IP Library Assignment 053877/0679
Patent Assignment
Reel/Frame 053877/0679

Merger

Recorded: 2020-09-24 Pages: 13
Assignor
OPTIMEDICA CORPORATION
Executed: 2019-12-30
Assignee
AMO DEVELOPMENT, LLC
1700 E. ST. ANDREW PLACE, SANTA ANA, CALIFORNIA, 92705
Covered Properties (193)
Patterned Laser Treatment of the Retina
Patent: 7,766,903 →
Application: 10/745,954 →
Publication: US US20060100677A1
Ophthalmic lens assembly utilizing replaceable contact element
Application: 11/166,660 →
Publication: US US20050284774A1
Separate computing device for medical device with computing capabilities
Application: 11/717,505 →
Publication: US US20070255119A1
Apparatus for Creating Incisions to Improve Intraocular Lens Placement
Patent: 8,518,026 →
Application: 12/048,182 →
Publication: US US20080281413A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Application: 12/048,185 →
Publication: US US20090012507A1
Method and Apparatus for Creating Ocular Surgical and Relaxing Incisions
Patent: 9,233,023 →
Application: 12/048,186 →
Publication: US US20080281303A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Patent: 8,968,375 →
Application: 12/702,242 →
Publication: US US20100137850A1
Method for Creating Incisions to Improve Intraocular Lens Placement
Patent: 9,364,317 →
Application: 12/703,687 →
Publication: US US20100137983A1
Method For Creating Incisions To Improve Intraocular Lens Placement
Patent: 8,657,810 →
Application: 12/703,689 →
Publication: US US20100137982A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Patent: 9,402,715 →
Application: 12/861,798 →
Publication: US US20110184392A1
Method for Laser Capsulotomy and Lens Conditioning
Application: 12/978,367 →
Publication: US US20110184395A1
Method and System for Modifying Eye Tissue and Intraocular Lenses
Patent: 9,833,358 →
Application: 12/987,069 →
Publication: US US20110172649A1
Method and Apparatus for Automated Placement of Scanned Laser Capsulorhexis Incisions
Patent: 8,845,625 →
Application: 13/011,807 →
Publication: US US20110202046A1
System and Method for Plasma-Mediated Modification of Tissue
Patent: 9,278,028 →
Application: 13/023,483 →
Publication: US US20110196350A1
Patient Interface for Ophthalmologic Diagnostic and Interventional Procedures
Patent: 9,351,879 →
Application: 13/225,373 →
Publication: US US20120078241A1
Method and Apparatus for Creating Ocular Surgical and Relaxing Incisions
Patent: 9,233,024 →
Application: 13/569,103 →
Publication: US US20120296394A1
Apparatus for Creating Incisions to Improve Intraocular Lens Placement
Patent: 9,526,608 →
Application: 13/951,343 →
Publication: US US20130317606A1
Methods and Systems for Performing a Posterior Capsulotomy and for Laser Eye Surgery with a Penetrated Cornea
Application: 14/020,640 →
Publication: US US20140074074A1
Graphical User Interface for Laser Eye Surgery System
Application: 14/062,448 →
Publication: US US20140114297A1
Liquid Optical Interface for Laser Eye Surgery System
Patent: 9,987,165 →
Application: 14/068,994 →
Publication: US US20140128821A1
Laser Eye Surgery System
Patent: 9,445,946 →
Application: 14/069,042 →
Publication: US US20140163534A1
Low Voltage Communication Between Subsystems in a Laser Eye Surgery System
Application: 14/069,098 →
Publication: US US20140128851A1
Interface Force Feedback in a Laser Eye Surgery System
Application: 14/069,582 →
Publication: US US20140128852A1
Laser Eye Surgery System Calibration
Application: 14/069,703 →
Publication: US US20140128853A1
Optical Surface Identification for Laser Surgery
Patent: 9,549,670 →
Application: 14/070,245 →
Publication: US US20140128731A1
Method for Creating Incision to Improve Intraocular Lens Placement
Patent: 9,795,472 →
