JP3208499B2 - Ophthalmoscopic examination adapter for surgical microscope - Google Patents
Ophthalmoscopic examination adapter for surgical microscopeInfo
- Publication number
- JP3208499B2 JP3208499B2 JP09016792A JP9016792A JP3208499B2 JP 3208499 B2 JP3208499 B2 JP 3208499B2 JP 09016792 A JP09016792 A JP 09016792A JP 9016792 A JP9016792 A JP 9016792A JP 3208499 B2 JP3208499 B2 JP 3208499B2
- Authority
- JP
- Japan
- Prior art keywords
- lens
- adapter
- eye
- optical
- microscope
- 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.)
- Expired - Fee Related
Links
- 230000003287 optical effect Effects 0.000 claims description 44
- 238000000034 method Methods 0.000 claims description 5
- 210000000695 crystalline len Anatomy 0.000 claims 13
- 230000002441 reversible effect Effects 0.000 claims 1
- 230000000007 visual effect Effects 0.000 claims 1
- 210000001747 pupil Anatomy 0.000 description 12
- 238000007689 inspection Methods 0.000 description 6
- 238000003384 imaging method Methods 0.000 description 3
- 230000000694 effects Effects 0.000 description 2
- 230000006870 function Effects 0.000 description 1
- 230000008447 perception Effects 0.000 description 1
- 230000002250 progressing effect Effects 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
- 230000003595 spectral effect Effects 0.000 description 1
- 238000001356 surgical procedure Methods 0.000 description 1
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B3/00—Apparatus for testing the eyes; Instruments for examining the eyes
- A61B3/10—Objective types, i.e. instruments for examining the eyes independent of the patients' perceptions or reactions
- A61B3/13—Ophthalmic microscopes
- A61B3/132—Ophthalmic microscopes in binocular arrangement
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B21/00—Microscopes
- G02B21/0004—Microscopes specially adapted for specific applications
- G02B21/0012—Surgical microscopes
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B21/00—Microscopes
- G02B21/02—Objectives
Landscapes
- Physics & Mathematics (AREA)
- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Analytical Chemistry (AREA)
- General Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- General Health & Medical Sciences (AREA)
- Surgery (AREA)
- Ophthalmology & Optometry (AREA)
- Biophysics (AREA)
- Engineering & Computer Science (AREA)
- Biomedical Technology (AREA)
- Heart & Thoracic Surgery (AREA)
- Medical Informatics (AREA)
- Molecular Biology (AREA)
- Animal Behavior & Ethology (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Microscoopes, Condenser (AREA)
- Eye Examination Apparatus (AREA)
- Lenses (AREA)
Description
【0001】[0001]
【産業上の利用分野】本発明は、眼底又は眼の水晶体領
域を観察する手術用顕微鏡のための検眼鏡検査用アダプ
タに関する。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a fundus or a lens region of an eye.
The present invention relates to an ophthalmoscopic examination adapter for a surgical microscope for observing an area .
【0002】[0002]
【従来の技術】人間の眼の眼底又は眼底付近の水晶体領
域を顕微鏡で観察できるようにするために、まず、検眼
鏡検査用レンズにより観察する眼の一部分の中間像を形
成し、その像を手術用顕微鏡によって観察する。そのよ
うにして観察するこの像は上下左右が逆であり、偽立体
像である。すなわち、奥行き知覚上、前後が逆になって
いるのである。ところが、顕微外科作業を可能にするた
めには、アライメントされ、立体感覚でも正しい像が必
要である。従って、手術用顕微鏡においては、要求され
る像アライメントと同時に、立体観察時に発生する偽立
体効果を回避するための2つの観察光路の交換(ひとみ
交換)を行わなければならない。2. Description of the Related Art In order to make it possible to observe the fundus of the human eye or the lens area near the fundus with a microscope, first, an intermediate image of a part of the eye to be observed is formed by an ophthalmoscopic lens, and the image is formed. Observe with an operating microscope. The image thus observed is upside down, left and right, and is a pseudo three-dimensional image. That is, the front and rear are reversed in depth perception. However, in order to enable microsurgical work, an image that is aligned and has a correct stereoscopic feeling is required. Therefore, in the surgical microscope, two observation optical paths must be exchanged (pupil exchange) in order to avoid a pseudo three-dimensional effect that occurs during stereoscopic observation, at the same time as required image alignment.
