CN116115470B - Therapeutic instrument for adjusting length of eye shaft - Google Patents
Therapeutic instrument for adjusting length of eye shaftInfo
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- CN116115470B CN116115470B CN202111076829.6A CN202111076829A CN116115470B CN 116115470 B CN116115470 B CN 116115470B CN 202111076829 A CN202111076829 A CN 202111076829A CN 116115470 B CN116115470 B CN 116115470B
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- therapeutic device
- axial length
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H5/00—Exercisers for the eyes
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F9/00—Methods or devices for treatment of the eyes; Devices for putting in contact-lenses; Devices to correct squinting; Apparatus to guide the blind; Protective devices for the eyes, carried on the body or in the hand
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N5/00—Radiation therapy
- A61N5/06—Radiation therapy using light
- A61N5/0613—Apparatus adapted for a specific treatment
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
- A61H2201/16—Physical interface with patient
- A61H2201/1602—Physical interface with patient kind of interface, e.g. head rest, knee support or lumbar support
- A61H2201/165—Wearable interfaces
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2205/00—Devices for specific parts of the body
- A61H2205/02—Head
- A61H2205/022—Face
- A61H2205/024—Eyes
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N5/00—Radiation therapy
- A61N5/06—Radiation therapy using light
- A61N2005/0626—Monitoring, verifying, controlling systems and methods
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N5/00—Radiation therapy
- A61N5/06—Radiation therapy using light
- A61N2005/0635—Radiation therapy using light characterised by the body area to be irradiated
- A61N2005/0643—Applicators, probes irradiating specific body areas in close proximity
- A61N2005/0645—Applicators worn by the patient
- A61N2005/0647—Applicators worn by the patient the applicator adapted to be worn on the head
- A61N2005/0648—Applicators worn by the patient the applicator adapted to be worn on the head the light being directed to the eyes
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N5/00—Radiation therapy
- A61N5/06—Radiation therapy using light
- A61N2005/065—Light sources therefor
- A61N2005/0651—Diodes
- A61N2005/0652—Arrays of diodes
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N5/00—Radiation therapy
- A61N5/06—Radiation therapy using light
- A61N2005/0658—Radiation therapy using light characterised by the wavelength of light used
- A61N2005/0662—Visible light
- A61N2005/0663—Coloured light
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N5/00—Radiation therapy
- A61N5/06—Radiation therapy using light
- A61N2005/0664—Details
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- Health & Medical Sciences (AREA)
- Biomedical Technology (AREA)
- Engineering & Computer Science (AREA)
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- Public Health (AREA)
- General Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Animal Behavior & Ethology (AREA)
- Ophthalmology & Optometry (AREA)
- Rehabilitation Therapy (AREA)
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- Physical Education & Sports Medicine (AREA)
- Pain & Pain Management (AREA)
- Heart & Thoracic Surgery (AREA)
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Abstract
The invention provides a therapeutic apparatus for adjusting the length of an eye shaft, which comprises a control host, an electric conduit and an eye therapeutic apparatus, wherein the control host is connected with the eye therapeutic apparatus through the electric conduit, the eye therapeutic apparatus comprises an adjusting mechanism for adjusting the length of the eye shaft, and the adjusting mechanism is arranged on the inner side of the therapeutic apparatus. According to the training method for lifting and extruding the eyeball, the axial myopia or axial hyperopia can be improved by lengthening or shortening the ocular axis, and the safety, effectiveness and rapidness of the treatment process can be improved.
Description
Technical Field
The invention relates to the field of eye care, in particular to a therapeutic instrument for adjusting the length of an eye shaft.
Background
The eye axis length is the main cause of myopia, all myopia has the phenomenon of eye axis growth, and when the eye axis is increased by 1mm, the myopia is deepened by 250-300 degrees, especially the eye axis of an adult grows, and besides the operation, the vision can be recovered by using a popular technical means. The common operation is laser operation, which is a method for treating myopia by thinning cornea of eyes, but has a certain harm, and the red laser light-feeding instrument has a certain help for teenagers to control the axis of eyes, but has slow effect and a certain safety dispute.
