking bolt 301 is installed on the lower side of the second connection pile 3 by means of threaded connection to lock the position of the second connection pile 3 and ensure the stability of the entire device.

[0017] The structure design of the fixed rod 1 is also very ingenious. It includes an extension rod 101, a sleeve rod 102, a fourth locking bolt 103, and a quick connector 104. The extension rod 101 is slidably sleeved inside the sleeve rod 102. This telescopic design enables the fixed rod 1 to flexibly adjust its length according to different usage scenarios, so as to better adapt to the installation requirements of various medical devices. The fourth locking bolt 103 is matched with the sleeve rod 102 by means of threaded connection to lock the position of the extension rod 101 and ensure the stability of the fixed rod 1 during use. The quick connector 104 is fixedly connected to the bottom of the sleeve rod 102 to facilitate the quick connection and disassembly of the device with the transfer board 8.

[0018] As the basic component of the entire device, a film placement groove 801 is arranged at the center of the transfer board 8. The film placement groove 801 can be used to place imaging examination materials such as DR films, facilitating medical staff to perform radiography operations at the bedside and further improving the practicability of the device. At the same time, a quick connection groove 802 is fixedly arranged on the upper surface of the transfer board 8. The design of this quick connection groove 802 facilitates the quick connection and disassembly of the device with other components such as the fixed rod 1, improving the assembly efficiency of the device.

[0019] The structure design of the second placement component 10 is exactly the same as that of the first placement component 9, and its component parts and connection methods are the same as those of the first placement component 9. The length and width of the second placement component 10 are both larger than those of the first placement component 9. This design enables the second placement component 10 to place more or larger medical devices, thus meeting the needs of different patients for medical devices during transportation.

[0020] The working principle and usage process of this device are as follows: In terms of the working principle, the overall structure of the device is based on the transfer board 8, on which there are two detachable placement components, namely the first placement component 9 and the second placement component 10. The first placement component 9 is located in the middle of the transfer board 8 and is used to place the medical equipment that the patient is using; the second placement component 10 is located at the rear end of the transfer board 8 and is used to place the medical equipment that the patient may need or is about to use. This layout enables the device to meet the patient's usage requirements for current and standby medical equipment during the transfer process. The width of the device can be adjusted by the telescopic rod and fixed by the locking bolt, so as to adapt to different widths of installation scenarios, such as transfer beds, CT beds, etc. The device consists of two layers. The lower layer is the film placement frame 6, which is used to place the patient's examination materials, such as DR films, etc.; the upper layer is the storage platform 7, and its design takes into account the convenience and stability of use. The storage platform 7 can slide, which is convenient for medical staff to adjust according to the size and placement requirements of different instruments; at the same time, the storage platform 7 can also be fixed by the locking device to ensure that the instruments do not shake during the transfer process. In addition, slidable instrument straps 703 are provided on both sides of the instrument frame 701 of the storage platform 7, which can be adjusted according to the size of the instrument to be transferred, further ensuring the stability of the instrument during the transfer process. Pipeline frames 702 and infusion tube frames 706 are also provided on both sides of the instrument frame 701, which are used to organize various pipelines to prevent the pipelines from being pulled off during the transfer process. A film placement groove 801 is provided inside the transfer board 8 of the device, which can hold DR films for bedside radiography. The upper and lower sides of the device can be respectively connected to the fixing rods 1 of the device and used independently, and can be separately matched and fixed on the transfer bed and the CT table. At the same time, the storage platform 7 on the upper layer of the device can also be separately removed and placed on the railing of the patient's hospital bed, greatly improving the versatility and flexibility of the device.

[0021] In terms of the usage process, first, according to the specific transfer scenario and requirements, select a suitable position to install the first placement component 9 and the second placement component 10 on the transfer board 8. After installation, adjust the width of the device according to actual needs. Through the cooperation of the telescopic rod and the locking bolt, ensure that the device can be stably installed on the transfer board 8. Then, place the medical device being used by the patient on the placement platform 7 of the first placement component 9, and adjust the position of the instrument strap 703 according to the size and shape of the device to firmly fix the device. At the same time, place the pipelines of the device in the pipeline frame 702 and the infusion tube frame 706, and arrange the pipelines neatly to avoid entanglement or detachment during transfer. For the spare devices that the patient may need or is preparing to use, place them on the second placement component 10 and also fix and arrange the pipelines. During the transfer process, medical staff can adjust the position of the placement platform 7 at any time according to the actual situation to better operate and monitor the medical device. When inspection or treatment is required, the inspection materials in the film placement frame 6 on the device can be taken out for use, or bedside radiography and other operations can be performed using the film placement groove 801 inside the transfer board 8. After the transfer is completed, the first placement component 9, the second placement component 10, and components such as the fixing rod 1 can be easily disassembled to facilitate cleaning and disinfection of the device and prepare for the next use.

[0022] The preferred embodiments of the present invention disclosed above are only used to help illustrate the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the invention to the specific embodiments described.

Claims

1. An integrated device for transporting critically ill patients, characterized in that: include: A transfer plate, a first placement component, and a second placement component; the first placement component is detachably installed at the middle of the transfer plate; the second placement component is detachably installed at the rear end of the transfer plate.

2. The integrated device for transporting critically ill patients according to claim 1, characterized in that: The first placement assembly includes: a fixed rod, a first connecting pile, a second connecting pile, a first telescopic rod, a second telescopic rod, a film placement frame, and a storage platform; the first connecting pile is detachably connected to the fixed rod; the first telescopic rod is fixedly connected between the first connecting piles; the second connecting pile is detachably connected to the top of the first connecting pile; the second telescopic rod is fixedly connected between the second connecting piles; the film placement frame is slidably connected to the first telescopic rod; and the storage platform is slidably sleeved on the outside of the second telescopic rod.

3. The integrated device for transporting critically ill patients according to claim 2, characterized in that: The storage platform includes: an instrument frame, a pipeline frame, an instrument strap, a pipeline strap, and a third locking bolt; the pipeline frame is fixedly arranged on both sides of the instrument frame; the instrument strap is slidably arranged on both sides of the instrument frame; the pipeline strap is fixedly connected to the pipeline frame; and the third locking bolt is threadedly connected to the instrument frame.

4. The integrated device for transporting critically ill patients according to claim 2, characterized in that: An infusion tube frame is fixedly arranged outside the pipeline frame.

5. The integrated device for transporting critically ill patients according to claim 2, characterized in that: An opening is arranged on one side of the film placing frame; a blocking piece is rotatably arranged on the opening side of the film placing frame.

6. The integrated device for transporting critically ill patients according to claim 2, characterized in that: A first locking bolt is threadedly connected to the lower side of the first connecting pile; a connecting rod is fixedly arranged on the top of the first connecting pile; and a second locking bolt is threadedly connected to the lower side of the second connecting pile.

7. The integrated device for transporting critically ill patients according to claim 2, characterized in that: The fixing rod comprises: an extension rod, a sleeve rod, a fourth locking bolt, and a quick connector; the extension rod is slidably sleeved inside the sleeve rod; the fourth locking bolt is threadedly connected to the sleeve rod; and the quick connector is fixedly connected to the bottom of the sleeve rod.

8. The integrated device for transporting critically ill patients according to claim 1, characterized in that: A sheet placement groove is arranged at the center of the transfer plate.

9. The integrated device for transporting critically ill patients according to claim 1, characterized in that: The upper surface of the transfer plate is fixedly provided with a quick-connect groove.

10. The integrated device for transporting critically ill patients according to claim 1, characterized in that: The second placement assembly structure has the same components and connection method as the first placement assembly.