CN214804638U - Auxiliary attention suction device for computer optometry instrument inspection and matching - Google Patents

Auxiliary attention suction device for computer optometry instrument inspection and matching Download PDF

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Publication number
CN214804638U
CN214804638U CN202120516123.6U CN202120516123U CN214804638U CN 214804638 U CN214804638 U CN 214804638U CN 202120516123 U CN202120516123 U CN 202120516123U CN 214804638 U CN214804638 U CN 214804638U
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fixedly connected
support
base
computer optometry
control
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邓萍萍
叶维斌
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First People's Hospital Of Qinzhou
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First People's Hospital Of Qinzhou
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Abstract

The utility model discloses a computer optometry appearance is tested and is joined in marriage with supplementary suction device of attention relates to the supplementary technical field of medical treatment. The utility model discloses a detection mechanism, treater, control mechanism, base and complementary unit, wherein detection mechanism's below and treater fixed connection, the below and the control mechanism fixed connection of treater, control mechanism's below and base fixed connection, the back and complementary unit fixed connection of base. The utility model discloses a detection mechanism, treater, control mechanism, base and complementary unit have solved the problem that current computer optometry machine children patient's patient attention is not concentrated and lack the monocular to shelter from.

Description

Auxiliary attention suction device for computer optometry instrument inspection and matching
Technical Field
The utility model belongs to the technical field of the medical treatment is supplementary, especially relate to a computer optometry appearance is tested and is joined in marriage with supplementary suction device of attention.
Background
The refraction is to examine the convergence of light after the light is incident on the eyeball, and the convergence and divergence difference degree between the examined eye and the emmetropia eye is measured by taking the emmetropia eye state as a standard. Computer optometry belongs to an objective optometry, the principle of which is basically the same as that of a retina optometry, the purpose of relaxing eyeball adjustment is achieved by adopting an infrared light source and an automatic fog device, and diopter is checked by adopting a photoelectric technology and an automatic control technology. Both the subjective refraction method and the objective refraction method can accurately measure the refractive power and the axial direction of astigmatism of a patient. The two methods need abundant optometry experiences, the time is longer in the aspect of mastering the optometry technology, and the computer optometry technology is easier to learn and master. The computer optometry instrument can be used for diagnosis optometry by matching the soft corneal contact lens, and can quickly measure the dioptric power without mydriasis. The optometry results of the computer optometry instrument are all automatically printed without conversion, one patient can be measured generally within a few seconds to a few minutes, the ametropia degree can be rapidly measured, and more accurate dioptric power and interpupillary distance are provided for lens correction. Since many people almost come into contact with eyeglasses in a lifetime, optometry is one of the most basic, common and important tasks for optometrists, so that optometry is the term well-known in social life for both ophthalmologists and common people, and because of the well-known fact, it is known that there are still drawbacks in practical use:
1. the existing computer optometry machine is influenced by a plurality of factors for accuracy, particularly the head and eyes of a child patient are not well matched and move around, the target in the optometry machine is watched by eyes insufficiently centralized, so that relaxation and adjustment are insufficient, the accuracy of diopter inspection results is inevitably influenced, even the difference of the degrees of repeated inspection is large, the detection structure of the computer optometry machine is used for matching glasses according to the principle that if the measurement is inaccurate, the use feeling after the glasses are influenced, and secondary glasses matching is possibly needed;
2. the existing computer optometry machine does not generally have a structure that a single eye is shielded, and some patients with strabismus can balance each other when the two eyes are observed, so that the detection can be carried out, only the result after the two eyes are balanced is detected, the single eye degree can not be accurately locked for lens matching, and even after the lens is matched, the use and the feeling of the lens matching can have an unclear feeling.