It is known that the largest component of the eye is a vitreous body, which is a small fiber network formed by proteins and collagen, as a scaffold, and is filled with a gel formed by a glass-like acid, which has a certain consistency and elasticity, so that a certain shape and a certain degree of elasticity can be maintained, and since both the glass-like acid and the proteins can absorb a large amount of moisture, 99% of the components of the vitreous body are moisture, and the rest 1% are glass-like acid and protein, but they play a significant role in the change of the vitreous body, so that the vitreous body can relatively expand or contract, maintain the elasticity and normal shape of the vitreous body, and can bear a certain pressure and considerable tension on surrounding tissues. The lens is positioned in front of the vitreous body, and the periphery of the lens is connected with the ciliary body by a lens zonules and is in a biconvex lens shape and rich in elasticity. The lens is a biconvex transparent tissue, which is held behind the iris by zonules and in front of the vitreous body. Is transparent, takes the shape of a biconvex flat round body, has no blood vessel and is rich in elasticity, and is covered with a transparent quilt bag. The lens consists of the lens capsule, lens epithelium, lens fibers and zonules, and thus also has some deformability. The center distance from cornea to iris, to lens, to vitreous body and finally to retina is the length of eye axis, which is about 24mm, 300 degree myopia, and the eye axis is only deformed by 1mm. And it can be found that the soft tissue of human body can be deformed by pulling up and squeezing training on physical exercise.
Therefore, there is a need to find a safer, more effective and faster way of ocular axis adjustment to pull-up and squeeze the eye's eyes, making the eye's axis longer or shorter, to improve axial myopia or axial hyperopia.
Disclosure of Invention
In order to overcome the defects in the prior art, the invention aims to provide a therapeutic apparatus for adjusting the length of an eye shaft, which can carry out pulling-up extrusion training on the whole eye bead so as to achieve the effect of lengthening or shortening the eye shaft and improve axial myopia or axial hyperopia.
The technical scheme adopted for solving the technical problems is as follows:
The eye treatment instrument comprises a control host, an electric conduit and an eye treatment instrument, wherein the control host is connected with the eye treatment instrument through the electric conduit, the eye treatment instrument comprises an adjusting mechanism for adjusting the length of the eye shaft, and the adjusting mechanism is arranged on the inner side of the treatment instrument.
As a further improvement of the invention, the adjusting mechanism comprises a red light laser group, an eye axis adjusting element, an eye shield frame and an eye shield, wherein the red light laser group is arranged on one side of the eye shield frame, the eye shield is arranged on the other side of the eye shield frame, and the eye axis adjusting element is arranged in a groove on the other side of the eye shield frame.
As a further improvement of the invention, the eye shaft adjusting element is a far-vision sleeve pull ring, one end of the far-vision sleeve pull ring is a hollow circular ring, the other end of the far-vision sleeve pull ring is provided with a sleeve pull screw hole, the hollow circular ring is connected with the sleeve pull screw hole through three L-shaped connecting plates, and the sleeve pull screw hole is connected with the eye shield frame through a sleeve pull screw.
As a further improvement of the invention, the diameter of the hollow circular ring is 20-30mm, and the height of the L-shaped connecting plate is 10-15mm.
As a further improvement of the invention, the red light laser group is provided with a plurality of red light LED lamps, and the plurality of red light LED lamps are arranged around the eye mask frame.
As a further improvement of the invention, the number of the red LED lamps is in the range of 6-15.
As a further improvement of the invention, the eye therapeutic apparatus further comprises an eye shield shell, and the eye shield shell is provided with a pupil distance adjusting mechanism.
As a further improvement of the invention, the control host is internally provided with a suction pump and a release valve.
Compared with the prior art, the invention has the beneficial effects that:
By the training method of lifting and extruding the eye beads, the eye axis can be lengthened or shortened to improve axial myopia or axial hyperopia, and the safety, effectiveness and rapidness of the treatment process can be improved.
Drawings
Fig. 1 is a schematic diagram of the apparatus assembly of the present invention.
Fig. 2 is a front view of the eye treatment apparatus of the present invention.
Fig. 3 is a block diagram of a myopic eye axis adjusting element of the present invention.
