JPH11225971A - Ophthalmology device - Google Patents

Ophthalmology device

Info

Publication number
JPH11225971A
JPH11225971A JP10333459A JP33345998A JPH11225971A JP H11225971 A JPH11225971 A JP H11225971A JP 10333459 A JP10333459 A JP 10333459A JP 33345998 A JP33345998 A JP 33345998A JP H11225971 A JPH11225971 A JP H11225971A
Authority
JP
Japan
Prior art keywords
alignment
light source
image
eye
area sensor
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP10333459A
Other languages
Japanese (ja)
Other versions
JP3106127B2 (en
Inventor
Yoshi Kobayakawa
嘉 小早川
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Canon Inc
Original Assignee
Canon Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Canon Inc filed Critical Canon Inc
Priority to JP10333459A priority Critical patent/JP3106127B2/en
Publication of JPH11225971A publication Critical patent/JPH11225971A/en
Application granted granted Critical
Publication of JP3106127B2 publication Critical patent/JP3106127B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Eye Examination Apparatus (AREA)

Abstract

PROBLEM TO BE SOLVED: To enable positioning simply and accurately over a wide detection scope by a simple structure. SOLUTION: When a cornea reflection image P formed by a light source for alignment 22 is caught by lenses 20a, 20b from two directions, is reflected by mirrors 21a, 21b, respectively, and is projected on an area sensor 19, two front eye part images and two cornea reflection images P viewed from two directions are formed on the area sensor 19. The cornea reflection image P only is sampled and processed to detect its position.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、例えば眼底カメラ
やオートレフラクトメータなどのようにアライメント手
段を備えた眼科装置に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an ophthalmologic apparatus provided with alignment means such as a fundus camera and an auto-refractometer.

【0002】[0002]

【従来の技術】従来のオートレフラクトメータ等の眼科
機械に用いられているアライメント手段は、一般にアラ
イメント光源の角膜反射像を、眼測定用とは別の「田」
の字状の四分割光電センサ上に結像させ、4個のセンサ
の光量バランスを基にアライメント情報を得るようにな
っている。
2. Description of the Related Art Alignment means used in conventional ophthalmic machines such as an auto-refractometer generally uses a corneal reflection image of an alignment light source as a "field" different from that used for eye measurement.
An image is formed on a quadrangular photoelectric sensor having a U-shape, and alignment information is obtained based on the light amount balance of the four sensors.

【0003】[0003]

【発明が解決しようとする課題】しかしながら上述の従
来例においては、被検眼の虹彩や瞼等からの余分な反射
光が角膜反射光に混入するために精度が低下するので、
角膜反射像が存在する角膜中心部のみを光電センサで測
定しようとすると、その部分から外れた場合には判らな
くなり、検出範囲が著しく制限されるという問題が生ず
る。
However, in the above-mentioned conventional example, since the extra reflected light from the iris or eyelid of the eye to be examined is mixed with the corneal reflected light, the accuracy is reduced.
If an attempt is made to measure only the central portion of the cornea where the corneal reflection image exists by using the photoelectric sensor, it will not be known if the portion deviates from that portion, and a problem will occur in that the detection range is significantly limited.

【0004】本発明の目的は、アライメント時におい
て、被検眼の虹彩等からの反射光や、閉瞼時に生ずる瞼
からの反射光の影響を無くして、アライメントの精度を
高めると共に、検出範囲の広いアライメントを行えると
共に構造を簡単にした眼科装置を提供することにある。
An object of the present invention is to eliminate the influence of reflected light from the iris and the like of the subject's eye and reflected light from the eyelids generated when the eyelids are closed during alignment, thereby improving alignment accuracy and widening the detection range. An object of the present invention is to provide an ophthalmologic apparatus capable of performing alignment and having a simplified structure.

【0005】[0005]

【課題を解決するための手段】上記目的を達成するため
の本発明に係る眼科装置は、光源により照明された虹彩
を含む前眼部を光学系を介して2方向から撮像センサに
結像し、前記光源による角膜反射像の位置を検出してア
ライメントを行うことを特徴とする。
An ophthalmologic apparatus according to the present invention for achieving the above object forms an image of an anterior eye including an iris illuminated by a light source on an image sensor from two directions via an optical system. The alignment is performed by detecting the position of the corneal reflection image by the light source.