Therefore, the existing computer optometry machine cannot meet the requirements in practical use, so that an improved technology is urgently needed in the market to solve the problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a computer optometry appearance is tested and is joined in marriage with supplementary suction device of attention, through detection mechanism, treater, control mechanism, base and complementary unit, has solved the not concentrated problem that shelters from with lacking the monocular of current computer optometry machine children patient's attention.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to an attention auxiliary suction device for computer optometry instrument testing and matching, which comprises a detection mechanism, a processor, a control mechanism, a base and an auxiliary mechanism, wherein the lower part of the detection mechanism is fixedly connected with the processor, the detection mechanism is a main detection mechanism of the computer optometry machine and can rapidly measure the ametropia degree, the processor is a main processing mechanism of the computer optometry machine and can provide more accurate ametropia degree and interpupillary distance for lens correction, the lower part of the processor is fixedly connected with the control mechanism, the control mechanism is a control terminal of the computer optometry machine and is used for controlling and changing the working mode of the computer optometry machine, the lower part of the control mechanism is fixedly connected with the base, the base is a bottom base of the computer optometry machine and is a main bearing end and a connecting end of the computer optometry machine, the back of the base is fixedly connected with the auxiliary mechanism, the auxiliary mechanism is the position that the patient detected for the accurate quick detection of supplementary computer optometry machine completion.
Furthermore, the detection mechanism comprises a measurement head, an LED rolling screen and a detection window, the LED rolling screen is fixedly connected to the back of the measurement head, the detection window is arranged on the inner side of the LED rolling screen, the measurement head is the main structure of the detection mechanism, a centralized measurement module is arranged inside the measurement head, the LED rolling screen can display different patterns, characters and simple animations and is used for attracting the attention of a child patient, and the detection window is used for detecting the image head inside the detection window and is a detection port of the detection mechanism.
Further, the front fixedly connected with display screen of treater, the top of treater and detection mechanism's measuring head fixed connection, the below of treater and control mechanism's organism fixed connection, the treater is the main processing mechanism of computer optometry machine, can correct for the lens and provide more accurate diopter number and interpupillary distance, and the display screen is used for showing that the lens after the treater handles corrects and provides more accurate diopter number and interpupillary distance.
Further, control mechanism includes control panel, control cabinet, control lever, organism and measurement switch, control panel's below and organism fixed connection, one side of control panel is provided with the control cabinet, the below and the organism fixed connection of control cabinet, the inside and the control lever swing joint of control cabinet, the top swing joint of control lever has measurement switch, and control panel can carry out the adjustment to aspects such as luminance, the mode of operation of computer optometry machine, and the fine adjustment to the measuring head direction can be accomplished to control cabinet cooperation control lever, and the organism is control panel, control cabinet, control lever and measurement switch's fixed carrier, and measurement switch can make the measuring head carry out the measurement task at any time.
Further, the base includes base plate, power source, stabilizer blade and power lamp, one side of base plate is provided with power source, one side fixedly connected with power lamp of power source, the below fixedly connected with stabilizer blade of base plate, base plate are the main extension board and the power supply stiff end of computer optometry machine, and power source is the interface that external power cord connects, and the stabilizer blade is used for supporting the base plate, and the power lamp plays indicative function, can observe the circular telegram condition in real time.
