Medical DPF pig postoperative life sustaining and isolating system
By designing a postoperative isolation system for DPF pigs including movable isolation bins and multiple monitoring equipment, the problem of poor monitoring effect of existing isolation facilities is solved, and scientific monitoring and effective care of DPF pigs in different states after surgery is achieved, which improves the survival chance and recovery quality.
Patent Information
- Application Number
- CN202510132407.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2025-05-09
AI Technical Summary
The existing postoperative isolation facilities of DPF pigs are not perfect enough, and the survival status monitoring effect is not good, making it difficult to detect and deal with postoperative problems in a timely manner, especially when DPF pigs are awakened and after waking up, different monitoring requirements and standards are required.
A medical DPF pig postoperative life maintenance isolation system is designed, including a movable tripod and an isolation bin fixedly installed on the tripod. The isolation bin is divided into an upper and lower bin. The upper bin is used to observe and monitor the postoperative status, and the lower bin is used for standing and excretion of DPF pigs after awakening. The system is equipped with the first and second cameras, detection and sensing components and sewage discharge systems to ensure scientific monitoring and maintenance of DPF pigs in different postoperative conditions.
It realizes separate monitoring before and after waking up after DPF pigs, improves the accuracy and timeliness of survival status monitoring, ensures scientific monitoring and effective care of DPF pigs in different postoperative states, and improves the survival chance and recovery quality after surgery.
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Figure CN119949258A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of DPF pig post-operative isolation equipment, in particular to a medical DPF pig post-operative life-sustaining isolation system. Background Art
[0002] DPF pigs are the most promising donor source for xenotransplantation, but the production process of DPF pigs involves sterile environment, gene editing, disease control and other technologies, which leads to a long production cycle and high cost for DPF pigs. In cases involving organ transplantation surgery or research, it is critical to ensure the health and survival of pigs after surgery, which will help to better explore the potential use of DPF pigs and conduct multiple transplantation surgeries or experiments. After the operation, the pig's body has undergone major trauma, and its organs and tissues need time to resume normal function. Life support measures can guarantee its basic physiological activities such as breathing, circulation, and nutrition supply, and help the body recover from surgical stress. For example, ventilator-assisted breathing ensures that the lungs can get enough oxygen to maintain normal gas exchange; the infusion system is used to supplement necessary electrolytes and nutrients to correct metabolic disorders that may be caused by surgery.
[0003] To prevent the risk of infection, the surgical wound is a site that is easily invaded by bacteria and other pathogens. The pig's immunity is in a relatively low state after surgery. Strict life support measures can help reduce the chance of infection, such as the use of antibiotics to prevent infection. At the same time, close monitoring of body temperature, blood routine and other indicators can be carried out to promptly detect and deal with potential signs of infection.
[0004] Therefore, it is very important to isolate and monitor DPF pigs after surgery. Isolating DPF pigs after surgery in a special environment can prevent them from contacting other animals and preventing the introduction of external pathogens. It can also prevent biological contamination and gene drift that may be caused by DPF pigs that have undergone gene editing and carry humanized genes. This is crucial to protecting the health of the pigs themselves and the biosafety of the entire experimental environment. The isolation environment makes it easy for medical staff or researchers to closely and accurately observe and care for DPF pigs. They can monitor the various physiological parameters of the pigs at any time, such as heart rate, blood pressure, blood oxygen saturation, etc., and adjust the treatment and care plans in a timely manner based on these data to improve the survival rate and recovery quality of the pigs after surgery.
