Monitor device for cardiothoracic surgery nursing
By designing monitor devices for lifting, displaying, filtering and storage mechanisms, the problems of insufficient monitoring parameters and weak protection design in cardiothoracic surgery care by traditional monitors are solved, and all-round monitoring and data management are achieved, which improves nursing efficiency and equipment reliability.
Patent Information
- Application Number
- CN202510402051.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-08-05
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional monitors have problems such as insufficient monitoring parameters, weak protection design, and limited data management and transmission functions in cardiothoracic surgery care, which is difficult to meet the needs of complex disease monitoring and collaborative treatment in multiple departments.
A monitor device for cardiothoracic surgery nursing is designed, including a lifting mechanism, a display detection mechanism, a filtering replacement mechanism and a storage mechanism. It has multi-angle adjustment, all-round monitoring, protection and data transmission functions. It protects the internal components through guide components and closed components, and has multiple interfaces and filtering systems to meet the monitoring needs of different patients.
It realizes all-round physiological monitoring and data management for cardiothoracic surgery patients, improves the efficiency and quality of nursing work, extends the service life of the equipment, and ensures the safety and treatment effect of patients.
Smart Images

Figure CN120419928A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of monitors, and in particular to a monitor device for cardiothoracic surgery nursing. Background Art
[0002] In cardiothoracic surgery nursing, accurate monitoring and timely intervention of patients' physiological conditions are crucial, which is directly related to the patient's treatment effect and recovery process. However, traditional monitoring devices have many limitations and cannot meet the complex needs of current clinical care.
[0003] On the one hand, early monitors can often only monitor a few basic physiological parameters of patients, such as heart rate and blood pressure. However, the conditions of cardiothoracic surgery patients are complex and changeable. Monitoring of a single or a small number of parameters cannot provide medical staff with comprehensive and accurate condition information. For example, during cardiac surgery, only monitoring heart rate and blood pressure can make it difficult to detect potential problems such as myocardial ischemia and abnormal cardiac function, which can easily delay the best treatment time and affect the patient's prognosis. On the other hand, the hospital environment is complex, and monitors are easily affected by collisions, dust, water vapor and other factors during use and transportation. The protective design of traditional monitors is relatively weak, and their shells usually do not have good anti-collision performance. The internal electronic components are easily damaged by collisions. damage; at the same time, there is a lack of effective dust and water proof measures. Dust and water vapor enter the interior of the equipment, corroding circuit boards and electronic components, shortening the service life of the equipment, increasing maintenance costs, and even causing failures at critical moments, endangering the patient's life. In addition, with the development of medical informatization, the demand for efficient management and timely transmission of patient monitoring data is increasing, but traditional monitors have limited functions in data management and transmission, and small data storage capacity, which makes it difficult to meet long-term and large-scale monitoring data storage needs. Moreover, the data transmission method is single and cannot be seamlessly connected with the hospital's information system. It is inconvenient for medical staff to obtain and analyze data, which is not conducive to multi-department collaborative treatment and comprehensive assessment of the patient's condition.
[0004] In view of this, an object of the present invention is to provide a cardiothoracic surgery nursing monitor device to address the deficiencies in the prior art. Summary of the Invention
[0005] In view of the shortcomings of the existing technology, the present invention provides a cardiothoracic surgery nursing monitor device, which solves the problem of low monitoring efficiency.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: A cardiothoracic surgery nursing monitor device, comprising a box body, a push handle installed at one end of the box body, a plurality of universal wheels installed at the bottom of the box body, an anti-collision pad installed around the outside of the box body to prevent the device from being hit, a lifting mechanism installed inside the box body, the lifting mechanism including a guide assembly and a closing assembly, which are used to lift and protect the device, a display detection mechanism installed on the upper part of the lifting mechanism, the display detection mechanism including a display assembly, an interface assembly, a protection assembly, an auxiliary assembly and a detection assembly, which are used to detect patients and protect the device, an adjustment mechanism installed on the upper part of the lifting mechanism, which is used to adjust the angle of the device, filter replacement mechanisms installed on both sides of the box body, which are used to ventilate and filter the device, and a storage mechanism installed at the bottom of one side of the box body, which is used to store a set of tools;
[0007] The guide assembly in the lifting mechanism includes a hydraulic column fixedly installed at the bottom end of the box body, the output end of the hydraulic column is fixedly connected to the main body platform, guide plates are installed on both sides of the box body, and guide grooves are opened on one side of the two guide plates. Guide blocks are slidably installed inside the two guide grooves, and the two guide blocks are fixedly connected to the two sides of the main body platform respectively.