【0003】手術用顕微鏡の双眼鏡胴と倍率切換え装置
との間に付加的に配置されるプリズム系により、この像
アライメントとひとみ交換を行うことができる。そのよ
うなプリズム系は、たとえば、ドイツ公開特許公報第3
507458号に記載されている。この追加構成要素に
よって、患者の眼と観察者のひとみとの間の動作距離は
長くなる。ところが、人間工学的観点及び医療実施面か
らいえば、そのように動作距離が伸びることは望ましく
ない。さらに、第2の人物がもう1つの双眼鏡胴を使用
して観察すべき場合には、そのようなプリズム系は特に
負担を大きくしてしまう。それは、共同観察のために、
対応する第2の同様なプリズム系が必要になると思われ
るからである。This image alignment and pupil exchange can be performed by a prism system additionally arranged between the binocular barrel of the operating microscope and the magnification switching device. Such a prism system is described, for example, in German Offenlegungsschrift 3
No. 507458. This additional component increases the working distance between the patient's eye and the observer's pupil. However, from the viewpoint of ergonomics and medical practice, it is not desirable that the operating distance be increased as described above. Moreover, such a prism system is particularly burdensome if a second person is to observe using another binocular torso. It is for joint observation
This would be because a corresponding second similar prism system would be required.
【0004】別の解決策はドイツ公開特許公報第353
9009号及びドイツ実用新案公報第892035.9
号に提案されている。この場合、手術用顕微鏡に装着さ
れるアダプタの中に、検眼鏡検査用レンズと、形成され
る中間像を像反転させる装置とを取付ける。そこで、対
応するプリズム系は手術用顕微鏡の主対物レンズのすぐ
前に配置される。眼の関心部分への焦点合わせはそれぞ
れ本来の手術用顕微鏡で行われる。顕微鏡は2つの部分
から成る主対物レンズを有し、その一方のレンズ群は他
方のレンズ群に対して摺動自在である。そのため、この
アダプタを着脱する際には、その都度、手術用顕微鏡の
設定を変更しなければならず、手術中にはそのような作
業は非常にわずらわしい。反転プリズム系を主対物レン
ズの直前に配置する構成のもう1つの欠点は、この場所
で、まだ一部は重複している発散光路が2つの別々の反
転プリズム系により空間的に完全に分離される。そのと
きに、それら2つの光路の一部はフェードアウトされて
しまう。すなわち、手術用顕微鏡に像誤差(口径食)を
引起こす結果になる。さらに、このような構成では、使
用する手術用顕微鏡の主対物レンズが2つの部分から形
成しているために、装置の全長が長くなってしまい、そ
れは、外科医の作業領域をできる限り広くとらなければ
ならないという条件とは相反するものである。Another solution is German Offenlegungsschrift 353.
No. 9009 and German Utility Model Publication No. 892035.9.
No. has been proposed. In this case, an ophthalmoscopic lens and a device for reversing an intermediate image to be formed are mounted in an adapter mounted on the operating microscope. The corresponding prism system is then located immediately before the main objective of the operating microscope. Focusing on the part of interest of the eye is performed with the respective operating microscope. The microscope has a two-part main objective lens, one of which is slidable relative to the other. Therefore, each time the adapter is attached or detached, the setting of the surgical microscope must be changed, and such operation is very troublesome during the operation. Another disadvantage of the arrangement in which the reversing prism system is arranged immediately before the main objective is that at this point the diverging light paths, which are still partially overlapping, are spatially completely separated by two separate reversing prism systems. You. At that time, some of those two optical paths are faded out. That is, an image error (vignetting) is caused on the surgical microscope. Furthermore, in such an arrangement, the main objective of the operating microscope used is formed of two parts, which increases the overall length of the device, which requires the surgeon's working area to be as large as possible. This is inconsistent with the requirement.
【0005】[0005]
【発明が解決しようとする課題】従って、本発明の課題
は、検眼鏡検査用レンズにより形成された中間像の像ア
ライメントを行い、観察光路を交換すると共に、手術用
顕微鏡を変形する必要なく、手術用顕微鏡を従来通りに
使用できるようにするのみならず、選択的に検眼鏡とし
ても使用できるようにする手術用顕微鏡の検眼鏡検査用
アダプタを提供することである。そこで、この検眼鏡検
査用アダプタは手術用顕微鏡により中間像を像誤差なく
観察できるようにするものでなければならない。さら
に、このアダプタを使用して共同観察者も立体観察を行
うことが可能でなければならず、その際には、双眼鏡胴
を1つ追加するだけで良い。SUMMARY OF THE INVENTION Accordingly, an object of the present invention is to perform image alignment of an intermediate image formed by an ophthalmoscopic examination lens, replace an observation optical path, and eliminate the need to deform an operating microscope. An object of the present invention is to provide an ophthalmoscopic examination adapter for a surgical microscope that enables not only a surgical microscope to be used as usual but also a selective use as an ophthalmoscope. Thus, the ophthalmoscopic examination adapter must be capable of observing an intermediate image with an operating microscope without image errors. Furthermore, the co-observer must be able to perform stereoscopic observation using this adapter, in which case only one additional binocular torso is required.