Application: 14/163,530 →
Method for Creating Incision to Improve Intraocular Lens Placement
Patent: 9,820,848 →
Application: 14/163,550 →
Publication: US US20170333180A9
Free Floating Patient Interface for Laser Surgery System
Application: 14/190,827 →
Publication: US US20140276671A1
Laser Capsulovitreotomy
Application: 14/190,915 →
Publication: US US20140276676A1
Laser Eye Surgery System
Patent: 9,849,032 →
Application: 14/191,095 →
Publication: US US20140316389A1
Microfemtotomy Methods and Systems
Application: 14/199,087 →
Publication: US US20140276681A1
Laser Fiducials for Axis Alignment in Cataract Surgery
Application: 14/255,430 →
Publication: US US20140343541A1
Corneal Topography Measurement and Alignment of Corneal Surgical Procedures
Application: 14/256,307 →
Publication: US US20150018674A1
In Situ Determination of Refractive Index of Materials
Application: 14/327,839 →
Publication: US 2015/0032090
Method and Apparatus for Automated Placement of Scanned Laser Capsulorhexis Incisions
Patent: 9,495,743 →
Application: 14/450,587 →
Publication: US US20140341451A1
Laser Eye Surgery System Calibration
Patent: 9,918,873 →
Application: 14/509,850 →
Publication: US US20150141972A1
Laser Eye Surgery System
Patent: 9,849,033 →
Application: 14/575,884 →
Publication: US US20150150721A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Patent: 9,782,253 →
Application: 14/576,422 →
Publication: US US20150105762A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Patent: 9,968,439 →
Application: 14/576,467 →
Publication: US US20150105763A1
Confocal Laser Eye Surgery System
Application: 14/576,593 →
Publication: US US20150272782A1
Confocal Detection to Minimize Capsulotomy Overcut While Dynamically Running on the Capsular Surface
Application: 14/611,661 →
Publication: US US20150216730A1
System and Method for Laser Corneal Incisions for Keratoplasty Procedures
Application: 14/611,859 →
Publication: US US20150374549A1
Vacuum Loss Detection During Laser Eye Surgery
Application: 14/661,951 →
Publication: US US20150190278A1
Automated Calibration of Laser System and Tomography System with Fluorescent Imaging of Scan Pattern
Application: 14/666,743 →
Publication: US US20150282988A1
Method and Apparatus for Creating Ocular Surgical and Relaxing Incisions
Application: 14/668,677 →
Publication: US US20150196428A1
Method and Apparatus for Creating Ocular Surgical and Relaxing Incisions
Application: 14/668,696 →
Publication: US US20150196429A1
System and Method for Plasma-Mediated Modification of Tissue
Patent: 9,668,919 →
Application: 14/701,458 →
Publication: US US20150230987A1
Intraocular Lens
Application: 14/702,438 →
Publication: US US20150230980A1
Method and System for Modifying Eye Tissue and Intraocular Lenses
Application: 14/817,154 →
Publication: US US20150335477A1
Methods and Systems for Corneal Topography, Blink Detection and Laser Eye Surgery
Patent: 9,721,351 →
Application: 14/866,418 →
Publication: US US20160093063A1
Corneal Topography Measurements and Fiducial Mark Incisions in Laser Surgical Procedures
Application: 14/885,213 →
Publication: US US20160095752A1
Laser Eye Surgery Lens Fragmentation
Application: 14/885,596 →
Publication: US US20160106588A1
Automatic Patient Positioning Within a Laser Eye Surgery System
Application: 14/885,824 →
Publication: US US20160106581A1
Vacuum Loss Detection During Laser Eye Surgery
Application: 14/885,907 →
Publication: US US20160106582A1
Mobile Patient Bed
Patent: 9,901,503 →
Application: 14/930,542 →
Publication: US US20170119610A1
Method and Apparatus for Creating Ocular Surgical and Relaxing Incisions
Application: 14/948,192 →
Publication: US US20160074227A1
Method and Apparatus for Creating Ocular Surgical and Relaxing Incisions
