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US3835841A - Oblique view type endoscope - Google Patents

Oblique view type endoscope
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Publication number
US3835841A
US3835841AUS00365619AUS36561973AUS3835841AUS 3835841 AUS3835841 AUS 3835841AUS 00365619 AUS00365619 AUS 00365619AUS 36561973 AUS36561973 AUS 36561973AUS 3835841 AUS3835841 AUS 3835841A
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forceps
endoscope
distal end
opening
view
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US00365619A
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M Terada
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Olympus Corp
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Olympus Optical Co Ltd
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Abstract

An oblique view type endoscope whose distal end has an inclined end plane provided with a view window to bring a view field obliquely upward, wherein forceps is positioned on the upper side of the distal end to have the end of the forceps brought into the view field.

Description

United States Patent 11 1 1111 3,835,841
Terada Sept. 17, 1974 [54] OBLIQUE VIEW TYPE ENDOSCOPE 2,691,370 10/1954 Wallace 128/6 Inventor: a aa Tera a, Tokyo, Japan 2,936,753 5/1960 Storz 128/6 [73] Assignee: Olympus Optical Co., Ltd., Tokyo, FOREIGN PATENTS OR APPLICATIONS Japan 1,261,275 2/1968 Germany 128/6 [22] Filed: May 1973 Primary Examiner-Lucie H. Laudenslager 2 App]. 5 19 Attorney, Agent, or FirmFlynn & Frishauf 52 US. (:1. 128/5 [57] ABSTRACT 51 1111.01 A61b 1/12 An obllque vlew p endoscope whose distal end has [58] Field of Search 128/4, 5, 6 an inclined end Plane Provided with a view window to bring a view field obliquely upward, wherein forceps is [56] References Cited positioned on the upper side of the distal end to have UNITED STATES PATENTS the end of the forceps brought into the view field.
2,129,391 9/1938 Wappler 128/6 7 Claims, 2 Drawing Figures 1 OBLIQUE VIEW TYPE ENDOSCOPE BACKGROUND OF THE INVENTION This invention relates to an oblique view type endoscope provided with an opening through which a forceps is extended.
For special observation and treatment of an affected part in the abdominal cavity of living creatures by means of an endoscope, it is generally required easily to conduct the treatment member fitted to the tip of the forceps to the affected part and smoothly move the forceps.
Hitherto known are a forward view type endoscope wherein the forward surface of the distal end provided with a view window and forceps opening is positioned at right angles to the lengthwise axis of said distal end and a side view type endoscope wherein the view window and forceps opening are cut out in the side wall of the distal end.
The forward view type endoscope has the drawback that it is difficult to clearly observe the movement of the tip portion of the forceps in the abdominal cavity and conduct the treatment member fitted to the tip properly to an affected part therein. Further, the side view type endoscope requires the forceps to be inserted into the abdominal cavity by being bent through a large angle using a forceps raising mechanism and in consequence a great force to be used in moving the forceps, thus causing the end portion of the forceps to have the tendency to become readily bendable.
For the above reason, application of the forward view type endoscope is limited to those parts of the abdominal cavity such as the gullet and rectum which enables the treatment member fitted to the forceps end portion to be brought to the prescribed position with relative ease. On the other hand, the side view type endoscope is applied in the observation and treatment of an affected area in those parts of the abdominal cavity, for example, the stomach which occupies a large space. Therefore, it calls for troublesome work to use different types of endoscope depending on the parts of the abdominal cavity being examined.
SUMMARY OF THE INVENTION It is accordingly the object of this invention to provide an improved oblique view type endoscope which enables a treating member fitted to the end portion of forceps to be easily brought to an affected part in the abdominal cavity, permits the smooth movement of the forceps and moreover whose application is not limited with respect to the parts of the abdominal cavity being examined.
BRIEF DESCRIPTION OF THE DRAWING FIG. 1 is a side view, partly in section, of an oblique view type endoscope embodying this invention, where forceps is drawn out therefrom; and
FIG. 2 is a plan view of said endoscope where the forceps is retracted thereinto.
DETAILED DESCRIPTION OF THE INVENTION There will now be described the oblique view type endoscope of this invention by reference to the appended drawing.
Throughout the Figures, numeral 1 denotes the cylindrical body of an endoscope wherein a light guide, image guide, water and air supply tubes and a suction tube of water and air are arranged as already known and also a forceps channel is provided which receives aforceps 3 so as to permitit to slide therethrough. The endoscope 1 has adistal end 2 mounted at one end thereof, and the known control unit disposed at the other end. Thedistal end 2 has afront plane surface 4 which is inclined to the axis thereof at the prescribed angle, preferably 30 to 60 (about 45 in this embodiment). In the upper side wall of thedistal end 2 defining an obtuse angle with the inclined frontplane sur face 4 is formed a forceps opening 5 parallel with the axis of thedistal end 2 as shown in FIG. I. Thisopening 5 has an elliptic shape and has its forward end extended to the upper part of theinclined front surface 4 of thedistal end 2. To the lower part of theinclined front surface 4 is provided with a water-air delivery block 6 bored with awater port 6a andair port 6b so as to cause theseports 6a and 6b to face aview window 7 described later and forceps opening 5. In the inclinedfront plane surface 4 between the water-air delivery block 6 and theforceps opening 5 is formed aview window 7 with the central axis of the view field thereof set at right angles to theinclined plane 4. On both sides of theview window 7 are providedillumination windows 8a and 8b.