【0006】[0006]
【課題を解決するための手段】上記の課題は、以下の手
段により解決される。本発明による検眼鏡検査用アダプ
タの中には、検眼鏡検査用レンズ又は検眼鏡検査用対物
レンズにより第1の中間像平面に形成される中間像の所
望の像アライメントを行う光学系がある。さらに、この
光学系は観察光路の交換(ひとみ交換)も行う。像アラ
イメントとひとみ交換は第1の中間像平面のすぐ後の、
立体観察光路がまだ完全には分離せずに進んでいるが、
互いに関与はしていない場所で行われる。そこで、続い
て直立して左右も正しい像を従来の手術用顕微鏡により
立体的に正確に観察することができ、それに伴って、手
術用顕微鏡にさらに手を加える必要はない。さらに、ア
ダプタの中の、それぞれの光学系とアダプタの対物レン
ズ側端部との間には集束レンズがある。集束レンズは光
軸に沿って摺動自在である。このレンズによって、眼の
関心部分への焦点合わせを行うのである。従って、本発
明によるアダプタでは、本来の手術用顕微鏡で何らかの
変更を行う必要なく、焦点合わせができる。そのため、
使用に際しては、手術用顕微鏡を使用する観察方式と、
検眼鏡検査用アダプタを装着した手術用顕微鏡を使用す
る観察方式とを迅速に切換えることができ、観察方式を
切換えるたびに手術用顕微鏡で時間のかかる焦点合わせ
をし直す必要もない。本発明によるアダプタに適切な旋
回装置を設ければ、観察方式の迅速な切換えを実現する
ことができる。また、本発明によるアダプタを装着した
ときも、患者の眼と観察者のひとみとの間の動作距離は
一定である。従って、このアダプタは従来のそれぞれの
手術用顕微鏡に多様に使用することができる。そのた
め、別の人物が共同観察するときには、同様のアダプタ
を1つ使用するだけで良い。その場合、共同観察者は追
加の双眼鏡胴と、共通の主対物レンズとを経て観察を行
う。像アライメントとひとみ交換は、2つの視野レンズ
と、トリプレットとから構成される光学構造、もしくは
本発明によるアダプタの中に対応して配置されている直
視反転プリズムにより行われる。Means for Solving the Problems The above-mentioned problem is solved by the following means.
Resolved by steps . Among the ophthalmoscopic inspection adapters according to the present invention, there is an optical system for performing a desired image alignment of an intermediate image formed on the first intermediate image plane by the ophthalmoscopic inspection lens or the ophthalmoscopic inspection objective. Further, this optical system also exchanges the observation optical path (pupil exchange). Image alignment and pupil exchange are performed immediately after the first intermediate image plane,
Although the stereoscopic optical path is still progressing without complete separation,
It takes place where they are not involved. Therefore, the right and left images can be observed three-dimensionally and accurately with a conventional surgical microscope, and there is no need to further modify the surgical microscope. Furthermore, there is a focusing lens in the adapter between each optical system and the end of the adapter on the objective lens side. The focusing lens is slidable along the optical axis. The lens focuses on the part of interest of the eye. Thus, with the adapter according to the invention, focusing can be performed without having to make any changes in the original operating microscope. for that reason,
When using, observation method using a surgical microscope,
It is possible to quickly switch between an observation method using an operating microscope equipped with an ophthalmoscopic examination adapter, and it is not necessary to perform time-consuming refocusing on the operating microscope every time the observation method is changed. Providing the adapter according to the invention with a suitable swivel device allows a quick switching of the observation method. Also, when the adapter according to the present invention is mounted, the working distance between the patient's eye and the observer's pupil is constant. Thus, the adapter can be used in a variety of conventional surgical microscopes. Therefore, when another person performs joint observation, only one similar adapter needs to be used. In that case, the co-observer views via an additional binocular torso and a common main objective. Image alignment and pupil exchange are performed by an optical structure composed of two field lenses and a triplet, or a direct-view reversing prism correspondingly arranged in an adapter according to the invention.
【0007】[0007]
【実施例】添付の図面の図1から図4を参照して本発明
の2つの実施例をさらに詳細に説明する。図1には、手
術用顕微鏡13が示されており、その主対物レンズ5
a,5bの前には本発明による検眼鏡検査用アダプタ1
が配置されている。このアダプタの内部には、像のアラ
イメントとひとみ交換のための光学系14が取付けられ
ている。検眼鏡検査用アダプタ1は、眼2に向いた側
に、第1の中間像平面ZE1に観察すべき眼底3の上下
左右反転像を形成する検眼鏡検査用レンズ8を有する。
この像は、後続する光学系14、図1の実施例ではレン
ズ構造を経てアライメントされ、上下左右を元に戻した
形で第2の中間像平面ZE2に結像される。中間像平面
ZE2の像は本来の手術用顕微鏡13により観察され
る。この手術用顕微鏡13は従来通りの構成である。す
なわち、共通の主対物レンズ5a,5bの背後には、倍
率切換え装置6a,6bと、2本の別個の光路に対応す
る鏡胴レンズ16a,16b及び反転プリズム7a,7
bが配置されている。双眼鏡胴4a,4bによって立体
的観察が可能になる。2つの観察光路に対して1つの共
通の主対物レンズ5a,5bを使用することは、本発明
に特有のものではない。2つの観察光路のそれぞれにつ
いて別々の対物レンズを設けることも可能であろう。BRIEF DESCRIPTION OF THE DRAWINGS Two embodiments of the present invention will be described in more detail with reference to FIGS. FIG. 1 shows an operating microscope 13 whose main objective lens 5
Before a and 5b, the ophthalmoscopic examination adapter 1 according to the present invention
Is arranged. An optical system 14 for image alignment and pupil exchange is mounted inside the adapter. The ophthalmoscopic inspection adapter 1 has, on the side facing the eye 2, an ophthalmoscopic inspection lens 8 for forming a vertically and horizontally inverted image of the fundus 3 to be observed on the first intermediate image plane ZE1.