Application: 14/948,211 →
Publication: US US20160074228A1
Closed-Loop Laser Eye Surgery Treatment
Application: 14/968,783 →
Publication: US US20160228296A1
Methods and Systems for Laser Scan Location Verification and Laser Surgical Systems with Laser Scan Location Verification
Application: 14/969,363 →
Publication: US US20170011501A1
Image Processing Method and System for Edge Detection and Laser Eye Surgery System Incorporating the Same
Application: 14/969,452 →
Publication: US US20170007112A1
Liquid Loss Detection During Laser Eye Surgery
Application: 14/970,789 →
Publication: US US20160175146A1
Multiple Depth Optical Coherence Tomography System and Method and Laser Eye Surgery System Incorporating the Same
Application: 14/970,921 →
Publication: US US20160278629A1
Sub-Nanosecond Laser Cataract Surgery System
Application: 14/973,508 →
Publication: US US20170000649A1
Patient Interface for Ophthalmologic Diagnostic and Interventional Procedures
Application: 14/979,593 →
Publication: US US20160151203A1
Registration of Loi Fiducials with Camera
Application: 15/139,021 →
Publication: US US20160235588A1
Confocal Laser Eye Surgery System and Improved Confocal Bypass Assembly
Application: 15/148,913 →
Publication: US US20160250068A1
Laser Eye Surgery Systems and Methods of Treating Vitreous and Ocular Floaters
Application: 15/151,356 →
Publication: US US20170326003A1
Patient Interface for Ophthalmologic Diagnostic and Interventional Procedures
Application: 15/152,198 →
Publication: US US20160250073A1
Method for Creating Incisions to Improve Intraocular Lens Placement
Patent: 9,662,198 →
Application: 15/155,788 →
Publication: US US20160256261A1
Free Floating Patient Interface for Laser Surgery System
Application: 15/173,469 →
Publication: US US20160310317A1
Sub-Nanosecond Laser Surgery System Utilizing Multiple Pulsed Laser Beams
Application: 15/183,658 →
Publication: US US20170000647A1
Laser Eye Surgery System
Application: 15/245,097 →
Publication: US US20160360960A1
Free Floating Patient Interface for Laser Surgery System
Application: 15/265,733 →
Publication: US US20170056243A1
Methods and Systems for Opthalmic Measurements and Laser Surgery and Methods and Systems for Surgical Planning Based Thereon
Application: 15/269,781 →
Publication: US US20170189233A1
Method and Apparatus for Automated Placement of Scanned Laser Capsulorhexis Incisions
Application: 15/294,436 →
Publication: US US20170027756A1
Laser Beam Calibration and Beam Quality Measurement in Laser Surgery Systems
Application: 15/299,745 →
Publication: US US20170112663A1
Optical Surface Identification for Laser Eye Surgery
Application: 15/376,491 →
Publication: US US20170087019A1
Apparatus for Creating Incisions to Improve Intraocular Lens Placement
Application: 15/387,498 →
Publication: US US20170100234A1
Intraocular Lens
Application: 15/601,736 →
Publication: US US20170258579A1
System and Method for Plasma-Mediated Modification of Tissue
Application: 15/612,920 →
Publication: US US20170266048A1
Methods and Systems for Corneal Topography, Blink Detection and Laser Eye Surgery
Patent: 9,996,938 →
Application: 15/662,203 →
Publication: US US20170323450A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Application: 15/726,289 →
Publication: US US20180042715A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Application: 15/726,296 →
Publication: US US20180042716A1
Method for Creating Incision to Improve Intraocular Lens Placement
Application: 15/789,900 →
Publication: US US20180036117A1
Ophthalmic Laser Delivery Apparatus Using Mems Micromirror Arrays for Scanning and Focusing Laser Beam
Application: 15/793,851 →
Publication: US US20180110651A1
