Multidrug-resistant bacteria infusion stand

By integrating a scanning camera and display onto the IV stand, information on multidrug-resistant bacteria can be dynamically displayed, solving the problem of errors easily found in static warning signs. This ensures the accuracy and consistency of multidrug-resistant bacteria control measures and reduces the risk of transmission.

CN224540695UActive Publication Date: 2026-07-24GUANGZHOU LIWAN CENT HOSPITAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU LIWAN CENT HOSPITAL
Filing Date
2025-04-09
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing static visual warning measures for multidrug-resistant bacteria are prone to inaccurate signage due to human error, leading to the failure of prevention and treatment measures and even causing medical accidents.

Method used

Design a multidrug-resistant bacteria infusion stand equipped with a scanning camera to scan patient identification to obtain information. After processing by a processor, the information is dynamically displayed on the monitor, showing the types of multidrug-resistant bacteria and the patient's identity information, replacing static signs. The stand also features wireless charging, a hand sanitizer, and a medical waste sorting and detection system to achieve real-time updates and accurate display of information.

Benefits of technology

Ensuring that visual warnings about multidrug-resistant bacteria are linked to patients avoids human error, improves the accuracy and consistency of prevention and control measures, and reduces the risk of multidrug-resistant bacteria transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to medical instrument technical field, concretely provides a multiple drug resistant bacteria infusion support, aims at solving the problem of easy to appear the mark error among the existing static multiple drug resistant bacteria visual warning measure. For this purpose, the utility model provides a multiple drug resistant bacteria infusion support, and the multiple drug resistant bacteria infusion support includes: the frame body, mobile device is set up on the frame body, and mobile device is provided with scanning camera, and scanning camera is used for scanning patient identification to obtain identification information, the display is set up on the frame body, and the display is used for at least showing the multiple drug resistant bacteria kind information of patient, first treater is connected with mobile device and the display respectively, and first treater is used for processing identification information to at least obtain the multiple drug resistant bacteria kind information of patient, and make the display at least show the multiple drug resistant bacteria kind information of patient. The utility model solves the problem of easy to appear the mark error among the existing multiple drug resistant bacteria visual warning measure through above -mentioned measure.
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Description

Technical Field

[0001] This utility model relates to the field of medical device technology, specifically providing a multidrug-resistant bacterial infusion stand. Background Technology

[0002] Multidrug-resistant organisms (MDROs) are bacteria that exhibit resistance to three or more classes of antibiotics used clinically. The widespread prevalence and dissemination of MDROs has become one of the major challenges in the global clinical treatment of infections.

[0003] Current clinical practice indicates that infection control of multidrug-resistant organisms (MDRs) primarily relies on three basic measures: visual warning measures, hand hygiene implementation measures, and medical waste management measures. Visual warning measures typically involve hanging static MDR signs to indicate the types of MDRs and to remind patients to isolate themselves after contact. Hand hygiene implementation measures include placing separate hand sanitizer dispensers next to patients' beds to ensure that healthcare workers disinfect their hands promptly. Medical waste management measures involve using dedicated medical waste collection bins to prevent cross-infection.

[0004] However, all of the above measures have certain drawbacks. In particular, the measure of hanging static signs indicating multidrug-resistant bacteria is prone to misplacement due to operational errors by medical staff. Because there are many types of multidrug-resistant bacteria, and the corresponding treatment and prevention measures differ for different types, incorrect placement of signs may lead to the ineffectiveness of prevention and treatment measures, or even cause serious medical accidents. Utility Model Content

[0005] The present invention aims to solve the above-mentioned technical problems, namely, to solve the problem that labeling errors are prone to occur in existing static visual warning measures for multidrug-resistant bacteria.

