Patents by Inventor Peter Y. Wong
Peter Y. Wong has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 10278712Abstract: A surgical device comprising: a handle assembly; a locking collar; and a set of replaceable bits that load into the handle assembly; wherein the locking collar is fully removable from the handle assembly, loads axially to a first position, and rotates between the first position and a second position; wherein, in the first position, the locking collar is free to be removed from the handle assembly and the replaceable bits are free to be loaded or unloaded from the handle assembly; wherein, in the second position, the locking collar is prevented from axial movement relative to the handle assembly and the replaceable bits are prevented from being received within, or removed from, the handle assembly; and the locking collar is guided to the first position and between the first position and the second position by a groove in the handle assembly mating with a member carried by the locking collar.Type: GrantFiled: November 28, 2016Date of Patent: May 7, 2019Assignee: Gyrus ACMI, Inc.Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Jesse Conrad
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Patent number: 9681914Abstract: A device comprising: a handpiece having one or more attachment ports; a tubeset having one or more attachment features for connecting the tubeset to the one or more attachment ports in the handpiece; a removable tip having an attachment arm for attaching to the one or more attachment ports in the handpiece; wherein the device comprises one or more of the following: the handpiece includes an attachment port that attaches the handpiece to an active lead and a return lead and the device is adapted to use only the active lead or both leads so that the device can switch between bi-polar energy and mono-polar energy; the tubeset has one or more fluid conduits that are in fluid communication with the removable tip, wherein the removable tip is located at a distal end of the device; and the handpiece connects to one or more electrical input lines; the tubeset connects to one or more fluid lines, and the removable tip is free of direct connection to both the one or more electrical input lines and the one or more fluidType: GrantFiled: November 17, 2014Date of Patent: June 20, 2017Assignee: Gyrus ACMI, Inc.Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Allen C. Palmer
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Patent number: 9662168Abstract: A device comprising: a handpiece having one or more attachment ports; a tubeset having one or more attachment features for connecting the tubeset to the one or more attachment ports in the handpiece; a removable tip having an attachment arm for attaching to the one or more attachment ports in the handpiece; wherein the device comprises one or more of the following: the handpiece includes an attachment port that attaches the handpiece to an active lead and a return lead and the device is adapted to use only the active lead or both leads so that the device can switch between bi-polar energy and mono-polar energy; the tubeset has one or more fluid conduits that are in fluid communication with the removable tip, wherein the removable tip is located at a distal end of the device; and the handpiece connects to one or more electrical input lines; the tubeset connects to one or more fluid lines, and the removable tip is free of direct connection to both the one or more electrical input lines and the one or more fluidType: GrantFiled: November 17, 2014Date of Patent: May 30, 2017Assignee: Gyrus ACMI, Inc.Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Allen C. Palmer
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Publication number: 20170071608Abstract: A surgical device comprising: a handle assembly; a locking collar; and a set of replaceable bits that load along an axis into the handle assembly; wherein the locking collar is fully removable from the handle assembly, the locking collar loads axially to a first position, and the locking collar rotates between the first position and a second position; wherein, in the first position, the locking collar is free to be axially removed from the handle assembly and the replaceable bits are free to be loaded or unloaded from the handle assembly; wherein, in the second position, the locking collar is prevented from axial movement relative to the handle assembly and the replaceable bits are prevented from being received within, or removed from, the handle assembly; and the locking collar is guided to the first position and between the first position and the second position by a groove in the handle assembly mating with a member carried by the locking collar.Type: ApplicationFiled: November 28, 2016Publication date: March 16, 2017Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Jesse Conrad
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Patent number: 9504478Abstract: A surgical device comprising a handle assembly comprising a drive shaft; a handle assembly adapter for connection to the handle assembly comprising a transmission shaft for connection to the drive shaft; and a nosepiece assembly for connection to the adapter and for securing the shaft of a working element to the transmission shaft; wherein the adapter and the nosepiece assembly each comprise a locking collar; wherein the adapter and the handle assembly each comprise a connector assembly comprising a housing comprising an opening; a collet sleeve disposed within the opening, connected to an input shaft, and comprising a lumen for receiving an output shaft; a locking element for locking and unlocking the output shaft to the collet sleeve; and a cam element movable between first and second positions such that movement of the locking collar causes the cam element to move between the first position and the second position.Type: GrantFiled: April 30, 2015Date of Patent: November 29, 2016Assignee: Gyrus ACMI , Inc.Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Jesse Conrad