Method for Creating Incision to Improve Intraocular Lens Placement
Application: 15/814,259 →
Publication: US US20180085211A1
Method and System for Modifying Eye Tissue and Intraocular Lenses
Application: 15/830,883 →
Publication: US US20180085252A1
Method and System for Modifying Eye Tissue and Intraocular Lenses
Application: 15/831,032 →
Publication: US US20180085253A1
Laser Eye Surgery System
Application: 15/849,056 →
Publication: US US20180110652A1
Laser Eye Surgery System
Application: 15/849,314 →
Publication: US US20180133058A1
Methods and Systems for Laser Ophthalmic Surgery That Provide for Iris Exposures Below a Predetermined Exposure Limit
Application: 15/885,616 →
Publication: US US20180214305A1
Additive Manufacturing Inside the Human Eye
Application: 15/890,153 →
Publication: US US20180221141A1
Mobile Patient Bed
Application: 15/904,151 →
Publication: US US20180177659A1
Laser Eye Surgery System Calibration
Application: 15/924,121 →
Publication: US US20180207031A1
Microfemtotomy Methods and Systems
Application: 15/952,147 →
Publication: US US20180296392A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Application: 15/976,751 →
Publication: US US20180263758A1
Liquid Optical Interface for Laser Eye Surgery System
Application: 15/995,013 →
Publication: US US20180280192A1
Liquid Optical Interface for Laser Eye Surgery System
Application: 15/995,097 →
Publication: US US20180280193A1
Methods and Systems for Corneal Topography, Blink Detection and Laser Eye Surgery
Application: 16/004,292 →
Publication: US US20180357771A1
Laser Capsulovitreotomy
Application: 16/035,507 →
Publication: US US20190008682A1
Introcular Lens
Application: 16/048,164 →
Publication: US US20180360659A1
System and Method for Laser Corneal Incisions for Keratoplasty Procedures
Application: 16/138,912 →
Publication: US US20190021908A1
Method and System for Modifying Eye Tissue and Intraocular Lenses
Application: 16/141,820 →
Publication: US US20190021904A1
Automated Calibration of Laser System and Tomography System with Fluorescent Imaging of Scan Pattern
Application: 16/166,661 →
Publication: US US20190053947A1
Confocal Laser Eye Surgery System
Application: 16/188,119 →
Publication: US US20190076017A1
Methods and Systems for Performing a Posterior Capsulotomy and for Laser Eye Surgery with a Penetrated Cornea
Application: 16/208,429 →
Publication: US US20190105196A1
Vacuum Loss Detection During Laser Eye Surgery
Application: 16/253,161 →
Publication: US US20190151145A1
Laser Fiducials for Axis Alignment in Cataract Surgery
Application: 16/292,060 →
Publication: US US20190269551A1
Sub-Nanosecond Laser Cataract Surgery System
Application: 16/359,907 →
Publication: US US20190216647A1
Laser Eye Surgery System Calibration
Application: 16/377,760 →
Publication: US US20190231590A1
Methods and Systems for Laser Scan Location Verification and Laser Surgical Systems with Laser Scan Location Verification
Application: 16/384,724 →
Publication: US US20190240071A1
Low Voltage Communication Between Subsystems in a Laser Eye Surgery System
Application: 16/403,450 →
Publication: US US20190254869A1
Vacuum Loss Detection During Laser Eye Surgery
Application: 16/409,731 →
Publication: US US20190262174A1
Laser Eye Surgery System
Application: 16/432,821 →
Publication: US US20190282084A1
Laser Eye Surgery System Calibration
Application: 16/436,136 →
Publication: US US20190290490A1
Laser Eye Surgery Lens Fragmentation
Application: 16/440,846 →
Publication: US US20190358084A1
Closed-Loop Laser Eye Surgery Treatment
Application: 16/457,758 →
Publication: US US20190336340A1
Confocal Detection to Minimize Capsulotomy Overcut While Dynamically Running on the Capsular Surface