[0008] Preferably, the closing assembly includes a rotating rod rotatably mounted at one end of the upper portion of the box body, and a blocking door is fixedly mounted on one side of the rotating rod.
[0009] Preferably, the display component in the display detection mechanism includes a rotating shaft rotatably mounted on one side of the upper portion of the main platform, and a monitor is fixedly mounted on one side of the rotating shaft.
[0010] Preferably, the interface assembly includes an expansion interface provided at an upper portion of one side of the monitor, an oxygen inhalation interface provided at a middle portion of one side of the monitor, and a printing interface provided at a lower portion of one side of the monitor.
[0011] Preferably, the protection component includes a second rotating rod rotatably mounted on one side of the monitor, and a rubber protective sleeve is fixedly mounted on one side of the second rotating rod.
[0012] Preferably, the auxiliary component includes a plurality of alarm lights of different levels installed on the upper part of the monitor, and players are installed on both sides of the upper part of the monitor.
[0013] Preferably, the detection component includes lead wires connected to both ends of the monitor, one end of each of the lead wires is connected to an electrode sheet, and a heart rate sensor is installed on the rear side of the electrode sheet.
[0014] Preferably, the adjustment mechanism includes a telescopic rod fixedly mounted on the upper portion of the main platform, an output end of the telescopic rod is rotatably connected to a fixing slot, and the fixing slot is fixedly connected to the rear side of the monitor.
[0015] Preferably, the filter replacement mechanism includes a plurality of ventilation holes opened on both sides of the outside of the box body, sliders are installed on both sides of the outside of the box body, a slide groove is opened on one side of the two sliders, a filter is slidably installed between the two slide grooves, and the filter is connected to one side of the outside of the plurality of ventilation holes.
[0016] Preferably, the storage mechanism includes a collection box installed at the bottom of one side of the box body, and a plurality of partitions are provided inside the collection box.
[0017] The present invention provides a monitoring device for cardiothoracic surgery nursing. It has the following beneficial effects:
[0018] 1. The monitor in the display detection mechanism of the present invention can adjust the angle through the rotating shaft, which is convenient for medical staff to view. The electrode sheet and the heart rate sensor are connected through the lead wire of the detection component to collect data. At the same time, multiple interfaces are used to meet data transmission and function expansion: the expansion interface can connect additional functional modules, the oxygen inhalation interface can monitor oxygen inhalation parameters, and the printing interface is convenient for printing reports. It not only realizes comprehensive physiological data monitoring of patients, but also can expand functions according to the special needs of different patients, making it convenient for medical staff to analyze the condition and record medical records, providing strong support for precision medicine, and improving the quality and efficiency of nursing work.
[0019] 2. The present invention can flexibly adjust the angle of the monitor through the telescopic rod and the fixing slot to adapt to the observation of medical staff and changes in the patient's body position. The ventilation holes of the filter replacement mechanism ensure air circulation, and the filter can filter dust and is easy to replace. At the same time, the collection box and partitions of the storage mechanism can be used to classify and store tools, making it more convenient for medical staff to use. They can clearly view the data and ensure the internal environment of the equipment is good, extending the service life of the equipment. At the same time, the efficiency of tool retrieval is improved, thereby improving the efficiency and quality of the entire cardiothoracic surgery nursing work and creating better conditions for the patient's recovery.
