VASCULAR IMAGING CORP has a total of 42 patent applications. Its first patent ever was published in 2002. It filed its patents most often in United States, EPO (European Patent Office) and WIPO (World Intellectual Property Organization). Its main competitors in its focus markets medical technology, measurement and optics are ADVANCED INTERVENTIONAL SYSTEM, OPTISCOPE TECHNOLOGIES LTD and AWDEH RICHARD.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 24 | |
#2 | EPO (European Patent Office) | 8 | |
#3 | WIPO (World Intellectual Property Organization) | 7 | |
#4 | Canada | 3 |
# | Industry | |
---|---|---|
#1 | Medical technology | |
#2 | Measurement | |
#3 | Optics | |
#4 | Machines |
# | Technology | |
---|---|---|
#1 | Diagnosis and surgery | |
#2 | Optical systems | |
#3 | Measuring mechanical vibrations | |
#4 | Syringes | |
#5 | Unspecified technologies | |
#6 | Analysing materials | |
#7 | Measuring force, work and fluid pressure | |
#8 | Special measuring |
# | Name | Total Patents |
---|---|---|
#1 | Eberle Michael J | 33 |
#2 | Tasker Diana Margaret | 19 |
#3 | Rourke Howard Neil | 19 |
#4 | Bates Kenneth N | 14 |
#5 | Vardi Gil M | 9 |
#6 | Morey William W | 7 |
#7 | Spamer David J | 4 |
#8 | Zhao Shukui | 2 |
#9 | Spivak Victor | 1 |
#10 | Spivak Legal Representative Evgeni | 1 |
Publication | Filing date | Title |
---|---|---|
US2018228385A1 | Optical sensor assemblies and methods | |
US10258240B1 | Optical fiber pressure sensor | |
WO2015051003A1 | Imaging techniques using an imaging guidewire | |
US2016175564A1 | Guidewire torque handle | |
US2016018593A1 | Optical fiber ribbon imaging guidewire and methods | |
US2014316281A1 | Noise subtraction for intra-body fiber optic sensor | |
US2014100462A1 | Polarization scrambling for intra-body fiber optic sensor | |
EP2856098A2 | Optical fiber pressure sensor | |
CA2778218A1 | Optical imaging probe connector | |
EP2356412A1 | Optical ultrasound receiver | |
US2007116408A1 | Optical imaging probe connector | |
US7245789B2 | Systems and methods for minimally-invasive optical-acoustic imaging |