Emergency debridement treatment platform for emergency treatment wounds
By designing an emergency trauma emergency debridement treatment platform, the linkage between the driving components and the reciprocating components can be used to achieve efficient debridement of wounds and prevent splashing, the problem of emergency surgical medical staff operating troubles and cleaning fluid splashing when dealing with minor abrasions is solved.
Patent Information
- Application Number
- CN202510172842.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-05-23
AI Technical Summary
When dealing with minor abrasions, emergency surgical medical staff need to frequently switch cleaning equipment, which is troublesome to operate, and the existing cleaning methods are prone to dilatation of wounds and splashing of cleaning fluid.
An emergency debridement treatment platform for emergency trauma is designed, including a driving component and a reciprocating component. The driven wheel is driven by the motor to reverse rotation, and the outer roller brush and the inner strip brush are driven in reverse rotation. Combined with high-pressure cleaning fluid and physical scratches, the wound is debridement and splashing is achieved.
Through the cooperation of linkage components and reciprocating components, the platform greatly liberates the manual cleaning work intensity of medical staff, improves the cleaning effect, and avoids wound dilation and cleaning liquid splashing.
Smart Images

Figure CN120022452A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, and in particular to an emergency trauma debridement processing platform. Background Art
[0002] Debridement is a surgical procedure that removes foreign matter from open wounds, excises necrotic, inactive or severely contaminated tissues, and sutures wounds to minimize contamination or even clean them, achieving primary healing and facilitating the recovery of the function and morphology of the injured area.
[0003] At present, when emergency surgical medical staff deal with some minor abrasions, they usually need to clean the wounds of the injured. Generally, they need to use a soft-bristled brush to clean the sand or other foreign objects near the wound, or use tweezers to hold a cotton swab dipped in disinfectant and gently wipe the wound. Sometimes they need to use instruments such as syringes or droppers to directly use flushing fluid for flushing. The wound can only be operated or bandaged after it has been cleaned and disinfected. This operation requires frequent switching of cleaning instruments and is very troublesome to operate, which greatly increases the difficulty of medical staff's work. At the same time, the direct impact of water flow will cause the wound to expand further and the cleaning fluid will splash everywhere.
[0004] Therefore, in view of this, the existing structural deficiencies are studied and improved, and an emergency trauma emergency debridement treatment platform is proposed. Summary of the invention
[0005] The purpose of the present invention is to provide an emergency trauma debridement treatment platform to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an emergency trauma emergency debridement treatment platform, comprising a body and a drive assembly, an equipment compartment is opened inside the body, and functional compartments are connected to both sides of the equipment compartment, and a motor compartment is connected to the top of the equipment compartment, the drive assembly is arranged at the middle end of the equipment compartment, the drive assembly comprises a drive motor, a drive wheel, a front gear ring, a driven wheel one, a rear gear ring, a transmission wheel and a driven wheel two, the drive motor is fixed inside the motor compartment, and the output end of the drive motor is fixedly connected to the drive wheel, the bottom of the drive wheel is meshed with the front gear ring, and the right side of the front gear ring is meshed with the driven wheel one, the rear end of the front gear ring is coaxially fixed with the rear gear ring, and the front gear ring and the rear gear ring through holes are located on the same central axis, the left side of the rear gear ring is meshed with the transmission wheel, and the end of the transmission wheel away from the rear gear ring is meshed with the driven wheel two.
[0007] Furthermore, the driving wheel is rotated to the right driven wheel 1 by meshing with the bottom front gear ring, and the rear gear ring coaxial with the rear end of the front gear ring is rotated to the left driven wheel 2 by the transmission wheel, and the driven wheel 1 rotates in opposite directions to the driven wheel 2.
[0008] Furthermore, a handle is fixed to the rear end of the body, and a trigger switch is arranged on the inner wall of the handle.
[0009] Furthermore, a narrow neck tube is fixed at the rear end of the equipment bin, and a liquid interface is vertically connected to the narrow neck section in the middle of the narrow neck tube. The front end diffusion section of the narrow neck tube rotates with the rear gear ring through a rotating joint, and the rear end diffusion section of the narrow neck tube is connected to an air source interface.