This image is aligned via a subsequent optical system 14, in the embodiment of FIG. 1, through a lens structure, and is imaged on the second intermediate image plane ZE2 with the top, bottom, left and right reversed. The image on the intermediate image plane ZE2 is observed by the original operating microscope 13. The surgical microscope 13 has a conventional configuration. That is, behind the common main objective lenses 5a and 5b, magnification switching devices 6a and 6b, lens barrel lenses 16a and 16b corresponding to two separate optical paths, and inversion prisms 7a and 7 are provided.
b is arranged. The binocular barrels 4a and 4b enable stereoscopic observation. The use of one common main objective lens 5a, 5b for the two viewing paths is not unique to the present invention. It would also be possible to provide a separate objective for each of the two viewing paths.
【0008】さらに、図1に示すレンズ15は光学系1
4とアダプタ1の対物レンズ側端部との間に、光軸に沿
って摺動自在に配置されている。このレンズ15を使用
すると、本来の手術用顕微鏡13を何らかの形で変形す
る必要なく眼2の関心ある一部分に焦点合わせすること
が可能になる。従って、適切な旋回手段(図1には図示
せず)を利用すれば、手術用顕微鏡を従来通りの方法の
みならず、眼の外科手術の場合にも使用できるのであ
る。Further, the lens 15 shown in FIG.
4 and slidably disposed along the optical axis between the adapter 1 and the end of the adapter 1 on the objective lens side. The use of this lens 15 makes it possible to focus the original operating microscope 13 on the interesting part of the eye 2 without having to deform it in any way. Thus, with the use of suitable swiveling means (not shown in FIG. 1), the operating microscope can be used not only in the conventional manner but also in the case of eye surgery.
【0009】図2には、像のアライメント及びひとみ交
換のための光学系を含む本発明による検眼鏡検査用アダ
プタ1を示す。この実施例では、光学系は複数個のレン
ズ9a,10,11,12,9bを有する光学構造とし
て構成されている。アダプタ1の患者の眼に向いた側に
位置する検眼鏡検査用レンズ8は、観察している眼の一
部分の上下左右反転像を中間像平面ZE1に形成する。
この像は後続する5つのレンズ9a,10,11,1
2,9bを経てアライメントされ且つ左右を元通りに直
した状態で実物大で中間像平面ZE2に結像される。実
質的な結像は、正の屈折力を有する2個のレンズL3:
10,L1:12と、それらのレンズの間に配置されて
いる、負の屈折力を有するレンズL2:11とから構成
されるトリプレットにより行われる。残る2つのレンズ
A1:9a;A2:9bは視野レンズとして作用する。
光軸に沿って摺動自在であるレンズ15により、アダプ
タ1の内部で、眼の関心ある部分への焦点合わせが行わ
れる。中間像平面ZE2に形成された像は手術用顕微鏡
13により観察される。この光学構造を対応するアダプ
タの中にアダプタの全長をさほど伸ばさずに取付けるこ
とができるように、光学構造の個々の要素を直線上に相
前後して並べるのではなく、結像光路が方向転換する状
態で要素をアダプタの内部に配列させることが可能であ
る。FIG. 2 shows an ophthalmoscopic examination adapter 1 according to the present invention, including an optical system for image alignment and pupil replacement. In this embodiment, the optical system is configured as an optical structure having a plurality of lenses 9a, 10, 11, 12, 9b. The ophthalmoscopic lens 8 located on the side of the adapter 1 facing the patient's eye forms an inverted image of the part of the eye being observed on the intermediate image plane ZE1.
This image consists of the following five lenses 9a, 10, 11, 1
The images are aligned on the intermediate image plane ZE2 in the actual size in a state where the alignment has been performed through 2 and 9b and the right and left sides have been restored. Substantial imaging consists of two lenses L3 having positive refractive power :
10, L1: 12 and a triplet composed of lenses L2: 11 having a negative refractive power , arranged between the lenses. The remaining two lenses A1: 9a; A2: 9b function as field lenses.