Fig. 4 is a block diagram of the presbyopic axis adjusting component of the present invention.
Fig. 5 is an internal structural diagram of a control host according to the present invention.
Fig. 6 is a structural diagram of an eye therapeutic apparatus according to the present invention.
Detailed Description
The invention will now be further described with reference to the accompanying drawings and examples:
Embodiment one:
The therapeutic apparatus for adjusting the length of the eye shaft according to the embodiment shown in fig. 1 comprises a control host 1, an electric conduit 2 and an eye therapeutic apparatus 3, wherein the control host 1 is connected with the eye therapeutic apparatus 3 through the electric conduit 2, the eye therapeutic apparatus 3 comprises an adjusting mechanism 31 for adjusting the length of the eye shaft, and the adjusting mechanism 31 is arranged on the inner side of the therapeutic apparatus. The adjusting mechanism 31 comprises a left eye adjusting mechanism attached to the left eye and a right eye adjusting mechanism attached to the right eye, and the length of the eye axis of the person is adjusted by adjusting the adjusting mechanism 31 to perform the adjusting movement of the eye axis of the person, thereby achieving the effect of improving myopia or hyperopia of the user.
According to fig. 2, the adjusting mechanism 31 comprises a red light laser group 311, an eye axis adjusting element 312, an eye shield frame 313 and an eye shield 314, wherein the red light laser group 311 is arranged on one side of the eye shield frame 313 away from eyes, the eye shield 314 is arranged on the other side of the eye shield frame 313, and the eye axis adjusting element 312 is arranged in a groove on the other side of the eye shield frame 313.
The eye mask frame 313 is used for fixing the red laser group 311, the eye axis adjusting element 312 and the eye mask 314, and the eye mask frame 313 is preferably made of plastic.
The eyeshade 314 is used for absorbing and covering eyeballs when being attached to eyes, and is made of silica gel, so that comfort of a user is improved when the eyeshade is used. The mounting combination of the eye mask frame 313 and the eye mask 314 forms an eye channel for setting the eye axis adjusting member 312 and passing the red laser light.
The red laser group 311 has a plurality of red LED lamps 3111, and the plurality of red LED lamps 3111 are disposed around the eye mask frame 313. The eye shield frame 313 is provided with lamp holes corresponding to a plurality of red light LED lamps 3111, the red light LED lamps 3111 penetrate through the lamp holes and are arranged on the eye shield frame 313, the eye shield frame 313 and the eye shield 314 are installed and combined to form an eye channel, the red light LED lamps 3111 generate red light laser which enters eyes of people through the channel, and red light adopted by the red light laser group 311 is low-power red light laser. The number of the plurality of red LED lamps 3111 ranges from 6 to 15, and in the present embodiment, 6 red LED lamps 3111 are used.
The eye axis adjusting element 312 is used to adjust the length of the eye axis so that the eye axis improves the deformed eye axis through the acquired safety training to achieve the effect of improving the axial myopia or axial hyperopia.
As shown in fig. 6, the eye treatment apparatus 3 further includes an eye mask housing 32, and a pupil distance adjusting mechanism 321 is provided on the eye mask housing 32. The pupil distance adjusting mechanism 321 can adjust the center distance of the two adjusting mechanisms 31 for the left eye and the right eye to match the pupil distance of different users.
As shown in fig. 5, a suction pump 11 and a release valve 12 are provided in the control main unit 1. The control host 1 can control the suction frequency and the suction force of the suction pump 11, the control host 1 is provided with a switch key, a suction force adjusting key and a frequency adjusting key, the suction pump 11 is sucked and discharged once every 1-10 seconds, the frequency is adjusted and selected through the keys, the control host 1 is also provided with a red LED lamp control key, and the direct current output, the frequency flicker and the closing of the red LED lamp 3111 are controlled.
The electric conduit 2 is composed of two power lines and an air pipe. One end of the two power lines is connected with a power output end on a main board of the control host, and the other end is connected with a red light laser group 311 of the eye therapeutic instrument 3.