[0010] Furthermore, a reciprocating assembly is rotated at the front end inside the equipment bin, and the reciprocating assembly includes a cam column, a bearing frame and a flushing nozzle. The internal channel of the cam column is connected to the narrow neck tube through the middle through holes of the front gear ring and the rear gear ring, and the rear end of the cam column is coaxially fixed with the front gear ring, and the front end of the cam column is rotatably matched with the bearing frame, and the front end of the bearing frame is fixedly connected to the flushing nozzle, and the curved pipe part of the flushing nozzle extends to the outside of the front end of the machine body.
[0011] Furthermore, the reciprocating assembly also includes a wobble plate and a connecting pin, the wobble plate is engaged with the cam groove in the middle of the cam column, and the connecting pin is fixed to the top of the wobble plate ring structure.
[0012] Furthermore, the reciprocating assembly also includes a reciprocating rod, a guide sleeve and an inner strip brush, the connecting pin is connected to the rear end of the reciprocating rod, and the middle part of the reciprocating rod is slidably matched with the guide sleeve, and the guide sleeve is fixed to the inner wall of the front end of the equipment bin, and the part of the reciprocating rod extending to the outside of the front end of the machine body is fixed with an inner strip brush.
[0013] Furthermore, a linkage component is externally connected to the front end of the machine body, and the linkage component includes an end plate and a swing arm. The end plate is fixedly mounted on both ends of the flange at the front end of the machine body, and the swing arms are rotatably mounted on both sides of the end plate through torsion springs, and the single-sided swing arm is an arc-shaped structure with a notch facing inward.
[0014] Furthermore, the linkage assembly also includes a mounting frame, an outer roller brush and a universal joint. The mounting frames are fixed at both ends of the swing arm arc structure, and the outer roller brushes are rotatably installed inside the mounting frames on both sides, and the outer roller brushes on both sides are respectively connected to the corresponding driven wheel one and driven wheel two through universal joints.
[0015] Furthermore, the through hole of the handle at the rear end of the body is connected to the hook at the top of the bracket, and the hook at the bottom end of the bracket is connected to the infusion bag, and the infusion bag is connected to the liquid interface of the abdomen of the body. The bracket is fixed to the head side of the debridement platform through a pipe clamp, and an air compressor is placed on the shelf at the bottom of the debridement platform, and the air compressor is connected to the air source interface at the rear end of the body.
[0016] The present invention provides an emergency trauma debridement treatment platform, which has the following beneficial effects:
[0017] 1. During the use of the present invention, the present invention cooperates with the driving component and the reciprocating component. While the motor drives the driven wheels on both sides to rotate in the opposite direction to realize the reverse rotation of the outer roller brushes in the swing arms on both sides, the rotation of the cam column further drives the inner strip brush to reciprocate. On the one hand, the high-pressure cleaning liquid introduced through the narrow neck tube assists in flushing the wound. On the other hand, the inner strip brush cooperates with the outer roller brush to physically scrape the wound and discharge the cleaning liquid from the wound to prevent splashing. The present invention has strong linkage between the functional components and reasonable structural arrangement to make the device compact, which can better meet the actual needs of cleaning operations.
[0018] 2. During the use of the present invention, the present application cooperates with the driving component and the linkage component, so that the motor can drive the driven wheels on different sides to reverse synchronously, and further drive the outer roller brushes in the swing arms on both sides to rotate in the opposite direction through the universal joint, so that the sand and soil near the wound are peeled off from the skin and pushed to both sides through the physical friction of the outer roller brush, which greatly relieves the workload of medical staff in manual cleaning and effectively improves the cleaning effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the device of the present invention;
[0020] Figure 2 It is a schematic diagram of the structure of the machine body of the present invention from top view;
[0021] Figure 3 It is a schematic diagram of the structure of the machine body of the present invention when viewed from above;
[0022] Figure 4 This is a schematic diagram of the structure of the drive assembly of the present invention;
[0023] Figure 5 It is a schematic diagram of the linkage assembly structure of the present invention;
[0024] Figure 6 It is a schematic diagram of the structure of the reciprocating assembly of the present invention;
[0025] Figure 7 It is a partial structural schematic diagram of the device of the present invention.