[0006] This utility model provides a multidrug-resistant bacteria infusion stand, the multidrug-resistant bacteria infusion stand comprising:

[0007] Frame;

[0008] A mobile device, which can be detachably mounted on the frame, is equipped with a scanning camera for scanning patient identification to obtain identification information;

[0009] A display, which is mounted on the frame;

[0010] A first processor, connected to the mobile device and the display respectively, is configured to process the identification information to obtain at least the patient's multidrug-resistant bacterial species information, and to cause the display to display at least the patient's multidrug-resistant bacterial species information.

[0011] In some feasible embodiments of the multidrug-resistant bacterial infusion stand described above, the mobile device is also equipped with an image acquisition camera, which is used to acquire skin image information of the patient.

[0012] In some feasible embodiments of the multidrug-resistant bacteria infusion stand described above, the multidrug-resistant bacteria infusion stand further includes a charging base disposed on the stand body, so that the mobile device can be detachably fixed on the charging base. The charging base is provided with a wireless charging module, which is used to wirelessly charge the mobile device placed on the charging base.

[0013] In some feasible embodiments of the multidrug-resistant bacterial infusion stand described above, the charging base is provided with a magnetic suction part, and the mobile device is provided with a magnetic attraction part. The mobile device can be detachably fixed to the charging base through the magnetic attraction part and the magnetic suction part.

[0014] In some feasible embodiments of the multidrug-resistant bacteria infusion stand described above, the multidrug-resistant bacteria infusion stand further includes a hand sanitizer assembly. The hand sanitizer assembly includes a sanitizer body, which is disposed on the stand. The sanitizer body contains a container for holding disinfectant solution, and a spraying mechanism is provided at the bottom of the container to spray out the disinfectant solution from the container.

[0015] In some feasible embodiments of the multidrug-resistant bacteria infusion stand described above, the hand sanitizer assembly further includes a control module and an infrared sensor. The control module is connected to the spray mechanism and the infrared sensor, respectively. The infrared sensor is used to detect whether a human hand is present in the spray area of ​​the spray mechanism.

[0016] In some feasible embodiments of the multidrug-resistant bacteria infusion stand described above, the multidrug-resistant bacteria infusion stand includes a medical waste bin assembly disposed on the stand body, the medical waste bin assembly including at least one bin body.

[0017] In some feasible embodiments of the multidrug-resistant infusion stand described above, the medical waste bin assembly includes a conventional bin and a sharps bin. The conventional bin is equipped with a metal detector to detect whether there are metal instruments inside the conventional bin. The medical waste bin assembly also includes an alarm device, and the metal detector is connected to the alarm device.

[0018] In some feasible embodiments of the multidrug-resistant bacterial infusion stand described above, the multidrug-resistant bacterial infusion stand further includes a pulse oximeter, which is used to acquire the patient's blood oxygen information. The display is also used to display the patient's blood oxygen information, and the first processor is also connected to the pulse oximeter; and / or

[0019] The multidrug-resistant bacteria infusion stand also includes a blood pressure monitor, which is used to acquire the patient's blood pressure information. The display is also used to display the patient's blood pressure information. The first processor is also connected to the blood pressure monitor.

[0020] In some feasible embodiments of the multidrug-resistant bacteria infusion stand described above, an infusion stand assembly is provided on the stand body. The infusion stand assembly includes a telescopic rod and a hook. One end of the telescopic rod is connected to the stand body, and the other end of the telescopic rod is connected to the hook. The telescopic rod can drive the hook to reciprocate along the height direction of the multidrug-resistant bacteria infusion stand.