[0020] 3. The present invention provides a push handle and universal wheels on the outside of the box, combined with an anti-collision pad around the outside, which makes it convenient for medical staff to move the monitor to the patient's bedside and can effectively buffer collisions. At the same time, the hydraulic column, guide plate and guide block in the lifting mechanism cooperate with each other to achieve smooth lifting. When not in use, the internal components can be sealed and protected by the rotating rod and the blocking door. It not only meets the height adjustment requirements of the monitor in different usage scenarios, but also protects the internal precision components, reduces damage caused by collisions, dust, etc., extends the service life of the equipment, ensures that the equipment can be put into normal use at any time, and provides stable and reliable protection for patient care. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 A perspective view of the present invention;
[0022] Figure 2 A schematic diagram of the outer ventilation hole of the present invention;
[0023] Figure 3 It is a schematic diagram of the lifting mechanism of the present invention;
[0024] Figure 4 It is a schematic diagram of the display detection mechanism of the present invention;
[0025] Figure 5 is a schematic diagram of a detection component of the present invention;
[0026] Figure 6 It is a schematic diagram of the adjustment mechanism of the present invention;
[0027] Figure 7 Schematic diagram of the filter replacement mechanism of the present invention;
[0028] Figure 8 It is a schematic diagram of the storage mechanism of the present invention.
[0029] Among them, 1. Box body; 2. Push handle; 3. Universal wheel; 4. Anti-collision pad; 5. Lifting mechanism; 501. Hydraulic column; 502. Main platform; 503. Guide plate; 504. Guide groove; 505. Guide block; 506. Rotating rod 1; 507. Door stop; 6. Display detection mechanism; 601. Rotating shaft; 602. Monitor; 603. Expansion interface; 604. Oxygen inhalation interface; 605. Printing interface; 606. Rotating rod 2; 607. Rubber protective cover; 608. Alarm light; 609. Player; 610. Lead wire; 611. Electrode sheet; 612. Heart rate sensor; 7. Adjustment mechanism; 701. Telescopic rod; 702. Fixing groove; 8. Filter replacement mechanism; 801. Ventilation hole; 802. Slider; 803. Slide groove; 804. Filter; 9. Storage mechanism; 901. Collection box; 902. Partition. DETAILED DESCRIPTION
[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the present specification. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0031] Please see the attached Figure 1 -Attached Figure 8, an embodiment of the present invention provides a cardiothoracic surgery nursing monitor device, comprising a box body 1, a push handle 2 is installed at one end of the outside of the box body 1, a plurality of universal wheels 3 are installed at the bottom of the box body 1, an anti-collision pad 4 is installed around the outside of the box body 1 to prevent the device from being hit, a lifting mechanism 5 is installed inside the box body 1, the lifting mechanism 5 includes a guide component and a closing component, which is used to lift and protect the device, a display detection mechanism 6 is installed on the upper part of the lifting mechanism 5, the display detection mechanism 6 includes a display component, an interface component, a protection component, an auxiliary component and a detection component, which is used to detect patients and protect the device, an adjustment mechanism 7 is installed on the upper part of the lifting mechanism 5, which is used to adjust the angle of the device, filter replacement mechanisms 8 are installed on both sides of the outside of the box body 1, which are used to ventilate and filter the device, and a storage mechanism 9 is installed at the bottom of one side of the box body 1 for storing a tool;
[0032] The guide assembly in the lifting mechanism 5 includes a hydraulic column 501 fixedly mounted at the bottom end of the box body 1. The output end of the hydraulic column 501 is fixedly connected to the main body platform 502. Guide plates 503 are installed on both sides of the box body 1. Guide grooves 504 are formed on one side of the two guide plates 503. Guide blocks 505 are slidably mounted inside the two guide grooves 504. The two guide blocks 505 are fixedly connected to both sides of the main body platform 502 respectively.
[0033] Specifically, the guide plates 503 installed on both sides of the box 1, the guide grooves 504 opened on one side of the guide plates 503, and the guide blocks 505 constitute a guide structure. The guide blocks 505 are fixedly connected to both sides of the main platform 502 respectively. During the lifting and lowering process of the main platform 502, the guide blocks 505 slide along the guide grooves 504, which can effectively limit the movement trajectory of the main platform 502 and prevent it from shaking, deflecting or tilting during the lifting process, thereby ensuring the stability and reliability of the lifting process of the entire device. In actual use, even if the monitor 602 is subject to slight external force interference during the lifting process, the guide structure can ensure the normal lifting and lowering of the main platform 502, avoiding damage to internal components, and at the same time ensuring that the display detection mechanism 6 can work stably and accurately detect and display the patient's physiological data.