[0026] In the figure: 1, machine body; 2, equipment compartment; 3, function compartment; 4, motor compartment; 5, driving assembly; 501, driving motor; 502, driving wheel; 503, front gear ring; 504, driven wheel 1; 505, rear gear ring; 506, transmission wheel; 507, driven wheel 2; 6, handle; 7, trigger switch; 8, narrow neck tube; 9, liquid interface; 10, rotary joint; 11, air source interface; 12, reciprocating assembly; 1201 , cam column; 1202, bearing frame; 1203, flushing nozzle; 1204, swing plate; 1205, connecting pin; 1206, reciprocating rod; 1207, guide sleeve; 1208, inner brush; 13, linkage assembly; 1301, end plate; 1302, swing arm; 1303, mounting frame; 1304, outer roller brush; 1305, universal joint; 14, bracket; 15, infusion bag; 16, debridement platform; 17, air compressor. DETAILED DESCRIPTION
[0027] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following embodiments are used to illustrate the present invention but are not intended to limit the scope of the present invention.
[0028] See also Figures 2 to 5The present invention provides a technical solution: an emergency trauma debridement treatment platform, comprising a body 1 and a drive assembly 5, wherein an equipment compartment 2 is provided inside the body 1, and functional compartments 3 are connected to the two sides of the equipment compartment 2, and a motor compartment 4 is connected to the top of the equipment compartment 2, and the drive assembly 5 is arranged at the middle end of the equipment compartment 2, and the drive assembly 5 comprises a drive motor 501, a drive wheel 502, a front gear ring 503, a driven wheel 1 504, a rear gear ring 505, a transmission wheel 506 and a driven wheel 2 507, and the drive motor 501 is fixed The motor 501 is fixed inside the motor compartment 4, and the output end of the driving motor 501 is fixedly connected to a driving wheel 502, the bottom of the driving wheel 502 is meshed with a front gear ring 503, and the right side of the front gear ring 503 is meshed with a driven wheel 1 504, the rear end of the front gear ring 503 is coaxially fixed with a rear gear ring 505, and the through holes of the front gear ring 503 and the rear gear ring 505 are located on the same central axis, the left side of the rear gear ring 505 is meshed with a transmission wheel 506, and the end of the transmission wheel 506 away from the rear gear ring 505 is meshed with a driven wheel 2 507 The driving wheel 502 is rotated to the right driven wheel 1 504 by meshing with the bottom front gear ring 503, and the rear gear ring 505 coaxial with the rear end of the front gear ring 503 is rotated to the left driven wheel 2 507 through the transmission wheel 506, and the driven wheel 1 504 rotates in the opposite direction to the driven wheel 2 507. The front end of the body 1 is externally connected to a linkage assembly 13, which includes an end plate 1301 and a swing arm 1302. The end plate 1301 is fixedly installed at both ends of the front end flange of the body 1, and the end plate 130 1 Swing arms 1302 are rotatably mounted on both sides through torsion springs, and the single-side swing arm 1302 is an arc-shaped structure with a notch facing inward. The linkage assembly 13 also includes a mounting frame 1303, an outer roller brush 1304 and a universal joint 1305. Mounting frames 1303 are fixed at both ends of the arc-shaped structure of the swing arm 1302, and outer roller brushes 1304 are rotatably mounted inside the mounting frames 1303 on both sides, and the outer roller brushes 1304 on both sides are respectively connected to the corresponding driven wheel 1 504 and driven wheel 2 507 through the universal joint 1305;
[0029] The specific operation is as follows: the driving motor 501 is activated and drives the driving wheel 502 at its output end to rotate. On the one hand, the driving wheel 502 is rotated to the right driven wheel 1 504 through meshing with the bottom front gear ring 503. On the other hand, the rear gear ring 505 coaxial with the rear end of the front gear ring 503 is rotated to the left driven wheel 2 507 through the transmission wheel 506, so that the rotation directions of the driven wheel 1 504 and the driven wheel 2 507 are opposite. The reverse rotation of the driven wheel 1 504 and the driven wheel 2 507 further drives the outer roller brushes 1304 in the swing arms 1302 on both sides to rotate in the opposite direction through the universal joint 1305. The medical staff holds The handle 6 attaches the outer roller brushes 1304 on both sides of the front end of the body 1 near the wound and moves slowly around the wound to clean the sand or other foreign matter near the wound. The present application uses the linkage cooperation between the driving component 5 and the linkage component 13, so that the motor can drive the driven wheels on different sides to reverse synchronously, and further drive the outer roller brushes 1304 in the swing arms 1302 on both sides to rotate in the opposite direction through the universal joint 1305, so that the sand near the wound is peeled off from the skin and pushed to both sides through the physical friction of the outer roller brush 1304, which greatly relieves the workload of medical staff in manual cleaning and effectively improves the cleaning effect;
