Inventor
Thomas Redel
Inventor
Poxdorf, DE
Overview
Patents· 59 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
A61Bprimary
A61BDiagnosis37%
G06TImage data processing or generation, in general20%
G16HHealthcare informatics, i.e. information and communication technology [ict] specially adapted for the handling or processing of medical or healthcare data15%
G06FElectric digital data processing7%
G06VImage or video recognition or understanding5%
G06KGraphical data reading4%
H05KPrinted circuits2%
Y10STechnical subjects covered by former uspc cross-reference art collections [xracs] and digests2%
A61FFilters implantable into blood vessels1%
A61MDevices for introducing media into, or onto, the body1%
PatentTitleYear
11,030,490Performance of machine learning models for automatic quantification of coronary artery disease202110,993,687Synthetic data-driven hemodynamic determination in medical imaging202110,872,698Method and system for enhancing medical image-based blood flow computations using physiological measurements202010,867,383Determination of a clinical characteristic using a combination of different recording modalities202010,828,109Treatment planning for a stenosis in a vascular segment based on virtual hemodynamic analysis202010,769,763Method for reconstructing a reconstruction data set of a vessel segment202010,758,200Method and system for assessing a haemodynamic parameter202010,664,985Determining a complexity value of a stenosis or a section of a vessel202010,555,712Segmenting an angiography using an existing three-dimensional reconstruction202010,463,336Method and system for purely geometric machine learning based fractional flow reserve201910,420,478X-ray recording with superimposed planning information201910,390,782Device and method for ascertaining at least one individual fluid-dynamic characteristic parameter of a stenosis in a vascular segment having serial stenoses201910,245,001Generation of a three-dimensional reconstruction of a body part by an X-ray machine201910,157,490Angulation planning for a three dimensional angiography201810,111,636Synthetic data-driven hemodynamic determination in medical imaging20189,918,690'Synthetic data-driven hemodynamic determination in medical imaging'20189,888,889'Interventional imaging system'20189,888,896'Determining a three-dimensional model dataset of a blood vessel system with at least one vessel segment'20189,830,427Method for intracranial aneurysm analysis and endovascular intervention planning20179,633,454'Fluid-dynamic analysis of a vascular tree using angiography'20179,595,089'Method and system for non-invasive computation of hemodynamic indices for coronary artery stenosis'20179,375,157'Angiographic examination method for the representation of flow properties'20169,349,178'Synthetic data-driven hemodynamic determination in medical imaging'20169,247,918'Computation of hemodynamic quantities from angiographic data'20169,153,411'Apparatus for X-ray imaging for projection radiography and computed tomography, and method for X-ray imaging'20159,087,370'Flow diverter detection in medical imaging'20158,965,084'Blood flow computation in vessels with implanted devices'20158,948,475'Method for computing a color-coded analysis image'20158,755,583'Method and apparatus for generating a functional data set of a perfused region of the human or animal body'20148,712,131'Determination method for a reinitialization of a temporal sequence of fluoroscopic images of an examination region of an examination object'20148,706,196'Method for simulating a blood flow'20148,663,300'Method and associated device for positioning a stent deployed to support a vessel'20148,620,408'Method for representing two-dimensional projection images and objects corresponding thereto'20138,553,832'Device for obtaining perfusion images'20138,538,508'Method and apparatus for ECG-synchronized optically-based image acquisition and transformation'20138,503,741'Workflow of a service provider based CFD business model for the risk assessment of aneurysm and respective clinical interface'20138,386,019'Arrangement for supporting a percutaneous intervention'20138,285,014'Measuring blood volume with C-arm computed tomography'20128,275,448'Method for reconstructing a 3D presentation'20128,229,198'Method for creating image recordings relating to the blood vessel system of a patient using a variable-position detector of a digital subtraction angiography facility and associated facility'20128,103,067'Analysis method for image data records including automatic specification of analysis regions'20128,090,176'Evaluation method for a temporal sequence of x-ray images'20127,945,082'Analysis method for data of an examination object, featuring correlation of a volume data record with a number of projection images'20117,916,827'Method for evaluating projection datasets of an object undergoing examination'20117,903,856'Method for post-processing a three-dimensional image data set of vessel structure'20117,865,003'Image evaluation method for two-dimensional projection images and objects corresponding thereto'20117,860,288'X-ray device having a dual energy mode and method to analyze projection images detected in the dual energy mode'20107,796,796'Operating method for an image-generating medical engineering assembly and articles associated herewith'20107,742,797'Device and method for intraluminal imaging for the reconstruction of 3D image data sets'20107,734,329'Method for pre-interventional planning of a 2D fluoroscopy projection'20107,729,746'Three-dimensional co-registration between intravascular and angiographic data'20107,729,525'Image evaluation method for two-dimensional projection images and items corresponding thereto'20107,650,179'Computerized workflow method for stent planning and stenting procedure'20107,623,622'X-ray system with an adjustment-acquisition device'20097,610,081'Method and device for generating an image using optical coherence tomography'20097,577,471'Optical coherence tomography system'20097,539,531'Catheter device'20097,408,648'Method for tomographically displaying a cavity by optical coherence tomography (OCT) and an OCT device for carrying out the method'20085,580,291'Method for manufacturing a glow cathode for an electron tube'1996Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
1996–2018Patents assigned to SIEMENS AG (40)· patent assignee history
1996Based in Roettenbach, DE· patent location history
2008–2021Based in Poxdorf, DE· patent location history
2012–2020Patents assigned to REDEL THOMAS (29)· patent assignee history
2012–2014Patents assigned to CAMUS ESTELLE (7)· patent assignee history
2013–2014Patents assigned to MEISSNER OLIVER (4)· patent assignee history
2017–2021Patents assigned to SIEMENS HEALTHCARE GMBH (19)· patent assignee history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| SIEMENS AG | 40 | 1996–2018 |
| REDEL THOMASself | 29 | 2012–2020 |
| SIEMENS HEALTHCARE GMBH | 19 | 2017–2021 |
| CAMUS ESTELLE | 7 | 2012–2014 |
| MEISSNER OLIVER | 4 | 2013–2014 |
Locations
| Location | Patents | Span |
|---|---|---|
| Poxdorf, DE | 58 | 2008–2021 |
| Roettenbach, DE | 1 | 1996 |