[0034] The closing assembly includes a rotating rod 506 rotatably mounted on one end of the upper portion of the box body 1, and a blocking door 507 is fixedly mounted on one side of the rotating rod 506;
[0035] Specifically, a rotating rod 506 installed at one end of the upper part of the box body 1 is rotated, and a baffle door 507 is fixedly installed on one side of the rotating rod 506. When the monitor 602 is not in use, the baffle door 507 can be closed by rotating the rotating rod 506. The baffle door 507 can effectively prevent external impurities such as dust and water vapor from entering the interior of the box body 1. In a hospital environment, dust and water vapor may damage the electronic components inside the monitor 602, affecting their performance and service life. By closing the baffle door 507, a relatively closed and clean environment can be provided for the internal display detection mechanism 6, lifting mechanism 5 and other components. When the monitor 602 needs to be used, the baffle door 507 can be easily opened by simply rotating the rotating rod 506 in the opposite direction. The operation is simple and convenient, and does not affect the normal use of the monitor 602 by medical staff.
[0036] The display component in the display detection mechanism 6 includes a rotating shaft 601 rotatably mounted on one side of the upper portion of the main platform 502, and a monitor 602 is fixedly mounted on one side of the rotating shaft 601;
[0037] Specifically, rotating the shaft 601 installed on one side of the upper part of the main platform 502 provides a flexible angle adjustment function for the monitor 602. Medical staff can rotate the shaft 601 according to actual usage needs to adjust the angle of the monitor 602. In the ward, the bed position and posture of the patients are different. Medical staff may need to observe the screen of the monitor 602 from different angles. Through the shaft 601, the monitor 602 can be adjusted to the best viewing angle to ensure that the medical staff can clearly see the various physiological data displayed on the screen, such as heart rate, blood pressure, blood oxygen saturation, etc., which not only ensures the flexibility of the angle adjustment of the monitor 602, but also has a certain stability. After adjusting to the appropriate angle, the monitor 602 can be firmly fixed to prevent it from shaking at will, providing a guarantee for medical staff to accurately read the data.
[0038] The interface assembly includes an expansion interface 603 provided at the upper portion of one side of the monitor 602, an oxygen inhalation interface 604 provided at the middle portion of one side of the monitor 602, and a printing interface 605 provided at the lower portion of one side of the monitor 602;
[0039] Specifically, the expansion interface 603 provided on the upper part of one side of the monitor 602 can be connected to a variety of additional functional modules, such as a blood glucose monitoring module, a blood gas analysis module, etc. In clinical care, different patients have different conditions and needs. By connecting the corresponding functional modules through the expansion interface 603, the special monitoring needs of different patients can be met. For cardiothoracic surgery patients with diabetes, after connecting the blood glucose monitoring module, the monitor 602 can not only monitor the patient's heart and respiratory routine physiological parameters, but also monitor blood glucose changes in real time, providing more comprehensive data support for medical staff to adjust treatment plans.
[0040] The protection assembly includes a second rotating rod 606 rotatably mounted on one side of the monitor 602, and a rubber protective cover 607 is fixedly mounted on one side of the second rotating rod 606;
[0041] Specifically, the rotating rod 606 is rotatably installed on one side of the monitor 602, and the rubber protective cover 607 is fixedly installed on one side of the rotating rod 606. These can protect the monitor 602 when it is bumped or scratched. In a hospital environment, the monitor 602 may come into contact with other objects during movement and use. The rubber protective cover 607 is made of a soft and elastic rubber material. When it is impacted by external force, it can deform to absorb the impact force, thereby reducing damage to the outer shell of the monitor 602, thereby extending the service life of the monitor 602 and ensuring its normal operation.