A lens 15 that is slidable along the optical axis provides focusing within the adapter 1 to a portion of interest of the eye. The image formed on the intermediate image plane ZE2 is observed by the operating microscope 13. Instead of arranging the individual elements of the optical structure one after the other so that the optical structure can be mounted in the corresponding adapter without extending the entire length of the adapter, the imaging optical path is turned. It is possible to arrange the elements inside the adapter in such a state.
【0010】トリプレットL1:f1 ;L2:f2 ;L
3:f3 と、2つの視野レンズA1:9a;A2:9b
とから構成され、436nm,480nm,546nm
及び644nmの可視スペクトル範囲の波長について色
誤差修正されているレンズ系の場合、主対物レンズの焦
点距離が200mmであるときに実現可能な焦点距離比
は、 f3 :f1 =〔0.9・・・2.0〕 −f2 :f1 =〔0.4・・・0.6〕 の範囲内にある。The triplet L1: f 1 ; L2: f 2 ; L
3: a f 3, 2 two field lenses A1: 9a; A2: 9b
436 nm, 480 nm, 546 nm
And a lens system in which the color error is corrected for wavelengths in the visible spectral range of 644 nm, the feasible focal length ratio when the focal length of the main objective lens is 200 mm is f 3 : f 1 = [0.9 ... 2.0] −f 2 : f 1 = [0.4... 0.6].
【0011】この範囲内で、手術用顕微鏡の下方で可能
な限り大きな動作視野を与える検眼鏡検査用アダプタの
許容長さが得られる。その上に、相応して高い光学構造
の結像画質も保証される。[0011] Within this range, an acceptable length of the ophthalmoscopic examination adapter is obtained which gives the largest possible field of view under the operating microscope. In addition, a correspondingly high image quality of the optical structure is ensured.
【0012】表1〜表3には、実施例を付随する数値と
共に示す。それらの数値の個々のパラメータを変更して
も、それに匹敵するほど良い結像効果が得られる。 Tables 1 to 3 show examples together with accompanying numerical values. Even if individual parameters of these numerical values are changed, an imaging effect comparable to that can be obtained.
【0013】[0013]
【表1】 [Table 1]
【0014】[0014]
【表2】 [Table 2]
【0015】[0015]
【表3】 [Table 3]
【0016】図3は、図2の光学構造の断面図を示す。
尚、表1〜表3の数値例で使用されている符号に対応し
て、ri はレンズ半径,di はレンズの厚さ、di はレ
ンズ間隔をそれぞれ表している。FIG. 3 shows a cross-sectional view of the optical structure of FIG.
Incidentally, in response to the code used in the numerical example of Table 1 to Table 3, r i is the lens radius, d i is the lens thickness, d i represents the distance between lenses, respectively.
【0017】図4は、第2の実施例として、直視反転プ
リズム系17の形態をとって構成されている像アライメ
ント及びひとみ交換のための光学系を含む本発明による
アダプタ1を示す。検眼鏡検査用レンズ8により形成さ
れた眼底又は眼底の付近の眼の水晶体領域の中間像は、
屋根形縁部をもつ直視シュミット−ペッヒャンプリズム
17を経て第1の中間像平面ZE1のすぐ背後にアライ
メントされ、観察光路は交換される。反転プリズム17
を、立体観察光路がまだ関与していないこの場所に配置
すると、総光路はこの箇所では最も狭い広がりしかもた
ないので、反転プリズム17、すなわち、本発明による
アダプタ1を非常にコンパクトに構成することができる
のである。さらに、本発明によるアダプタ1おいては、
反転プリズム17とアダプタの対物レンズ側端部との間
に集束レンズ15が配置されている。この集束レンズ1
5は光軸に沿って摺動自在であり、眼の関心部分への集
束のために利用される。FIG. 4 shows, as a second embodiment, an adapter 1 according to the present invention including an optical system for image alignment and pupil exchange configured in the form of a direct-view reversing prism system 17. The intermediate image of the fundus or the lens area of the eye near the fundus formed by the ophthalmoscope lens 8 is
Aligned directly behind the first intermediate image plane ZE1 via a direct-view Schmidt-Pechhan prism 17 with a roof-shaped edge, the observation light path is exchanged. Inverting prism 17
Is placed in this location where the stereoscopic viewing optical path is not yet involved, the inverting prism 17, ie the adapter 1 according to the invention, is made very compact, since the total optical path only has the narrowest spread at this location. You can do it. Furthermore, in the adapter 1 according to the present invention,
The focusing lens 15 is arranged between the reversing prism 17 and the end of the adapter on the objective lens side. This focusing lens 1
5 is slidable along the optical axis and is used for focusing on the interested part of the eye.
【図1】像アライメント及びひとみ交換のための光学系
がレンズ構造として構成されている本発明による検眼鏡
検査用アダプタを含む手術用顕微鏡を示す図。FIG. 1 shows a surgical microscope including an ophthalmoscopic examination adapter according to the invention in which the optical system for image alignment and pupil exchange is configured as a lens structure.
