54 |
Titel |
TI |
[DE] PLANUNGSVORRICHTUNG ZUR BESTIMMUNG EINES ABLATIONSSONDENPARAMETERS FÜR EINE EINZELSONDE ODER FÜR MEHRERE ABLATIONSSONDEN [EN] PLANNING APPARATUS FOR DETERMINING AN ABLATION PROBE PARAMETER FOR A SINGLE PROBE OR FOR MULTIPLE ABLATION PROBES [FR] APPAREIL DE PLANIFICATION PERMETTANT DE DÉTERMINER UN PARAMÈTRE D'UNE SONDE D'ABLATION UNIQUE OU DE MULTIPLES SONDES D'ABLATION |
71/73 |
Anmelder/Inhaber |
PA |
KONINKLIJKE PHILIPS NV, NL
;
RHEINISCH WESTFAELISCHE TECHNISCHE HOCHSCHULE AACHEN RWTH, DE
|
72 |
Erfinder |
IN |
BARAGONA MARCO, NL
;
GREPL MARTIN, NL
;
ISOLA ALFONSO AGATINO, NL
;
KUSTRA JACEK LUKASZ, NL
;
MAESSEN RALPH THEODORUS HUBERTUS, NL
;
TOKOUTSI ZOI, NL
;
VEROY-GREPL KAREN, NL
|
22/96 |
Anmeldedatum |
AD |
26.01.2018 |
21 |
Anmeldenummer |
AN |
18153701 |
|
Anmeldeland |
AC |
EP |
|
Veröffentlichungsdatum |
PUB |
31.07.2019 |
33 31 32 |
Priorität |
PRC PRN PRD |
|
51 |
IPC-Hauptklasse |
ICM |
A61B 18/04
(2006.01)
|
51 |
IPC-Nebenklasse |
ICS |
|
|
IPC-Zusatzklasse |
ICA |
A61B 18/00
(2006.01)
A61B 18/14
(2006.01)
A61B 34/10
(2016.01)
A61B 6/02
(2006.01)
A61B 6/03
(2006.01)
G06F 17/13
(2006.01)
G06F 17/50
(2006.01)
|
|
IPC-Indexklasse |
ICI |
|
|
Gemeinsame Patentklassifikation |
CPC |
A61B 18/14
A61B 2018/00577
A61B 2018/00702
A61B 2018/00791
A61B 2034/101
A61B 34/10
A61B 34/30
A61B 6/022
A61B 6/032
A61B 6/4441
|
|
MCD-Hauptklasse |
MCM |
A61B 18/04
(2006.01)
|
|
MCD-Nebenklasse |
MCS |
|
|
MCD-Zusatzklasse |
MCA |
A61B 18/00
(2006.01)
A61B 18/14
(2006.01)
A61B 34/10
(2016.01)
A61B 6/02
(2006.01)
A61B 6/03
(2006.01)
G06F 17/13
(2006.01)
G06F 17/50
(2006.01)
|
57 |
Zusammenfassung |
AB |
[EN] The invention relates to a planning apparatus (1) for determining an ablation probe parameter. A thermal energy determination unit determines, in a first part of a planning procedure, a first thermal energy distribution by using a thermal energy function like a Bioheat equation such that a temperature-based condition is fulfilled, which is indicative of a desired treatment outcome for a subject (18). An ablation probe parameter determination unit determines, in a second part, the ablation probe parameter by using a second thermal energy function, which relates a second thermal energy distribution to be caused by the ablation probe (22) to b) the ablation probe parameter, such that a deviation between the first thermal energy distribution and the second thermal energy distribution fulfils a predefined deviation criterion. This dissection into two parts allows for an improved adaptability of the determination of the ablation probe parameter to different types of ablation procedures. |
56 |
Entgegengehaltene Patentdokumente/Zitate, in Recherche ermittelt |
CT |
DE102007046453A1 DE102011075738A1 US020110196385A1 US020150088120A1 WO002015148378A1 WO002016161293A1
|
56 |
Entgegengehaltene Patentdokumente/Zitate, vom Anmelder genannt |
CT |
|
56 |
Entgegengehaltene Nichtpatentliteratur/Zitate, in Recherche ermittelt |
CTNP |
|
56 |
Entgegengehaltene Nichtpatentliteratur/Zitate, vom Anmelder genannt |
CTNP |
C. SCHUMANN ET AL.: "Interactive multi-criteria planning for radiofrequency ablation", INTERNATIONAL JOURNAL OF COMPUTER ASSISTED RADIOLOGY AND SURGERY, vol. 10, 2015, pages 879 - 889 1; F. TROELTZSCH: "Graduate Studies in Mathematics", vol. 112, 2010, AMERICAN MATHEMATICAL SOCIETY, article "Optimal Control of Partial Differential Equations: Theory, Methods and Applications" 1; H. E. ROMEIJN ET AL.: "A Column Generation Approach to Radiation Therapy Treatment Planning Using Aperture Modulation", SOCIETY FOR INDUSTRIAL AND APPLIED MATHEMATICS, JOURNAL ON OPTIMIZATION, vol. 15, no. 3, 2005, pages 838 - 862 1; H. PENNES ET AL.: "Analysis of Tissue and Arterial Blood Temperatures in the Resting Human Forearm", JOURNAL OF APPLIED PHYSIOLOGY, vol. 1, no. 2, 1948, pages 93 - 122 1; J. NOCEDAL ET AL.: "Numerical Optimization", 2006, SPRINGER VERLAG 1
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Prüfstoff-IPC |
ICP |
A61B 18/00
A61B 18/04
A61B 18/14
A61B 34/10
A61B 34/30
A61B 6/00
A61B 6/02
A61B 6/03
G06F 17/13
G06F 17/50
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