[0042] The auxiliary components include a plurality of alarm lights 608 of varying degrees mounted on the upper portion of the monitor 602, and a player 609 mounted on both sides of the upper portion of the monitor 602;
[0043] Specifically, multiple alarm lights 608 of different levels installed on the upper part of the monitor 602 can issue warnings in different colors or flashing frequencies according to different abnormal conditions monitored. When the patient's heart rate is too high or too low, blood pressure is abnormal, blood oxygen saturation decreases, etc., the corresponding alarm light 608 will light up and flash. Alarm lights 608 of different colors can represent different levels of urgency, such as red for serious emergencies and yellow for general abnormal conditions, so that medical staff can quickly judge the severity of the disease.
[0044] The detection component includes lead wires 610 connected to both ends of the monitor 602. One end of each lead wire 610 is connected to an electrode sheet 611. A heart rate sensor 612 is installed on the back of the electrode sheet 611.
[0045] Specifically, the electrode 611 connected to one end of the two lead wires 610 is in direct contact with the patient's skin and is responsible for collecting physiological signals. The heart rate sensor 612 is installed on the back of the electrode 611. The heart rate sensor 612 can accurately measure the patient's heart rate. In actual use, the electrode 611 is pasted on specific parts of the patient's body, such as the chest, limbs, etc. The heart rate sensor 612 collects the patient's heart rate data in real time and transmits the data to the monitor 602 through the lead wire 610. After the monitor 602 processes and analyzes these data, the real-time heart rate value of the patient is displayed on the screen, and the heart rate change trend is displayed in the form of a waveform graph, providing an important basis for medical staff to judge the patient's heart function.
[0046] The adjustment mechanism 7 includes a telescopic rod 701 fixedly mounted on the upper portion of the main platform 502, the output end of the telescopic rod 701 being rotatably connected to a fixing slot 702, and the fixing slot 702 being fixedly connected to the rear side of the monitor 602;
[0047] Specifically, the fixed slot 702 to which the output end of the telescopic rod 701 is rotatably connected is fixedly connected to the rear side of the monitor 602. When the telescopic rod 701 is extended or retracted, the fixed slot 702 will change position as the telescopic rod 701 moves. Since the fixed slot 702 is fixedly connected to the monitor 602, the monitor 602 is driven to rotate around the connection point between the fixed slot 702 and the monitor 602, thereby adjusting the angle of the monitor 602. When medical staff need to observe the monitor 602 screen from different angles, they can easily adjust the monitor 602 to a suitable angle by adjusting the length of the telescopic rod 701, making it easier to view data, making it more convenient for medical staff to use the monitor 602, and being able to flexibly adjust the angle of the monitor 602 according to actual conditions, thereby improving work efficiency.
[0048] The filter replacement mechanism 8 includes a plurality of ventilation holes 801 provided on both sides of the exterior of the housing 1. Sliders 802 are installed on both sides of the exterior of the housing 1. A slide groove 803 is provided on one side of each of the two slides 802. A filter screen 804 is slidably installed between the two slide grooves 803. The filter screen 804 is connected to one side of the exterior of the plurality of ventilation holes 801.
[0049] Specifically, the sliders 802 installed on both sides of the outside of the box body 1 and the slide groove 803 opened on one side of the slider 802 play a role in installing and replacing the filter 804. The filter 804 is connected to the outer side of multiple ventilation holes 801, which can effectively filter the air entering the inside of the device and prevent dust, impurities, etc. from entering. As the use time increases, the filter 804 will gradually accumulate dust, affecting the filtering effect. At this time, medical staff can easily pull out the filter 804 through the slide groove 803 for cleaning or replacement, which not only ensures the cleanliness of the air inside the device, but also facilitates the maintenance of the filter 804, ensuring that the filter replacement mechanism 8 can always work normally and extend the service life of the device.
[0050] The storage mechanism 9 includes a collection box 901 installed at the bottom of one side of the box body 1, and a plurality of partitions 902 are provided inside the collection box 901;
[0051] Specifically, a collection box 901 is installed at the bottom of one side of the box body 1, and multiple partitions 902 are arranged inside it to separate the collection box 901 into different areas. Medical staff can classify and store various commonly used tools, such as spare electrodes 611, lead wires 610, batteries, etc. in different areas. The design of the partition 902 not only improves space utilization, but also avoids collision and entanglement between tools, keeps the tools in good condition, and thus improves work efficiency.
