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Experimental study of shear wave dispersion imaging in evaluating inflammatory reaction zone after ablation in normal rabbit liver / 中华超声影像学杂志
Chinese Journal of Ultrasonography ; (12): 441-445, 2021.
Article in Chinese | WPRIM | ID: wpr-884345
ABSTRACT

Objective:

To evaluate the value of shear wave dispersion imaging in identifying inflammatory reaction zone after liver ablation in rabbits.

Methods:

The animal model was made by laser ablation of rabbit liver, and then shear wave dispersion imaging and strain elastography imaging were performed on the ablation area at 3 d, 7 d, and 14 d after ablation. The shear wave dispersion values, elastic value and strain ratio measured by shear wave elastography, shear wave dispersion and strain elastography in different regions such as central necrotic tissue, surrounding inflammatory reaction zone and normal liver tissue after ablation were analyzed.

Results:

The shear wave dispersion values of inflammatory reaction zone around ablation site, necrotic tissue in the center of ablation site and normal liver tissue in rabbits were (26.07±4.55)m·s -1·kHz -1, (21.97±10.53)m·s -1·kHz -1and (15.45±3.94)m·s -1·kHz -1, respectively, the differences were statistically significant (all P<0.05). Compared with the three time points of 3 d, 7 d and 14 d after ablation, the shear wave dispersion value of the inflammatory zone was the highest on the 7th day after ablation ( P<0.05), while the elastic value and strain ratio in this region did not change significantly among these three time points ( P>0.05).

Conclusions:

Shear wave dispersion imaging can simultaneously measure tissue elasticity and viscosity, which has certain application value in identifying the inflammatory reaction zone around the ablation site in rabbit liver.
Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Journal of Ultrasonography Year: 2021 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Journal of Ultrasonography Year: 2021 Type: Article