【0006】[0006]

【発明の実施の形態】本発明を図示の実施例に基づいて
詳細に説明する。図1は本発明の基本的な原理図であ
り、被検眼Eの前方の光軸上にはハーフミラー1、レン
ズ2、テレビカメラ3が配置され、テレビカメラ3の出
力は信号処理器4に接続されている。また、ハーフミラ
ー1の入射方向にはアライメント光源5が配置されてい
る。
DESCRIPTION OF THE PREFERRED EMBODIMENTS The present invention will be described in detail with reference to the illustrated embodiment. FIG. 1 is a basic principle diagram of the present invention. A half mirror 1, a lens 2, and a television camera 3 are arranged on an optical axis in front of an eye E to be inspected. The output of the television camera 3 is sent to a signal processor 4. It is connected. An alignment light source 5 is arranged in the incident direction of the half mirror 1.

【0007】アライメント用光源5から出射した光束
は、ハーフミラー1で反射して被検眼Eを照明する。そ
して、被検眼Eの角膜Ecに光源5の虚像つまり角膜反射
像Pが形成されるので、この角膜反射像Pをレンズ2に
よりテレビカメラ3の撮像面3aに結像すると、図2に
示すように撮像面3aには被検眼Eの前眼部像と光源5
の角膜反射像Pが投影される。
The light beam emitted from the alignment light source 5 is reflected by the half mirror 1 and illuminates the eye E to be examined. Then, a virtual image of the light source 5, that is, a corneal reflection image P is formed on the cornea Ec of the subject's eye E. When the corneal reflection image P is formed on the imaging surface 3 a of the television camera 3 by the lens 2, as shown in FIG. The image of the anterior segment of the eye E and the light source 5
Is projected.

【0008】図3(a) は角膜反射像Pの上を通る或る走
査線Sのビデオ信号を表しており、角膜反射の部分P'
が飛び抜けて強い信号となっている。その理由は、被検
眼Eの虹彩や瞼等からの反射は拡散反射であるのに対
し、角膜Ecからの反射は球面反射であるからである。
FIG. 3A shows a video signal of a certain scanning line S passing over a corneal reflection image P, and a corneal reflection portion P ′.
Is a strong signal. The reason is that the reflection from the iris, eyelid, and the like of the subject's eye E is diffuse reflection, whereas the reflection from the cornea Ec is spherical reflection.

【0009】図3(b) は(a) に示す信号を点線で示す適
当なレベルで二値化した信号を示している。この信号処
理は信号処理器4によって行われるが、その方法はメモ
リに取り込んでからソフト的に処理してもよいし、或い
は回路を用いてハード的に処理してもよい。全走査線に
ついてこのような処理を施こすと、角膜反射像Pのみが
残ることになるから、後はこの角膜反射像Pの二次元的
位置を検出してアライメントを行えばよい。
FIG. 3B shows a signal obtained by binarizing the signal shown in FIG. 3A at an appropriate level indicated by a dotted line. This signal processing is performed by the signal processor 4. The signal processing may be performed by software after being loaded into the memory, or may be performed by hardware using a circuit. When such processing is performed on all the scanning lines, only the corneal reflection image P remains, and thereafter, the alignment may be performed by detecting the two-dimensional position of the corneal reflection image P.

