Examination equipment for detecting uterine prolapse
By integrating lighting and observation functions into the examination window and using an adjustable support structure, the problems of small field of view and inconvenient operation of existing equipment have been solved, achieving more efficient and comfortable uterine prolapse detection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-14
- Publication Date
- 2026-03-31
AI Technical Summary
Existing diagnostic equipment for uterine prolapse cannot provide a wider monitoring field, has poor lighting, and is inconvenient to operate, affecting the accuracy and flexibility of the test.
An inspection window integrating lighting and observation functions was designed, including a shadowless lamp assembly, an adjustable support structure, and a leg holder, providing uniform lighting and flexible operating space. The support structure can be adjusted according to needs.
It improves the accuracy and flexibility of the examination, enhances the convenience of operation, simplifies the equipment structure, and improves the adaptability of the examination and the comfort of patients.
Smart Images

Figure CN224055979U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of uterine prolapse diagnosis technology, and in particular to a diagnostic device for detecting uterine prolapse. Background Technology
[0002] Uterine prolapse refers to the downward displacement of the uterus due to weakened supporting tissues, and in severe cases, it may protrude completely outside the vagina. This condition usually occurs after childbirth, with increasing age, or other factors that lead to relaxation of the pelvic floor muscles. Uterine prolapse not only affects a patient's physical health but also has a negative impact on their psychological state. Timely and accurate diagnosis is crucial for developing a treatment plan and for the patient's recovery.
[0003] In the medical field, the detection of uterine prolapse typically relies on traditional medical equipment and methods. These methods include, but are not limited to:
[0004] Traditional gynecological examination tables: These devices typically provide basic support and positioning functions, but lack sufficient flexibility and adjustability. Doctors often need to use additional tools and lighting equipment during the examination, which increases the complexity of the examination.
[0005] Portable examination instruments: Although these instruments can provide some lighting and detection functions, they may cause discomfort to patients during use due to the lack of a stable support structure, and doctors' observation angle is limited.
[0006] Light source equipment: While existing light source equipment is effective in providing illumination, its integration with the detector is often not tight enough, requiring doctors to manually adjust its position, which affects the convenience and accuracy of the operation.
[0007] Therefore, it is essential to invent a diagnostic device for detecting uterine prolapse. Utility Model Content
[0008] To address the aforementioned technical problems, this utility model provides a diagnostic device for detecting uterine prolapse, solving the issues of existing uterine prolapse diagnostic devices still lacking a wider monitoring field of view, having poor lighting effects, and being inconvenient to use when illumination is applied. The diagnostic device for detecting uterine prolapse includes a supporting base, a lifting base, a seat, a backrest, an examination window, and leg supports, wherein: the lifting base is fixedly installed on the surface of the supporting base, and the seat is fixedly installed on top of the lifting base; the backrest is installed behind the seat; the examination window is fixedly installed at the bottom of the seat, and the leg supports are installed on both sides of the seat.
[0009] The inspection window includes an extension bracket, a swing bracket, a tilt bracket, a positioning window, a shadowless lamp assembly, and a hand grip. The extension bracket is fixedly installed at the bottom of the seat, and the swing bracket is rotatably installed at the top of the extension bracket. The tilt bracket is rotatably installed on the swing bracket, and the positioning window is rotatably installed at the top of the tilt bracket. The shadowless lamp assembly is fixedly installed on the side of the positioning window facing the seat. The hand grip is fixedly installed on one side of the positioning window.
[0010] The leg support includes a rotating seat, a support frame, a leg base, and a foot base. The rotating seat is installed on both sides of the seat, and the support frame is fixedly installed on the rotating seat. The leg base is fixedly installed on the front end of the support frame, and the foot base is slidably installed on the rear end of the leg base.
[0011] The internal extension bracket, swing bracket, and tilt bracket of the examination window are connected by a set of metal components, all of which can rotate relative to each other; the positioning window is a rectangular plastic frame and can rotate at the top of the tilt bracket; the shadowless lamp assembly is a rectangular frame-shaped lamp box, and a rectangular window is formed between the positioning window and the shadowless lamp assembly. The movement of the positioning window and the shadowless lamp assembly is achieved by the operator holding a hand handle, which has the following functions: ① Shadowless illumination: The shadowless lamp assembly built into the examination window can provide a uniform illumination effect, eliminating the shadow interference that may occur in traditional examinations. This allows doctors to observe the examination area more clearly, improving the accuracy and reliability of the examination. ② Flexible space utilization: The designed open space provides ample room for the use of various detectors and tools. Compared with traditional equipment, the examination window allows doctors to freely adjust and operate the equipment as needed, enhancing operational flexibility. ③ Multifunctional integration: The examination window integrates lighting and observation functions into one module, reducing the complexity and space occupied by the equipment. Traditional technologies may require multiple independent components to achieve the same function, while this integrated design simplifies the construction of the equipment and improves ease of use. ④ Adjustability: The various supports within the examination window can rotate and adjust relative to each other, allowing doctors to flexibly adjust them according to specific needs, further enhancing the adaptability of the equipment.