[0052] Working principle: First, medical staff can push the handle 2 on the box 1 and use the universal wheels 3 at the bottom to easily move the monitor 602 device to the patient's bedside. At the same time, the anti-collision pad 4 installed around the outside of the box 1 can effectively buffer possible collisions during the movement of the device and protect the delicate components inside the device.
[0053] When the height of the device needs to be adjusted, the hydraulic column 501 fixedly installed at the bottom end of the box body 1 is activated, and its output end pushes the main table 502 up or down. During this process, the guide blocks 505 on both sides of the main table 502 slide along the guide grooves 504 on the guide plate 503 to ensure that the main table 502 is smoothly raised and lowered to avoid shaking or deviation. When the monitor 602 is not needed, the rotating rod 506 installed at one end of the upper part of the box body 1 can be rotated to drive the baffle door 507 to close, thereby protecting the internal display detection mechanism 6 and other components to prevent dust from entering or components from being damaged.
[0054] By rotating the monitor 602, which is mounted on a rotating shaft 601 on one side of the main platform 502, the angle can be adjusted according to actual usage needs. The monitor 602 and the electrode pad 611 are connected via a lead wire 610 in the detection assembly. A heart rate sensor 612, mounted behind the electrode pad 611, collects the patient's heart rate data and transmits it to the monitor 602 via the lead wire 610. The monitor 602 can also obtain more physiological data through other connected sensors.
[0055] In terms of data transmission and function expansion, the expansion interface 603 set on the upper part of one side of the monitor 602 can be used to connect additional functional modules such as blood glucose monitoring module and blood gas analysis module to meet the special monitoring needs of different patients. The oxygen inhalation interface 604 can be used to connect to the oxygen inhalation device to provide oxygen to the patient while monitoring parameters such as oxygen concentration and flow. The printing interface 605 allows medical staff to connect to the printer to print the patient's monitoring data, electrocardiogram and other reports at any time, which is convenient for disease analysis and medical record recording.
[0056] By rotating the rotating rod 606 installed on one side of the monitor 602, the rubber protective cover 607 fixed on one side can play a buffering and protective role when the monitor 602 is collided or scratched, thereby preventing the monitor 602 shell from being damaged and extending the service life of the equipment.
[0057] By installing multiple alarm lights 608 of different levels on the upper part of the monitor 602, warnings can be issued in different colors or flashing frequencies according to different abnormal conditions detected. At the same time, the players 609 installed on both sides of the upper part of the monitor 602 can play alarm sounds to promptly remind medical staff to pay attention to changes in the patient's condition and ensure that abnormal conditions are discovered and handled at the first time.
[0058] The adjustment mechanism 7 can flexibly adjust the angle of the monitor 602 by extending and retracting the telescopic rod 701 fixedly installed on the upper part of the main platform 502, thereby driving the fixed slot 702 connected to the output end to rotate, and then adjusting the angle of the monitor 602. Medical staff can adjust the angle of the monitor 602 according to their own observation angle requirements or changes in the patient's body position to view the monitoring data more clearly.
[0059] Multiple ventilation holes 801 opened on both sides of the outside of the box 1 ensure air circulation inside the device to prevent the performance of the device from being affected by overheating. Sliders 802 installed on both sides of the outside of the box 1 and the filter 804 slidably installed between the slide grooves 803 opened therein can replace the filter 804 through the slide grooves 803 when the filter 804 needs to be replaced. The air entering the device can be filtered to prevent dust and other impurities from entering, keep the interior clean, and maintain the normal operation of the equipment.
[0060] The storage mechanism 9 is used to store commonly used tools. A collection box 901 is installed at the bottom of one side of the box body 1. At the same time, multiple partitions 902 arranged inside it can classify and store different tools, such as electrode sheets 611, lead wires 610 spare parts, etc., to facilitate medical staff to use and improve work efficiency.