【0010】図4は本発明をオートレフラクトメータに
適用した実施例を示し、被検眼Eの光軸L1上には、対物
レンズ11、孔あきミラー12、中心開口絞り13、レ
ンズ14、測定用光源15が配列され、穴あきミラー1
2の反射方向の光軸L2上には円環開口絞り16、レンズ
17、円錐プリズム18、エリアセンサ19が配置され
ている。また、被検眼Eの斜め前方の2方向にはレンズ
20a、20bが配置され、被検眼E側からそれぞれの
レンズ20a、20bを通過した光束はミラー21a、
21bを介してエリアセンサ19上に投影されるように
なっている。光軸L1、L2上の部材はオートレフラクトメ
ータを構成し、アライメント用の光源22は図4の紙面
の上側にあって、オートレフラクトメータの光路とは干
渉しない位置に配置されている。
FIG. 4 shows an embodiment in which the present invention is applied to an auto-refractometer. An objective lens 11, a perforated mirror 12, a central aperture stop 13, a lens 14, a measurement A light source 15 is arranged and a perforated mirror 1
An annular aperture stop 16, a lens 17, a conical prism 18, and an area sensor 19 are arranged on the optical axis L2 in the second reflection direction. Further, lenses 20a and 20b are arranged in two directions obliquely forward of the eye E, and the light beams passing through the respective lenses 20a and 20b from the eye E are mirrors 21a and 20b.
The image is projected onto the area sensor 19 through the area 21b. The members on the optical axes L1 and L2 constitute an auto-refractometer, and the light source 22 for alignment is located above the paper surface of FIG. 4 and is located at a position that does not interfere with the optical path of the auto-refractometer.

【0011】アライメント用光源22の角膜反射像Pを
2方向からレンズ20a、20bで捉え、それぞれミラ
ー21a、21bで反射してエリアセンサ19上に投影
すると、エリアセンサ19上には図5に示すように、2
方向から見た2つの前眼部像E1、E2と2つの角膜反射像
P1、P2が結像される。前述の実施例と同様の過程で角膜
反射像Pのみを抽出すると、2つの前眼部像E1、E2の間
隔から被検眼Eと装置との距離が判り、また中心からの
ずれでアライメント情報が得られる。
The corneal reflection image P of the alignment light source 22 is captured by the lenses 20a and 20b from two directions, reflected by the mirrors 21a and 21b, and projected onto the area sensor 19, as shown in FIG. Like 2
Two anterior segment images E1, E2 and two corneal reflection images viewed from different directions
P1 and P2 are imaged. When only the corneal reflection image P is extracted in the same process as in the above-described embodiment, the distance between the subject's eye E and the apparatus can be determined from the distance between the two anterior eye images E1 and E2, and the alignment information is determined by the deviation from the center. can get.

【0012】眼屈折力測定時にはアライメント用の光源
22は消灯され、測定用光源15が点灯される。測定用
光源15からの光は、レンズ14、中心開口絞り13、
穴あきミラー12及び対物レンズ11を通って被検眼E
の眼底に投影され、その眼底反射光は穴あきミラー12
で反射し、光軸L2上の円環開口絞り16、レンズ17、
円錐プリズム18を通ってエリアセンサ19上には図6
に示すような円環状光束を投影する。従って、エリアセ
ンサ19上のこの円環の寸法、形状を解析することによ
り眼屈折力が求められる。勿論、アライメント時には測
定用光源15はアライメント時には消灯され、エリアセ
ンサ19はアライメント時と眼屈折測定時との時間分離
によって共用が可能である。
At the time of measuring the eye refractive power, the light source 22 for alignment is turned off and the light source 15 for measurement is turned on. The light from the measurement light source 15 passes through a lens 14, a central aperture stop 13,
The eye to be inspected E passes through the perforated mirror 12 and the objective lens 11.
Is projected on the fundus of the eye, and the reflected light of the fundus is
, The annular aperture stop 16 on the optical axis L2, the lens 17,
6 through the conical prism 18 and on the area sensor 19.
An annular light beam as shown in FIG. Therefore, the eye refractive power is obtained by analyzing the size and shape of this ring on the area sensor 19. Of course, during alignment, the measurement light source 15 is turned off during alignment, and the area sensor 19 can be shared by time separation between alignment and eye refraction measurement.

【0013】上述の実施例はオートレフラクトメータに
適用した場合であるが、同様に眼底カメラやその他の眼
科機器にも適用できることは云うまでもない。
Although the above-described embodiment is applied to an auto-refractometer, it goes without saying that it can be applied to a fundus camera and other ophthalmologic devices.