Application: 16/522,404 →
Publication: US US20190343684A1
Corneal Topography Measurements and Fiducial Mark Incisions in Laser Surgical Procedures
Application: 16/530,912 →
Publication: US US20190350760A1
Liquid Loss Detection During Laser Eye Surgery
Application: 16/564,805 →
Publication: US US20190388269A1
Optical Surface Identification for Laser Eye Surgery
Application: 16/601,478 →
Publication: US US20200038244A1
Registration of Loi Fiducials with Camera
Application: 16/601,553 →
Publication: US US20200038245A1
Free Floating Patient Interface for Laser Surgery System
Application: 16/677,620 →
Publication: US US20200138627A1
Corneal Topography Measurement and Alignment of Corneal Surgical Procedures
Application: 16/686,059 →
Publication: US US20200085622A1
Image Processing Method and System for Edge Detection and Laser Eye Surgery System Incorporating the Same
Application: 16/724,019 →
Publication: US US20200121178A1
Apparatus for Creating Incisions to Improve Intraocular Lens Placement
Application: 16/724,133 →
Publication: US US20200138564A1
Method for Creating Incision to Improve Intraocular Lens Placement
Application: 16/725,557 →
Publication: US US20200129287A1
Laser Eye Surgery Systems and Methods of Treating Vitreous and Ocular Floaters
Application: 16/726,016 →
Publication: US US20200129336A1
Liquid Optical Interface for Laser Eye Surgery System
Application: 16/790,647 →
Publication: US US20200179163A1
Method for Patterned Plasma-Mediated Modification of the Crystalline Lens
Application: 16/866,362 →
Publication: US US20200261215A1
In Situ Determination of Refractive Index of Materials
Application: 16/870,808 →
Publication: US 2020/0268245
Laser Beam Calibration and Beam Quality Measurement in Laser Surgery Systems
Application: 16/885,252 →
Publication: US US20200289317A1
Additive Manufacturing Inside the Human Eye
Application: 16/894,715 →
Publication: US US20200297480A1
Interface Force Feedback in a Laser Eye Surgery System
Application: 16/414,707 →
Publication: US US20190274878A1
Medical System Device
Patent: 654,596 →
Application: 29/376,901 →
Fluid Reservoir
Patent: 775,354 →
Application: 29/510,842 →
Suction Ring for a Patient Interface Device
Patent: 748,269 →
Application: 29/510,844 →
Docking Assembly
Patent: 900,316 →
Application: 29/510,845 →
Mobile Patient Bed
Patent: 804,038 →
Application: 29/576,483 →
Headrest for Mobile Patient Bed
Patent: 826,410 →
Application: 29/576,487 →
Mobile Patient Bed Controller
Patent: 802,542 →
Application: 29/576,495 →
Base with Wheels for a Mobile Patient Bed
Patent: 857,210 →
Application: 29/576,570 →
Ophthalmic lens utilizing replaceable contact element
Application: 60/582,445 →
Pascal photocoagulator
Application: 60/758,169 →
Separate computing device for medical device with computing capabilities
Application: 60/782,201 →
Separate computing device for medical device with computing capabilities
Application: 60/857,939 →
Method and apparatus for patterned plasma-mediated laser incisions of internal and external ocular structures
Application: 60/906,944 →
System And Method For Laser Capsulotomy And Lens Conditioning
Application: 61/289,837 →
Method and System for Modifying Eye Tissue
Application: 61/293,357 →
Method And Apparatus For Automated Placement Of Scanned Laser Capsulorhexis Incisions
Application: 61/297,624 →
Method And System For Patterned Plasma-Mediated Modification Of The Crystalline Lens
Application: 61/302,437 →
Coherent Fiber Bundle System and Method for Ophthalmic Intervention
Application: 61/311,267 →
Patient interface for opthalmologic diagnostic and interventional procedures
Application: 61/402,733 →
Methods and Systems for Performing a Posterior Capsulotomy and for Laser Eye Surgery with a Penetrated Cornea