[0021] This invention provides an infusion stand for multidrug-resistant organisms (MROs). By using a mobile device equipped with a scanning camera to scan patient identification, the invention obtains information about the patient's MRO species and displays this information on a monitor. Through these measures, the monitor can replace existing static MRO warning signs, and its displayed information can be dynamically updated. Furthermore, since the information displayed is obtained by scanning the patient identification, it ensures that the displayed information is linked to the patient, avoiding human error and solving the problem of labeling errors that easily occur in existing visual warning measures for MROs. Attached Figure Description

[0022] The preferred embodiments of this utility model are described below with reference to the accompanying drawings, in which:

[0023] Figure 1 This is one of the structural schematic diagrams of the multidrug-resistant bacteria infusion stand of this utility model;

[0024] Figure 2 This is the second schematic diagram of the structure of the multidrug-resistant bacteria infusion stand of this utility model;

[0025] Figure 3 This is a structural schematic diagram of the infusion stand assembly of this utility model;

[0026] Figure 4 This is one of the structural schematic diagrams of the mobile device of this utility model;

[0027] Figure 5 This is the second structural schematic diagram of the mobile device of this utility model;

[0028] Figure 6 This is a schematic diagram of the interaction between the mobile device and the charging dock in this utility model;

[0029] Figure 7 This is a schematic diagram of the structure of the hand sanitizer assembly of this utility model;

[0030] Figure 8 This is one of the structural schematic diagrams of the medical waste bin assembly of this utility model;

[0031] Figure 9 This is the second structural schematic diagram of the medical waste bin assembly of this utility model, in which a partial structural view of the medical waste bin assembly is shown.

[0032] Figure 10 This is a schematic diagram of the principle of the multidrug-resistant bacterial infusion stand of this utility model.

[0033] List of reference numerals in the attached diagram:

[0034] 1-Frame; 11-Infusion stand assembly; 111-Telescopic rod; 112-Hook; 12-Handle; 13-Wheel caster; 14-First support; 15-Second support; 2-Mobile device; 21-Touch screen; 22-Scanning camera; 23-Image acquisition camera; 24-Magnetic attachment; 3-Charging base; 31-Magnetic attachment; 4-Display; 41-Movable support; 5-Hand sanitizer assembly; 51-Sterilizer body; 52-Container; 53-Spray mechanism; 54-Infrared sensor; 6-Medical waste bin assembly; 61-Standard bin; 611-First flip cover; 62-Sharps bin; 621-Second flip cover; 63-Alarm device; 64-Metal detector; 7-Pulse oxygen meter; 8-Blood pressure meter. Detailed Implementation

[0035] Preferred embodiments of the present invention will now be described with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.

[0036] It should be noted that in the description of this utility model, terms such as "upper", "lower", "inner", and "outer" that indicate direction or positional relationship are based on the direction or positional relationship shown in the accompanying drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this utility model.

[0037] Furthermore, it should be noted that in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; they can refer to the internal connection of two components, and so on. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances. In addition, numerical terms such as "first," "second," etc., used herein are primarily (only) used to distinguish multiple similar objects, quantities, or processes; that is, they do not necessarily indicate any dependency and / or order between these objects, quantities, or processes. If a dependency and / or order is required, it will be explicitly stated in the context, or it will be obvious to those skilled in the art when understanding the specific embodiments.

[0038] like Figure 1 and Figure 2 As shown, this embodiment of the invention provides a multidrug-resistant infusion stand, which includes a stand body 1, a mobile device 2, and a display 4, etc. An infusion stand assembly 11 is provided on the top of the stand body 1 for hanging infusion bags. A handle 12 is provided on the front of the stand body 1, and four casters 13 are provided on the bottom, allowing medical personnel to push the entire multidrug-resistant infusion stand to a suitable position using the handle 12.

[0039] It should be noted that the number of casters 13 is not limited to four in this embodiment; it can be three, five, six, etc.

[0040] Furthermore, such as Figure 3 As shown, the infusion stand assembly 11 includes a telescopic rod 111 and a hook 112. One end of the telescopic rod 111 is connected to the frame 1, and the other end is connected to the hook 112. The telescopic rod 111 can drive the hook 112 to move back and forth along the height direction of the multidrug-resistant bacteria infusion stand. The hook 112 is used to hang infusion bags. Through the above configuration, the height of the hook 112 can be flexibly adjusted according to actual treatment needs, expanding the applicability of the infusion stand.

