A mobile ophthalmic screening vehicle

CN224639982UActive Publication Date: 2026-08-18GUANGZHOU TONGDA AUTO ELECTRIC +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521644040.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-08-18
Estimated Expiration
2035-08-04

AI Technical Summary

Technical Problem

[0003]1、车辆空间动线规划不合理:医疗诊疗设备未按照患者的诊疗流程进行布局设计,使得医护人员的操作动线冗长、迂回交错,使得在车辆内部的狭小空间内存在着阻碍和交叉干扰

Benefits of technology

[0020]1、本实用新型对车内空间的布局进行了合理规划,将各个眼科检查设备进行合理摆放,使得车内的动线更为科学,避免了相互干扰的情况,并且为每个眼科设备配备了独立减震装置,给予眼科检查设备有效的减震保护。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224639982U_ABST
    Figure CN224639982U_ABST
Patent Text Reader

Abstract

The utility model relates to medical examination vehicle technical field, concretely relates to a mobile ophthalmic screening vehicle, including the driving cabin, ophthalmic comprehensive examination area and the tail room of car from front to back along the vehicle advancing direction are provided, the driving cabin is provided with the main driver's seat and the vice driver's seat area side by side, the ophthalmic comprehensive examination area includes left partition, right partition, and the passage is formed between left partition and right partition, is provided with ophthalmic examination equipment, independent damping device, intelligent LED screen and lifting platform in the ophthalmic comprehensive examination area, wherein ophthalmic examination equipment is embedded in independent damping device and is fixedly arranged on lifting platform, the utility model carries out the reasonable planning to the space layout in the ophthalmic screening vehicle, and each ophthalmic examination equipment is reasonably placed, makes the dynamic line in the car more scientific, avoids the situation of mutual interference, and is equipped with independent damping device for each ophthalmic equipment, gives ophthalmic examination equipment effective damping protection.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of medical examination vehicle technology, specifically to a mobile ophthalmology screening vehicle. Background Technology

[0002] To improve the accessibility of ophthalmology services, mobile medical vehicles capable of providing basic ophthalmological care have emerged on the market. These mobile medical vehicles integrate basic ophthalmological medical equipment, realizing the function of "mobile medical care." However, existing mobile ophthalmology medical vehicles still have the following technical shortcomings:

[0003] 1. Unreasonable vehicle space layout: Medical equipment is not laid out according to the patient's treatment process, resulting in long, winding and intersecting operating routes for medical staff, which creates obstacles and interference in the small space inside the vehicle.

[0004] 2. Low efficiency in retrieving frequently used equipment: The storage locations of some frequently used core diagnostic and treatment instruments and consumables are not set according to actual operation applications. When working in the confined space inside the vehicle, medical staff need to frequently move, turn around or bend over to find the required equipment, which makes the operation process unsmooth and inefficient.

[0005] 3. Lack of vibration damping design in precision diagnostic equipment: Since most ophthalmic diagnostic equipment consists of precision optical devices, when installed in vehicles, the continuous vibration generated by the vehicle traveling on complex road conditions can easily damage the optical devices, directly affecting the accuracy, reliability, and service life of the test data.

[0006] 4. Weak intelligent and remote collaboration capabilities: The local data processing capabilities of existing ophthalmic medical vehicles on the market are limited, making it impossible to support remote collaboration among experts, diagnostic review, and digital management of health records; and the lack of an intelligent user interface to guide the process results in a poor user experience. Utility Model Content

[0007] In view of the technical problems existing in the prior art, the purpose of this utility model is to provide a mobile ophthalmology screening vehicle with reasonable spatial circulation planning, intelligent and automated operation, and effective shock absorption protection for ophthalmology examination equipment.