[0012] The leg rests are arranged in pairs, mirror images of each other, on both sides of the chair. The leg rests can be angled via a rotating seat and can be suspended at specific angles as needed. The support frame consists of a forward-extending metal rod. The leg base uses a set of elongated support structures, and the foot base extends rearward from the rear end of the leg base via a bracket. The foot base uses a small support block. The leg base allows the patient's lower leg to rest on its surface, and the foot base allows the patient's foot to rest on its surface. This provides the following benefits: ① Adjustability: The leg rests can be angled via a rotating seat, allowing doctors to flexibly adjust the angle according to the patient's specific condition and examination needs. This adjustability is often insufficient in existing technologies, limiting the doctor's operational space. ② Improved examination field of view: When the patient places their lower leg on the leg base surface, normal examination can be performed. When the patient places their foot on the foot base surface, the patient's legs are spread wider, providing the doctor with a larger examination field of view for more detailed examination.
[0013] The outer side of the supporting base plate has a fixed mounting seat with a suspension rod, and a shielding curtain is slidably installed on the surface of the suspension rod.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] 1. The examination window of this utility model has the following functions: ① Shadowless illumination: The shadowless lamp group built into the examination window can provide a uniform lighting effect, eliminating the shadow interference that may occur in traditional examinations. This allows doctors to observe the examination area more clearly, improving the accuracy and reliability of the examination; ② Flexible use of space: The designed open space provides ample room for the use of various detectors and tools. Compared with traditional equipment, the examination window allows doctors to freely adjust and operate the equipment as needed, enhancing operational flexibility; ③ Multifunctional integration: The examination window integrates lighting and observation functions into one module, reducing the complexity of the equipment and the space occupied. Traditional technologies may require multiple independent components to achieve the same function, while this integrated design simplifies the construction of the equipment and improves the convenience of use; ④ Adjustability: The various supports inside the examination window can be rotated and adjusted relative to each other, allowing doctors to flexibly adjust according to specific needs, further improving the adaptability of the equipment.
[0016] 2. The leg rest of this utility model has the following functions: ① Adjustability: The angle of the leg rest can be adjusted through a rotating base, allowing doctors to flexibly adjust the angle of the leg rest according to the patient's specific condition and examination needs. This adjustability is often not flexible enough in existing technologies, limiting the doctor's operating space; ② Improved examination field of view: When the patient places their lower leg on the surface of the leg rest base, normal examination can be performed. When the patient places their foot on the surface of the foot rest base, the patient's legs will be spread wider, giving the doctor a larger examination field of view and allowing for more detailed examination. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model.
[0018] Figure 2 This is a second-view schematic diagram of the present invention.
[0019] Figure 3 This is a utility model Figure 1 Enlarged view of point A.
[0020] Figure 4 This is a utility model Figure 2 Enlarged view of point B.
[0021] In the picture:
[0022] 1. Pressurization structure, 2. Grip frame, 3. Connecting port, 4. Medicine cartridge, 41. Medicine storage chamber, 42. Connecting port, 43. Top cover, 44. Injection port, 45. Outlet port, 5. Drug delivery tube, 51. Injection head, 52. Grip handle, 53. Positioning frame, 54. Detailed Implementation
[0023] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of the present invention.
[0024] As attached Figure 1 To be continued Figure 3 As shown.
[0025] This utility model provides a diagnostic device for detecting uterine prolapse, comprising a supporting base plate 1, a lifting base 2, a seat 3, a backrest 4, an examination window 5, and a leg rest 6, wherein: the lifting base 2 is fixedly installed on the surface of the supporting base plate 1, and the seat 3 is fixedly installed on the top of the lifting base 2, and the backrest 4 is installed behind the seat 3; the examination window 5 is fixedly installed on the bottom of the seat 3, and the leg rest 6 is installed on both sides of the seat 3.
[0026] The inspection window 5 includes an extension bracket 51, a swing bracket 52, a tilt bracket 53, a positioning window 54, a shadowless lamp assembly 55, and a hand grip 56. The extension bracket 51 is fixedly installed at the bottom of the seat 3, and the swing bracket 52 is rotatably installed at the top of the extension bracket 51. The tilt bracket 53 is rotatably installed on the swing bracket 52, and the positioning window 54 is rotatably installed at the top of the tilt bracket 53. The shadowless lamp assembly 55 is fixedly installed on the side of the positioning window 54 facing the seat 3. The hand grip 56 is fixedly installed on one side of the positioning window 54.