Application: 61/698,516 →
Methods and Systems for Performing a Posterior Capsulotomy and for Laser Eye Surgery with a Penetrated Cornea
Application: 61/699,204 →
Graphical User Interface for Laser Eye Surgery System
Application: 61/718,156 →
Liquid Optical Interface for Laser Eye Surgery System
Application: 61/721,693 →
Interface Force Feedback in a Laser Eye Surgery System
Application: 61/721,709 →
Low Voltage Communication between Subsystems in a Laser Eye Surgery System
Application: 61/721,726 →
Graphical User Interface for Laser Eye Surgery System
Application: 61/722,037 →
Laser Eye Surgery System
Application: 61/722,048 →
Laser Eye Surgery System Calibration
Application: 61/722,064 →
Optical Surface Identification for Laser Eye Surgery
Application: 61/722,080 →
Laser Eye Surgery System
Application: 61/780,736 →
Free Floating Patient Interface for Laser Surgery System
Application: 61/780,881 →
Laser Capsulovitreotomy
Application: 61/785,672 →
Microfemtotomy Methods and Systems
Application: 61/788,201 →
Laser Fiducials for Axis Alignment in Cataract Surgery
Application: 61/813,172 →
Corneal Topography Measurement and Alignment of Corneal Surgical Procedures
Application: 61/813,613 →
In Situ Determination of Refractive Index of Materials
Application: 61/858,445 →
Corneal Topography Measurement and Alignment of Refractive Surgical Procedures
Application: 61/873,071 →
Laser Eye Surgery System Calibration
Application: 61/888,065 →
System and Method for Laser Corneal Incisions for Keratoplasty Procedures
Application: 61/935,471 →
Confocal Detection to Minimize Capsulotomy Overcut While Dynamically Running on the Capsular Surface
Application: 61/935,478 →
Confocal Detection to Minimize Capsulotomy Overcut While Dynamically Running on the Capsular Surface
Application: 61/950,416 →
Automated Calibration of Laser System and Tomography System with Fluorescent Imaging of Scan Pattern
Application: 61/969,688 →
Confocal Corneal Imaging with Variable Polarization
Application: 61/970,854 →
Confocal Laser Eye Surgery System
Application: 62/043,749 →
Methods and Systems for Corneal Topography, Blink Detection and Laser Eye Surgery
Application: 62/055,429 →
Automatic Patient Positioning Within a Laser Eye Surgery System
Application: 62/065,178 →
Laser Eye Surgery Lens Fragmentation
Application: 62/065,469 →
Vacuum Loss Detention During Laser Eye Surgery
Application: 62/065,481 →
Corneal Topography Measurements and Fiducial Mark Incisions in Laser Surgical Procedures
Application: 62/065,499 →
Liquid Optics Interface Liquid Loss Sense System
Application: 62/094,788 →
Closed-Loop Laser Eye Surgery Treatment
Application: 62/113,189 →
Multiple Depth Optical Coherence Tomography Method and System
Application: 62/138,232 →
Sub-Nanosecond Laser Cataract Surgery System
Application: 62/187,771 →
Image Processing Method and System for Edge Detection and Laser Eye Surgery System Incorporating the Same
Application: 62/190,217 →
Methods and Systems for Laser Scan Location Verification and Laser Surgical Systems with Laser Scan Location Verification
Application: 62/190,227 →
Laser Beam Calibration and Beam Quality Measurement in Laser Surgery Systems
Application: 62/244,507 →
Ophthalmic Laser Delivery Apparatus Using Mems Micromirror Arrays for Scanning and Focusing Laser Beam
Application: 62/413,370 →
Methods and Systems for Laser Ophthalmic Surgery That Provide for Iris Exposures Below a Predetermined Exposure Limit
Application: 62/452,911 →
Additive Manufacturing Inside the Human Eye
Application: 62/455,445 →
Related Assignments (25)
Other recorded transfers of the patents in this record — the chain of ownership.