[0008] To achieve the above objectives, the present invention adopts the following technical solution:

[0009] A mobile ophthalmology screening vehicle includes a driver's cab, a comprehensive ophthalmology examination area, and a rear-end machine room arranged from front to back along the vehicle's direction of travel. The driver's cab has a driver's seat and a passenger-side storage area arranged side by side. The comprehensive ophthalmology examination area includes a left section and a right section, with a passageway formed between the left and right sections. The comprehensive ophthalmology examination area is equipped with ophthalmology examination equipment, an independent shock absorption device, an intelligent LED screen, and a lifting platform, wherein the ophthalmology examination equipment is embedded in the independent shock absorption device and fixedly mounted on the lifting platform.

[0010] Furthermore, the ophthalmic examination equipment includes an optometer, tonometer, visual acuity tester, slit lamp, fundus camera, fundus optical coherence tomography scanner, and biometer; there are 5 lifting platforms, namely lifting platform 1, lifting platform 2, lifting platform 3, lifting platform 4 and lifting platform 5.

[0011] Furthermore, the left section is arranged from front to back as follows: Lifting Platform 1, Lifting Chair 1, Folding Chair 1, Lifting Platform 2, Seat 1, Seat 2, and Lifting Platform 3; among them, the optometry instrument, tonometer, and vision testing instrument, along with their respective independent shock absorption devices, are fixedly installed on Lifting Platform 1; the slit lamp, along with its respective independent shock absorption device, is fixedly installed on Lifting Platform 2; and the fundus camera, along with its respective independent shock absorption device, is fixedly installed on Lifting Platform 3; intelligent LED screens are installed on the inner walls of the vehicle at Lifting Platforms 1, 2, and 3.

[0012] Furthermore, the right section is equipped with, from back to front, a No. 4 lifting platform, a No. 3 seat, a No. 5 lifting platform, and a No. 2 folding chair; the fundus optical coherence tomography scanner and its supporting independent shock absorption device are fixedly installed on the No. 4 lifting platform; the biometer and its supporting independent shock absorption device are fixedly installed on the No. 5 lifting platform; and intelligent LED screens are installed on the inner walls of the vehicles at the No. 4 and No. 5 lifting platforms.

[0013] Furthermore, the passenger-side storage area features an expandable work surface, a single soft seat, storage boxes, a convenient water bar, and an integrated control panel.

[0014] Furthermore, the independent shock absorption device consists of an aluminum frame and shock-absorbing foam. The aluminum frame is a square frame, and the shock-absorbing foam is pasted onto the inner wall of the aluminum frame, with the shape of the foam corresponding to the shape of the ophthalmic examination equipment. The aluminum frame and the lifting platform are fixedly connected by bolts. The ophthalmic examination equipment is embedded in the shock-absorbing foam with an interference fit.

[0015] Furthermore, the ophthalmology screening vehicle is equipped with an electric support system at the bottom to stabilize the vehicle when parked.

[0016] Furthermore, the rear equipment room is equipped with the main equipment unit and a UPS uninterruptible power supply; the top of the rear equipment room is set with a non-slip storage platform for temporary storage of items.

[0017] Furthermore, the ophthalmology screening vehicle is equipped with a side tent on its roof. When unfolded, the side tent creates an extended space to provide waiting space for patients waiting for examination, thus relieving the pressure on the interior space of the vehicle.

[0018] Furthermore, the mobile ophthalmology screening vehicle is also equipped with an intelligent voice interaction system.

[0019] This utility model has the following advantages:

[0020] 1. This utility model has made reasonable plans for the layout of the vehicle interior space and arranged various ophthalmic examination equipment in a reasonable manner, making the movement inside the vehicle more scientific and avoiding mutual interference. In addition, each ophthalmic device is equipped with an independent shock absorption device to provide effective shock absorption protection for the ophthalmic examination equipment.

[0021] 2. The vehicle in this utility model is equipped with a series of ophthalmic examination devices, such as a vision tester, an optometer, and a tonometer, which realizes full-process coverage of eye examination from basic screening to in-depth testing. Moreover, these ophthalmic examination devices are all connected to the 5G network, realizing data communication with the cloud, improving the quality of medical testing, and enabling high-quality medical resources to be delivered to communities and even families.

[0022] 3. This utility model also includes a vehicle-side tent, which expands the space and provides a shaded and rain-protected waiting area for people waiting for inspection, solving the problem of small interior space and relieving space pressure.