In thedistal end 2 are disposed, though not shown, a view optical system, illumination optical system and forceps raising device so as to take positions corresponding to theview window 7,illumination windows 8a and 8b andforceps opening 5, as well as to the image guide, light guide and forceps channel provided in the endoscope l.
The known forceps raising device is so arranged as to push a little obliquely upward theforceps 3 fitted at the tip with a treatment member (cutting cup in this ernbodiment) from the forceps opening 5 into theview window 7, and when not used, retract said forceps 3 back into thedistal end 2.
The control unit includes an operation mechanism for actuating the light guide, image guide and forceps raising device and a head for connecting the object lens, forceps opening, light guide, air and water tubes and exhaust or suction tube of water and air to the light source means and pump. The image guide is connected at the other end to the object lens and the light guide is connected at the other end to theillumination windows 8a and 8b facing the light source. The water and air delivery tubes and exhaust or suction tube of water and air are connected at the forward end to thewaterair delivery block 6 bored with thewater port 6a andair port 6b as well as to the forceps opening 5.
The oblique view type endoscope of this invention arranged as described above has theview window 7 cut out in thefront plane surface 4 of thedistal end 2 inclined to the axis thereof. Accordingly, the field of view offered by theview window 7 has its optical axis also inclined to the axis of the endoscope as illustrated in FIG. 1. The upper wall of thedistal end 2 defining an obtuse angle with theinclined end plane 4 is bored with the forceps opening 5, through which theforceps 3 is drawn out. Theforceps 3 has the forward end introduced into the field of view immediately after drawn out at a gently raised angle, attaining a smooth movement and rendering the forward end portion little liable to be bent. The aforementioned relationship between the field of view offered by theview window 7 and the extending direction of theforceps 3 enables the forreadily brought to an affected part in the abdominal cavity of living creatures, its movement therein to be easily observed, and further provides a prominently large latitude for the operation of the forceps in the view field. Like the prior art forward view type endoscope, therefore, the oblique view type endoscope of this invention can be effectively used for general purposes, namely, in the observation and/or treatment of an affected part not only in the relatively shallow sections but also in the deep sections of the abdominal cavity of living creatures such as the digestive system, gullet, duodenum, proving that application of said endoscope is not limited with respect to the parts of the abdominal cavity being examined.
Where theview window 7 of the endoscope of this invention has its surface soiled with, for example, the content of the stomach during examination to obstruct observation, then such contamination can be removed simply by ejecting water on the window surface from thewater port 6a through the water tube. If, in this case, the bottom end of the exhaust or suction tube orpipe 9 of water is previously connected to a vacuum pump, the wash water can be sucked out through thepipe 9. It is also possible to expel water particles still remaining on the surface of theview window 7 by introducing air into the air tube at the bottom end and ejecting the air on the window surface from theair port 6b.
What is claimed is:
1. An oblique view type endoscope comprising:
a distal end having a front end plane surface inclined to the longitudinal axis thereof;
a view window formed in the inclined front surface;
and
a forceps opening bored in the upper wall of the distal end portion defining an obtuse angle with the inclined front surface, said opening being disposed behind the view window in the direction of the insertion of said endoscope into a body portion, and one end of said opening extending to the inclined front surface to enable the end portion of the forceps to be brought into the view field of the view window.
2. The endoscope according to claim 1 wherein there is further provided a forceps adapted to be drawn out through the forceps opening at an obtuse included angle to the longitudinal axis of the distal end.
3. The endoscope according to claim 1 wherein the distal end further has at least one illumination window formed in the inclined end.
4. The endoscope according to claim 1 wherein the distal end further has water and air ports bored in the inclined front plane surface and a suction tube for water and air disposed in the forceps opening.
5. The endoscope according toclaim 4 wherein the illumination windows are positioned on both sides of the view window and the water and air ports are cut out in a block provided on the opposite side of the illumination windows to the forceps opening.
6. The endoscope according toclaim 4 wherein said water and air ports are disposed ahead of said forceps opening in said direction of insertion of said endoscope.
7. The endoscope according toclaim 3 wherein said at least one illumination window is disposed ahead of said forceps opening in said direction of insertion of said endoscope.

