The invention relates to ophthalmic test; in particular, to a detachable multi-functional ophthalmic tester.
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In addition, the conventional fixed ophthalmic tester 1 usually only provides a single ophthalmic testing function. If the user wants to user multiple ophthalmic testing functions, multiple fixed ophthalmic testers with different ophthalmic testing functions should be set up respectively. It will greatly increase the cost, and it will take up a lot of space.
From the above, it can be seen that the conventional fixed ophthalmic tester 1 still has many problems in practical application, which need to be overcome urgently.
Therefore, the invention provides a detachable multi-functional ophthalmic tester to solve the above-mentioned problems of the prior arts.
A preferred embodiment of the invention is a detachable multi-functional ophthalmic tester. In this embodiment, the detachable multi-functional ophthalmic tester includes a movable platform and a measuring module. The movable platform has a first connecting portion and it can move along at least one direction. The measuring module is coupled to the first connecting portion. The measuring module is used to perform measurement on the eye to be tested. The movable platform and the measuring module are both detachable.
In an embodiment, the detachable multi-functional ophthalmic tester also includes a chin holding module, which is coupled to a second connecting portion of the movable platform to hold a chin of a user.
In an embodiment, the chin holding module is detachable.
In an embodiment, the detachable multi-functional ophthalmic tester also includes a forehead holding module, which is coupled to a third connecting portion of the movable platform to hold a forehead of a user.
In an embodiment, the forehead holding module is detachable.
In an embodiment, in a measurement mode, the forehead holding module is erected on the movable platform to correspond to the forehead of the user.
In an embodiment, in a storage mode, the forehead holding module is lying flat on the movable platform to save space and facilitate storage.
In an embodiment, the measuring module is a fundus camera including a camera for performing fundus imaging on the eye to be tested.
In an embodiment, the measuring module is a tonometer or an optical coherence tomography (OCT) scanner.
In an embodiment, the movable platform moves along directions of X-axis, Y-axis and Z-axis.
In an embodiment, the operation of the detachable multi-function ophthalmic tester is controlled by a remote signal from a mobile communication device.
In an embodiment, the detachable multi-functional ophthalmic tester is placed on a liftable platform, and the liftable platform raises or lowers its height to make the measuring module to be aligned with the eye to be tested.
In an embodiment, the measuring module is placed on a liftable platform, and the liftable platform raises or lowers its height to make the measuring module to be aligned with the eye to be tested.
In an embodiment, the first connecting portion of the movable platform is coupled to different measuring modules to provide different measuring functions.
In an embodiment, the measuring module is coupled to different movable platforms.
Compared to the prior art, the detachable multi-functional ophthalmic tester of the invention not only can be stored in a general suitcase for transportation, but also can adjust the height and position of the camera according to the height and eye position of each user, and select different measuring modules to provide different measuring functions. For the users, the convenience of transportation and operation can be greatly increased, and the cost and space of installing multiple ophthalmic testers can also be saved.
The advantage and spirit of the invention may be understood by the following detailed descriptions together with the appended drawings.
Exemplary embodiments of the invention are referenced in detail now, and examples of the exemplary embodiments are illustrated in the drawings. Further, the same or similar reference numerals of the components/components in the drawings and the detailed description of the invention are used on behalf of the same or similar parts.
According to a specific embodiment of the invention, a detachable multi-functional ophthalmic tester. Please refer to
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In practical applications, the movable platform 22 can be coupled to different measuring modules according to practical needs, such as: fundus camera, tonometer, or optical coherence tomography (OCT) scanner, etc., to provide different measuring functions for the eye to be tested. In contrast, the measuring module 20 can also be coupled to different movable platforms according to practical needs, so as to be provided to different locations or different users.
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The movable platform 22 includes a first connecting portion 224, a second connecting portion 226 and a third connecting portion 228 for connecting the measuring module 20, the chin holding module 24 and the forehead holding module 26 respectively, but not limited to this. In fact, there is no specific limitations to the way that the first connecting portion 224, the second connecting portion 226 and the third connecting portion 228 of the movable platform 22 are coupled to the measuring module 20, the chin holding module 24 and the forehead holding module 26 respectively.
For example, the first connecting portion 224 of the movable platform 22 and the measuring module 20 can be coupled by snapping; the second connecting portion 226 of the movable platform 22 and the chin holding module 24 can be coupled by locking; the third connecting portion 228 of the movable platform 22 and the forehead holding module 26 can be coupled by locking, but not limited to this.
The movable platform 22 can also be referred to as a tracking module, which can move in at least one direction, for example, along the X-axis direction, the Y-axis direction and/or the Z-axis direction, but not limited to this. In other words, the movable platform 22 can be moved in one, two or three dimensions according to actual needs. In addition, the movable platform 22 can also be provided with a buffer 229. In the storage mode, the forehead holding module 26 lies flat on the buffer portion 229 of the movable platform 22, but it is not limited to this.
In practical applications, the measuring module 20 can be a fundus camera, a tonometer or an optical coherence tomography (OCT) scanner, but not limited to this. For example, if the measuring module 20 is a fundus camera, then the measuring module 20 can include a camera 200 for performing fundus imaging on the eye to be tested.
The chin holding module 24 includes a chin holder 240 and a fourth connecting portion 242. The chin holder 240 is disposed on the fourth connecting portion 242. The fourth connecting portion 242 can be coupled to the second connecting portion 226. When the movable platform 22 moves, the second connecting portion 226 of the movable platform 22 brings the fourth connecting portion 242 of the chin holding module 24 to move, so that the position of the chin holder 240 disposed on the fourth connecting portion 242 can correspond to the user's chin and hold it.
The forehead holding module 26 includes a forehead holder 260 and a fifth connecting portion 262. The forehead holder 260 is disposed on the fifth connecting portion 262. The fifth connecting portion 262 can be coupled to the third connecting portion 228. When the movable platform 22 moves, the third connecting portion 228 of the movable platform 22 brings the fifth connecting portion 262 of the forehead holding module 26 to move, so that the forehead holder 260 disposed on the fifth connecting portion 262 can correspond to the user's forehead and hold it.
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In practical applications, the forehead holding module 26 is erected on the movable platform 22 in the measuring mode to hold the forehead of the user U, as shown in
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Compared to the prior art, the detachable multi-functional ophthalmic tester of the invention not only can be stored in a general suitcase for transportation, but also can adjust the height and position of the camera according to the height and eye position of each user, and select different measuring modules to provide different measuring functions. For the users, the convenience of transportation and operation can be greatly increased, and the cost and space of installing multiple ophthalmic testers can also be saved.
With the example and explanations above, the features and spirits of the invention will be hopefully well described. Those skilled in the art will readily observe that numerous modifications and alterations of the device may be made while retaining the teaching of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
This Application is a non-provisional application claiming priority to U.S. Provisional Application 62/892,302 filed on Aug. 27, 2019, which is incorporated by reference in its entirety.
Number | Date | Country | |
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62892302 | Aug 2019 | US |