Image post-processing method of CT liver perfusion and CT liver perfusion method

A liver perfusion and post-processing technology, applied in the field of medical devices, can solve problems such as large changes in the peak value of image gray values, time curves of wrong contrast agent concentrations, and influence on the calculation results of perfusion parameters, so as to achieve the effect of improving accuracy

Active Publication Date: 2017-02-08
SHANGHAI UNITED IMAGING HEALTHCARE
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Problems solved by technology

However, for different patients and different contrast agent injection doses and speeds, the peak value of the image gray value of the blood vessel area varies greatly. When operating manually, it is easy to generate many false positive areas, resulting in the acquisition of wrong contrast agent concentration. time curve, which in turn affects the calculation results of the final perfusion parameters

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  • Image post-processing method of CT liver perfusion and CT liver perfusion method
  • Image post-processing method of CT liver perfusion and CT liver perfusion method
  • Image post-processing method of CT liver perfusion and CT liver perfusion method

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no. 1 example

[0040] The first embodiment of the image post-processing method of CT liver perfusion provided by the present invention includes:

[0041] Step S31 is executed to obtain a sequence of CT liver perfusion images. The present invention forms a CT liver perfusion image sequence by way of CT scanning. In this embodiment, a CT liver perfusion image sequence is obtained from a CT scanner. Since a CT scan of the liver is usually performed every 1-4 seconds, a total of 15-20 scans are performed, therefore, 15-20 groups of three-dimensional volume data about the human liver can be obtained from the CT scanner, and the 15 ~20 sets of three-dimensional volume data correspond to the information collected by CT scanning on the human liver at different time points, and are arranged according to time to obtain CT liver perfusion image sequences.

[0042] Step S32 is executed to identify the abdominal aorta from the CT liver perfusion image sequence, so as to obtain the time curve of contras...

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Abstract

The invention provides a CT liver-perfusion image post-processing method and a CT liver-perfusion method. The CT liver-perfusion image post-processing method includes: obtaining a CT liver-perfusion image sequence and identifying an abdominal aorta from the CT liver-perfusion image sequence so as to obtain a time curve of a hepatic-artery contrast-agent concentration; and based on the time curve of the hepatic-artery contrast-agent concentration, calculating a contrast-agent concentration time curve of each pixel point and obtaining liver-perfusion parameters. The invention also provides a CT liver-perfusion method which uses the CT liver-perfusion image post-processing method. The CT liver-perfusion image post-processing method and the CT liver-perfusion method are higher in accuracy.

Description

technical field [0001] The invention relates to the field of medical devices, in particular to an image post-processing method of CT liver perfusion and a CT liver perfusion method. Background technique [0002] Perfusion refers to the function of blood to transport oxygen and other substances carried by blood to surrounding tissues through the network of capillaries. Hepatic perfusion refers to the process in which blood passes through the hepatic artery, hepatic portal vein and hepatic sinusoids, and the oxygen and other substances in it are transported to the liver tissue for utilization or transformation, which is generally equivalent to the blood flow process. [0003] Electronic computer X-ray tomography (CT) perfusion imaging is to scan the arterial layer of the selected layer after intravenous injection of contrast agent to obtain the time-density curve of each pixel in the layer ( time-density curve, TDC), and then according to the curve, calculate perfusion parame...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G06T7/00G06F19/00
CPCG06T7/0012G06T2207/10016G06T2207/10081G06T2207/20061G06T2207/30056
Inventor 王潚崧
Owner SHANGHAI UNITED IMAGING HEALTHCARE
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