[0027] The leg support 6 includes a rotating seat 61, a support frame 62, a leg base 63, and a foot base 64. The rotating seat 61 is installed on both sides of the seat 3, and the support frame 62 is fixedly installed on the rotating seat 61. The leg base 63 is fixedly installed on the front end of the support frame 62, and the foot base 64 is slidably installed on the rear end of the leg base 63.
[0028] The extension bracket 51, swing bracket 52, and tilt bracket 53 inside the inspection window 5 are connected by a set of metal components, and all of them can rotate relative to each other; the positioning window 54 is a rectangular plastic frame and can rotate at the top of the tilt bracket 53; the shadowless lamp assembly 55 is a rectangular frame-shaped lamp box, and a rectangular window is formed in the middle of the positioning window 54 and the shadowless lamp assembly 55. The movement of the positioning window 54 and the shadowless lamp assembly 55 is achieved by a person holding a hand grip 56.
[0029] The leg rests 6 are arranged in pairs and mirror images of each other on both sides of the seat 3; the leg rests 6 can be adjusted in angle by rotating the seat 61 and can be suspended at a specific angle as needed; the support frame 62 is a forward-extending metal rod; the leg base 63 is a set of long strip-shaped support structures, and the foot base 64 can extend backward from the rear end of the leg base 63 by a bracket, and the foot base 64 is a small support block; the leg base 63 allows the patient's lower leg to rest on its surface, and the foot base 64 allows the patient's foot to rest on its surface.
[0030] The outer side of the supporting base plate 1 has a fixed mounting seat with a suspension rod 7, and a shielding curtain 8 is slidably installed on the surface of the suspension rod 7.
[0031] Compared with existing technologies, this case has the following significant advantages:
[0032] 1. Comprehensive functional design:
[0033] This project integrates multiple functions, such as lighting, inspection, and support, into a single device, reducing the need for multiple independent components. This integrated design improves the efficiency of the device and simplifies the operation process.
[0034] 2. Optimized space utilization:
[0035] The space provided by the examination window 5 in the design provides ample room for the use of detectors and tools. Doctors can flexibly adjust the position of the equipment to adapt to different examination needs. This kind of space utilization is rare in existing technology.
[0036] 3. Flexible adjustment mechanism:
[0037] The design of the leg rest 6 and examination window 5 allows for flexible adjustment, enabling doctors to quickly adjust the position of the equipment according to different patient conditions, thus improving the adaptability and convenience of the examination.
[0038] 4. Shadowless lighting:
[0039] The built-in shadowless lamp assembly 55 in the examination window 5 provides uniform illumination, eliminates shadow interference, and allows doctors to clearly observe the examination area. This advantage is often not possible in traditional equipment.
[0040] 5. Improved patient comfort:
[0041] The design of this case takes full consideration of patient comfort. Through optimized support structure and user-friendly operation design, it reduces patient discomfort during the examination process and enhances the overall experience.
[0042] 6. Enhanced security:
[0043] The stable design of the leg rest 6 effectively prevents patients from accidentally sliding or losing balance during the examination, thereby improving the safety of the examination.
[0044] 7. Improve inspection efficiency:
[0045] Thanks to its integrated design, flexible adjustment mechanism, and optimized space utilization, this project can shorten doctors' examination time and improve overall diagnostic efficiency. This is often difficult to achieve with existing technologies.
[0046] 8. Highly adaptable:
[0047] The device's multifunctional and adjustable design allows it to adapt to the needs of different patients, enhancing its versatility and flexibility.
[0048] In summary, this solution has significant advantages over existing technologies in terms of functional integration, space utilization, lighting design, patient comfort, and ease of operation, providing doctors with a more efficient, safer, and more comfortable examination experience.
[0049] Usage process
[0050] 1. Preparation
[0051] Before using the diagnostic equipment for uterine prolapse, the doctor should ensure that the equipment is in good working order and check all components, including the support base 1, lifting base 2, seat 3, backrest 4, examination window 5, and leg rest 6, to ensure that there is no damage or malfunction.
[0052] 2. Patient preparation
[0053] Patient instructions:
[0054] Before conducting an examination, the doctor should explain the purpose and process to the patient to reduce the patient's anxiety.
[0055] The patient takes a seat:
[0056] Under the doctor's guidance, the patient slowly sits in seat 3 and adjusts the position to ensure comfort.
[0057] 3. Equipment Adjustment
[0058] Adjust seat height:
[0059] The doctor adjusts the height of the seat 3 using the lifting base 2 to suit the patient's height and examination needs.
[0060] Adjust the backrest:
[0061] Based on the patient's comfort level, the doctor can adjust the angle of the backrest to ensure the patient is relaxed during the examination.
[0062] Adjust the leg rest:
[0063] The doctor adjusts the angle of the leg rest 6 by rotating the seat 61 according to the position of the patient's legs, ensuring that the patient's legs are naturally separated for more careful monitoring.