Assignment of Assignor's Interest Jul 1, 2004
From: BLUMENKRANZ, MARK S.; PALANKER, DANIEL V.; YELLACHICH, DIMITRI
To: BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY, THE
Reel/Frame 015536/0291 →
Assignment of Assignor's Interest Sep 12, 2005
From: MORDAUNT, DAVID H.
To: OPTIMEDICA CORPORATION
Reel/Frame 016521/0670 →
Security Agreement Nov 29, 2006
From: OPTIMEDICA CORPORATION
To: TRIPLEPOINT CAPITAL LLC
Reel/Frame 018562/0001 →
Assignment of Assignor's Interest Aug 8, 2007
From: MORDAUNT, DAVID; BELL, KATRINA; SIMONEAU, MICHAEL
To: OPTIMEDICA CORPORATION
Reel/Frame 019667/0591 →
Assignment of Assignor's Interest Jul 28, 2008
From: CULBERTSON, WILLIAM; BLUMENKRANZ, MARK; ANGELEY, DAVID; MARCELLINO, GEORGE
To: OPTIMEDICA CORPORATION
Reel/Frame 021302/0872 →
Assignment of Assignor's Interest Jul 30, 2008
From: CULBERTSON, WILLIAM; ANGELEY, DAVID; MARCELLINO, GEORGE; ANDERSEN, DAN E.
To: OPTIMEDICA CORPORATION
Reel/Frame 021318/0645 →
Assignment of Assignor's Interest Sep 22, 2008
From: CULBERTSON, WILLIAM; SEIBEL, BARRY; FRIEDMAN, NEIL; SCHULE, GEORG
To: OPTIMEDICA CORPORATION
Reel/Frame 021565/0170 →
Release of Security Interest Aug 17, 2010
From: TRIPLEPOINT CAPITAL LLC
To: OPTIMEDICA CORPORATION
Reel/Frame 024849/0463 →
Assignment of Assignor's Interest Mar 25, 2011
From: SCHUELE, GEORG; ANDERSEN, DAN
To: OPTIMEDICA CORPORATION
Reel/Frame 026022/0885 →
Assignment of Assignor's Interest Apr 12, 2011
From: SCHUELE, GEORG; FRIEDMAN, NEIL; CULBERTSON, WILLIAM; SEIBEL, BARRY
To: OPTIMEDICA CORPORATION
Reel/Frame 026111/0589 →
Assignment of Assignor's Interest Apr 21, 2011
From: FRIEDMAN, NEIL; SEIBEL, BARRY; CULBERTSON, WILLIAM; SCHUELE, GEORGE
To: OPTIMEDICA CORPORATION
Reel/Frame 026166/0787 →
Assignment of Assignor's Interest May 3, 2011
From: ANGELEY, DAVID; GOODING, PHILIP; WOODLEY, BRUCE; MARCELLINO, GEORGE
To: OPTIMEDICA CORPORATION
Reel/Frame 026217/0228 →
Corrective Assignment to Correct the Document Execution Date for Philip Gooding to 07/12/2010 Previously Recorded on Reel 026217 Frame 0228. Assignor(S) Hereby Confirms the Assignment. May 4, 2011
From: ANGELEY, DAVID; GOODING, PHILIP; WOODLEY, BRUCE; MARCELLINO, GEORGE
To: OPTIMEDICA CORPORATION
Reel/Frame 026221/0516 →
Assignment of Assignor's Interest Dec 15, 2011
From: GOODING, PHILIP; ANGELEY, DAVID
To: OPTIMEDICA CORPORATION
Reel/Frame 027390/0520 →
