IP Library Granted Patent US 9,108,046
Granted Patent B2
US 9,108,046 · App. 13/697,712 · Granted Aug 18, 2015

Method of generating and/or providing data for tissue treatment

Inventors: Frank Weigand (Heidenheim, DE); Frederik Wenz (Heidelberg, DE); Carsten Herskind (Besigheim, DE)
Assignee: CARL ZEISS MEDITEC AG
A61N5/1031A61N5/1001A61N5/1015A61N5/1028
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Quick Facts
Patent No.
US 9,108,046
App. No.
13/697,712
Granted
Aug 18, 2015
Kind
B2
Abstract

A method of generating and/or providing data ( 28 ) for tissue treatment, in particular a tumor treatment, via a low-energy irradiation appliance ( 10 ) is described. Herein, the low-energy irradiation appliance ( 10 ) has a radiation source ( 14 ) for generating soft radiation, preferably of a radiation with a spectrum from 0 to a maximal radiation energy of 100 keV, in particular a radiation with a spectrum from 0 to a maximal radiation energy of 50 keV and an emitting device ( 15 ) for emitting the radiation to tissue, which is to be irradiated. The method is characterized by the following steps: physical data of the radiation source ( 14 ) is determined directly from leaving the emitting device ( 15 ); quality data of the tissue, for example the tumor tissue and/or the tissue ( 17 ) in the vicinity of the tumor, is determined; physical property data of the determined tissue is determined in connection with the radiation of the radiation source ( 14 ). Data ( 28 ) for the tissue treatment, for example the tumor treatment, is generated from the determined data and/or the determined data is provided for generating data for the tissue treatment, in particular tumor treatment.

Claims (21)

1. Method for generating or providing data for a tissue treatment by means of a low-energy irradiation device, wherein the low-energy irradiation device has an irradiation source for generating soft radiation, preferably of a radiation with a spectrum of 0 to a maximal ray energy of 100 keV, in particular a radiation with a spectrum of 0 to a maximal radiation energy of 50 keV and an emitting device for emitting the irradiation to a tissue which is to be irradiated, characterized by the following steps:

physical data of the irradiation source is determined directly upon leaving the emitting device;

constitutional data of the tissue is determined;

physical property data of the determined tissue is determined in connection with the irradiation of the irradiation source;

data for the tissue treatment is generated from the determined data or the determined data is provided for generating data for the tissue treatment.

2. Method according to claim 1 , characterized in that the spectrum of the radiation source directly upon leaving the emitting device, is determined as physical data of the radiation device.

3. Method according to claim 1 , characterized in that the constitutional data of the tissue are determined by means of an image-providing method.

4. Method according to claim 1 , characterized in that the mass-energy-absorption-coefficient is determined as physical property data of the determined tissue in connection with the radiation of the radiation source.

5. Method according to claim 1 , characterized in that the dose-power for the tissue, which is to be irradiated, is determined from the determined data.

6. Method according to claim 5 , characterized in that for calculation of the dose-power

the connecting vector between the isocentre of the radiation emitting device and the point of the tissue, which is to be irradiated, is determined;

that the exit point of the connecting vector at the surface of the radiation emitting device is calculated;

that the distance between the exit point and the point of the tissue which is to be irradiated is calculated;

that the associated spatial volumes in the constitutional data of the tissue is determined along the calculated distance;

that the kinds of tissue and their position and/or extension along the calculated distance are determined;

that the radiation spectrum, which after performed transmission along the calculated distance exists at the point of the tissue which is to be irradiated, is calculated; and

that the dose-power at the point of the tissue, which is to be irradiated, is calculated from the radiation spectrum and the kind of tissue at the point of the tissue, which is to be irradiated.

7. Method according to claim 1 , characterized in that further physical and/or biological and/or medical data may be generated and/or determined and/or provided and in that the further physical and/or biological and/or medical data is being used for generating data for the tissue treatment and/or is being provided for generating data for the tissue treatment, for example the tumor treatment.

8. Method according to claim 1 , characterized in that the determined data and/or data for the tissue treatment are visually displayed on a display screen.

9. Method according to claim 8 , characterized in that the physical data of the radiation source and/or the physical properties of the determined tissue in connection with the radiation of the radiation source and/or the further physical and/or biological and/or medical data together with constitutional data of the tissue, in particular blend in therein, are visually displayed.

10. Computer program product, which, if it is executed on a data processing device or is loaded in such a device, interacts with the data processing device such that on the data processing unit, the method according to claim 1 is executed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2012
From: WEIGAND, FRANK; WENZ, FREDERIK; HERSKIND, CARSTEN
To: CARL ZEISS MEDITEC AG
Reel/Frame 029288/0971 →
Priority Claims (1)
DE 10 2010 020 352 · May 12, 2010 · national
Continuity (2)
Provisional Application 61395389 · May 12, 2010
Related Publication 20130058460A1 · Mar 7, 2013