[0005] Existing isolation facilities usually provide an independent isolation pen or room for postoperative DPF pigs, keeping the environment clean, dry, warm, and well ventilated. The facilities in the pen should be easy to clean and disinfect to reduce bacterial growth; personnel entering the isolation area must wear protective clothing, masks, gloves and other protective equipment, and undergo strict disinfection procedures; all items that come into contact with pigs, such as feed troughs, waterers, medical equipment, etc., must be disinfected regularly to prevent the spread of pathogens. However, these existing dedicated isolation pens are not easy to move, and they are multi-dimensional fixed facilities. Moreover, the most important thing is that these isolation facilities are not well closed, and it is difficult to achieve absolute isolation when cleaning and disinfecting the isolation area. In addition, the long-term duty of personnel is also a test for the duty personnel. Although monitoring is also used in existing facilities for monitoring, the monitoring area cannot accurately judge the survival status of DPF pigs, and personnel are still required to be on duty for a long time. Once a special situation occurs, emergency treatment requires the corresponding equipment to be brought into the room, which may not only cause pollution, but also has low efficiency, and emergency equipment cannot be used at any time for timely disposal. In addition, the existing traditional general isolation monitoring facilities cannot scientifically monitor and maintain DPF pigs before and after they wake up. The monitoring requirements and standards for DPF pigs before and after they wake up are different. The existing rough and unified monitoring is also difficult to better deal with some conditions after DPF pigs surgery. Summary of the invention
[0006] In view of the deficiencies in the prior art, the present invention provides a medical DPF pig postoperative life support isolation system, which monitors the pigs before and after awakening independently to solve the problems of incomplete existing DPF pig postoperative life support isolation facilities, poor monitoring of survival status, and difficulty in timely detection and treatment of postoperative problems.
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a medical DPF pig postoperative life support isolation system, comprising a movable tripod and an isolation chamber fixedly mounted on the tripod, the isolation chamber comprising an upper chamber and a lower chamber, a nursing pad is provided at the bottom of the upper chamber, and two pairs of sterile gloves are provided on the front side of the upper chamber, so that a person can put his hands into the sterile gloves and operate in the upper chamber; a storage device is also provided in the upper chamber, and the storage device is used to separately and independently store emergency surgical instruments and the nursing pad; A first camera is also provided in the upper bin, which is used to monitor the postoperative status of the DPF pig and send a dynamic video warning message to the backstage observer through the monitoring system when the DPF pig wakes up and moves; a grille plate is provided in the lower bin for the awakened DPF pig to stand on, and the grille plate has perforations for pig manure to fall, so that the pig manure water drips to the bottom of the lower bin and is discharged through the sewage pipe at the bottom of one side of the lower bin.
[0008] Furthermore, a detection sensor component is provided in the upper warehouse, and the detection sensor component can move in the horizontal direction and the vertical direction, and when an object is detected in any direction, a warning message is issued.
[0009] Furthermore, the detection component includes a light source transmitter and a light source receiver, wherein the light source transmitter is installed on the rear side wall inside the upper warehouse, and the light source receiver is installed on the front side wall inside the upper warehouse, and when the light source emitted vertically by the light source transmitter toward the front side wall is not blocked by objects inside the upper warehouse, the light source receiver can receive a corresponding light signal, and once the corresponding light signal cannot be received, a warning message is immediately issued.
[0010] Furthermore, it also includes a pair of drive track assemblies arranged front and back relative to each other, and the two drive track assemblies are used to install the light source transmitter and the light source receiver respectively, and the two are driven synchronously so that the light source transmitter and the light source receiver are always in a state of receiving signals with the light source transmitter facing each other front and back.
[0011] Furthermore, the drive track assembly includes four pulleys arranged in a rectangular array, and a closed belt is tightly clamped on the outer sides of the four pulleys, and the belt is formed into a closed rectangular shape so as to move under the drive of the pulleys; a connecting column is fixed on the side of the belt, and the light source transmitter or light source receiver is fixedly installed on the connecting column to carry the light source transmitter or light source receiver to move along a rectangular path near the side wall in the upper warehouse.
[0012] Furthermore, support covers are fixed on the outer and inner sides of the belt with equal offsets, the end faces of the outer support cover and the inner support cover are in sliding contact with a slide, and the center of the slide is fixed to the connecting column, and the light source transmitter or light source receiver is fixedly installed perpendicularly to the connecting column on the side of the slide; the size of the slide must ensure that the connecting column still maintains sliding contact with the end faces of the two support covers when it moves to the arc path section of the rectangular path.