【図2】対応するレンズ構造を伴う図1の本発明による
検眼鏡検査用アダプタを示す図。2 shows the ophthalmoscopic examination adapter according to the invention of FIG. 1 with a corresponding lens structure.
【図3】付随するレンズ半径、レンズ厚さ及びレンズ間
隔を記入した図2のレンズ構造の断面図。FIG. 3 is a cross-sectional view of the lens structure of FIG. 2 with accompanying lens radius, lens thickness, and lens spacing.
【図4】像アライメント及びひとみ交換のための直視反
転プリズムを含む本発明による検眼鏡検査用アダプタを
示す図。FIG. 4 shows an ophthalmoscopic examination adapter according to the present invention including a direct-view reversing prism for image alignment and pupil replacement.
1 検眼鏡検査用アダプタ 4a、4b 双眼鏡胴 5a,5b 主対物レンズ 8 検眼用レンズ 9a,9b,10,11,12 レンズ 13 手術用顕微鏡 14 光学系 15 レンズ 17 直視反転レンズ DESCRIPTION OF SYMBOLS 1 Ophthalmoscope inspection adapter 4a, 4b Binocular torso 5a, 5b Main objective lens 8 Ophthalmic lens 9a, 9b, 10, 11, 12 lens 13 Surgical microscope 14 Optical system 15 Lens 17 Direct-view reversing lens
───────────────────────────────────────────────────── フロントページの続き (72)発明者 ユルゲン・リーゲル ドイツ連邦共和国 7082 オーベルコヒ ェン・ジルヒャヴェーク・12 (56)参考文献 特開 平2−230210(JP,A) 特開 平2−160209(JP,A) 特開 昭61−269108(JP,A) 特開 昭57−84038(JP,A) 特開 昭54−62691(JP,A) 特開 昭55−110532(JP,A) 特開 平1−320051(JP,A) 独国特許出願公開3539009(DE,A 1) 米国特許4786161(US,A) (58)調査した分野(Int.Cl.7,DB名) A61B 3/00 - 3/16 G02B 21/00 - 21/36 EPAT(QUESTEL) WPI/L(QUESTEL)──────────────────────────────────────────────────続 き Continued on the front page (72) Inventor Jürgen Riegel 7082 Oberkochen Jirchavek 12 (56) References JP-A-2-230210 (JP, A) JP-A 2-160209 (JP) JP-A-61-269108 (JP, A) JP-A-57-84038 (JP, A) JP-A-54-62691 (JP, A) JP-A-55-110532 (JP, A) 1-320051 (JP, A) German Patent Application Publication No. 3539009 (DE, A1) US Patent 4,786,161 (US, A) (58) Fields investigated (Int. Cl. 7 , DB name) A61B 3 / 00-3 / 16 G02B 21/00-21/36 EPAT (QUESTEL) WPI / L (QUESTEL)
Claims (5)
用顕微鏡のための検眼鏡アダプタであって、前記顕微鏡
は主対物レンズとこの主対物レンズの背後で空間的に分
離する少なくとも1対の立体観察光路を有し、前記アダ
プタは、 アイフェース端から前記顕微鏡側レンズ端まで延びる光
軸と、 前記アイフェース端に近接して配置され、眼の前記領域
に関して上下左右に反転された中間像を中間像平面に生
成するための、少なくとも1個の検眼鏡検査用レンズ
と、 前記立体観察光路が未だ空間的に分離していない前記中
間像平面の直後に配置され、前記中間像を上下左右に再
反転して正常な画像に戻す光学手段と、 前記光軸に沿って、前記光学手段と前記レンズ端の間で
移動可能に配置され、観察される眼の領域の焦点を調整
するレンズ手段と、 を有した検眼鏡検査用アダプタ。 1. An operation for observing a fundus or a crystalline lens region of an eye.
An ophthalmoscope adapter for a microscope
Is spatially separated from the main objective lens behind this main objective lens.
At least one pair of stereoscopic observation optical paths separated from each other;
The light that extends from the eye face end to the microscope-side lens end
An axis and said area of the eye, located proximate said eye face end
To the intermediate image plane.
At least one ophthalmoscopic lens for forming
And wherein the stereoscopic observation optical path is not yet spatially separated.