[0041] It should be noted that the mobile device 2 in this utility model includes, but is not limited to, devices such as mobile phones and tablet computers. In this embodiment, the mobile device 2 is described using a mobile phone as an example.

[0042] like Figure 1 and Figure 2 As shown, the mobile device 2 is detachably mounted on the frame 1. Further, as... Figure 4 and Figure 5As shown, the mobile device 2 has a touchscreen 21 on the front and a scanning camera 22 on the back. The scanning camera 22 is used to scan patient identifiers to obtain identifier information. The mobile device 2 is equipped with a second processor that is communicatively connected to the scanning camera 22 to process and analyze the acquired patient identifiers, thereby obtaining the corresponding identifier information. The touchscreen 21 is used to display the image information captured by the scanning camera 22. Additionally, the touchscreen 21 also displays a corresponding interactive interface for medical personnel to operate.

[0043] It should be noted that the patient identifier is specifically a QR code or barcode, and the identifier information corresponding to the patient identifier is linked to the patient.

[0044] It is understandable that the technology of using the scanning camera 22 of the mobile device 2 to scan and identify patient identification (QR code or barcode) to obtain identification information is already very mature, and will not be elaborated here.

[0045] In clinical practice, the treatment of multidrug-resistant bacterial infections often requires the combined use of multiple antibiotics. However, due to individual patient differences, some patients may experience allergic reactions after medication. These allergic reactions typically manifest as skin and subcutaneous tissue disorders, such as rashes, itching, and urticaria. Therefore, recording patients' allergic reactions after medication use is of significant clinical importance.

[0046] In order to determine the patient's allergic reaction after taking the medication, such as Figure 5 In this invention, the back of the mobile device 2 is also equipped with an image acquisition camera 23. The image acquisition camera 23 is used to acquire skin image information of the patient, and the image acquisition camera 23 is communicatively connected to the second processor. With the above setup, after the patient uses the multidrug-resistant infusion stand of this invention for medication, medical staff can capture and acquire the patient's skin image information through the image acquisition camera 23 of the mobile device 2. This allows for timely recording of the patient's skin symptoms, providing a visual basis for judging the patient's allergic reaction, and thus helping to determine the patient's allergic reaction after medication.

[0047] Furthermore, in this embodiment, the scanning camera 22 and the image acquisition camera 23 are the same camera device.

[0048] Continue to refer to Figure 1 and Figure 2 The display 4 is mounted on the front of the frame 1. The display 4 is used to display information about the patient's multidrug-resistant bacteria and identification information. Specifically, such as... Figure 2As shown, a movable bracket 41 is provided on the front of the frame 1. One end of the movable bracket 41 is connected to the frame 1, and the other end of the movable bracket 41 is connected to the display 4, so that the display 4 is placed on the front of the frame 1. The display 4 can adjust its orientation angle through the movable bracket 41, thereby facilitating the display of information on the types of multidrug-resistant bacteria.

[0049] It should be noted that the information on multidrug-resistant bacteria includes the names of the multidrug-resistant bacteria and their resistance information.

[0050] The multidrug-resistant bacteria infusion stand of this utility model also includes a first processor, which is connected to the mobile device 2 and the display 4 respectively. The first processor is used to process identification information to obtain the patient's multidrug-resistant bacteria type information and identity information, and to make the display 4 display the patient's multidrug-resistant bacteria type information and identity information.

[0051] Specifically, such as Figure 10 As shown, in this embodiment, the multidrug-resistant bacteria infusion stand also includes a first wireless communication module that is communicatively connected to the first processor. The mobile device 2 is also provided with a second wireless communication module that is communicatively connected to the second processor. The first wireless communication module and the second wireless communication module are wirelessly connected, so that the first processor can communicate with the second processor through the first wireless communication module and the second wireless communication module, thereby enabling the identification information processed by the second processor to be transmitted to the first processor wirelessly.