[0013] Furthermore, the cross-section of the belt includes a rectangular cross-section and an isosceles trapezoidal cross-section, the wheel groove of the pulley is an isosceles trapezoidal groove, the rectangular cross-section of the belt is completely exposed in the groove, and the connecting column is perpendicular to the side portion of the belt that exposes the groove.
[0014] Furthermore, the rear side wall and the front side wall of the upper bin each have an installation cavity, and the installation cavity is a rectangular structure. The detection component and the driving guide rail component for its sliding installation are completely located within the installation cavity and are covered by a transparent plastic plate at the cavity opening of the installation cavity.
[0015] Furthermore, a second camera is provided on the inner wall of the lower bin, and the second camera is used to monitor the behavior of the DPF pigs after they wake up in the lower bin, and to issue an alarm when they remain motionless within a set time.
[0016] Furthermore, the inner wall of the lower bin has an annular inner gear ring, a mounting arm is fixed on the top surface of the inner gear ring through a T-shaped slider, the mounting arm is an L-shaped structure, and a micro motor is vertically fixed at the bottom of one end of the inner side of the inner gear ring horizontally cantilevered to the inner side of the inner gear ring, and a cylindrical gear is coaxially fixed to the main shaft of the micro motor, and the cylindrical gear is meshed with the inner gear ring; A shaft sleeve is coaxially fixed at the bottom end of the cylindrical gear. After the shaft sleeve vertically extends into an annular through-hole of a mounting ring, it is rotatably sleeved with a cylindrical protrusion on the top surface of a sliding boss located in the annular through-hole. The lower part of the sliding boss is a guide slider that can slide in a circle along the annular through-hole. The bottom end of the guide slider is fixed with the second camera via a curved arm, and the second camera is arranged toward the inner side of the inner gear ring.
[0017] The present invention provides a medical DPF pig postoperative life support isolation system. It has the following beneficial effects: 1. The structure is simple and compact, and the partition setting is convenient for the separate treatment of DPF pigs before and after waking up after surgery. For example, the upper compartment of the life support isolation system is used to observe the condition of pigs still under anesthesia. It can also be equipped with posture monitoring equipment, breathing, heartbeat and other monitoring equipment, and store surgical tools and bandaging tools. It can not only fully monitor the postoperative status of DPF pigs, but also detect problems in time and deal with them on the spot.
[0018] 2. As one of the most important functions, the present invention can comprehensively monitor the DPF pigs before waking up, especially the awakening monitoring. It can also issue an alarm when the DPF pigs stand up, and continuously monitor the living status of the pigs after waking up, such as the recovery of wounds, and check whether there is bleeding. It also has a feeding function, and a water trough, feed box, etc. can be placed on the grille plate, and it has an excretion function to discharge feces and water. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 A structural diagram of the present invention; Figure 2 A cross-sectional view of the upper warehouse; Figure 3 for Figure 2 A magnified view of the structure in the middle rectangular dotted area; Figure 4 for Figure 3 Middle AA section view; Figure 5 A diagram of an installation structure of a second camera; Figure 6 for Figure 5 Enlarged view of the structure within the thin elliptical area.
[0020] In the figure: tripod 1, upper warehouse 2, lower warehouse 3, first camera 4, sterile gloves 5, storage device 6, monitoring equipment storage box 601, emergency surgery instrument box 602, nursing pad box 603, terminal board 7, detection sensor component 8, skateboard 801, belt 9, isosceles trapezoidal cross section 901, rectangular cross section 902, outer support cover 10, inner support cover 11, ball head camera 12, mounting cavity 13, pulley 14, connecting column 15, inner gear ring 16, mounting ring 17, T-shaped slider 18, mounting arm 19, micro motor 20, cylindrical gear 21, bushing 22, cylindrical protrusion 23, guide slider 24, curved arm 25, annular perforation 26. DETAILED DESCRIPTION
[0021] This specification will clearly and completely express the technical solutions in the following examples based on the drawings of the embodiments of the present invention. The implementation methods described in this specification are only some of the embodiments of the present invention, not all of them. All other embodiments extended and inspired by those skilled in the art based on these embodiments in this application without creative work should fall within the scope of protection of the present invention.
