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超声成像引导体外冲击波治疗中的相位差校正:可行性研究。

Phase aberration correction for ultrasound imaging guided extracorporeal shock wave therapy (ESWT): Feasibility study.

机构信息

Department of Electronic Engineering, Sogang University, Seoul 04107, Korea.

Medical Solutions Institute, Sogang University, Seoul 04107, Korea.

出版信息

Ultrasonics. 2023 Jul;132:107011. doi: 10.1016/j.ultras.2023.107011. Epub 2023 Apr 11.

Abstract

Image guidance of extracorporeal shock wave therapy (ESWT) is important to enhance its efficacy while lowering pain in patients. Real-time ultrasound imaging is an appropriate modality for image guidance, but its image quality substantially reduces due to severe phase aberration from the different speed of sound between soft tissues and a gel pad, which is utilized to control a therapeutic focal point in ESWT. This paper presents a phase aberration correction method for improving image quality in the ultrasound imaging guided ESWT. To correct an error from phase aberration, a time delay based on a two-layer model with different speeds of sound is calculated for dynamic receive beamforming. For the phantom and in vivo studies, a rubber type gel pad (i.e., 1400 m/s) with a specific thickness (3 or 5-cm) was placed on the top of soft tissue and full scanline RF data were acquired. In the phantom study, with phase aberration correction, image quality was highly increased compared to image reconstructions with a fixed speed of sound (i.e., 1540 or 1400 m/s), i.e., 1.1 vs. 2.2 and 1.3 mm in -6dB lateral resolution and 0.64 vs. 0.61 and 0.56 in contrast-to-noise ratio (CNR), respectively. From an in vivo musculoskeletal (MSK) imaging, the phase aberration correction method provided a clearly improved depiction of muscle fibers in a rectus femoris region. These results indicate that the proposed method enables effective imaging guidance of ESWT by improving image quality of ultrasound imaging in real-time.

摘要

体外冲击波治疗 (ESWT) 的图像引导对于提高疗效和降低患者疼痛非常重要。实时超声成像是一种合适的图像引导方式,但由于软组织和凝胶垫之间的声速差异导致严重的相位误差,其图像质量会大大降低,凝胶垫用于控制 ESWT 的治疗焦点。本文提出了一种用于提高超声成像引导 ESWT 中图像质量的相位误差校正方法。为了校正相位误差,根据具有不同声速的两层模型计算基于时间延迟的动态接收波束形成的误差。在体模和体内研究中,在软组织顶部放置具有特定厚度(3 或 5 厘米)的橡胶型凝胶垫(即 1400 m/s),并采集全扫描线 RF 数据。在体模研究中,与使用固定声速(即 1540 或 1400 m/s)的图像重建相比,使用相位误差校正后,图像质量得到了显著提高,即-6dB 横向分辨率分别提高了 1.1 倍和 1.3 倍,对比噪声比(CNR)分别提高了 0.64 倍和 0.56 倍。从肌肉骨骼(MSK)的体内成像来看,相位误差校正方法明显改善了股直肌区域的肌肉纤维描绘。这些结果表明,该方法通过提高实时超声成像的图像质量,实现了 ESWT 的有效成像引导。

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