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Patent number: 9414848Abstract: A surgical device comprising: a handle assembly; a locking collar; and a set of replaceable bits that load along an axis into the handle assembly; wherein the locking collar is fully removable from the handle assembly, the locking collar loads axially to a first position, and the locking collar rotates between the first position and a second position; wherein, in the first position, the locking collar is free to be axially removed from the handle assembly and the replaceable bits are free to be loaded or unloaded from the handle assembly; wherein, in the second position, the locking collar is prevented from axial movement relative to the handle assembly and the replaceable bits are prevented from being received within, or removed from, the handle assembly; and the locking collar is guided to the first position and between the first position and the second position by a groove in the handle assembly mating with a member carried by the locking collar.Type: GrantFiled: April 30, 2015Date of Patent: August 16, 2016Assignee: Gyrus ACMI, Inc.Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Jesse Conrad
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Publication number: 20150313612Abstract: A surgical device comprising: a handle assembly; a locking collar; and a set of replaceable bits that load along an axis into the handle assembly; wherein the locking collar is fully removable from the handle assembly, the locking collar loads axially to a first position, and the locking collar rotates between the first position and a second position; wherein, in the first position, the locking collar is free to be axially removed from the handle assembly and the replaceable bits are free to be loaded or unloaded from the handle assembly; wherein, in the second position, the locking collar is prevented from axial movement relative to the handle assembly and the replaceable bits are prevented from being received within, or removed from, the handle assembly; and the locking collar is guided to the first position and between the first position and the second position by a groove in the handle assembly mating with a member carried by the locking collar.Type: ApplicationFiled: April 30, 2015Publication date: November 5, 2015Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Jesse Conrad
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Publication number: 20150313610Abstract: A surgical device comprising: a handle assembly; a locking collar; and a set of replaceable bits that load along an axis into the handle assembly; wherein the locking collar is fully removable from the handle assembly, the locking collar loads axially to a first position, and the locking collar rotates between the first position and a second position; wherein, in the first position, the locking collar is free to be axially removed from the handle assembly and the replaceable bits are free to be loaded or unloaded from the handle assembly; wherein, in the second position, the locking collar is prevented from axial movement relative to the handle assembly and the replaceable bits are prevented from being received within, or removed from, the handle assembly; and the locking collar is guided to the first position and between the first position and the second position by a groove in the handle assembly mating with a member carried by the locking collar.Type: ApplicationFiled: April 30, 2015Publication date: November 5, 2015Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Jesse Conrad
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Publication number: 20150133922Abstract: A device comprising: a handpiece having one or more attachment ports; a tubeset having one or more attachment features for connecting the tubeset to the one or more attachment ports in the handpiece; a removable tip having an attachment arm for attaching to the one or more attachment ports in the handpiece; wherein the device comprises one or more of the following: the handpiece includes an attachment port that attaches the handpiece to an active lead and a return lead and the device is adapted to use only the active lead or both leads so that the device can switch between bi-polar energy and mono-polar energy; the tubeset has one or more fluid conduits that are in fluid communication with the removable tip, wherein the removable tip is located at a distal end of the device; and the handpiece connects to one or more electrical input lines; the tubeset connects to one or more fluid lines, and the removable tip is free of direct connection to both the one or more electrical input lines and the one or more fluidType: ApplicationFiled: November 17, 2014Publication date: May 14, 2015Applicant: Gyrus ACMI, Inc. d.b.a. Olympus Surgical Technologies AmericaInventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Allen C. Palmer
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Publication number: 20150073405Abstract: A device comprising: a handpiece having one or more attachment ports; a tubeset having one or more attachment features for connecting the tubeset to the one or more attachment ports in the handpiece; a removable tip having an attachment arm for attaching to the one or more attachment ports in the handpiece; wherein the device comprises one or more of the following: the handpiece includes an attachment port that attaches the handpiece to an active lead and a return lead and the device is adapted to use only the active lead or both leads so that the device can switch between bi-polar energy and mono-polar energy; the tubeset has one or more fluid conduits that are in fluid communication with the removable tip, wherein the removable tip is located at a distal end of the device; and the handpiece connects to one or more electrical input lines; the tubeset connects to one or more fluid lines, and the removable tip is free of direct connection to both the one or more electrical input lines and the one or more fluidType: ApplicationFiled: November 17, 2014Publication date: March 12, 2015Applicant: Gyrus ACMI, Inc. d.b.a. Olympus Surgical Technologies AmericaInventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Allen C. Palmer