[0022] like Figure 1 A medical DPF pig postoperative life support isolation system is shown, and its main structural components include a movable tripod 1 and an isolation chamber fixedly mounted on the tripod 1, so that the isolation system can be moved at any time. Specifically, this isolation chamber includes an upper chamber 2 and a lower chamber 3. A nursing pad is provided at the bottom of the upper chamber 2 so that the DPF pig can lie still and recover after surgery. In addition, two pairs of sterile gloves 5 are provided on the front side of the upper chamber 2, so that people can put their hands into the sterile gloves 5 and perform operations in the upper chamber 2, such as touching the DPF pig or performing medical operations. In addition, a storage device 6 and a terminal block 7 for centrally accessing the signal lines of monitoring and nursing equipment are provided on one side of the upper chamber 2, such as Figure 2 As shown, it may be a monitoring equipment storage box 601, an emergency surgical instrument box 602, and a nursing pad box 603. The storage device 6 mentioned above is used to independently store emergency surgical instruments and nursing pads, respectively, so that the corresponding operations can be directly performed in the isolation system to avoid the introduction of bacteria from the outside. At the same time, in this embodiment, a first camera 4 is also provided in the upper warehouse 2, and a ball head camera 12 can be specifically selected. This first camera 4 is used to monitor the postoperative state of the DPF pig, and when the DPF pig wakes up and moves, a dynamic video warning message is sent to the background observer through the monitoring system. An existing camera with a monitoring reminder can be directly purchased. Once the DPF pig moves, an alarm video is issued. As Figure 1A grating plate is provided in the lower bin 3 for the awakened DPF pigs to stand on. The grating plate is made of stainless steel and has holes for the pig manure to fall. In this way, the pig manure can drip to the bottom of the lower bin 3 and be discharged through the sewage pipe at the bottom of one side of the lower bin 3, thereby preventing the manure from accumulating in the isolation system.
[0023] As one of the specific implementation structures, such as Figure 2 A detection sensor component 8 is also provided in the upper warehouse 2. This detection sensor component 8 can move in the horizontal and vertical directions. When an object is detected in any direction, a warning message is issued. Therefore, in practice, the detection sensor component 8 can be placed in the space above the lying DPF pig. In this way, as long as the DPF pig has not woken up and stood up to a certain extent, it cannot be detected by the detection sensor component 8. When the pig stands up, its body will enter the detection range of the detection sensor component 8, and then trigger an alarm to remind the staff that the DPF pig has woken up and stood up.
[0024] In practice, the detection component includes a light source transmitter and a light source receiver, which are the basic components of various existing sensors, and their specific structures are not described in detail here. When specifically manufactured, the light source transmitter can be installed on the rear side wall inside the upper warehouse 2, and the light source receiver is installed on the front side wall inside the upper warehouse 2, and when the light source emitted vertically by the light source transmitter toward the front side wall is not blocked by the object inside the upper warehouse 2, because there is only the DPF pig in the corresponding detection area of the upper warehouse 2, therefore, this object refers to the DPF pig, and then when the DPF pig has not stood up or is still lying completely still, the light source receiver can always receive the corresponding light signal, and once the corresponding light signal cannot be received, it means that the DPF pig has started to stand up or has completely stood up, and a warning message will be issued immediately at this time.