[0030] See also Figures 1 to 7A handle 6 is fixed at the rear end of the machine body 1, and a trigger switch 7 is arranged on the inner wall of the handle 6. A narrow neck tube 8 is fixed at the rear end of the equipment compartment 2, and a liquid interface 9 is vertically connected to the narrow neck section in the middle of the narrow neck tube 8. The front end diffusion section of the narrow neck tube 8 is rotatably matched with the rear gear ring 505 through a rotary joint 10, and the rear end diffusion section of the narrow neck tube 8 is connected to an air source interface 11. A reciprocating assembly 12 is rotatably arranged at the front end of the equipment compartment 2, and the reciprocating assembly 12 includes a cam column 1201, a bearing frame 1202 and a punch. The internal channel of the cam column 1201 is connected to the narrow neck tube 8 through the middle through hole of the front gear ring 503 and the rear gear ring 505, and the rear end of the cam column 1201 is coaxially fixed with the front gear ring 503, and the front end of the cam column 1201 is rotatably matched with the bearing frame 1202, and the front end of the bearing frame 1202 is fixedly connected with the flushing nozzle 1203, and the curved pipe part of the flushing nozzle 1203 extends to the outside of the front end of the body 1, and the reciprocating assembly 12 also includes a swing plate 1204 and The connecting pin 1205 is engaged with the swing plate 1204 in the cam groove in the middle of the cam column 1201, and the connecting pin 1205 is fixed to the top of the ring structure of the swing plate 1204. The reciprocating assembly 12 also includes a reciprocating rod 1206, a guide sleeve 1207 and an inner brush 1208. The connecting pin 1205 is connected to the rear end of the reciprocating rod 1206, and the middle of the reciprocating rod 1206 is slidably matched with the guide sleeve 1207, and the guide sleeve 1207 is fixed to the inner wall of the front end of the equipment compartment 2. The reciprocating rod 1206 extends An inner strip brush 1208 is fixed to the front end of the body 1, the through hole of the handle 6 at the rear end of the body 1 is connected to the hook at the top of the bracket 14, and the hook at the bottom end of the bracket 14 is connected to the infusion bag 15, and the infusion bag 15 is connected to the liquid interface 9 on the abdomen of the body 1, the bracket 14 is fixed to the side of the bedside of the debridement platform 16 through a pipe clamp, and an air compressor 17 is placed on the shelf at the bottom of the debridement platform 16, and the air compressor 17 is connected to the air source interface 11 at the rear end of the body 1;
[0031] The specific operation is as follows: first, the front gear ring 503 and the rear gear ring 505 are driven by the driving motor 501 to reversely drive the driven wheels on different sides respectively, and the front gear ring 503 also rotates and drives the cam column 1201 coaxially at the front end. The pressure on both sides generated by the cam groove in the middle of the cam column 1201 during the rotation process will push the swing arm 1302 to swing back and forth. The swing arm 1302 further drives the reciprocating rod 1206 in the conduction to reciprocate and extend through the top connecting pin 1205, thereby driving the inner strip brush 1208 located between the outer roller brushes 1304 on both sides to reciprocate. When in use, under the gentle pressure of the medical staff, the swing arms 1302 on both sides of the end plate 1301 overcome the elastic force of the torsion spring and lift up to expose the inner brush 1208 therein, and the medical staff gently wipes the wound with the inner brush 1208. Secondly, according to Bernoulli's principle, the high-pressure gas entering the air source interface 11 at the rear end of the narrow-necked tube 8 generates a low-pressure area when passing through the narrow middle part, and then absorbs the liquid in the infusion bag 15 through the liquid interface 9 and mixes with the high-pressure gas. On the one hand, the