【0014】[0014]

【発明の効果】以上説明したように本発明に係る眼科装
置は、虹彩を含む前眼部を光学系を介して撮像センサに
結像しているので、広い範囲でアライメントができ、ま
た2方向から撮像センサに結像していることにより、精
度の良いアライメントが可能となる。
As described above, in the ophthalmologic apparatus according to the present invention, since the anterior segment including the iris is imaged on the image sensor through the optical system, alignment can be performed in a wide range, and two directions can be obtained. , The image is formed on the image sensor, so that accurate alignment can be performed.

【図面の簡単な説明】[Brief description of the drawings]

【図1】基本的原理図である。FIG. 1 is a basic principle diagram.

【図2】エリアセンサ上の前眼部像の説明図である。FIG. 2 is an explanatory diagram of an anterior segment image on an area sensor.

【図3】(a) はビデオ信号の波形図、(b) はその二値化
信号の波形図である。
3A is a waveform diagram of a video signal, and FIG. 3B is a waveform diagram of a binarized signal.

【図4】オートレフラクトメータに適用した実施例の構
成図である。
FIG. 4 is a configuration diagram of an embodiment applied to an auto-refractometer.

【図5】エリアセンサ上の前眼部像の説明図である。FIG. 5 is an explanatory diagram of an anterior segment image on an area sensor.

【図6】エリアセンサ上の屈折力測定用円環の説明図で
ある。
FIG. 6 is an explanatory diagram of a refractive power measurement ring on an area sensor.

【符号の説明】[Explanation of symbols]

1 ハーフミラー 3 テレビカメラ 3a 撮像面 4 信号処理器 5、22 アライメント用光源 12 穴あきミラー 13 中心絞り 15 測定用光源 16 円環開口絞り 18 円錐プリズム 19 エリアセンサ 20a、20b レンズ 21a、21b ミラー Reference Signs List 1 half mirror 3 television camera 3a imaging surface 4 signal processor 5, 22 alignment light source 12 perforated mirror 13 center aperture 15 measurement light source 16 annular aperture stop 18 conical prism 19 area sensor 20a, 20b lens 21a, 21b mirror

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 光源により照明された虹彩を含む前眼部
を光学系を介して2方向から撮像センサに結像し、前記
光源による角膜反射像の位置を検出してアライメントを
行うことを特徴とする眼科装置。
1. An anterior eye part including an iris illuminated by a light source is imaged on an image sensor from two directions via an optical system, and alignment is performed by detecting a position of a corneal reflection image by the light source. Ophthalmic device.
【請求項2】 前記撮像センサは単一のエリアセンサと
した請求項1に記載の眼科装置。
2. The ophthalmologic apparatus according to claim 1, wherein the image sensor is a single area sensor.
JP10333459A 1998-11-09 1998-11-09 Ophthalmic equipment Expired - Fee Related JP3106127B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10333459A JP3106127B2 (en) 1998-11-09 1998-11-09 Ophthalmic equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10333459A JP3106127B2 (en) 1998-11-09 1998-11-09 Ophthalmic equipment

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
JP7255611A Division JP3070655B2 (en) 1995-09-07 1995-09-07 Ophthalmic equipment

Publications (2)

Publication Number Publication Date
JPH11225971A true JPH11225971A (en) 1999-08-24
JP3106127B2 JP3106127B2 (en) 2000-11-06

Family

ID=18266326

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10333459A Expired - Fee Related JP3106127B2 (en) 1998-11-09 1998-11-09 Ophthalmic equipment

Country Status (1)

Country Link
JP (1) JP3106127B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2019134975A (en) * 2019-05-17 2019-08-15 株式会社トプコン Ophthalmologic apparatus

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5897340A (en) * 1981-12-07 1983-06-09 キヤノン株式会社 Apparatus for aligning position of ophthalmic machine
JPS62211041A (en) * 1986-03-10 1987-09-17 キヤノン株式会社 Ophthalmic examination apparatus

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5897340A (en) * 1981-12-07 1983-06-09 キヤノン株式会社 Apparatus for aligning position of ophthalmic machine
JPS62211041A (en) * 1986-03-10 1987-09-17 キヤノン株式会社 Ophthalmic examination apparatus

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2019134975A (en) * 2019-05-17 2019-08-15 株式会社トプコン Ophthalmologic apparatus

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JP3106127B2 (en) 2000-11-06

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