Furthermore, the auxiliary mechanism comprises a forehead support, a fixed bolt, a rotary cylinder, a connecting rod, a baffle, a forehead support, a lifting column and a rotary handle, wherein two ends of the forehead support are fixedly connected with the support, the inner side of the support is fixedly connected with the rotary cylinder, the upper part of the rotary cylinder is movably connected with the fixed bolt, the fixed bolt is movably connected with one end of the connecting rod in the rotary cylinder, the other end of the connecting rod is fixedly connected with the baffle, the upper part of the support is fixedly connected with the lifting column, one end of the lifting column is fixedly connected with the forehead support, one end of the support is movably connected with the rotary handle, the forehead support and the forehead support are used for fitting the forehead and the chin and carrying and limiting the forehead, the fixed bolt is used for fixing the connecting rod, the rotary cylinder is a hollow cylinder for realizing rotation of the connecting rod, and the baffle is used for shielding eyes, the single-eye detection is realized, the support is a forehead support, a fixed bolt, a rotary cylinder, a connecting rod, a baffle, a forehead support, a lifting column and a carrying carrier of a rotary handle, and the lifting column is matched with the rotary handle to realize the lifting and the falling of the forehead support.
The utility model discloses following beneficial effect has:
1. the utility model discloses a detection mechanism has solved the not concentrated problem of current computer optometry machine children patient's attention, is provided with the LED roll screen among the detection mechanism, and different pattern, characters and simple animation can be shown through the effect of LED lamp to the LED roll screen, and the flourishing thing generally can attract children's attention to reduce children and feel strange experience and crisis to the computer optometry machine, and then relax, realize attracting children's patient's attention from this.
2. The utility model discloses an auxiliary mechanism, the problem that current computer optometry machine lacks the monocular and shelters from has been solved, be provided with fixing bolt in the computer optometry machine, a rotating cylinder, connecting rod and baffle, fixing bolt is used for fixed link rod, make the connecting rod realize two kinds of forms of perpendicular and parallel, fixing link rod falls down for parallel form naturally when fixing bolt pulls out, through portable, when fixing bolt falls down, the connecting rod is perpendicular form, the rotating cylinder is that the connecting rod realizes rotatory empty virtual cylinder, the baffle is used for sheltering from the eye, realize the monocular and detect, through fixing bolt, a rotating cylinder, cooperation between connecting rod and the baffle, can realize the monocular of computer optometry machine and detect, thereby improve the rate of accuracy that detects.
Of course, it is not necessary for any particular product to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the present invention;
fig. 3 is a side view of the present invention;
fig. 4 is a schematic view of the auxiliary mechanism of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
1. a detection mechanism; 101. a measuring head; 102. an LED scrolling screen; 103. detecting a window; 2. a processor; 201. a display screen; 3. a control mechanism; 301. a control panel; 302. a console; 303. a control lever; 304. a body; 305. a measurement switch; 4. a base; 401. a substrate; 402. a power interface; 403. a support leg; 404. a power supply lamp; 5. an auxiliary mechanism; 501. a forehead support; 502. fixing the bolt; 503. a rotary drum; 504. a connecting rod; 505. a baffle plate; 506. a forehead support; 507. a support; 508. lifting the column; 509. the handle is rotated.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Please refer to fig. 1-4, the utility model relates to an attention auxiliary attraction device for computer optometry equipment testing, including detection mechanism 1, treater 2, control mechanism 3, base 4 and complementary unit 5, the below and the treater 2 fixed connection of detection mechanism 1, the below and the treater 2 fixed connection of measuring head 101 of detection mechanism 1, the below and the control mechanism 3 fixed connection of treater 2, the below and the organism 304 fixed connection of control mechanism 3 of treater 2, the inside and the internal electric connection of control mechanism 3 of treater 2, the below and the base 4 fixed connection of control mechanism 3, the below and the base 4 base plate 401 fixed connection of the organism 304 of control mechanism 3, the back and the complementary unit 5 fixed connection of base 4, the back and the support 507 fixed connection of complementary unit 5 of base 4's base plate 401.
As shown in fig. 1 to 3, the detection mechanism 1 includes a measurement head 101, an LED rolling screen 102 and a detection window 103, the LED rolling screen 102 is fixedly connected to the back of the measurement head 101, the detection window 103 is disposed on the inner side of the LED rolling screen 102, the inside of the measurement head 101 is electrically connected to the processor 2, one end of the LED rolling screen 102 displays a pattern, and one end of the LED rolling screen is electrically connected to the measurement head 101, and the detection window 103 is disposed in the middle of the LED rolling screen 102.