The intermediate image is located immediately after the intermediate image plane and
Optical means for inverting and returning to a normal image, along the optical axis, between the optical means and the lens end
Moveably positioned to adjust the focus of the observed eye area
An ophthalmoscopic examination adapter comprising:
用顕微鏡のための検眼鏡アダプタであって、前記顕微鏡
は主対物レンズとこの主対物レンズの背後で空間的に分
離する少なくとも1対の立体観察光路を有し、前記アダ
プタは、 アイフェース端から前記顕微鏡側レンズ端まで延びる光
軸と、 前記アイフェース端に近接して配置され、眼の前記領域
に関して上下左右に反転された中間像を第1の中間像平
面に生成するための、少なくとも1個の検眼鏡検査用レ
ンズと、 前記立体観察光路が未だ空間的に分離していない前記第
1の中間像平面の直後に配置され、前記中間像を上下左
右に反転し、この上下左右の反転が修正された画像を前
記顕微鏡により観察される第2画像平面に投影する光学
手段と、 前記光軸に沿って、前記光学手段と前記レンズ端の間で
移動可能に配置され、観察される眼の領域の焦点を調整
するレンズ手段と、 を有した検眼鏡検査用アダプタ。 2. An operation for observing a fundus or a lens area of an eye.
An ophthalmoscope adapter for a microscope
Is spatially separated from the main objective lens behind this main objective lens.
At least one pair of stereoscopic observation optical paths separated from each other;
The light that extends from the eye face end to the microscope-side lens end
An axis and said area of the eye, located proximate said eye face end
With respect to the first intermediate image plane.
At least one ophthalmoscopic examination laser to generate on the surface
Lens and the 3D observation optical path not yet spatially separated.
1 is located immediately after the intermediate image plane, and the intermediate image is
Flip to the right and move the image with this upside down
Optics to project onto a second image plane viewed by the microscope
Means , along the optical axis, between the optical means and the lens end.
Moveably positioned to adjust the focus of the observed eye area
An ophthalmoscopic examination adapter comprising:
テムを有しているこ とを特徴とする請求項1または請求
項2記載のアダプタ。 3. The optical system according to claim 1, wherein the optical means is a direct-view inversion prism system.
Claim 1 or claim characterized that you have Temu
Item 2. The adapter according to Item 2.
のレンズに挟まれた負の屈折力を示す一つのレンズを含
むトリプレットであることを特徴とする請求項1または
請求項2記載のアダプタ。 4. The optical system according to claim 1, wherein said optical means has two positive refractive powers.
Including one lens with negative refractive power sandwiched between
Or a triplet.
The adapter according to claim 2.
視反転作用を成すことを特徴とする請求項1または請求
項2記載のアダプタ。 5. The optical device according to claim 1, wherein said optical means has a plurality of reflecting surfaces.
2. The method according to claim 1, wherein a visual reversal effect is achieved.
Item 2. The adapter according to Item 2.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE4114646A DE4114646C2 (en) | 1991-05-04 | 1991-05-04 | Ophthalmoscope attachment for a surgical microscope |
DE4114646.8 | 1991-05-04 |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH05130974A JPH05130974A (en) | 1993-05-28 |
JP3208499B2 true JP3208499B2 (en) | 2001-09-10 |
Family
ID=6431019
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP09016792A Expired - Fee Related JP3208499B2 (en) | 1991-05-04 | 1992-03-17 | Ophthalmoscopic examination adapter for surgical microscope |
Country Status (6)
Country | Link |
---|---|
JP (1) | JP3208499B2 (en) |
CH (1) | CH683875A5 (en) |
DE (1) | DE4114646C2 (en) |
FR (1) | FR2677461B1 (en) |
GB (1) | GB2255651A (en) |
IT (1) | IT1254344B (en) |
Families Citing this family (22)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5735290A (en) | 1993-02-22 | 1998-04-07 | Heartport, Inc. | Methods and systems for performing thoracoscopic coronary bypass and other procedures |
US6494211B1 (en) | 1993-02-22 | 2002-12-17 | Hearport, Inc. | Device and methods for port-access multivessel coronary artery bypass surgery |
CH689968A5 (en) * | 1993-07-30 | 2000-02-29 | Zeiss Carl Fa | Monitoring and / or documentation device with upstream endoscope and method for its operation. |
US5588949A (en) * | 1993-10-08 | 1996-12-31 | Heartport, Inc. | Stereoscopic percutaneous visualization system |
US5957832A (en) * | 1993-10-08 | 1999-09-28 | Heartport, Inc. | Stereoscopic percutaneous visualization system |
DE10038133A1 (en) | 2000-08-04 | 2002-02-14 | Zeiss Carl Jena Gmbh | Optical arrangement for generating stereoscopic images |
