Auxiliary turning-over device for infant patient
By designing an auxiliary turning device that includes a base pad and a turning bladder structure, and by using an inflatable structure to adjust the expansion and contraction of the bladder, the problems of large space occupation and difficulty in maintaining the position during turning operations for young patients are solved. This achieves automatic turning and effective maintenance of body position, reducing the risk of pressure sores and muscle atrophy.
Patent Information
- Application Number
- CN202520038309.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-08
AI Technical Summary
In existing technologies, turning over young children with hemiplegia or muscle spasms requires multiple pillows, which takes up a lot of space and makes it difficult to effectively maintain their posture, leading to pressure sores and muscle atrophy.
Design an auxiliary turning device that includes a base pad and a turning bladder structure. Utilize an inflatable structure to adjust the expansion and contraction of the bladder, enabling automatic turning and maintenance of the patient's posture. Through the cooperation of the inflatable structure and the bladder components, the patient's posture is automatically adjusted.
It occupies little space, can automatically assist patients in turning over and effectively maintain their posture, reduce the risk of pressure sores and muscle atrophy, and meet the expected treatment effect of turning over.
Smart Images

Figure CN223787806U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical technology, and more specifically, to an auxiliary turning device for young patients. Background Technology
[0002] In hospital clinical settings, for young patients with hemiplegia or muscle spasms, the prolonged bed rest and maintenance of the same body position can easily lead to pressure sores and muscle atrophy, thereby increasing the patient's suffering and affecting their quality of life.
[0003] Currently, in clinical practice, the common nursing care for infants with hemiplegia or muscle spasticity involves manually assisting them in turning over using pillows to change their position, thereby reducing the risk of pressure sores and slowing muscle atrophy. However, while existing methods for turning over infants with hemiplegia or muscle spasticity can meet certain needs, multiple pillows are required to facilitate turning over and maintain functional positioning to prevent pressure sores. For hospitalized children, carrying multiple pillows is bulky and space-consuming, which is impractical for families. Furthermore, during use, the pillows used to restrict the patient's position after turning over are prone to shifting, making it difficult to effectively maintain the patient's posture and thus failing to achieve the expected therapeutic effect of turning over, making it difficult to meet practical application needs.
[0004] How to solve the above problems has become an urgent technical challenge. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide an auxiliary turning device for pediatric patients that occupies little space, can automatically assist patients in turning over and effectively maintain their body position to meet the expected turning over intervention treatment effect.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] An assistive turning device for infant patients includes a base pad for attaching to an external hospital bed; a turning sac structure for the patient to lie on is provided on the base pad; and an inflatable structure connected to a corresponding cavity of the turning sac structure is provided outside the turning sac structure for adjusting the expansion and contraction state of the cavity to enable the patient to turn over and maintain the turning posture.
[0008] Preferably, the turning bag structure includes a bag sleeve disposed on the top of the base pad, and a cavity component is provided inside the bag sleeve for dividing the interior of the bag sleeve into several independent cavities to realize the turning and defining of the patient in different positions, wherein the turning bag structure is connected to the inflatable structure through the cavity component.
[0009] Preferably, the cavity assembly includes a head positioning cavity disposed within the sheath and located on both sides of the upper end of the sheath for adjusting and defining the patient's head position; a shoulder positioning cavity disposed within the sheath and located on both sides of the bottom of the head positioning cavity for adjusting and defining the patient's shoulder position; a hip positioning cavity disposed within the sheath and located on both sides of the bottom of the shoulder positioning cavity for adjusting and defining the patient's hip position; and a lower limb positioning cavity disposed within the sheath and located on both sides of the lower end of the sheath for adjusting and defining the patient's lower limb position.
[0010] Preferably, the cavity assembly further includes a connection port located at the outer end of each of the head position adjustment cavity, shoulder position adjustment cavity, hip position adjustment cavity, and lower limb position adjustment cavity for connection with the inflatable structure.