Embodiment two:
The therapeutic apparatus for adjusting the length of the eye shaft according to the embodiment shown in fig. 1 comprises a control host 1, an electric conduit 2 and an eye therapeutic apparatus 3, wherein the control host 1 is connected with the eye therapeutic apparatus 3 through the electric conduit 2, the eye therapeutic apparatus 3 comprises an adjusting mechanism 31 for adjusting the length of the eye shaft, and the adjusting mechanism 31 is arranged on the inner side of the therapeutic apparatus. The adjusting mechanism 31 comprises a left eye adjusting mechanism attached to the left eye and a right eye adjusting mechanism attached to the right eye, and the length of the eye axis of the person is adjusted by adjusting the adjusting mechanism 31 to adjust the eye axis of the person, so that the myopia of the user is improved.
According to fig. 2, the adjusting mechanism 31 comprises a red light laser group 311, an eye axis adjusting element 312, an eye shield frame 313 and an eye shield 314, wherein the red light laser group 311 is arranged on one side of the eye shield frame 313 away from eyes, the eye shield 314 is arranged on the other side of the eye shield frame 313, and the eye axis adjusting element 312 is arranged in a groove on the other side of the eye shield frame 313.
As shown in fig. 3, for a myopic user, the deformation of the eye axis of the myopic eye is a longer eye axis, and the deformation length of the eye axis is about 1mm for a 300 degree myopia, and thus, the eye axis adjusting member 312 is a myopia pressing adjusting disc 3121, one end of the myopia pressing adjusting disc 3121 is a concave surface, the other end is provided with a pressing screw hole 3122, and the pressing screw hole 3122 is connected to the eye mask frame 313 through a pressing screw 3123. During training, the eyeshade 314 adsorbs and covers the eyeballs when attaching to the eyes, and the deformed eyeballs are pressed and restored by pressing the myopia pressing adjusting disc 3121, and the deformed eyeballs are repeatedly subjected to the set regular adsorption, covering and pressing procedures, so as to recover the deformation of the eyeballs, shorten the lengthened eyeballs, and improve the myopia.
Myopic jacking adjustment disc 3121 has a diameter of 14-20mm and a concave surface with a concave distance of 2mm. The myopic top pressure adjusting disc 3121 with corresponding size can be selected according to the diameter of the eye bead and eyelid and the depth of the eye frame of the user in the eye closing state, and meanwhile, the pressure of the myopic top pressure adjusting disc 3121 against the eyelid can be adjusted by adjusting the knob depth of the top pressure screw hole 3122 and the top pressure screw 3123.
The clinical detection method of the therapeutic instrument for myopia comprises the following steps:
1. Testing user selection:
40 myopic users were selected as subjects, and were randomly divided into an observation group and a control group, each group having 20 cases. Group of 12 men and 8 women were observed, with average age (18-23). The average age (18-23) of the two groups of patients has no statistical significance (P > 0.05), and the two groups of patients have comparability. Wherein the specific data are as follows:
2. inclusion and exclusion criteria:
the inclusion standard is that the length of the eye suction is more than 25mm and the myopia is more than 250 degrees;
exclusion criteria-in addition to myopia, there are other ocular diseases, inflammatory users, to exclude.
3. Therapeutic method
The observation group gives the myopia therapeutic apparatus of the patent a treatment of 2 times per day, and the control group normally performs basic nursing such as eye exercises. The treatment period for both groups of patients was three months.
4. Observation index
And (3) observing indexes such as the length of the eye axis before and after treatment of the two groups of patients, the naked eye vision, the intraocular pressure, the cornea stretch rate and the like, wherein the observation equipment adopts an eye biological measuring instrument, and the main comparison indexes are used for selecting the length of the eye axis.
5. Statistical treatment
Statistical analysis was performed using SPSS19.0 software, with metering data expressed as X+ -s, with t-test, counting data expressed as n (%), with X2 test, P <0.05 being statistically significant.
