IP Library Patent Application 17790414
Patent Application
App. No. 17/790,414

ELECTRICAL IMPEDANCE TOMOGRAPHY BASED METHOD AND DEVICE FOR GENERATING THREE-DIMENSIONAL BLOOD PERFUSION IMAGE

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Patent No.
US None
App. No.
17/790,414
Abstract

Provided in the present disclosure are an electrical impedance tomography based method and device for generating a three-dimensional blood perfusion image. The method ( 100 ) comprises: using an electrode array distributed in a three-dimensional space to perform electrical impedance measurement on a human body region to be measured so as to obtain an electrical impedance measurement signal ( 110 ); and on the basis of a blood perfusion signal in the electrical impedance measurement signal, reconstructing a three-dimensional blood perfusion image by means of an image reconstruction algorithm ( 120 ). Therefore, a three-dimensional image of electrical impedance variations caused by blood perfusion can be generated; and compared with a two-dimensional image in the prior art, the three-dimensional image can more intuitively reflect the blood perfusion condition of a volume area in the three-dimensional space of a human body region, and facilitates image analysis and comparison and disease detection and diagnosis.

Claims (22)

1 . An electrical impedance tomography based method for generating a three-dimensional blood perfusion image, comprising:

performing, by using an electrode array distributed in a three-dimensional space, electrical impedance measurement on a human body region to be measured so as to obtain an electrical impedance measurement signal; and

reconstructing, on the basis of a blood perfusion signal in the electrical impedance measurement signal, a three-dimensional blood perfusion image by means of an image reconstruction algorithm.

2 . The method according to claim 1 , wherein the reconstructing, on the basis of a blood perfusion signal in the electrical impedance measurement signal, a three-dimensional blood perfusion image by means of an image reconstruction algorithm further comprises:

extracting the blood perfusion signal from the electrical impedance measurement signal; and

reconstructing, by using the extracted blood perfusion signal, the three-dimensional blood perfusion image by means of the image reconstruction algorithm.

3 . The method according to claim 1 , wherein the reconstructing, on the basis of a blood perfusion signal in the electrical impedance measurement signal, a three-dimensional blood perfusion image by an image reconstruction algorithm further comprises:

reconstructing, on the basis of the electrical impedance measurement signal, a three-dimensional differential image by means of the image reconstruction algorithm; and

extracting the three-dimensional blood perfusion image reflected by the blood perfusion signal in the electrical impedance measurement signal from the three-dimensional differential image.

4 . The method according to claim 1 , wherein the electrode array is disposed on one or more impedance bands, an electrode vest, or an electrode cap, so as to realize three-dimensional distribution of electrodes.

5 . The method according to claim 2 , wherein the extracting the blood perfusion signal from the electrical impedance measurement signal further comprises:

extracting the blood perfusion signal from the electrical impedance measurement signal by using a time-frequency characteristic of the signal.

6 . The method according to claim 5 , wherein the extracting the blood perfusion signal from the electrical impedance measurement signal by using a time-frequency characteristic of the signal further comprises:

separating, by a band-pass filter, a signal of a specific frequency range from the electrical impedance measurement signal to form the blood perfusion signal.

7 . The method according to claim 3 , wherein the extracting the three-dimensional blood perfusion image reflected by the blood perfusion signal in the electrical impedance measurement signal from the three-dimensional differential image further comprises:

extracting the three-dimensional blood perfusion image by using a time-frequency characteristic of a pixel in the three-dimensional differential image.

8 . The method according to claim 7 , wherein the extracting the three-dimensional blood perfusion image by using a time-frequency characteristic of a pixel in the three-dimensional differential image further comprises:

separating, by a band-pass filter, a signal of a specific frequency range from a time-domain signal of each pixel in the three-dimensional differential image, so as to form a time-domain signal of a corresponding pixel in the three-dimensional blood perfusion image.

9 . An electrical impedance tomography based device for generating a three-dimensional blood perfusion image, comprising:

an electrode array, distributed in a three-dimensional space, and configured to perform electrical impedance measurement on a human body region to be measured so as to obtain an electrical impedance measurement signal; and

an image reconstruction processor, configured to execute a program stored in a memory, so as to reconstruct, on the basis of a blood perfusion signal in the electrical impedance measurement signal, a three-dimensional blood perfusion image by means of an image reconstruction algorithm.

10 . The device according to claim 9 , wherein the electrode array is disposed on one or more impedance bands, an electrode vest, or an electrode cap, so as to realize three-dimensional distribution of electrodes.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2023
From: BEIJING HUARUI BOSHI MEDICAL IMAGING TECHNOLOGY CO., LTD.
To: BEIJING HUARUI BOSHI MEDICAL IMAGING TECHNOLOGY CO., LTD.; TSINGHUA UNIVERSITY
Reel/Frame 065739/0075 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2022
From: ZHANG, KE; ZHANG, XIN; WANG, YIBING; YU, YANG
To: BEIJING HUARUI BOSHI MEDICAL IMAGING TECHNOLOGY CO., LTD.
Reel/Frame 060374/0838 →