WO2002027379A2 (en) * | 2000-09-26 | 2002-04-04 | Carl Zeiss | Image reversion system, additional ophthalmoscopy module and operational microscope |
DE10140402B4 (en) | 2000-09-26 | 2012-08-30 | Carl Zeiss Meditec Ag | Image inversion system, ophthalmoscopy attachment module and surgical microscope |
DE10332603B4 (en) * | 2003-07-17 | 2006-04-06 | Leica Microsystems (Schweiz) Ag | stereomicroscope |
DE10332602B3 (en) * | 2003-07-17 | 2005-01-05 | Leica Microsystems (Schweiz) Ag | Stereo optical microscope for intraocular surgery has main objective followed by magnification system with perpendicualr optical axis |
US7423807B2 (en) | 2003-07-17 | 2008-09-09 | Leica Microsystems (Schweiz) Ag | Ophthalmoscopic stereomicroscope with correction component |
DE10336475B9 (en) | 2003-08-08 | 2006-09-07 | Carl Zeiss | microscopy system |
DE102004050893B4 (en) * | 2003-10-31 | 2015-05-21 | Carl Zeiss Meditec Ag | Tube with two switchable planar optical elements for optional beam exchange and image reversal for a microscope and microscope |
DE102004016946B4 (en) * | 2004-04-06 | 2007-09-20 | Carl Zeiss | Ophthalmoscopy attachment for a surgical microscope and surgical microscope |
DE102005040471B4 (en) * | 2005-08-26 | 2007-06-21 | Leica Microsystems (Schweiz) Ag | microscope |
ES2285949B1 (en) | 2006-12-29 | 2009-03-16 | Thyssenkrupp Norte, S.A. | SECURITY DEVICE FOR MOBILE RANGE. |
EP1985227B1 (en) | 2007-04-27 | 2012-11-21 | Haag-Streit Ag | Optical component for a stereo microscope |
EP2143729A1 (en) | 2008-07-07 | 2010-01-13 | Hyglos Invest GmbH | New enzymatic active enzyme against Clostridium |
DE102009058792B3 (en) | 2009-12-18 | 2011-09-01 | Carl Zeiss Surgical Gmbh | Optical observation device for observing an eye |
DE102010001853B4 (en) | 2010-02-11 | 2012-05-31 | Leica Microsystems (Schweiz) Ag | Attachment module for a microscope for observing the eye fundus |
DE102017121085C5 (en) | 2017-09-12 | 2025-01-23 | Carl Zeiss Meditec Ag | eye surgery visualization system |
EP3682283A1 (en) * | 2017-12-19 | 2020-07-22 | Alcon Inc. | Ophthalmic surgical microscope image inverter |
Family Cites Families (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE2744707C3 (en) * | 1977-10-05 | 1980-07-24 | Fa. Carl Zeiss, 7920 Heidenheim | Ophthalmological device for stereoscopic examination and photographic fundus |
DE3507458A1 (en) * | 1985-03-02 | 1986-09-04 | Oculus-Optikgeräte GmbH, 6330 Wetzlar | STEREOMICROSCOPE FOR OPERATIONS |
DE3528356A1 (en) * | 1985-08-07 | 1987-02-19 | Zeiss Carl Fa | DEVICE FOR EXAMINATION AND SURGERY OF THE FRONT AND REAR EYE SECTIONS |
DE3539009A1 (en) * | 1985-11-02 | 1987-05-07 | Moeller J D Optik | Attachment for a stereoscopic surgical microscope for ophthalmic surgery |
JP2642416B2 (en) * | 1988-06-24 | 1997-08-20 | 株式会社トプコン | Simultaneous stereoscopic fundus camera |
DE3826069C2 (en) * | 1988-07-30 | 1997-04-24 | Oculus Optikgeraete Gmbh | Prism system for an ophthalmoscopic stereomicroscope |
DE8902035U1 (en) * | 1989-02-21 | 1989-03-30 | J.D. Möller Optische Werke GmbH, 2000 Wedel | Stereoscopic surgical microscope |
JP2927445B2 (en) * | 1989-04-14 | 1999-07-28 | 株式会社トプコン | Stereoscopic fundus camera |
BE1003017A4 (en) * | 1990-03-29 | 1991-10-22 | K U Leuven Res & Dev Vzw | Apparatus for observing the eye comprising means for reversing the image. |
-
1991
- 1991-05-04 DE DE4114646A patent/DE4114646C2/en not_active Expired - Lifetime
-
1992
- 1992-03-13 CH CH802/92A patent/CH683875A5/en not_active IP Right Cessation
- 1992-03-17 JP JP09016792A patent/JP3208499B2/en not_active Expired - Fee Related
- 1992-04-13 GB GB9208125A patent/GB2255651A/en not_active Withdrawn
- 1992-04-30 FR FR9205365A patent/FR2677461B1/en not_active Expired - Lifetime
- 1992-04-30 IT ITRM920332A patent/IT1254344B/en active
Also Published As
Publication number | Publication date |
---|---|
DE4114646C2 (en) | 1996-02-29 |
JPH05130974A (en) | 1993-05-28 |
GB9208125D0 (en) | 1992-05-27 |
GB2255651A (en) | 1992-11-11 |
FR2677461B1 (en) | 1995-02-10 |
DE4114646A1 (en) | 1992-11-05 |
CH683875A5 (en) | 1994-05-31 |
ITRM920332A0 (en) | 1992-04-30 |
IT1254344B (en) | 1995-09-14 |
FR2677461A1 (en) | 1992-12-11 |
ITRM920332A1 (en) | 1993-10-30 |
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