[0052] Further reference Figure 10 In this embodiment, the first wireless communication module is also used to wirelessly connect with the Hospital Information System (HIS system). This not only enables the first processor to transmit identification information to the Hospital Information System for processing through the first wireless communication module to match and obtain the corresponding multidrug-resistant bacterial species information and identity information of the patient, but also enables the first processor to receive and obtain the multidrug-resistant bacterial species information and identity information of the patient obtained by the Hospital Information System through the first wireless communication module, and finally enables the display 4 to display the patient's multidrug-resistant bacterial species information and identity information.

[0053] It should be noted that the hospital information management system is an information system that stores information on the types of multidrug-resistant bacteria and the identity information of patients in the hospital. It has its own wireless communication capabilities and is a very mature information system, which will not be elaborated upon here. Furthermore, wireless communication connections include Bluetooth, WiFi, and so on.

[0054] The multidrug-resistant bacteria (MDR-LCB) infusion stand provided by this invention uses a mobile device 2 equipped with a scanning camera 22 to scan patient identification, thereby obtaining information on the MDR-LCB species and the patient's identity. This information is then displayed on a display 4. Through these measures, the display 4 can replace existing static MDR-LCB warning signs, and its displayed information can be dynamically updated. Furthermore, since the information displayed on the display 4 is obtained by scanning the patient identification, it ensures that the displayed information is linked to the patient, avoiding human error in labeling and solving the problem of labeling errors that easily occur in existing MDR-LCB visual warning measures.

[0055] like Figure 1 and Figure 2 As shown, the multidrug-resistant bacteria infusion stand also includes a charging base 3 set on the stand body 1. The mobile device 2 can be detachably fixed on the charging base 3. The charging base 3 is provided with a wireless charging module, which is used to wirelessly charge the mobile device 2 placed on the charging base 3.

[0056] It is understandable that the technology of using a wireless charging module to wirelessly charge the mobile device 2 is already very mature, and will not be elaborated on here.

[0057] Furthermore, such as Figure 5 and Figure 6 As shown, the back of the mobile device 2 is provided with a magnetic engagement part 24, and the charging base 3 is provided with a magnetic attraction part 31. The mobile device 2 is detachably fixed to the charging base 3 through the magnetic engagement part 24 and the magnetic attraction part 31. Specifically, the magnetic engagement part 24 of the mobile device 2 is made of ferromagnetic material, and the magnetic attraction part 31 of the charging base 3 is a magnet.

[0058] The multidrug-resistant bacteria infusion stand provided by this utility model has a charging base 3, which allows the mobile device 2 to be placed on the charging base 3 for wireless charging. This makes the mobile device 2 easy to place and charge, significantly improving the convenience of clinical use and simplifying the daily maintenance of the mobile device 2 by medical staff.

[0059] like Figure 1 and Figure 2 As shown, the multidrug-resistant infusion stand also includes a hand sanitizer assembly 5. (As shown...) Figure 7 As shown, the hand sanitizer assembly 5 includes a sanitizer body 51, which is mounted on a frame 1. Inside the sanitizer body 51 is a container 52 for holding disinfectant solution. A spray mechanism 53 is located at the bottom of the container 52 to spray out the disinfectant solution. This design allows medical personnel to use the hand sanitizer assembly 5 for disinfection at any time during treatment and prevention, thus meeting the requirements for implementing hand hygiene measures.

[0060] Further reference Figure 7 The hand sanitizer assembly 5 also includes a control module and an infrared sensor 54. The control module is communicatively connected to both the spray mechanism 53 and the infrared sensor 54. The infrared sensor 54 detects whether a human hand is present in the spray area of ​​the spray mechanism 53. When the infrared sensor 54 detects a human hand in the spray area of ​​the spray mechanism 53, it transmits a signal to the control module, which then activates the spray mechanism 53 to spray the disinfectant solution from the container 52. Through this setup, healthcare workers can have the spray mechanism 53 spray disinfectant solution without contact, reducing the risk of cross-infection.