[0064] 4. Conduct an inspection
[0065] Open the inspection window:
[0066] The doctor operates the examination window 5 to ensure that the shadowless lamp assembly 55 is turned on, providing uniform illumination. The angles of various components of the doctor's examination window, such as the extension bracket 51, the swing bracket 52, and the tilt bracket 53, are adjusted to facilitate observation of the examination area.
[0067] Using the detector:
[0068] During the examination, the doctor places the detector in the space left in the examination window 5 and begins a detailed examination of the patient. Thanks to the good lighting provided by the shadowless lamp group 55, the doctor can clearly observe the condition of the uterus.
[0069] Monitoring and Recording:
[0070] During the examination, doctors can combine observation and palpation to record important data in order to provide patients with accurate diagnostic results.
[0071] 5. Inspection completed
[0072] End of inspection:
[0073] After completing the examination, the doctor closes the examination window 5 and the shadowless lamp assembly 55, and informs the patient that the examination is over.
[0074] Patient adjustment:
[0075] The doctor assists the patient in adjusting the position of the leg rest 6 to restore the patient's legs to a natural position, ensuring the patient's comfort when leaving the seat 3.
[0076] Organize the equipment:
[0077] After the patient leaves, the doctor tidies up the equipment, ensuring all components are in good working order for the next use.
[0078] Through the above steps, doctors can effectively utilize diagnostic equipment for uterine prolapse to provide efficient, safe, and comfortable examination services. The design of this equipment allows doctors to operate flexibly, maximizing the satisfaction of patients' needs, thereby improving the overall accuracy and efficiency of diagnosis.
[0079] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solution described in this utility model, or by designing a similar technical solution inspired by the technical solution described in this utility model, falls within the protection scope of this utility model.
Claims
1. An examination device for detecting uterine prolapse, characterized by: The utility model provides a kind of medical examination chair, including support base plate (1), lifting pedestal (2), seat (3), backrest (4), inspection window (5) and leg rest (6), wherein: lifting pedestal (2) is fixedly installed on the surface of support base plate (1), and seat (3) is fixedly installed on the top of lifting pedestal (2), and the backrest (4) is installed at the back of seat (3);The inspection window (5) is fixedly installed at the bottom of seat (3), and the leg rest (6) is installed at the both sides of seat (3);The inspection window (5) includes extension support (51), swing support (52), tilt support (53), positioning window (54), shadowless lamp group (55) and handheld handle (56), and extension support (51) is fixedly installed at the bottom of seat (3), and swing support (52) is rotatably installed at the top of extension support (51);Tilt support (53) is rotatably installed on swing support (52), and positioning window (54) is rotatably installed on the top of tilt support (53), and shadowless lamp group (55) is fixedly installed on the side of positioning window (54) towards seat (3);Handheld handle (56) is fixedly installed on one side of positioning window (54).
2. An inspection device for detecting uterine prolapse according to claim 1, characterized in that: The leg rest (6) includes rotating seat (61), support skeleton (62), leg rest base (63) and foot rest base (64), and rotating seat (61) is installed at the both sides of seat (3), and support skeleton (62) is fixedly installed on rotating seat (61);The leg rest base (63) is fixedly installed at the front end of support skeleton (62), and the foot rest base (64) is slidably installed at the rear end of leg rest base (63).
3. An inspection device for detecting uterine prolapse according to claim 1, wherein: The extension support (51), swing support (52) and tilt support (53) inside the inspection window (5) are made of a group of metals, which can rotate relative to each other;The positioning window (54) is made of a rectangular plastic frame and can rotate at the top of the tilt support (53);The shadowless lamp group (55) is made of a rectangular frame-shaped lamp box, and a rectangular window is formed between the positioning window (54) and the shadowless lamp group (55), and the movement of the positioning window (54) and the shadowless lamp group (55) is achieved by holding the handheld handle (56) by a person.
4. An inspection device for detecting uterine prolapse according to claim 2, wherein: The leg rest (6) is a pair of mirror images and is arranged on both sides of the seat (3);The leg rest (6) can be adjusted in angle by the rotating seat (61) and can hover at a specific angle as needed;The support skeleton (62) is a metal rod extending forward;The leg rest base (63) is a group of long strip-shaped support structures, and the foot rest base (64) can extend backward by the support at the rear end of the leg rest base (63), and the foot rest base (64) is a small support block;The leg rest base (63) can place the patient's calf on its surface, and the foot rest base (64) can place the patient's foot on its surface.
5. An inspection device for detecting uterine prolapse according to claim 1, wherein: The outer side of the support base plate (1) is fixedly installed with a hanging support rod (7), and the surface of the hanging support rod (7) is slidably installed with a shielding curtain (8).