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Patent number: 8920419Abstract: A device comprising: a handpiece having one or more attachment ports; a tubeset having one or more attachment features for connecting the tubeset to the one or more attachment ports in the handpiece; a removable tip having an attachment arm for attaching to the one or more attachment ports in the handpiece; wherein the device comprises one or more of the following: the handpiece includes an attachment port that attaches the handpiece to an active lead and a return lead and the device is adapted to use only the active lead or both leads so that the device can switch between bi-polar energy and mono-polar energy; the tubeset has one or more fluid conduits that are in fluid communication with the removable tip, wherein the removable tip is located at a distal end of the device; and the handpiece connects to one or more electrical input lines; the tubeset connects to one or more fluid lines, and the removable tip is free of direct connection to both the one or more electrical input lines and the one or more fluidType: GrantFiled: March 14, 2013Date of Patent: December 30, 2014Assignee: GYRUS ACMI, Inc.Inventors: Kevin C. Edwards, Jay A. Casey, Peter Y. Wong, Allen C. Palmer
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Patent number: 8725234Abstract: The present invention provides systems, devices, and methods employing fiber optic shape and position tracking. The systems, devices, and methods permit measurement of and continuous tracking of the shape and position of objects whose shape dynamically changes with time. Applications include tracking and monitoring of endoscopes for diagnostic and surgical procedures.Type: GrantFiled: June 18, 2012Date of Patent: May 13, 2014Assignees: Tufts University, The Governing Council of The University of Toronto, University Health NetworkInventors: Caroline G. L. Cao, Peter Y. Wong, Lothar Lilge, Paul Milgram
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Publication number: 20120259211Abstract: The present invention provides systems, devices, and methods employing fiber optic shape and position tracking. The systems, devices, and methods permit measurement of and continuous tracking of the shape and position of objects whose shape dynamically changes with time. Applications include tracking and monitoring of endoscopes for diagnostic and surgical procedures.Type: ApplicationFiled: June 18, 2012Publication date: October 11, 2012Applicants: TUFTS UNIVERSITY, THE GOVERNING COUNCIL OF THE UNIVERSITY OF TORONTO, UNIVERSITY HEALTH NETWORKInventors: Caroline G. L. Cao, Peter Y. Wong, Lothar Lilge, Paul Milgram
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Patent number: 8219180Abstract: The present invention provides systems, devices, and methods employing fiber optic shape and position tracking. The systems, devices, and methods permit measurement of and continuous tracking of the shape and position of objects whose shape dynamically changes with time. Applications include tracking and monitoring of endoscopes for diagnostic and surgical procedures.Type: GrantFiled: October 9, 2008Date of Patent: July 10, 2012Assignees: Tufts University, University Health Network, The Governing Council of the University of TorontoInventors: Caroline G. L. Cao, Peter Y. Wong, Lothar Lilge, Paul Milgram
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Publication number: 20110172519Abstract: The present invention provides systems, devices, and methods employing fiber optic shape and position tracking. The systems, devices, and methods permit measurement of and continuous tracking of the shape and position of objects whose shape dynamically changes with time. Applications include tracking and monitoring of endoscopes for diagnostic and surgical procedures.Type: ApplicationFiled: October 9, 2008Publication date: July 14, 2011Applicant: TUFTS UNIVERSITYInventors: Caroline G. L. Cao, Peter Y. Wong, Lothar Lilge, Paul Milgram
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Publication number: 20100003158Abstract: A vibratory powder consolidation process is provided in which a powder material is subjected to vibratory energy while under static compressive loading. The process provides rapid, full-density powder consolidation with minimum or no structural degradation.Type: ApplicationFiled: January 30, 2008Publication date: January 7, 2010Applicants: NORTHEASTERN UNIVERSITY, TUFTS UNIVERSITYInventors: Teiichi Ando, Ibrahim E. Gunduz, Peter Y. Wong, Charalabos C. Doumanidis
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Publication number: 20090298139Abstract: The present invention discloses a method for producing polymers in a microscale device. The system utilizes a symmetrically branched system of microchannels interconnecting a plurality of loading decks and re-action chambers. The fluid flow is manipulated by the placement of capillary check valves, mixing areas, and microcomb filters. The system provides for cascading enzymatic biosynthesis pathways wherein any variety of enzymes and reactants can be introduced into the system to produce a final product.Type: ApplicationFiled: February 27, 2007Publication date: December 3, 2009Inventors: Jin Zou, David L. Kaplan, Jin Zou, Peter Y. Wong, David L. Kaplan
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Publication number: 20080280360Abstract: The present invention provides a multilayer scaffold for tissue engineering. The scaffold comprises at least a first layer comprised of a polymer having a pattern of microchannels therein; and at least a second layer comprised of a polymer having a pattern of microchannels therein. The first and second layers are joined together (preferably by lamination) and the channels are connected for the circulation of fluid through the layers. The scaffold is coated with bacterial cellulose. The scaffold may further include a mammalian cell.Type: ApplicationFiled: October 12, 2005Publication date: November 13, 2008Applicant: TRUSTEES OF TUFTS COLLEGEInventors: David L. Kaplan, Peter Y. Wong