6. Results
The ocular length levels before and after treatment for two groups of users were compared as follows:
t-test analysis results
*p<0.05**p<0.01
From the above table, it can be seen that the differences between myopic eyes and the initial eye axis and the end eye axis 2 are studied by using a t test (fully called independent sample t test), and that different myopic eye samples all show consistency and no differences in the initial eye axis. Significance was presented for the end-of-period eye axis (p < 0.05), meaning that different myopic eye samples were different for the end-of-period eye axis. The specific analysis shows that:
near vision exhibits a level of significance for the end-of-term eye axis of 0.01 (t= -2.728, p=0.010), and specific contrast differences indicate that the mean value of the experimental group (25.01) will be significantly lower than the mean value of the reference group (25.64).
Summary it is seen that the different myopic eye samples do not exhibit significant differences with respect to the initial eye axis and exhibit significant differences with respect to the end-of-term eye axis.
In summary, the technique of the invention is adopted to perform suction and compression synchronous therapy on eyes of a user twice a day, so that the eye axis can be effectively shortened, the eyesight is improved, and the rebound is small.
Embodiment III:
The therapeutic apparatus for adjusting the length of the eye shaft according to the embodiment shown in fig. 1 comprises a control host 1, an electric conduit 2 and an eye therapeutic apparatus 3, wherein the control host 1 is connected with the eye therapeutic apparatus 3 through the electric conduit 2, the eye therapeutic apparatus 3 comprises an adjusting mechanism 31 for adjusting the length of the eye shaft, and the adjusting mechanism 31 is arranged on the inner side of the therapeutic apparatus. The adjusting mechanism 31 comprises a left eye adjusting mechanism attached to the left eye and a right eye adjusting mechanism attached to the right eye, and the length of the eye axis of the person is adjusted by adjusting the adjusting mechanism 31 to adjust the eye axis of the person, thereby achieving the effect of improving the far vision of the user.
As shown in FIG. 2, the adjusting mechanism 31 includes a red laser group 311, an eye axis adjusting member 312, an eye cup frame 313 and an eye cup 314, wherein the red laser group 311 is disposed on the side of the eye cup frame 313 facing away from the eyes, and the eyes
The cover 314 is provided on the other side of the eye mask frame 313, and the eye axis adjusting member 312 is provided in a groove on the other side of the eye mask frame 313.
As shown in one embodiment of fig. 4, for a hyperopic user, the deformation of the eye axis of the hyperopic human eye becomes short, and thus, the eye axis adjusting element 312 is a hyperopic pull ring 3124, one end of the hyperopic pull ring 3124 is a hollow circular ring 3125, the other end is provided with a pull screw hole 3126, the hollow circular ring 3125 is connected with the pull screw hole 3126 through three L-shaped connection plates 3127, and the pull screw hole 3125 is connected with the eye mask frame 313 through a pull screw 3128. During training, the eyeshade 314 adsorbs and covers the eyeballs when attaching to the eyes, at this time, the eyeballs which are closing the eyes are covered by the hollow circular ring 3125, the eyeshade 314 stretches the eyeballs by the suction pump 11, the length of the deformed eyeshaft is stretched and recovered, and the predetermined regular adsorption, covering and stretching procedures are repeated for a plurality of times, so as to recover the deformation of the eyeshaft and stretch the shortened eyeshaft, thereby improving the function of hyperopia.
The hollow circular ring 3125 has a diameter of 20-30mm and the L-shaped web 3127 has a height of 10-15mm. The distance vision loop 3124 may be selected to be different sizes depending on the diameter of the eye bead plus eyelid and the depth of the eye box of the user in the closed state. The hollow circular ring 3125 is sleeved over the eyeball and is smaller than 1-3mm under the condition of closing the eyelid.
The clinical detection method of the therapeutic apparatus for hyperopia comprises the following steps:
1. Testing user selection:
40 hyperopic users were selected as subjects, and randomly divided into an observation group and a control group, each group having 20 cases. Group of 12 men and 8 women were observed, with average age (30-50). The average age (30-50) of 12 men and 8 women in the control group is equal to the average age, and the general data difference of two groups of patients has no statistical significance (P > 0.05), and has comparability, and the specific steps are as follows:
2. inclusion and exclusion criteria:
the inclusion standard is that the length of the eye suction is less than 23mm and is more than 150 degrees of hyperopia;
exclusion criteria-in addition to hyperopia, there are other ocular disorders and inflammatory users to exclude.