Corrective Assignment to Correct the Spelling of Assignor:Schule, Georg Previously Recorded on Reel 021565 Frame 0170. Assignor(S) Hereby Confirms the Correct Spelling of Assignor:Schuele, Georg. Dec 19, 2012
From: CULBERTSON, WILLIAM; SEIBEL, BARRY; FRIEDMAN, NEIL; SCHUELE, GEORG
To: OPTIMEDICA CORPORATION
Reel/Frame 029499/0189 →
Corrective Assignment to Correct the Spelling of Inventor's Name from Philip Gooding Previously Recorded on Reel 027390 Frame 0520. Assignor(S) Hereby Confirms the Spelling to Read: Phillip Gooding. Feb 25, 2013
From: GOODING, PHILIP; ANGELEY, DAVID
To: OPTIMEDICA CORPORATION
Reel/Frame 029872/0255 →
Corrective Assignment to Correct the Spelling of Inventor Philip Gooding's Name Previously Recorded on Reel 026221 Frame 0516. Assignor(S) Hereby Confirms the the Spelling to Read: Phillip Gooding. Mar 25, 2013
From: ANGELEY, DAVID; GOODING, PHILLIP; WOODLEY, BRUCE; MARCELLINO, GEORGE
To: OPTIMEDICA CORPORATION
Reel/Frame 030081/0331 →
Corrective Assignment to Correct the Correct Spelling of Inventor Philip Gooding's Name Previously Recorded on Reel 029499 Frame 0189. Assignor(S) Hereby Confirms the Spelling to Read: Phillip Gooding. Mar 25, 2013
From: CULBERTSON, WILLIAM; SEIBEL, BARRY; FRIEDMAN, NEIL; SCHUELE, GEORG
To: OPTIMEDICA CORPORATION
Reel/Frame 030081/0166 →
Assignment of Assignor's Interest Apr 23, 2013
From: CULBERTSON, WILLIAM; SEIBEL, BARRY; FRIEDMAN, NEIL; SCHUELE, GEORG
To: OPTIMEDICA CORPORATION
Reel/Frame 030269/0220 →
Assignment of Assignor's Interest Apr 23, 2013
From: CULBERTSON, WILLIAM; BLUMENKRANZ, MARK; ANGELEY, DAVID; MARCELLINO, GEORGE
To: OPTIMEDICA CORPORATION
Reel/Frame 030265/0947 →
Assignment of Assignor's Interest Apr 23, 2013
From: CULBERTSON, WILLIAM; BLUMENKRANZ, MARK; ANGELEY, DAVID; MARCELLINO, GEORGE
To: OPTIMEDICA CORPORATION
Reel/Frame 030266/0056 →
Assignment of Assignor's Interest Apr 23, 2013
From: CULBERTSON, WILLIAM; ANGELEY, DAVID; MARCELLINO, GEORGE; ANDERSEN, DAN E.
To: OPTIMEDICA CORPORATION
Reel/Frame 030266/0393 →
Assignment of Assignor's Interest Apr 23, 2013
From: CULBERTSON, WILLIAM; SEIBEL, BARRY; FRIEDMAN, NEIL; SCHUELE, GEORG
To: OPTIMEDICA CORPORATION
Reel/Frame 030269/0423 →
Assignment of Assignor's Interest May 16, 2014
From: SCHUELE, GEORG; GOODING, PHILLIP
To: OPTIMEDICA CORPORATION
Reel/Frame 032912/0702 →
Assignment of Assignor's Interest Nov 18, 2016
From: CULBERTSON, WILLIAM; BLUMENKRANZ, MARK; ANGELEY, DAVID; MARCELLINO, GEORGE
To: OPTIMEDICA CORPORATION
Reel/Frame 040367/0789 →