[0011] Preferably, the inflatable structure includes a seat body disposed outside the bladder sleeve, an air pump is provided at one end of the inner side of the seat body and an air pipe is connected to the outlet end of the air pump, and the end of the air pipe away from the air pump is connected to the corresponding connection port through an electric valve. A controller is also provided at the other end of the seat body away from the air pump, and a touch screen control panel is provided at the top of the seat body. The air pump, electric valve, and touch screen control panel are all electrically connected to the controller through conductive wire harnesses.
[0012] Preferably, the controller is a PLC controller.
[0013] Preferably, the touch screen control panel is a BOE-WES070TN-001 central control screen.
[0014] Preferably, the sac is made of cotton fabric.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] In this invention, a turning bag structure is attached to the outside of the hospital bed via a base pad. It is inflated and deflated as needed to replace a traditional pillow for turning and positioning the patient. This design not only occupies little space but also improves the tidiness of the bed and facilitates storage, meeting the needs of both hospitalization and daily home care. In use, young patients with hemiplegia or muscle spasticity lie on the turning bag structure. The inflatable tubes are connected to the corresponding cavities of the turning bag structure. When turning is required, the inflatable structure inflates or deflates the corresponding cavities, allowing for automatic adjustment and maintenance of the patient's position. This avoids pressure sores and muscle atrophy caused by prolonged bed rest in the same position, thus achieving the desired therapeutic effect of turning intervention. Therefore, this invention has the advantages of small space occupation, automatic assistance in turning patients, and effective maintenance of body position to achieve the desired therapeutic effect of turning intervention. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of an assistive turning device for young patients according to the present invention.
[0018] Explanation of reference numerals in the attached diagram: 1. Base pad; 2. Turning bladder structure; 21. Bladder sleeve; 22. Cavity assembly; 100. Head position adjustment cavity; 200. Shoulder position adjustment cavity; 300. Hip position adjustment cavity; 400. Lower limb position adjustment cavity; 500. Connecting port; 3. Inflation structure; 31. Seat; 32. Inflation pump; 33. Air tube; 34. Electric valve; 35. Controller; 36. Touch screen control panel. Detailed Implementation
[0019] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0020] See Figure 1As shown, an assisted turning device for infant patients includes a base pad 1 for attaching to the outside of a hospital bed; a turning bladder structure 2 for the patient to lie on is provided on the base pad 1; and an inflatable structure 3 is provided outside the turning bladder structure 2, connected to a corresponding cavity for adjusting the expansion and contraction of the cavity to enable the patient to turn over and maintain a turning position. In use, the turning bladder structure 2 is attached to the outside of the hospital bed via the base pad 1, and inflated and deflated as needed, replacing the traditional pillow for turning and positioning the patient. It not only occupies little space but also improves the tidiness of the hospital bed and is easy to store and use; it meets the needs of hospitalization and daily home care. When in use, young children with hemiplegia or muscle spasticity lie on the turning bag structure 2, and the tube of the inflation structure 3 is connected to the corresponding cavity of the turning bag structure 2. When it is necessary to turn the patient over, the corresponding cavity of the turning bag structure 2 is inflated or deflated by the inflation structure 3 as needed. The expansion and contraction of the cavity, in conjunction with other cavities, can achieve automatic turning adjustment and maintenance of the patient's posture, thereby avoiding pressure sores and muscle atrophy caused by maintaining the same bed position for a long time, and thus achieving the expected turning intervention treatment effect.