Claims (7)

US00365619A1973-05-311973-05-31Oblique view type endoscopeExpired - LifetimeUS3835841A (en)

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Cited By (27)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4433692A (en)1981-05-201984-02-28Olympus Optical Co., Ltd.Ultrasonic diagnosis device
US5667475A (en)*1993-11-291997-09-16Etb Endoskopische Technik Gmbh BerlinEndoscopic device
US5785645A (en)*1996-04-161998-07-28Synergetics, Inc.Beveled tip illuminator for microsurgery
US6176825B1 (en)*1998-06-222001-01-23Origin Medsystems, Inc.Cannula-based irrigation system and method
US6371909B1 (en)*1998-02-192002-04-16California Institute Of TechnologyApparatus and method for providing spherical viewing during endoscopic procedures
US6406425B1 (en)*1998-06-222002-06-18Origin MedasystemsCannula-based irrigation system and method
US6699185B2 (en)*1999-03-092004-03-02Karl Storz Gmbh & Co. KgMedical endoscopic instrument
US6752756B2 (en)1998-06-222004-06-22Origin Medsystems, Inc.Combined vessel dissection and transection device and method
US6830546B1 (en)1998-06-222004-12-14Origin Medsystems, Inc.Device and method for remote vessel ligation
US20060178560A1 (en)*2003-01-152006-08-10Usgi Medical, Inc.Endoluminal tool deployment system
US20060189845A1 (en)*2004-04-142006-08-24Usgi Medical Inc.Methods and apparaus for off-axis visualization
US7326178B1 (en)1998-06-222008-02-05Origin Medsystems, Inc.Vessel retraction device and method
US20080045859A1 (en)*2006-08-192008-02-21Fritsch Michael HDevices and Methods for In-Vivo Pathology Diagnosis
US20080051629A1 (en)*2003-07-292008-02-28Akira SugiyamaInternal Treatment Apparatus for a Patient and an Internal Treatment System for a Patient
US7476198B1 (en)1998-06-222009-01-13Maquet Cardiovascular, LlcCannula-based surgical instrument
US7918845B2 (en)2003-01-152011-04-05Usgi Medical, Inc.Endoluminal tool deployment system
US7938842B1 (en)1998-08-122011-05-10Maquet Cardiovascular LlcTissue dissector apparatus
US7955340B2 (en)1999-06-252011-06-07Usgi Medical, Inc.Apparatus and methods for forming and securing gastrointestinal tissue folds
US7981133B2 (en)1995-07-132011-07-19Maquet Cardiovascular, LlcTissue dissection method
US8216260B2 (en)2002-12-112012-07-10Usgi Medical, Inc.Apparatus and methods for forming and securing gastrointestinal tissue folds
US20150085092A1 (en)*2012-03-292015-03-26Panasonic Healthcare Co., Ltd.Surgery assistance device and surgery assistance program
US9265514B2 (en)2012-04-172016-02-23Miteas Ltd.Manipulator for grasping tissue
US20160324401A1 (en)*2009-06-172016-11-10Karl Storz Gmbh & Co. KgEndoscope-pipe
US10299770B2 (en)2006-06-012019-05-28Maquet Cardiovascular LlcEndoscopic vessel harvesting system components
US10507012B2 (en)2000-11-172019-12-17Maquet Cardiovascular LlcVein harvesting system and method
WO2021141834A1 (en)*2020-01-072021-07-15Gyrus Acmi, Inc. D/B/A Olympus Surgical Technologies AmericaEndoscope with low-profile distal section
US11206973B1 (en)*2020-09-142021-12-28Kenneth HillerLaryngoscope

