Light-sheet microscopy for corneal nerve imaging

A microscope and cornea technology, applied in microscopes, optics, applications, etc., can solve the problem that the moving distance does not meet the shooting depth and is not applicable, and achieve the effect of good environmental adaptability, convenience and portability, and damage reduction.

Inactive Publication Date: 2019-05-17
CIXI INST OF BIOMEDICAL ENG NINGBO INST OF MATERIALS TECH & ENG CHINESE ACAD OF SCI +1
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In this image acquisition device, the illumination light path enters from the left side of the eyeball, and the image acquisition light path obtains the reflected image information from the trabecular meshwork. For animal experiments, this device may be suitable for taking out the eye-moving trabecular meshwork. But humans have left and right eyes, and there is a bridge of nose in the middle as a separation, so this kind of device is not suitable
Moreover, this lighting device uses a static light sheet. During the shooting process, the eyeball object to be photographed needs to move in conjunction with it, so as to obtain information of different depths, but it is easy to cause the problem that the moving distance does not meet the required shooting depth.

Method used

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  • Light-sheet microscopy for corneal nerve imaging
  • Light-sheet microscopy for corneal nerve imaging
  • Light-sheet microscopy for corneal nerve imaging

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Embodiment Construction

[0033] The following are specific embodiments of the present invention and in conjunction with the accompanying drawings, the technical solutions of the present invention are further described, but the present invention is not limited to these embodiments.

[0034] figure 1 A schematic diagram of the positional relationship between the light and the eye is shown when the confocal microscope is used. After the light 213 emitted by the laser light source directly hits the eyeball 211 , the image information 212 returns to the objective lens through the same path. That is to say, the illumination light path injects light into the cornea of ​​the eye, and the emitted light forms an angle of 90 degrees with the horizontal at the cornea of ​​the eye, and the image signal emits light back to the objective lens, and the image signal and the horizontal form an angle of 90 degrees, that is, the angle between the illumination light path and the horizontal The image acquisition optical p...

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Abstract

The invention relates to a light-sheet microscopy for corneal nerve imaging and belongs to the technical field of corneal nerve imaging. The light-sheet microscopy comprises a control device, an illumination light path and an image acquisition light path. The illumination light path injects light into the cornea of the eye, forming a dynamic light sheet at an angle of alpha with the horizontal plane at the position of the cornea of the eye; an image signal is transmitted into the image acquisition light path at an angle of beta with the horizontal plane, and the image acquisition light path sends the image signal into the control device for imaging, wherein the angle between the angle of alpha and the angle of beta is 90 degrees, and the angle of alpha is unequal to 90 degrees. The dynamiclight-sheet microscopy is used to acquire a corneal nerve image, accelerate an imaging speed, reduce the shooting time, and avoid the injury to eyes caused by illumination light directly shining thefundus.

Description

technical field [0001] The invention relates to the field of corneal neuroimaging, in particular to corneal neuroimaging equipment using a light sheet microscope, which can be widely used in the technical field of biomedical ophthalmology imaging. Background technique [0002] The cornea is the frontmost part of the eye, in front of the iris and pupil. It is the most densely innervated tissue, and most corneal nerves are sensory nerves, derived from the thalamic branch of the trigeminal nerve. The cornea of ​​an adult eye has an average horizontal diameter of about 11.5 mm and a vertical diameter of 10.5 mm, and its curvature remains fairly constant throughout life. The optic nerve area (cornea anterior to the pupil), which provides most of the cornea's refractive function, is 4 mm in diameter and is located in the center of the cornea, in front of the pupil. Under photopic conditions, the cornea is the branch of the avascular anterior ciliary arteries that stop at where th...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B3/14G02B21/00
Inventor 胡衍杨建龙赵一天蒋珊珊王浩谢建洋岳星宇杨燕鹤刘江
Owner CIXI INST OF BIOMEDICAL ENG NINGBO INST OF MATERIALS TECH & ENG CHINESE ACAD OF SCI
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