[0021] In this embodiment, the turning bag structure 2 includes a bag sleeve 21 disposed on the top of the base pad 1. Inside the bag sleeve 21, there is a cavity component 22 for dividing the interior of the bag sleeve 21 into several independent cavities to realize the turning and defining of the patient in different positions. The turning bag structure 2 is connected to the inflatable structure 3 through the cavity component 22. The cavity assembly 22 includes a head positioning cavity 100 located within the sheath 21 and on both sides of the upper end of the sheath 21 for adjusting and defining the patient's head position; a shoulder positioning cavity 200 located within the sheath 21 and on both sides of the bottom of the head positioning cavity 100 for adjusting and defining the patient's shoulder position; a hip positioning cavity 300 located within the sheath 21 and on both sides of the bottom of the shoulder positioning cavity 200 for adjusting and defining the patient's hip position; and a lower limb positioning cavity 400 located within the sheath 21 and on both sides of the lower end of the sheath 21 for adjusting and defining the patient's lower limb position. The cavity assembly 22 also includes a connection port 500 located at the outer end of each of the head positioning cavity 100, shoulder positioning cavity 200, hip positioning cavity 300, and lower limb positioning cavity 400 for connecting to the inflatable structure 3. During use, the pipes of the inflatable structure 3 are connected to the various connection ports 500 of the cavity component 22 of the turning bag structure 2. When it is necessary to turn the patient over, the inflatable structure 3 is activated as needed. The inflatable structure 3 inflates or deflates the corresponding head position adjustment cavity 100, shoulder position adjustment cavity 200, buttock position adjustment cavity 300, or lower limb position adjustment cavity 400 through the connection ports 500, thereby causing the bag 21 to expand or contract accordingly. By expanding or contracting the corresponding adjustment cavity, the patient is automatically turned over in the corresponding position to achieve position adjustment. At the same time, the adjustment cavity, in conjunction with other adjustment cavities, limits the patient's posture to maintain the posture, thereby avoiding pressure sores and muscle atrophy caused by the patient maintaining the same bed position for a long time. This can achieve the expected turning intervention treatment effect.
[0022] In this embodiment, the inflation structure 3 includes a seat 31 disposed outside the bladder sleeve 21. An inflation pump 32 is provided on one side of the interior of the seat 31, and an air pipe 33 is connected to the outlet end of the inflation pump 32. The end of the air pipe 33 away from the inflation pump 32 is connected to the corresponding connection port 500 through an electric valve 34. A controller 35 is also provided on the other side of the seat 31 away from the inflation pump 32. A touch screen control panel 36 is provided on the top of the seat 31. The inflation pump 32, the electric valve 34, and the touch screen control panel 36 are all electrically connected to the controller 35 through conductive wire harnesses. During use, the electric valves 34 of the inflation structure 3 are connected to the connection ports 500 of the cavity assembly 22 of the turning bag structure 2. When a turning operation is required for the patient, the air pump 32 is started by sending a signal to the controller 35 through the touch screen control panel 36, and the corresponding electric valves 34 are also started. Under the support and limitation of the seat 31, the air pump 32 is used to adjust the head position of the corresponding head position in the corresponding cavity 100 through the air tube 33, the corresponding electric valves 34, and the corresponding connection ports 500. The shoulder position adjustment cavity 200, the buttock position adjustment cavity 300, or the lower limb position adjustment cavity 400 are inflated or deflated to expand or contract, thereby causing the corresponding position of the cap 21 to expand or contract. By utilizing the expansion and contraction of the corresponding adjustment cavity, the patient's position is automatically turned over to achieve position adjustment. At the same time, by cooperating with other adjustment cavities, the patient's position posture is limited to maintain the position, thereby avoiding pressure sores and muscle atrophy caused by the patient maintaining the same bed position for a long time. This can achieve the expected turning intervention treatment effect.
[0023] In this embodiment, the controller 35 is a PLC controller. The touch screen control panel 36 is a BOE-WES070TN-001 central control screen. The sleeve 21 is made of cotton fabric.
[0024] In this specific embodiment, firstly, the turning bag structure 2 is placed on the external hospital bed using the base pad 1, and then the hemiplegic or muscle spastic infant patient is moved to lie on the bag sleeve 21 of the turning bag structure 2; secondly, the electric valves 34 of the inflation structure 3 are connected to the connection ports 500 of the cavity assembly 22 of the turning bag structure 2; then, when it is necessary to perform a turning operation on the patient, according to the needs, the air pump 32 is started by sending a signal to the controller 35 through the touch screen control panel 36, and the corresponding electric valves 34 are also started. Under the support and limitation of the seat 31, the air pump 32 is used to sequentially inflate the head and body through the trachea 33, the corresponding electric valves 34, and the corresponding connection ports 500. The head position adjustment cavity 100, shoulder position adjustment cavity 200, hip position adjustment cavity 300, or lower limb position adjustment cavity 400 are inflated or deflated to expand and contract, thereby causing the corresponding position of the cap 21 to expand and contract. Finally, by expanding and contracting the corresponding head position adjustment cavity 100, shoulder position adjustment cavity 200, hip position adjustment cavity 300, or lower limb position adjustment cavity 400, the patient's corresponding position is automatically turned over to achieve position adjustment. At the same time, the patient's position posture is limited by the adjustment cavity and other adjustment cavities to maintain the position posture, thereby avoiding pressure sores and muscle atrophy caused by the patient maintaining the same bed position for a long time. This can achieve the expected turning intervention treatment effect.