internal channel of the cam column 1201 is connected to the narrow-necked tube 8 through the middle through-holes of the front gear ring 503 and the rear gear ring 505. The internal channel of the cam column 1201 is connected to the flushing nozzle 1203 extending to the outside of the body 1 through the middle hole of the bearing frame 1202. During the physical scraping and cleaning process of foreign objects in the wound by the inner strip brush 1208, auxiliary cleaning is performed by high-speed spraying of cleaning liquid. The cleaning liquid is shielded by the swing arm 1302 of the arc structure to prevent splashing, and further the cleaning liquid is discharged from the wound under the reverse rotation of the outer roller brushes 1304 on both sides. The present application cooperates with the driving component 5 and the reciprocating component 12 through the linkage, and the motor drives the driven components on both sides. The wheels rotate in the opposite direction to realize the opposite rotation of the outer roller brushes 1304 in the swing arms 1302 on both sides, and further drive the inner strip brush 1208 to reciprocate through the rotation of the cam column 1201. On the one hand, the high-pressure cleaning fluid introduced through the narrow neck tube 8 assists in flushing the wound. On the other hand, the inner strip brush 1208 cooperates with the outer roller brush 1304 to physically scrape the wound and discharge the cleaning fluid from the wound to prevent splashing. The functional components of the present application have strong linkage and reasonable structural arrangement to make the device compact, which can better meet the actual needs of cleaning operations.
[0032] In summary, when using the emergency trauma debridement treatment platform, the injured person lies flat on the debridement platform 16, and the medical staff removes the debridement machine of the present application from the hook at the top of the bracket 14, and then respectively connects the infusion bag 15 with the liquid interface 9 on the abdomen of the body 1, and the air compressor 17 is connected to the air source interface 11 at the rear end of the body 1. When performing the debridement operation, it is first necessary to cover the wound with gauze, and then clean the sand or other foreign matter near the wound. When in use, the drive motor 501 is enabled and drives the output end drive wheel 502 to rotate. On the one hand, the drive wheel 502 is driven to rotate to the right driven wheel 504 through meshing with the bottom front gear ring 503, and the rear gear ring 505 coaxial with the rear end of the front gear ring 503 is on the other hand. On the one hand, the transmission wheel 506 is used to rotate the driven wheel 2 507 on the left side, so that the rotation direction of the driven wheel 1 504 is opposite to that of the driven wheel 2 507. The reverse rotation of the driven wheel 1 504 and the driven wheel 2 507 further drives the outer roller brushes 1304 in the swing arms 1302 on both sides to rotate in the opposite direction through the universal joint 1305. The medical staff holds the handle 6 to attach the outer roller brushes 1304 on both sides of the front end of the body 1 to the vicinity of the wound and slowly moves around the wound to clean the sand or other foreign matter near the wound. The present application uses the linkage cooperation between the driving component 5 and the linkage component 13, so that the motor can drive the driven wheels on different sides to reverse synchronously, and further drives the swing arms 13 on both sides through the universal joint 1305. 02, the outer roller brush 1304 rotates in the opposite direction, and the sand and soil near the wound are peeled off from the skin and pushed to both sides through the physical friction of the outer roller brush 1304, which greatly relieves the workload of medical staff in manual cleaning and effectively improves the cleaning effect. Thereafter, the medical staff removes the gauze and performs debridement on the wound. First, the front gear ring 503 and the rear gear ring 505 are driven by the driving motor 501 to reversely drive the driven wheels on different sides respectively, and the front gear ring 503 also rotates to the coaxial cam column 1201 at the front end. The pressure on both sides generated by the cam groove in the middle of the cam column 1201 during the rotation process will push the swing arm 1302 to swing back and forth, and the swing arm 1302 is further driven to reciprocate through the top connecting pin 1205 The rod 1206 is located in the conduction and reciprocates and retracts, thereby driving the inner strip brush 1208 