[0023] 4. The main unit of the ophthalmic examination equipment and the UPS uninterruptible power supply are placed in the engine room at the rear of the vehicle in this utility model, which can greatly improve the space utilization and ensure the power supply stability of various electrical equipment in the vehicle. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the structure of this utility model.

[0025] Figure 2 This is a schematic diagram of the cockpit structure of this utility model.

[0026] Figure 3 This is a schematic diagram of the structure of the ophthalmic comprehensive examination area of ​​this utility model.

[0027] Figure 4 This is a schematic diagram of the structure of the left section of the ophthalmic comprehensive examination area of ​​this utility model.

[0028] Figure 5This is a schematic diagram of the right section of the ophthalmic comprehensive examination area of ​​this utility model.

[0029] Figure 6 This is a schematic diagram of the structure of the tonometer and the independent shock absorption device used in conjunction with it in the embodiments of this utility model.

[0030] Figure 7 This is a top view of the tonometer and the independent shock absorption device used in conjunction with it in the embodiments of this utility model.

[0031] Figure 8 This is a side view of the tonometer and the independent shock absorption device used in conjunction with it in an embodiment of this utility model.

[0032] in,

[0033] 1 is the cockpit, 1-1 is the driver's seat, and 1-2 is the passenger's storage area;

[0034] 2 is the comprehensive ophthalmology examination area.

[0035] 2-1 is the left ward section; 2-1-1 is platform 1; 2-1-2 is the refractometer; 2-1-3 is the tonometer; 2-1-4 is the visual acuity tester; 2-1-5 is the adjustable chair; 2-1-6 is the folding chair 1; 2-1-7 is platform 2; 2-1-8 is the slit lamp; 2-1-9 is seat 1; 2-1-10 is seat 2; 2-1-11 is platform 3; 2-1-12 is the fundus camera.

[0036] 2-2 is the right partition, 2-2-1 is the No. 4 lifting platform, 2-2-2 is the fundus optical coherence tomography scanner, 2-2-3 is the No. 3 seat, 2-2-4 is the No. 5 lifting platform, 2-2-5 is the biometer, 2-2-6 is the No. 2 folding chair, 2-3 is the aisle, and 2-4 is the intelligent LED screen.

[0037] 3 is the engine room at the rear of the vehicle;

[0038] 4 is an independent shock absorption device, 4-1 is an aluminum frame, and 4-2 is shock absorption foam. Detailed Implementation

[0039] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0040] like Figures 1 to 6As shown, a mobile ophthalmology screening vehicle includes a driver's cab, a comprehensive ophthalmology examination area, and a rear-end machine room arranged from front to back along the vehicle's direction of travel. The driver's cab has a driver's seat and a passenger-side storage area arranged side by side. The comprehensive ophthalmology examination area includes a left section and a right section, with a passageway formed between the left and right sections. The comprehensive ophthalmology examination area is equipped with ophthalmology examination equipment, an independent shock absorption device, an intelligent LED screen, and a lifting platform, wherein the ophthalmology examination equipment is embedded in the independent shock absorption device and fixedly mounted on the lifting platform.

[0041] In this embodiment, the ophthalmic examination equipment includes an optometer, a tonometer, a visual acuity tester, a slit lamp, a fundus camera, a fundus optical coherence tomography scanner, and a biometer; the number of lifting platforms is 5, namely lifting platform 1, lifting platform 2, lifting platform 3, lifting platform 4, and lifting platform 5.

[0042] In this embodiment, the passenger-side storage area is equipped with an expandable work surface, a single soft seat, a storage box, a convenient water bar, and an integrated control screen.

[0043] Specifically, the passenger-side storage area provides a resting area for medical staff and patients. Medical staff can also control other auxiliary devices in the vehicle through the integrated control panel and intelligent voice system. Other auxiliary devices include aisle lights, ambient lighting, electric awnings, and electric curtains.