[0025] In this embodiment, the cavity assembly 22 can be inflated and deflated as needed to replace the traditional pillow for turning and positioning operations on the patient. It not only occupies little space, but also improves the cleanliness of the hospital bed and is easy to store and use; it meets the needs of hospitalization and daily home care.
[0026] In summary, this utility model, with the aforementioned structure, has the advantages of occupying little space, automatically assisting patients in turning over, and effectively maintaining their posture to meet the expected turning intervention treatment effect. It can improve the cleanliness of the hospital bed and facilitate storage and use; it meets the needs of hospitalization and daily home care.
[0027] The above specific embodiments are merely several preferred embodiments of this utility model. Based on the technical solution of this utility model and the relevant teachings of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.
Claims
1. A device for assisting in turning over a young patient, comprising a base pad (1) for attaching to an externally placed bed; characterized in that: A turning bag structure (2) for the patient to lie on is provided on the base pad (1). An inflatable structure (3) is provided outside the turning bag structure (2) and connected to a corresponding cavity of the turning bag structure (2) for adjusting the expansion and contraction state of the cavity to realize the patient's turning and maintain the turning posture.
2. The assisted turning device for infant patients according to claim 1, characterized in that: The turning bag structure (2) includes a bag sleeve (21) disposed on the top of the base pad (1). Inside the bag sleeve (21) is a cavity component (22) for dividing the interior of the bag sleeve (21) into several independent cavities to realize turning and defining different body positions of the patient. The turning bag structure (2) is connected to the inflatable structure (3) through the cavity component (22).
3. The assisted turning device for infant patients according to claim 2, characterized in that: The cavity assembly (22) includes a head positioning cavity (100) located inside the sheath (21) and on both sides of the upper end of the sheath (21) for adjusting and defining the patient's head position; a shoulder positioning cavity (200) located inside the sheath (21) and on both sides of the bottom of the head positioning cavity (100) for adjusting and defining the patient's shoulder position; a hip positioning cavity (300) located inside the sheath (21) and on both sides of the bottom of the shoulder positioning cavity (200) for adjusting and defining the patient's hip position; and a lower limb positioning cavity (400) located inside the sheath (21) and on both sides of the lower end of the sheath (21) for adjusting and defining the patient's lower limb position.
4. The assisted turning device for infant patients according to claim 3, characterized in that: The cavity assembly (22) further includes a connection port (500) located at the outer end of each of the head position adjustment cavity (100), shoulder position adjustment cavity (200), hip position adjustment cavity (300), and lower limb position adjustment cavity (400) for connection with the inflatable structure (3).
5. The assisted turning device for infant patients according to claim 4, characterized in that: The inflation structure (3) includes a seat (31) located outside the bladder (21). An inflation pump (32) is provided on one side inside the seat (31), and an air pipe (33) is connected to the outlet end of the inflation pump (32). The end of the air pipe (33) away from the inflation pump (32) is connected to the corresponding connection port (500) through an electric valve (34). A controller (35) is also provided on the other side inside the seat (31) away from the inflation pump (32). A touch screen control panel (36) is provided on the top of the seat (31). The inflation pump (32), the electric valve (34), and the touch screen control panel (36) are all electrically connected to the controller (35) through conductive wire harnesses.
6. The assisted turning device for infant patients according to claim 5, characterized in that: The controller (35) is a PLC controller.
7. The assisted turning device for infant patients according to claim 5, characterized in that: The touch screen control panel (36) is a BOE-WES070TN-001 central control screen.
8. The assisted turning device for infant patients according to any one of claims 2 to 5, characterized in that: The sheath (21) is made of cotton fabric.