located between the outer roller brushes 1304 on both sides to reciprocate. When in use, under the gentle pressure of medical staff, the swing arms 1302 on both sides of the end plate 1301 overcome the elastic force of the torsion spring and lift up to expose the inner strip brush 1208 therein. The medical staff gently wipes the wound with the inner strip brush 1208. Secondly, according to Bernoulli's principle, the high-pressure gas entering the air source interface 11 at the rear end of the narrow-necked tube 8 generates a low-pressure area when passing through the narrow middle part, and then absorbs the liquid in the infusion bag 15 through the liquid interface 9 and mixes with the high-pressure gas. On the one hand, the internal channel of the cam column 1201 is connected to the narrow-necked tube 8 through the middle through-holes of the front gear ring 503 and the rear gear ring 505.On the other hand, the internal channel of the cam column 1201 is connected to the flushing nozzle 1203 extending to the outside of the body 1 through the middle hole of the bearing frame 1202. When the foreign matter in the wound is physically scraped and cleaned by the internal strip brush 1208, the cleaning liquid is assisted by the high-speed spray of the cleaning liquid. The cleaning liquid is shielded by the arc-shaped swing arm 1302 to prevent splashing, and the cleaning liquid is further discharged from the wound under the reverse rotation of the outer roller brushes 1304 on both sides. The present application cooperates with the driving component 5 and the reciprocating component 12 through the linkage, and the motor drives the driven wheels on both sides to reverse. While the outer roller brushes 1304 in the swing arms 1302 on both sides rotate in the opposite direction, the inner strip brush 1208 is further driven to reciprocate through the rotation of the cam column 1201. On the one hand, the high-pressure cleaning liquid introduced through the narrow neck tube 8 assists in flushing the wound. On the other hand, the inner strip brush 1208 cooperates with the outer roller brush 1304 to physically scrape the wound and discharge the cleaning liquid from the wound to prevent splashing. The functional components of this application have strong linkage and reasonable structural arrangement to make the device compact, which can better meet the actual needs of cleaning operations.
[0033] The embodiments of the present invention are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles and practical applications of the present invention and to enable those of ordinary skill in the art to understand the present invention and thereby design various implementations with various modifications suitable for specific uses.
Claims
1. An emergency trauma debridement treatment platform, characterized in that: The invention comprises a machine body (1) and a driving assembly (5), wherein an equipment compartment (2) is provided inside the machine body (1), and both sides of the equipment compartment (2) are connected to function compartments (3), and the top of the equipment compartment (2) is connected to a motor compartment (4), wherein the driving assembly (5) is arranged at the middle end inside the equipment compartment (2), and wherein the driving assembly (5) comprises a driving motor (501), a driving wheel (502), a front gear ring (503), a driven wheel 1 (504), a rear gear ring (505), a transmission wheel (506) and a driven wheel 2 (507), and wherein the driving motor (501) is fixed inside the motor compartment (4). , and the output end of the driving motor (501) is fixedly connected to a driving wheel (502), the bottom of the driving wheel (502) is meshed with a front gear ring (503), and the right side of the front gear ring (503) is meshed with a driven wheel one (504), the rear end of the front gear ring (503) is coaxially fixed with a rear gear ring (505), and the through holes of the front gear ring (503) and the rear gear ring (505) are located on the same central axis, the left side of the rear gear ring (505) is meshed with a transmission wheel (506), and the end of the transmission wheel (506) away from the rear gear ring (505) is meshed with a driven wheel two (507).
2. The emergency trauma debridement treatment platform according to claim 1, characterized in that: The driving wheel (502) is rotated to the right driven wheel 1 (504) by meshing with the bottom front gear ring (503), and the rear gear ring (505) coaxial with the rear end of the front gear ring (503) is rotated to the left driven wheel 2 (507) through the transmission wheel (506), and the driven wheel 1 (504) and the driven wheel 2 (507) rotate in opposite directions.
