Skip to main content

Three-Dimensional Shear Wave Elastography Using a 2D Row Column Addressing (RCA) Array.

Publication ,  Journal Article
Dong, Z; Kim, J; Huang, C; Lowerison, MR; Lok, U-W; Chen, S; Song, P
Published in: BME frontiers
January 2022

Objective. To develop a 3D shear wave elastography (SWE) technique using a 2D row column addressing (RCA) array, with either external vibration or acoustic radiation force (ARF) as the shear wave source. Impact Statement. The proposed method paves the way for clinical translation of 3D SWE based on the 2D RCA, providing a low-cost and high volume rate solution that is compatible with existing clinical systems. Introduction. SWE is an established ultrasound imaging modality that provides a direct and quantitative assessment of tissue stiffness, which is significant for a wide range of clinical applications including cancer and liver fibrosis. SWE requires high frame rate imaging for robust shear wave tracking. Due to the technical challenges associated with high volume rate imaging in 3D, current SWE techniques are typically confined to 2D. Advancing SWE from 2D to 3D is significant because of the heterogeneous nature of tissue, which demands 3D imaging for accurate and comprehensive evaluation. Methods. A 3D SWE method using a RCA array was developed with a volume rate up to 2000 Hz. The performance of the proposed method was systematically evaluated on tissue-mimicking elasticity phantoms and in an in vivo case study. Results. 3D shear wave motion induced by either external vibration or ARF was successfully detected with the proposed method. Robust 3D shear wave speed maps were reconstructed for phantoms and in vivo. Conclusion. The high volume rate 3D imaging provided by the 2D RCA array provides a robust and practical solution for 3D SWE with a clear pathway for future clinical translation.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

BME frontiers

DOI

EISSN

2765-8031

ISSN

2765-8031

Publication Date

January 2022

Volume

2022

Start / End Page

9879632
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Dong, Z., Kim, J., Huang, C., Lowerison, M. R., Lok, U.-W., Chen, S., & Song, P. (2022). Three-Dimensional Shear Wave Elastography Using a 2D Row Column Addressing (RCA) Array. BME Frontiers, 2022, 9879632. https://doi.org/10.34133/2022/9879632
Dong, Zhijie, Jihun Kim, Chengwu Huang, Matthew R. Lowerison, U-Wai Lok, Shigao Chen, and Pengfei Song. “Three-Dimensional Shear Wave Elastography Using a 2D Row Column Addressing (RCA) Array.BME Frontiers 2022 (January 2022): 9879632. https://doi.org/10.34133/2022/9879632.
Dong Z, Kim J, Huang C, Lowerison MR, Lok U-W, Chen S, et al. Three-Dimensional Shear Wave Elastography Using a 2D Row Column Addressing (RCA) Array. BME frontiers. 2022 Jan;2022:9879632.
Dong, Zhijie, et al. “Three-Dimensional Shear Wave Elastography Using a 2D Row Column Addressing (RCA) Array.BME Frontiers, vol. 2022, Jan. 2022, p. 9879632. Epmc, doi:10.34133/2022/9879632.
Dong Z, Kim J, Huang C, Lowerison MR, Lok U-W, Chen S, Song P. Three-Dimensional Shear Wave Elastography Using a 2D Row Column Addressing (RCA) Array. BME frontiers. 2022 Jan;2022:9879632.

Published In

BME frontiers

DOI

EISSN

2765-8031

ISSN

2765-8031

Publication Date

January 2022

Volume

2022

Start / End Page

9879632