Citations (4)

* Cited by examiner, † Cited by third party
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US2129391A (en)*1936-04-091938-09-06Wappler Frederick CharlesEndoscopic instrument
US2691370A (en)*1952-03-271954-10-12American Cystoscope Makers IncInstrument for heart surgery
US2936753A (en)*1956-06-281960-05-17Storz KarlEndoscope
DE1261275B (en)*1962-08-141968-02-15Karl Storz Edoscope for straight and side views

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2129391A (en)*1936-04-091938-09-06Wappler Frederick CharlesEndoscopic instrument
US2691370A (en)*1952-03-271954-10-12American Cystoscope Makers IncInstrument for heart surgery
US2936753A (en)*1956-06-281960-05-17Storz KarlEndoscope
DE1261275B (en)*1962-08-141968-02-15Karl Storz Edoscope for straight and side views

Cited By (47)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4433692A (en)1981-05-201984-02-28Olympus Optical Co., Ltd.Ultrasonic diagnosis device
US5667475A (en)*1993-11-291997-09-16Etb Endoskopische Technik Gmbh BerlinEndoscopic device
US7981133B2 (en)1995-07-132011-07-19Maquet Cardiovascular, LlcTissue dissection method
US5785645A (en)*1996-04-161998-07-28Synergetics, Inc.Beveled tip illuminator for microsurgery
US6371909B1 (en)*1998-02-192002-04-16California Institute Of TechnologyApparatus and method for providing spherical viewing during endoscopic procedures
US8241210B2 (en)1998-06-222012-08-14Maquet Cardiovascular LlcVessel retractor
US7476198B1 (en)1998-06-222009-01-13Maquet Cardiovascular, LlcCannula-based surgical instrument
US6752756B2 (en)1998-06-222004-06-22Origin Medsystems, Inc.Combined vessel dissection and transection device and method
US6830546B1 (en)1998-06-222004-12-14Origin Medsystems, Inc.Device and method for remote vessel ligation
US6176825B1 (en)*1998-06-222001-01-23Origin Medsystems, Inc.Cannula-based irrigation system and method
US6406425B1 (en)*1998-06-222002-06-18Origin MedasystemsCannula-based irrigation system and method
US7326178B1 (en)1998-06-222008-02-05Origin Medsystems, Inc.Vessel retraction device and method
US7972265B1 (en)1998-06-222011-07-05Maquet Cardiovascular, LlcDevice and method for remote vessel ligation
US7867163B2 (en)1998-06-222011-01-11Maquet Cardiovascular LlcInstrument and method for remotely manipulating a tissue structure
US9730782B2 (en)1998-08-122017-08-15Maquet Cardiovascular LlcVessel harvester
US8986335B2 (en)1998-08-122015-03-24Maquet Cardiovascular LlcTissue dissector apparatus and method
US7938842B1 (en)1998-08-122011-05-10Maquet Cardiovascular LlcTissue dissector apparatus
US9700398B2 (en)1998-08-122017-07-11Maquet Cardiovascular LlcVessel harvester
US8460331B2 (en)1998-08-122013-06-11Maquet Cardiovascular, LlcTissue dissector apparatus and method
US6699185B2 (en)*1999-03-092004-03-02Karl Storz Gmbh & Co. KgMedical endoscopic instrument