3. The emergency trauma debridement treatment platform according to claim 2, characterized in that: A handle (6) is fixed to the rear end of the machine body (1), and a trigger switch (7) is arranged on the inner wall of the handle (6).
4. The emergency trauma debridement treatment platform according to claim 3, characterized in that: A narrow-necked tube (8) is fixed at the rear end of the equipment bin (2), and a liquid interface (9) is vertically connected to the narrow neck section in the middle of the narrow-necked tube (8). The front diffuser section of the narrow-necked tube (8) is rotatably matched with the rear gear ring (505) via a rotary joint (10), and the rear diffuser section of the narrow-necked tube (8) is connected to an air source interface (11).
5. The emergency trauma debridement treatment platform according to claim 4, characterized in that: A reciprocating assembly (12) is rotatably mounted at the front end of the equipment bin (2), and the reciprocating assembly (12) comprises a cam column (1201), a bearing frame (1202) and a flushing nozzle (1203). The internal channel of the cam column (1201) is connected to the narrow neck tube (8) through the middle through holes of the front gear ring (503) and the rear gear ring (505), and the rear end of the cam column (1201) is coaxially fixed with the front gear ring (503), and the front end of the cam column (1201) is rotatably matched with the bearing frame (1202). The front end of the bearing frame (1202) is fixedly connected to the flushing nozzle (1203), and the curved pipe portion of the flushing nozzle (1203) extends to the outside of the front end of the machine body (1).
6. The emergency trauma debridement treatment platform according to claim 5, characterized in that: The reciprocating assembly (12) further comprises a wobble plate (1204) and a connecting pin (1205); the wobble plate (1204) is engaged with a cam groove in the middle of the cam column (1201), and the connecting pin (1205) is fixed to the top of the annular structure of the wobble plate (1204).
7. The emergency trauma debridement treatment platform according to claim 6, characterized in that: The reciprocating assembly (12) also includes a reciprocating rod (1206), a guide sleeve (1207) and an inner strip brush (1208), wherein the connecting pin (1205) is connected to the rear end of the reciprocating rod (1206), and the middle part of the reciprocating rod (1206) is slidably matched with the guide sleeve (1207), and the guide sleeve (1207) is fixed to the inner wall of the front end of the equipment compartment (2), and the part of the reciprocating rod (1206) extending to the outside of the front end of the machine body (1) is fixed with the inner strip brush (1208).
8. The emergency trauma debridement treatment platform according to claim 7, characterized in that: The front end of the machine body (1) is externally connected to a linkage assembly (13), the linkage assembly (13) comprising an end plate (1301) and a swing arm (1302), the end plate (1301) being fixedly mounted on both ends of a flange at the front end of the machine body (1), and the swing arms (1302) are rotatably mounted on both sides of the end plate (1301) via torsion springs, and the single-side swing arm (1302) is an arc-shaped structure with a notch facing inward.
9. The emergency trauma debridement treatment platform according to claim 8, characterized in that: The linkage assembly (13) further comprises a mounting frame (1303), an outer roller brush (1304) and a universal joint (1305); the mounting frames (1303) are fixed at both ends of the arc-shaped structure of the swing arm (1302); the outer roller brushes (1304) are rotatably mounted inside the mounting frames (1303) on both sides; and the outer roller brushes (1304) on both sides are respectively connected to the corresponding driven wheel 1 (504) and driven wheel 2 (507) through the universal joint (1305).
10. An emergency trauma debridement treatment platform according to claim 9, characterized in that: The through hole of the handle (6) at the rear end of the body (1) is connected to the hook at the top of the bracket (14), and the hook at the bottom end of the bracket (14) is connected to the infusion bag (15), and the infusion bag (15) is connected to the liquid interface (9) on the abdomen of the body (1), the bracket (14) is fixed to the head side of the debridement platform (16) through a pipe clamp, and an air compressor (17) is placed on the bottom shelf of the debridement platform (16), and the air compressor (17) is connected to the air source interface (11) at the rear end of the body (1).