[0025] For the installation and use of the detection sensor assembly 8, Figure 2-4As shown, this embodiment also includes a pair of drive track assemblies arranged front and back oppositely, and the two drive track assemblies are used to install the light source transmitter and the light source receiver respectively, and the two are driven synchronously so that the light source transmitter and the light source receiver are always in a state of receiving signals in a front-to-back facing state. Specifically, the drive track assembly includes four pulleys 14 arranged in a rectangular array, and a closed belt 9 is tightly clamped on the outer side of the four pulleys 14. The belt 9 is surrounded by a closed rectangular shape and can be moved under the drive of the rotating pulleys 14. In order to install the detection sensor component 8, a connecting column 15 is fixed on the side of the belt 9, and a light source transmitter or a light source receiver is fixedly installed on the connecting column 15, so that the light source transmitter or the light source receiver can be moved along a predetermined rectangular path near the side wall in the upper warehouse 2. The purpose of this design is to more accurately detect whether the DPF pig is standing, because, if it is just kneeling, once the detection sensor component 8 is facing its head, it will also trigger an alarm, resulting in a false alarm when the standing posture needs to be detected. To set such a rectangular path, it is necessary to meet the requirements that the detection sensor component 8 is in a state of detecting the presence of the DPF pig for a set time in the upper horizontal path, and is in a state of detecting the presence of the DPF pig for a short period of time in the lower horizontal path, because, at this time, the part of the lower horizontal path where the DPF pig is detected is actually the pig's feet, and the area between the front and rear feet is an empty area, so the light source receiver of the detection sensor can receive the signal normally, so that it can be more accurately determined whether the DPF pig is standing.
[0026] In order to install the detection sensor assembly 8 more stably and reliably, Figure 2-4 , support covers are fixed on the outer and inner sides of the belt 9 with equal offset, and the support covers are also rectangular wall-like structures, specifically two inner and outer support covers. Specifically, the end faces of the outer support cover 10 and the inner support cover 11 are in sliding contact with a slide plate 801, that is, the two support covers play a role of supporting sliding, and the above-mentioned connecting column 15 plays a role of driving force, that is, the center of the slide plate 801 is fixed to the connecting column 15. When installing specifically, Figure 4 The side of the slide 801 facing away from the connecting column 15 may be fixedly mounted with a light source transmitter or a light source receiver perpendicular to it. Moreover, the size of the slide 801 must ensure that the connecting column 15 maintains sliding contact with the end surfaces of the two support covers when it moves to the circular arc path section of the rectangular path, so as to prevent the slide 801 from derailing.
[0027] In this embodiment, Figure 4 In the structure shown, the cross section of the belt 9 includes a rectangular cross section 902 and an isosceles trapezoidal cross section 901, the wheel groove of the pulley 14 is an isosceles trapezoidal groove, the rectangular cross section of the belt 9 is completely exposed in the groove, and the connecting column 15 is perpendicular to the side portion of the belt 9 exposed in the groove, so as to drive the detection sensor assembly 8 to move well. In addition, as Figure 2-3 There is a mounting cavity 13 in the rear side wall and the front side wall of the upper bin 2. The mounting cavity 13 is a rectangular structure. The detection component and the driving guide rail component for sliding installation are completely located in the mounting cavity 13 and covered by a transparent plastic plate at the cavity opening of the mounting cavity 13, which plays a protective role and facilitates observation of whether the drive is normal.