As shown in fig. 1 to 3, a display screen 201 is fixedly connected to the front of the processor 2, the upper side of the processor 2 is fixedly connected to the measuring head 101 of the detecting mechanism 1, the lower side of the processor 2 is fixedly connected to the body 304 of the control mechanism 3, the display screen 201 is fixed to the middle position of the front of the processor 2, and the inside of the processor 2 is electrically connected to the measuring head 101 and the control mechanism 3.
As shown in fig. 1-3, the control mechanism 3 includes a control panel 301, a console 302, a control lever 303, a body 304 and a measurement switch 305, the lower portion of the control panel 301 is fixedly connected to the body 304, the console 302 is disposed on one side of the control panel 301, the lower portion of the console 302 is fixedly connected to the body 304, the inside of the console 302 is movably connected to the control lever 303, the measurement switch 305 is movably connected to the upper portion of the control lever 303, the control panel 301 is disposed at a corner of one side of the upper surface of the body 304, the console 302 is disposed at a corner of the other side of the upper surface of the body 304, which is far away from the control panel 301, the areas on the back of the control panel 301 and the console 302 are fixed areas of the processor 2, the hollow structure inside of the console 302 is movably connected to the control lever 303 at 360 degrees, and the measurement switch 305 is movably connected to the middle position of the control lever 303.
As shown in fig. 1-3, the base 4 includes a substrate 401, a power source 402, support legs 403 and a power source lamp 404, the power source 402 is disposed on one side of the substrate 401, the power source lamp 404 is fixedly connected to one side of the power source 402, the support legs 403 are fixedly connected to the lower side of the substrate 401, the power source lamp 404 is disposed at a position close to the front side of one side of the substrate 401, the power source 402 is disposed at a position close to the power source lamp 404 on one side of the substrate 401, and the support legs 403 are distributed at four corners of the lower surface of the substrate 401.
As shown in fig. 1-4, the auxiliary mechanism 5 includes a forehead support 501, a fixing latch 502, a rotary cylinder 503, a connecting rod 504, a baffle 505, a forehead support 506, a support 507, a lifting column 508 and a rotary handle 509, wherein two ends of the forehead support 501 are fixedly connected with the support 507, the inner side of the support 507 is fixedly connected with the rotary cylinder 503, the fixing latch 502 is movably connected above the rotary cylinder 503, the fixing latch 502 is movably connected at one end of the connecting rod 504 inside the rotary cylinder 503, the other end of the connecting rod 504 is fixedly connected with the baffle 505, the upper side of the support 507 is fixedly connected with the lifting column 508, one end of the lifting column 508 is fixedly connected with the forehead support 506, one end of the support 507 is movably connected with the rotary handle, the forehead support 501 is fixed at the tops of two inclined planes of the support 507, the rotary cylinder 503 is fixed at the middle position of the two inclined planes of the support 509, the middle position above the rotary cylinder 503 is movably connected with the fixing latch 502, one end of the connecting rod 504 is provided with a through channel of the fixing bolt 502, the fixing bolt 502 can enable the connecting rod 504 to realize a vertical form and a parallel form, when the fixing bolt 502 is pulled up, the fixing connecting rod 504 naturally falls to the parallel form, and through being portable, when the fixing bolt 502 falls, the connecting rod 504 is in the vertical form, the lower forehead support 506 is fixed at one end of the lifting column 508, and the other end is movably connected with the rotating handle 509.
One specific application of this embodiment is: switch on through power source 402, start computer optometry machine through control panel 301, let the patient place the volume down on volume support 506 as required, through adjustment rotation handle 509, make lifting post 508 lifting, adjust to suitable position, through portable connecting rod 504, when fixing bolt 502 falls down, connecting rod 504 is the perpendicular form, it shelters from to be used for the monocular, put in through the outside, put in prepared material to LED roll screen 102 on, be used for the attraction to patient's attention, and the light sound guide, then adjust to suitable detection position through shaking control lever 303, press measuring switch 305 fast, accomplish the detection, after the result appears, guide patient leaves complementary unit 5, and pull up fixing bolt 502, fixing connecting rod 504 falls down for parallel form naturally.
The above is only the preferred embodiment of the present invention, and the present invention is not limited thereto, any technical solutions recorded in the foregoing embodiments are modified, and some technical features thereof are replaced with equivalent ones, and any modification, equivalent replacement, and improvement made thereby all belong to the protection scope of the present invention.