[0061] like Figure 1 and Figure 2 As shown, the multidrug-resistant infusion stand includes a medical waste bin assembly 6, which is mounted on the stand body 1 and includes at least one bin. This design provides the multidrug-resistant infusion stand of this invention with a dedicated medical waste collection bin, preventing cross-contamination and thus meeting the requirements of medical waste management measures.

[0062] Furthermore, such as Figure 8 and Figure 9 As shown, in this embodiment, the medical waste bin assembly 6 includes a conventional bin 61 and a sharps bin 62. Specifically, the opening of the conventional bin 61 is hinged with a first flap 611 for opening and closing, and the opening of the sharps bin 62 is hinged with a second flap 621 for opening and closing. This arrangement allows medical personnel to classify medical waste generated during treatment into conventional medical waste and sharps medical waste, facilitating subsequent waste disposal. It should be noted that conventional medical waste includes soft objects such as cotton, gauze, and cotton swabs, while sharps medical waste includes objects with metal instruments such as syringes and lancets.

[0063] During the later processing of sorted medical waste, if metal instruments are present in the standard container 61, it is easy for processing personnel to be accidentally cut or damage the specialized waste processing equipment. To avoid the above situation, further measures should be taken, such as... Figure 8 , Figure 9 and Figure 10As shown, the conventional container 61 of this invention is equipped with a metal detector 64 to detect the presence of metal instruments inside. The medical waste bin assembly 6 also includes an alarm device 63, with the metal detector 64 communicating with the alarm device 63 via a first processor. When the metal detector 64 detects a metal instrument inside the conventional container 61, the alarm device 63 will issue an alarm. The alarm device 63 is specifically a speaker, capable of issuing an alarm through voice broadcast. With the above configuration, when medical personnel mistakenly discard metal instruments into the conventional container 61, the metal detector 64 can promptly detect the metal instrument and issue an alarm to remind medical personnel, ensuring the accuracy of medical waste sorting.

[0064] like Figure 1 , Figure 2 and Figure 10 As shown, the multidrug-resistant infusion stand also includes a pulse oximeter 7, which is detachably mounted on the first support 14 on the side of the stand body 1. The pulse oximeter 7 is used to acquire the patient's blood oxygen information, and the display 4 is also used to display the patient's blood oxygen information. The first processor is also communicatively connected to the pulse oximeter 7. After acquiring the patient's blood oxygen information, the pulse oximeter 7 transmits the information to the display 4 for display by medical staff.

[0065] Continue to refer to Figure 1 , Figure 2 and Figure 10 The multidrug-resistant infusion stand also includes a blood pressure monitor 8, which is detachably mounted on a second support 15 on the side of the stand body 1. The blood pressure monitor 8 is used to acquire the patient's blood pressure information, and the display 4 is also used to display the patient's blood pressure information. A first processor is also connected to the blood pressure monitor 8. After acquiring the patient's blood pressure information, the first processor transmits the information to the display 4 for display by medical staff.

[0066] This utility model of a multidrug-resistant infusion stand also includes a power module, specifically a lithium battery. The power module is electrically connected to a display 4, a first processor, a wireless charging module, a hand sanitizer assembly 5, an alarm device 63, a metal detector 64, a pulse oximeter 7, and a blood pressure monitor 8. Through the above configuration, a stable power supply is achieved for each functional module of the infusion stand.

[0067] In summary, this invention effectively solves the problems of existing prevention and control measures being independent, scattered, cumbersome, inefficient, and difficult to form a coherent prevention and control process by integrating visual warning measures, hand hygiene implementation measures, and medical waste management measures in the prevention and control of multidrug-resistant bacteria infection, and significantly reduces the risk of multidrug-resistant bacteria transmission.

[0068] The technical solution of this utility model has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the protection scope of this utility model is obviously not limited to these specific embodiments. Without departing from the principle of this utility model, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of this utility model.