[0028] In order to monitor the awakened DPF pigs, a second camera is provided on the inner wall of the lower bin 3. The second camera is used to monitor the behavior of the awakened DPF pigs in the lower bin 3 and to sound an alarm when the pigs are still within a set time. Figure 5-6 As shown, an annular inner gear ring 16 is provided on the inner wall of the lower bin 3, and the outer wall of the inner gear ring 16 can be fixed in the lower bin 3. A mounting arm 19 is fixed on the top surface of the inner gear ring 16 through a T-shaped slider 18. The mounting arm 19 is an L-shaped structure, and a micro motor 20 is vertically fixed to the bottom of one end of the inner side of the inner gear ring 16 horizontally. A cylindrical gear 21 is coaxially fixed to the main shaft of the micro motor 20, and the cylindrical gear 21 is meshed with the inner gear ring 16. With such a design, as long as the micro motor 20 is started, it will drive the cylindrical gear 21 to rotate, and then the cylindrical gear 21 will make a circular motion around the inner gear ring 16, and make the micro motor 20 also make a circular motion adaptively. In addition, a sleeve 22 is coaxially fixed to the bottom end of the cylindrical gear 21. After the sleeve 22 vertically extends into an annular through hole 26 of a mounting ring 17, it is rotatably sleeved with a cylindrical protrusion 23 on the top surface of a sliding boss located in the annular through hole 26, so that when the cylindrical gear 21 makes a circular motion, it also makes a circular motion with the sliding boss. It should be noted that since the annular through hole 26 is a hole that passes through the mounting ring 17, the mounting ring 17 is fixedly installed in a combination of upper and lower halves, that is, the upper half and the lower half can be welded or bolted together. Specifically, the lower part of the sliding boss is a guide slider 24 that can slide in a circle along the annular perforation 26, thereby guiding it to perform a stable circular motion. At the same time, a second camera is fixed to the bottom end of the guide slider 24 through a curved arm 25. The second camera is set toward the inside of the inner gear ring 16, so that the second camera can perform a circular motion, and then look around the living conditions of the DPF pigs in the lower warehouse 3, and discover abnormal conditions such as long-term immobility or bleeding in advance, so as to deal with them in time.
[0029] It should be explained here that, in this specification, terms such as first and second are only used to distinguish one feature from another, and do not mean that there is a certain relationship or order between these technical features. The terms "including" and "comprising" refer to the inclusion of one or some technical means or features, specifically meaning that there are other existing or non-existing technical features that have not been included. The discussion in the above embodiments is only a representative example for the present invention, and is by no means the only restrictive constraint feature. A person of ordinary skill in the art should understand that, without departing from the technical content recorded in all the claims of this application, some simple substitutions and modifications can be made, thereby changing or becoming equivalent to other specific embodiments and application scenarios. However, no matter how the adaptability is changed, these embodiments will inevitably fall within the scope of protection of the present invention.
Claims
1. A medical DPF pig postoperative life support isolation system, characterized in that: The invention comprises a movable tripod (1) and an isolation chamber fixedly mounted on the tripod (1), wherein the isolation chamber comprises an upper chamber (2) and a lower chamber (3), wherein a nursing pad is provided at the bottom of the upper chamber (2), and two pairs of sterile gloves (5) are provided at the front side of the upper chamber (2) so that a person can insert the sterile gloves (5) and operate in the upper chamber (2); a storage device (6) is also provided in the upper chamber (2), and the storage device (6) is used to separately and independently store emergency surgical instruments and the nursing pad; A first camera (4) is also provided in the upper bin (2), and the first camera (4) is used to monitor the postoperative state of the DPF pig, and when the DPF pig wakes up and moves, a dynamic video warning message is sent to the backstage observer through the monitoring system; a grille plate is provided in the lower bin (3) for the awakened DPF pig to stand on, and the grille plate has perforations for the pig manure to fall, so that the pig manure can drip to the bottom of the lower bin (3) and be discharged through the sewage pipe at the bottom of one side of the lower bin (3).
2. A medical DPF pig postoperative life support isolation system according to claim 1, characterized in that: A detection sensor component (8) is also provided in the upper warehouse (2). The detection sensor component (8) can move in the horizontal direction and the vertical direction, and when an object is detected in any direction, a warning message is issued.
3. A medical DPF pig postoperative life support isolation system according to claim 2, characterized in that: The detection component comprises a light source transmitter and a light source receiver, wherein the light source transmitter is mounted on the rear side wall inside the upper warehouse (2), and the light source receiver is mounted on the front side wall inside the upper warehouse (2), and when the light source emitted vertically from the light source transmitter toward the front side wall is not blocked by objects inside the upper warehouse (2), the light source receiver can receive a corresponding light signal, and once the corresponding light signal cannot be received, a warning message is immediately issued.