Claims (6)

1. The utility model provides a computer optometry appearance is examined and is joined in marriage with supplementary suction device of attention, includes detection mechanism (1), treater (2), control mechanism (3), base (4) and complementary unit (5), its characterized in that: the device comprises a detection mechanism (1), a processor (2), a control mechanism (3), a base (4), and an auxiliary mechanism (5), wherein the lower part of the detection mechanism (1) is fixedly connected with the processor (2), the lower part of the processor (2) is fixedly connected with the control mechanism (3), the lower part of the control mechanism (3) is fixedly connected with the base (4), and the back of the base (4) is fixedly connected with the auxiliary mechanism (5).
2. The auxiliary attention attraction device for computer optometry matching of claim 1, wherein the detection mechanism (1) comprises a measuring head (101), an LED rolling screen (102) and a detection window (103), the LED rolling screen (102) is fixedly connected to the back surface of the measuring head (101), and the detection window (103) is arranged on the inner side of the LED rolling screen (102).
3. The auxiliary attention attraction device for computer optometry matching according to claim 1, wherein the front of the processor (2) is fixedly connected with the display screen (201), the upper part of the processor (2) is fixedly connected with the measuring head (101) of the detection mechanism (1), and the lower part of the processor (2) is fixedly connected with the body (304) of the control mechanism (3).
4. The auxiliary attention attraction device for computer optometry fitting according to claim 1, wherein the control mechanism (3) comprises a control panel (301), a console (302), a control rod (303), a machine body (304) and a measurement switch (305), the lower portion of the control panel (301) is fixedly connected with the machine body (304), the console (302) is arranged on one side of the control panel (301), the lower portion of the console (302) is fixedly connected with the machine body (304), the inner portion of the console (302) is movably connected with the control rod (303), and the measurement switch (305) is movably connected with the upper portion of the control rod (303).
5. The auxiliary attention attraction device for computer optometry matching according to claim 1, wherein the base (4) comprises a substrate (401), a power interface (402), support legs (403) and power lamps (404), the power interface (402) is arranged on one side of the substrate (401), the power lamps (404) are fixedly connected to one side of the power interface (402), and the support legs (403) are fixedly connected to the lower side of the substrate (401).
6. The attention assisting and attracting device for computer optometry fitting is characterized in that the assisting mechanism (5) comprises a forehead support (501), a fixing bolt (502), a rotating cylinder (503), a connecting rod (504), a baffle (505), a lower forehead support (506), a support (507), a lifting column (508) and a rotating handle (509), two ends of the forehead support (501) are fixedly connected with the support (507), the inner side of the support (507) is fixedly connected with the rotating cylinder (503), the fixing bolt (502) is movably connected above the rotating cylinder (503), the fixing bolt (502) is movably connected at one end of the connecting rod (504) in the rotating cylinder (503), the other end of the connecting rod (504) is fixedly connected with the baffle (505), and the lifting column (508) is fixedly connected above the support (507), one end of the lifting column (508) is fixedly connected with the lower forehead support (506), and one end of the bracket (507) is movably connected with the rotating handle (509).
CN202120516123.6U 2021-03-11 2021-03-11 Auxiliary attention suction device for computer optometry instrument inspection and matching Active CN214804638U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120516123.6U CN214804638U (en) 2021-03-11 2021-03-11 Auxiliary attention suction device for computer optometry instrument inspection and matching

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120516123.6U CN214804638U (en) 2021-03-11 2021-03-11 Auxiliary attention suction device for computer optometry instrument inspection and matching

Publications (1)

Publication Number Publication Date
CN214804638U true CN214804638U (en) 2021-11-23

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ID=78952018

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Application Number Title Priority Date Filing Date
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CN (1) CN214804638U (en)

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