[0044] like Figure 3 As shown, the left section, from front to back, is equipped with a No. 1 lifting platform, a lifting chair, a No. 1 folding chair, a No. 2 lifting platform, a No. 1 seat, a No. 2 seat, and a No. 3 lifting platform. Among them, the optometry instrument, tonometer, and vision testing instrument, along with their respective independent shock absorption devices, are fixedly installed on the No. 1 lifting platform; the slit lamp and its respective independent shock absorption device are fixedly installed on the No. 2 lifting platform; and the fundus camera and its respective independent shock absorption device are fixedly installed on the No. 3 lifting platform. Intelligent LED screens are installed on the inner walls of the vehicle at the No. 1, No. 2, and No. 3 lifting platforms.

[0045] The right section, from back to front, is equipped with lifting platform 4, seat 3, lifting platform 5, and folding chair 2. The fundus optical coherence tomography scanner and its supporting independent shock absorption device are fixedly installed on lifting platform 4; the biometer and its supporting independent shock absorption device are fixedly installed on lifting platform 5; and intelligent LED screens are installed on the inner walls of the vehicles at lifting platforms 4 and 5.

[0046] Specifically, placing ophthalmic examination equipment on a lifting platform can flexibly match the examination needs of different patients, significantly improve the accuracy of examinations and the ease of operation, and significantly optimize the efficiency and experience of mobile ophthalmic screening.

[0047] Specifically, the smart LED screen displays data exported from relevant ophthalmic medical equipment, making it convenient for medical staff and patients to view the data. The smart LED screen also displays the call number and guides the ophthalmic examination process, which can guide patients to undergo eye examinations in an orderly manner, making the examination process more intuitive, convenient for patients and medical staff, and improving examination efficiency.

[0048] In this embodiment, as Figure 6 , 7 As shown in Figure 8, the independent shock absorption device consists of an aluminum frame and shock-absorbing foam. The aluminum frame is a square frame, and the shock-absorbing foam is pasted onto the inner wall of the aluminum frame. The shape formed by the shock-absorbing foam corresponds to the shape of the ophthalmic examination equipment. The aluminum frame and the lifting platform are fixedly connected by bolts. The ophthalmic examination equipment is embedded in the shock-absorbing foam through an interference fit.

[0049] Specifically, the independent shock absorption device can effectively protect ophthalmic examination equipment, avoiding damage to the delicate ophthalmic examination equipment caused by bumps and vibrations during vehicle travel, thus effectively protecting the ophthalmic examination equipment and improving safety.

[0050] In this embodiment, the ophthalmic screening vehicle is equipped with an electrically powered support system at the bottom to stabilize the vehicle when parked. The rear-end equipment room houses the main unit and a UPS uninterruptible power supply; the top of the rear-end equipment room is designed with a non-slip storage platform for temporary storage. A side tent is also installed on the roof of the ophthalmic screening vehicle; when unfolded, the tent creates extended space to provide waiting areas for patients, alleviating space pressure inside the vehicle. The ophthalmic screening vehicle is also equipped with an intelligent voice interaction system.

[0051] In addition, the mobile ophthalmology screening vehicle is equipped with many auxiliary medical devices and systems, such as an appointment system, QR code scanning ports, and a voice interaction system. Patients can make appointments in advance and obtain appointment QR codes. They can then use these QR codes to scan at the vehicle door to open the door and enter the vehicle. Inside the vehicle, there are also QR code scanning ports next to various devices. Patients can obtain data from the relevant examination devices through a unique QR code system. All ophthalmology examination devices on the vehicle are connected to the 5G network, allowing digital doctors to interact with patients and interpret reports. This saves on the manpower costs of medical staff, improves the efficiency of medical treatment, and saves patients time.

[0052] In summary, this invention rationally plans the layout of the vehicle's interior space, placing various ophthalmic examination devices in a logical manner. This results in a more scientific flow of movement within the vehicle, avoiding mutual interference. Furthermore, each ophthalmic device is equipped with an independent shock absorption device, providing effective vibration protection. This allows high-quality ophthalmic medical resources to reach communities and even homes, facilitating comprehensive eye examinations for patients and improving diagnostic and treatment efficiency.