[0061] In summary, the cardiothoracic surgery nursing monitor 602 device achieves comprehensive physiological monitoring of patients, data display and transmission, equipment protection, angle adjustment, ventilation filtration, and tool storage through the synergistic effect of various components. It provides strong support for the nursing work of cardiothoracic surgery patients, ensuring that medical staff can obtain patients' physiological information in a timely and accurate manner, make scientific medical decisions, and improve the quality of nursing and patients' recovery effects.
[0062] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A cardiothoracic surgery nursing monitor device, characterized in that: The invention comprises a box body (1), a push handle (2) is installed at one end of the outside of the box body (1), a plurality of universal wheels (3) are installed at the bottom of the box body (1), an anti-collision pad (4) is installed around the outside of the box body (1) to prevent the device from being collided, a lifting mechanism (5) is installed inside the box body (1), the lifting mechanism (5) comprises a guide component and a closing component, which is used to lift and protect the device, a display detection mechanism (6) is installed on the upper part of the lifting mechanism (5), the display detection mechanism (6) comprises a display component, an interface component, a protection component, an auxiliary component and a detection component, which is used to detect patients and protect the device, an adjustment mechanism (7) is installed on the upper part of the lifting mechanism (5), which is used to adjust the angle of the device, a filter replacement mechanism (8) is installed on both sides of the outside of the box body (1), which is used to ventilate and filter the device, and a storage mechanism (9) is installed at the bottom of one side of the box body (1), which is used to store a tool; The guide assembly in the lifting mechanism (5) comprises a hydraulic column (501) fixedly mounted at the bottom end of the box (1); the output end of the hydraulic column (501) is fixedly connected to a main platform (502); guide plates (503) are mounted on both sides of the box (1); guide grooves (504) are formed on one side of the two guide plates (503); guide blocks (505) are slidably mounted inside the two guide grooves (504); and the two guide blocks (505) are fixedly connected to both sides of the main platform (502).
2. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The closing assembly comprises a rotating rod (506) rotatably mounted on one end of the upper portion of the box body (1), and a blocking door (507) is fixedly mounted on one side of the rotating rod (506).
3. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The display component in the display detection mechanism (6) includes a rotating shaft (601) rotatably mounted on one side of the upper portion of the main platform (502), and a monitor (602) is fixedly mounted on one side of the rotating shaft (601).
4. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The interface assembly includes an expansion interface (603) provided at the upper portion of one side of the monitor (602), an oxygen inhalation interface (604) provided at the middle portion of one side of the monitor (602), and a printing interface (605) provided at the lower portion of one side of the monitor (602).
5. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The protection component includes a second rotating rod (606) rotatably mounted on one side of the monitor (602), and a rubber protective sleeve (607) is fixedly mounted on one side of the second rotating rod (606).
6. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The auxiliary components include a plurality of alarm lights (608) of different levels installed on the upper part of the monitor (602), and players (609) are installed on both sides of the upper part of the monitor (602).
7. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The detection component includes lead wires (610) connected to both ends of the monitor (602), one end of each of the lead wires (610) is connected to an electrode sheet (611), and a heart rate sensor (612) is installed on the rear side of the electrode sheet (611).
8. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The adjustment mechanism (7) comprises a telescopic rod (701) fixedly mounted on the upper portion of the main platform (502), the output end of the telescopic rod (701) being rotatably connected to a fixing slot (702), and the fixing slot (702) being fixedly connected to the rear side of the monitor (602).
9. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The filter replacement mechanism (8) comprises a plurality of ventilation holes (801) provided on both sides of the exterior of the box (1), a slider (802) being installed on both sides of the exterior of the box (1), a slide groove (803) being provided on one side of each of the two sliders (802), a filter screen (804) being slidably installed between the two slide grooves (803), and the filter screen (804) being connected to one side of the exterior of the plurality of ventilation holes (801).
10. A cardiothoracic surgery nursing monitor device according to claim 1, characterized in that: The storage mechanism (9) comprises a collection box (901) installed at the bottom of one side of the box body (1), and a plurality of partitions (902) are provided inside the collection box (901).