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中文核心期刊

刘晓, 唐浒, 孔凡凯, 赵继伟, 陈思平, 彭珏. 用于经食道超声心动图的1.5维超声探头设计[J]. 声学学报, 2024, 49(3): 410-416. DOI: 10.12395/0371-0025.2023317
引用本文: 刘晓, 唐浒, 孔凡凯, 赵继伟, 陈思平, 彭珏. 用于经食道超声心动图的1.5维超声探头设计[J]. 声学学报, 2024, 49(3): 410-416. DOI: 10.12395/0371-0025.2023317
LIU Xiao, TANG Hu, KONG Fankai, ZHAO Jiwei, CHEN Siping, PENG Jue. Design of a 1.5-dimensional ultrasound probe for transesophageal echocardiography[J]. ACTA ACUSTICA, 2024, 49(3): 410-416. DOI: 10.12395/0371-0025.2023317
Citation: LIU Xiao, TANG Hu, KONG Fankai, ZHAO Jiwei, CHEN Siping, PENG Jue. Design of a 1.5-dimensional ultrasound probe for transesophageal echocardiography[J]. ACTA ACUSTICA, 2024, 49(3): 410-416. DOI: 10.12395/0371-0025.2023317

用于经食道超声心动图的1.5维超声探头设计

Design of a 1.5-dimensional ultrasound probe for transesophageal echocardiography

  • 摘要: 设计了一种用于经食道超声心动图的1.5维超声探头, 与传统1维超声探头相比, 该探头可在仰角方向上实现变孔径、变焦点, 从而提高切片厚度在远场、近场的一致性。采用传统PZT-5H压电陶瓷作为压电材料制备了一个包含320阵元的1.5维经食道超声探头, 随后测试探头的电学性能、声学性能和声场分布情况。该探头的中心频率为5.6 MHz, −6 dB带宽为76%。在5~70 mm的探测范围内, 1维超声探头切片厚度为7~9 mm, 1.5维超声探头切片厚度为1.3~2.8 mm, 在5~30 mm探测范围内切片厚度差值不超过0.2 mm, 线靶成像显示的信息也更全面、分辨率更高。因此, 1.5维超声探头具有更广的聚焦深度、更好的远近场分布一致性以及更高的空间分辨率。

     

    Abstract: A 1.5-dimensional (1.5D) transesophageal echocardiography probe is designed and developed. Compared with the traditional 1-dimensional (1D) probe, the probe can achieve variable aperture and focus in elevation direction, thus improving the consistency of slice thickness in far field and near field. A 1.5D transesophageal ultrasonic probe with 320 elements is developed using traditional PZT-5H piezoelectric ceramics. The electrical properties, acoustic properties, and acoustic field distribution of the probe are tested. The measured center frequency and −6 dB fractional bandwidth of the 1.5D probe are 5.6 MHz and 76%, respectively. In the range of 5−70 mm, the slice thickness is 7−9 mm for 1D ultrasonic probe and 1.3−2.8 mm for 1.5D ultrasonic probe. The slice thickness difference is less than 0.2 mm in the range of 5−30 mm for 1.5D ultrasonic probe. And the information displayed by images is also more comprehensive and higher in resolution. Therefore, the 1.5D ultrasonic probe has a wider focusing depth, better distribution consistency in the near and far field, and higher spatial resolution.

     

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