3. Therapeutic method
The observation group is given to the hyperopia therapeutic apparatus for treating the hyperopia for 2 times a day, and the control group is normally used for basic care such as eye exercises. The treatment period for both groups of patients was three months.
4. Observation index
And (3) observing indexes such as the length of the eye axis before and after treatment of the two groups of patients, the naked eye vision, the intraocular pressure, the cornea stretch rate and the like, wherein the observation equipment adopts an eye biological measuring instrument, and the main comparison indexes are used for selecting the length of the eye axis.
5. Statistical treatment
Statistical analysis was performed using SPSS19.0 software, with metering data expressed as X+ -s, with t-test, counting data expressed as n (%), with X2 test, P <0.05 being statistically significant.
6. Results
The eye axis length levels before and after treatment for the two groups of users were compared as follows:
t-test analysis results
*p<0.05**p<0.01
From the above table it can be seen that the difference between presbyopia and the initial and final eye axis was studied using the independent sample t-test, and that the different presbyopia samples did not show significance (p > 0.05) for the initial eye axis, meaning that the different presbyopia samples all showed consistency for the initial eye axis and did not differ. In addition, presbyopic samples exhibited significance for the end-of-term eye axis (p < 0.05), meaning that the different presbyopic samples differed for the end-of-term eye axis:
presbyopia exhibited a 0.01 level of significance for the end-of-term eye axis (t=4.298, p=0.000), and specific contrast differences indicated that the mean value of the experimental group (23.05) was significantly higher than the mean value of the control group (22.19).
Summarizing, the different presbyopic samples did not exhibit significant differences with respect to the initial eye axis, and the presbyopic samples exhibited significant differences with respect to the end-of-term eye axis.
In conclusion, the technical method provided by the invention is adopted to carry out the loop suction and extraction therapy on eyes of a user twice a day, so that the eye axis can be effectively improved, the eyesight is improved, the rebound is small, and the method has extremely high market popularization value.
The invention has the main function of an adjusting therapeutic instrument for axial myopia or axial hyperopia of human eyes. In view of the above, after reading the present document, those skilled in the art should make various other corresponding changes without creative mental effort according to the technical scheme and the technical conception of the present invention, which are all within the scope of the present invention.
Claims (5)
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Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN2549945Y (en) * | 2002-06-27 | 2003-05-14 | 东风汽车公司茅箭医院 | Shortsightedness orthotic instrument |
| CN2691530Y (en) * | 2004-03-16 | 2005-04-13 | 崔建军 | Brachymetropia therapeutic apparatus and its eyeshade |
| CN113274651A (en) * | 2021-06-30 | 2021-08-20 | 胡柳俊 | Myopia therapeutic instrument capable of shortening length of eye axis |
| CN216222269U (en) * | 2021-09-14 | 2022-04-08 | 邵辉 | A farsightedness therapy device |
| CN216222268U (en) * | 2021-09-14 | 2022-04-08 | 邵辉 | Myopia therapeutic instrument |
Family Cites Families (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN2263987Y (en) * | 1996-05-15 | 1997-10-08 | 刘兴泉 | Vision corrector |
| CN2287938Y (en) * | 1996-10-03 | 1998-08-19 | 张锡全 | Myopia treating glasses by regulating intraocular pressure |
-
2021
- 2021-09-14 CN CN202111076829.6A patent/CN116115470B/en active Active
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN2549945Y (en) * | 2002-06-27 | 2003-05-14 | 东风汽车公司茅箭医院 | Shortsightedness orthotic instrument |
| CN2691530Y (en) * | 2004-03-16 | 2005-04-13 | 崔建军 | Brachymetropia therapeutic apparatus and its eyeshade |
| CN113274651A (en) * | 2021-06-30 | 2021-08-20 | 胡柳俊 | Myopia therapeutic instrument capable of shortening length of eye axis |
| CN216222269U (en) * | 2021-09-14 | 2022-04-08 | 邵辉 | A farsightedness therapy device |
| CN216222268U (en) * | 2021-09-14 | 2022-04-08 | 邵辉 | Myopia therapeutic instrument |
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