4. A medical DPF pig postoperative life support isolation system according to claim 3, characterized in that: It also includes a pair of drive track assemblies arranged front and back relative to each other, and the two drive track assemblies are used to install the light source transmitter and the light source receiver respectively, and the two are driven synchronously so that the light source transmitter and the light source receiver are always in a state of receiving signals with the light source transmitter facing each other front and back.
5. A medical DPF pig postoperative life support isolation system according to claim 4, characterized in that: The driving track assembly comprises four pulleys (14) arranged in a rectangular array, a closed belt (9) is clamped on the outer side of the four pulleys (14), and the belt (9) is enclosed in a closed rectangular shape so as to move under the drive of the pulleys (14); a connecting column (15) is fixed on the side of the belt (9), and the light source transmitter or light source receiver is fixedly installed on the connecting column (15) so as to move along a rectangular path near the side wall in the upper warehouse (2) with the light source transmitter or light source receiver; when the light source receiver continuously receives a light signal in the upper horizontal path within a set time, and intermittently receives a light signal in the lower horizontal path within a set time, an alarm is issued to remind the DPF pig that it has stood up.
6. A medical DPF pig postoperative life support isolation system according to claim 5, characterized in that: Support covers are fixed to the outer and inner sides of the belt (9) at equal offsets, and the end faces of the outer support cover (10) and the inner support cover (11) are in sliding contact with a slide plate (801), and the center of the slide plate (801) is fixed to the connecting column (15), and the light source transmitter or light source receiver is fixedly installed perpendicularly to the side of the slide plate (801) facing away from the connecting column (15); the size of the slide plate (801) must ensure that the connecting column (15) still maintains sliding contact with the end faces of the two support covers when it moves to the arc path section of the rectangular path.
7. A medical DPF pig postoperative life support isolation system according to claim 6, characterized in that: The cross section of the belt (9) includes a rectangular cross section (902) and an isosceles trapezoidal cross section (901); the wheel groove of the pulley (14) is an isosceles trapezoidal groove; the rectangular cross section of the belt (9) is completely exposed in the groove; and the connecting column (15) is perpendicular to the belt (9) and exposes the side portion of the groove.
8. The medical DPF pig postoperative life support isolation system according to claim 6, characterized in that: A mounting cavity (13) is respectively provided in the rear side wall and the front side wall of the upper bin (2); the mounting cavity (13) is a rectangular structure; the detection component and the driving guide rail component for sliding installation thereof are completely located in the mounting cavity (13) and are covered by a transparent plastic plate at the cavity opening of the mounting cavity (13).
9. The medical DPF pig postoperative life support isolation system according to claim 1, characterized in that: A second camera is also provided on the inner wall of the lower bin (3), and the second camera is used to monitor the behavior of the DPF pigs in the lower bin (3) after they have woken up, and to issue an alarm when they remain motionless within a set time.
10. A medical DPF pig postoperative life support isolation system according to claim 9, characterized in that: The inner wall of the lower bin (3) is provided with an annular inner gear ring (16), a mounting arm (19) is fixed on the top surface of the inner gear ring (16) via a T-shaped slider (block 18), the mounting arm (19) is an L-shaped structure, and a micro motor (20) is vertically fixed at the bottom of one end thereof which is horizontally cantilevered to the inner side of the inner gear ring (16), a cylindrical gear (21) is coaxially fixed to the main shaft of the micro motor (20), and the cylindrical gear (21) is meshed with the inner gear ring (16); A shaft sleeve (22) is coaxially fixed at the bottom end of the cylindrical gear (21). After the shaft sleeve (22) vertically extends into an annular through hole (26) of a mounting ring (17), it is rotatably sleeved with a cylindrical protrusion (23) on the top surface of a sliding boss located in the annular through hole (26). The lower part of the sliding boss is a guide slider (24) that can slide in a circle along the annular through hole (26). The lower end of the guide slider (24) is fixed with the second camera via a crank arm (25). The second camera is arranged toward the inner side of the inner gear ring (16).
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