Claims

1. A multidrug-resistant bacterial infusion stand, characterized in that, The multidrug-resistant bacteria infusion stand includes: Frame (1); Mobile device (2) which can be detachably mounted on the frame (1), the mobile device (2) is equipped with a scanning camera (22) for scanning patient identification to obtain identification information; A display (4) is mounted on the frame (1); A first processor is connected to the mobile device (2) and the display (4) respectively. The first processor is used to process the identification information to obtain at least the multidrug-resistant bacterial species information of the patient, and to make the display (4) display at least the multidrug-resistant bacterial species information of the patient.

2. The multidrug-resistant bacterial infusion stand according to claim 1, characterized in that, The mobile device (2) is also equipped with an image acquisition camera (23), which is used to acquire the patient's skin image information.

3. The multidrug-resistant bacterial infusion stand according to claim 1, characterized in that, The multidrug-resistant bacteria infusion stand also includes a charging base (3) disposed on the stand (1) so that the mobile device (2) can be detachably fixed on the charging base (3). The charging base (3) is provided with a wireless charging module, which is used to wirelessly charge the mobile device (2) placed on the charging base (3).

4. The multidrug-resistant bacterial infusion stand according to claim 3, characterized in that, The charging base (3) is provided with a magnetic suction part (31), and the mobile device (2) is provided with a magnetic attraction part (24). The mobile device (2) can be detachably fixed to the charging base (3) through the magnetic attraction part (24) and the magnetic suction part (31).

5. The multidrug-resistant bacterial infusion stand according to claim 1, characterized in that, The multidrug-resistant bacteria infusion stand also includes a hand sanitizer assembly (5), which includes a sanitizer body (51) disposed on the stand (1). The sanitizer body (51) is provided with a container (52) for containing disinfectant solution inside the sanitizer body (51). A spraying mechanism (53) is provided at the bottom of the container (52) to spray out the disinfectant solution in the container (52).

6. The multidrug-resistant bacteria infusion stand according to claim 5, characterized in that, The hand sanitizer assembly (5) also includes a control module and an infrared sensor (54). The control module is connected to the spray mechanism (53) and the infrared sensor (54) respectively. The infrared sensor (54) is used to detect whether there is a human hand in the spray area of ​​the spray mechanism (53).

7. The multidrug-resistant bacteria infusion stand according to claim 1, characterized in that, The multidrug-resistant infusion stand includes a medical waste bin assembly (6), which is disposed on the stand body (1) and includes at least one bin.

8. The multidrug-resistant bacterial infusion stand according to claim 7, characterized in that, The medical waste bin assembly (6) includes a conventional bin (61) and a sharps bin (62). The conventional bin (61) is equipped with a metal detector (64) to detect whether there are metal instruments inside the conventional bin (61). The medical waste bin assembly (6) also includes an alarm device (63), and the metal detector (64) is connected to the alarm device (63).

9. The multidrug-resistant bacteria infusion stand according to claim 1, characterized in that, The multidrug-resistant infusion stand also includes a pulse oximeter (7), which is used to acquire the patient's blood oxygen information. The display (4) is also used to display the patient's blood oxygen information. The first processor is also connected to the pulse oximeter (7); and / or The multidrug-resistant infusion stand also includes a blood pressure monitor (8), which is used to acquire the patient's blood pressure information. The display (4) is also used to display the patient's blood pressure information. The first processor is also connected to the blood pressure monitor (8).

10. The multidrug-resistant bacterial infusion stand according to claim 1, characterized in that, An infusion stand assembly (11) is provided on the frame (1). The infusion stand assembly (11) includes a telescopic rod (111) and a hook (112). One end of the telescopic rod (111) is connected to the frame (1), and the other end of the telescopic rod (111) is connected to the hook (112). The telescopic rod (111) can drive the hook (112) to move back and forth along the height direction of the multidrug-resistant bacteria infusion stand.