US7955340B2 (en)1999-06-252011-06-07Usgi Medical, Inc.Apparatus and methods for forming and securing gastrointestinal tissue folds
US10507012B2 (en)2000-11-172019-12-17Maquet Cardiovascular LlcVein harvesting system and method
US8216260B2 (en)2002-12-112012-07-10Usgi Medical, Inc.Apparatus and methods for forming and securing gastrointestinal tissue folds
US7918845B2 (en)2003-01-152011-04-05Usgi Medical, Inc.Endoluminal tool deployment system
US20060178560A1 (en)*2003-01-152006-08-10Usgi Medical, Inc.Endoluminal tool deployment system
US8753262B2 (en)*2003-07-292014-06-17Hoya CorporationInternal treatment apparatus having circumferential side holes
US20080051629A1 (en)*2003-07-292008-02-28Akira SugiyamaInternal Treatment Apparatus for a Patient and an Internal Treatment System for a Patient
US8277373B2 (en)*2004-04-142012-10-02Usgi Medical, Inc.Methods and apparaus for off-axis visualization
US20060189845A1 (en)*2004-04-142006-08-24Usgi Medical Inc.Methods and apparaus for off-axis visualization
US10299770B2 (en)2006-06-012019-05-28Maquet Cardiovascular LlcEndoscopic vessel harvesting system components
US11141055B2 (en)2006-06-012021-10-12Maquet Cardiovascular LlcEndoscopic vessel harvesting system components
US11134835B2 (en)2006-06-012021-10-05Maquet Cardiovascular LlcEndoscopic vessel harvesting system components
US20080045859A1 (en)*2006-08-192008-02-21Fritsch Michael HDevices and Methods for In-Vivo Pathology Diagnosis
US20160324401A1 (en)*2009-06-172016-11-10Karl Storz Gmbh & Co. KgEndoscope-pipe
US10624526B2 (en)*2009-06-172020-04-21Karl Storz Se & Co. KgEndoscope-pipe
US12357155B2 (en)2009-06-172025-07-15Karl Storz Se & Co. KgEndoscope-pipe
US20150085092A1 (en)*2012-03-292015-03-26Panasonic Healthcare Co., Ltd.Surgery assistance device and surgery assistance program
US10441302B2 (en)2012-04-172019-10-15A-Base Korlatolt Felelossegu TarsasagManipulator for grasping tissue
US9610088B2 (en)2012-04-172017-04-04A-Base Korlatolt Felelossegu TarsasagManipulator for grasping tissue
US9265514B2 (en)2012-04-172016-02-23Miteas Ltd.Manipulator for grasping tissue
US12207831B2 (en)2012-04-172025-01-28A-Base Korlatolt Felelossegu TarsasagManipulator for grasping tissue
US11633203B2 (en)2012-04-172023-04-25A-Base Korlatolt Felelossegu TarsasagManipulator for grasping tissue
US11786113B2 (en)2020-01-072023-10-17Gyrus Acmi, Inc.Endoscope with low-profile distal section
WO2021141834A1 (en)*2020-01-072021-07-15Gyrus Acmi, Inc. D/B/A Olympus Surgical Technologies AmericaEndoscope with low-profile distal section
USD986416S1 (en)2020-09-142023-05-16Kenneth HillerLaryngoscope
US11206973B1 (en)*2020-09-142021-12-28Kenneth HillerLaryngoscope
USD1068073S1 (en)2020-09-142025-03-25Kenneth HillerLaryngoscope

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