[0053] The above embodiments are preferred embodiments of the present utility model, but the embodiments of the present utility model are not limited to the above embodiments. Any changes, modifications, substitutions, combinations, or simplifications made without departing from the spirit and principle of the present utility model shall be considered equivalent substitutions and shall be included within the protection scope of the present utility model.

Claims

1. A mobile ophthalmic screening vehicle, characterized by: The vehicle includes a driver's cab, an ophthalmic examination area, and a rear engine room arranged from front to back along the direction of vehicle travel. The driver's cab has a driver's seat and a passenger storage area side by side. The ophthalmic examination area includes a left section and a right section, with a passageway between the two sections. The ophthalmic examination area is equipped with ophthalmic examination equipment, independent shock absorbers, an intelligent LED screen, and a lifting platform. The ophthalmic examination equipment is embedded in the independent shock absorbers and fixedly mounted on the lifting platform.

2. A mobile ophthalmic screening vehicle according to claim 1, wherein: Ophthalmic examination equipment includes optometers, tonometers, visual acuity testers, slit lamps, fundus cameras, fundus optical coherence tomography scanners, and biometers; There are 5 lifting platforms, namely lifting platform 1, lifting platform 2, lifting platform 3, lifting platform 4 and lifting platform 5.

3. A mobile ophthalmic screening vehicle according to claim 2, wherein: The left section, from front to back, is equipped with a No. 1 lifting platform, a lifting chair, a No. 1 folding chair, a No. 2 lifting platform, a No. 1 seat, a No. 2 seat, and a No. 3 lifting platform. The optometry instrument, tonometer, and visual acuity testing instrument, along with their respective independent shock absorption devices, are fixedly installed on lifting platform 1; the slit lamp and its respective independent shock absorption device are fixedly installed on lifting platform 2; and the fundus camera and its respective independent shock absorption device are fixedly installed on lifting platform 3. Intelligent LED screens are installed on the inner walls of the vehicles at lifting platforms 1, 2, and 3.

4. The mobile ophthalmic screening vehicle of claim 2, wherein: The right section, from back to front, is equipped with lifting platform 4, seat 3, lifting platform 5, and folding chair 2. The fundus optical coherence tomography scanner and its supporting independent shock absorption device are fixedly installed on lifting platform 4; the biometer and its supporting independent shock absorption device are fixedly installed on lifting platform 5; and intelligent LED screens are installed on the inner walls of the vehicles at lifting platforms 4 and 5.

5. The mobile ophthalmic screening vehicle of claim 1, wherein: The passenger-side storage area features an expandable work surface, a single soft seat, storage boxes, a convenient water bar, and an integrated control panel.

6. The mobile ophthalmic screening vehicle of claim 1, wherein: The independent shock absorption device consists of an aluminum frame and shock-absorbing foam. The aluminum frame is a square frame, and the shock-absorbing foam is pasted onto the inner wall of the aluminum frame. The shape formed by the shock-absorbing foam corresponds to the shape of the ophthalmic examination equipment. The aluminum frame is fixedly connected to the lifting platform with bolts. The ophthalmic examination equipment is embedded in the shock-absorbing foam with an interference fit.

7. A mobile ophthalmic screening vehicle according to claim 1, characterized in that: The ophthalmology screening vehicle is also equipped with an electric support system at the bottom to stabilize the vehicle when it is parked.

8. The mobile ophthalmic screening vehicle of claim 1, wherein: The rear equipment room is equipped with the main equipment unit and UPS uninterruptible power supply; the top of the rear equipment room is set with a non-slip storage platform for temporary storage of items.

9. The mobile ophthalmic screening vehicle of claim 1, wherein: The ophthalmology screening vehicle is also equipped with a side tent on the roof. When the side tent is unfolded, it creates an extended space to provide waiting space for patients waiting for examination, relieving the pressure on the interior space of the vehicle.

10. The mobile ophthalmic screening vehicle of claim 1, wherein: The mobile ophthalmology screening unit is also equipped with an intelligent voice interaction system.