Gavin Herbert Eye Institute, Department of Ophthalmology, University of California Irvine, Irvine, California, United States of America.
School of Medicine, California University of Science and Medicine, Colton, California, United States of America.
PLoS One. 2024 May 13;19(5):e0300451. doi: 10.1371/journal.pone.0300451. eCollection 2024.
The aim of this study was to evaluate the imaging capabilities of Butterfly iQ with conventional ophthalmic (piezoelectric) ultrasound (COU) for ophthalmic imaging.
Custom phantom molds were designed and imaged with Butterfly iQ and COU to compare spatial resolution capabilities. To evaluate the clinical imaging performance of Butterfly iQ and COU, a survey containing pathological conditions from human subjects, imaged with both Butterfly iQ and COU probes, was given to three retina specialists and graded on image detail, resolution, quality, and diagnostic confidence on a ten-point Likert scale. Kruskal-Wallis analysis was performed for survey responses.
Butterfly iQ and COU had comparable capabilities for imaging small axial and lateral phantom features (down to 0.1 mm) of high and low acoustic reflectivity. One of three retina specialists demonstrated a statistically significant preference for COU related to resolution, detail, and diagnostic confidence, but the remaining graders showed no significant preference for Butterfly iQ or COU across all sample images presented.
The emergence of portable ultrasound probes offers an affordable alternative to COU technologies with comparable qualitative imaging resolution down to 0.1 mm. These findings suggest the value to further study the use of portable ultrasound systems and their utility in routine eye care.
本研究旨在评估 Butterfly iQ 与传统眼科(压电)超声(COU)在眼科成像方面的成像能力。
设计了定制的幻影模具,并使用 Butterfly iQ 和 COU 对其进行成像,以比较空间分辨率能力。为了评估 Butterfly iQ 和 COU 的临床成像性能,我们向三位视网膜专家提供了一份包含来自人体患者的病理情况的调查,并使用 Butterfly iQ 和 COU 探头对其进行了成像,然后对图像细节、分辨率、质量和诊断信心进行了十点李克特量表评分。对调查结果进行了克鲁斯卡尔-瓦利斯分析。
Butterfly iQ 和 COU 具有相似的成像小轴向和横向幻影特征(低至 0.1 毫米)的能力,高和低的声反射率。三位视网膜专家中的一位表现出对 COU 相关的分辨率、细节和诊断信心的统计学显著偏好,但其余的评分者对 Butterfly iQ 或 COU 在呈现的所有样本图像上均未表现出显著偏好。
便携式超声探头的出现为 COU 技术提供了一种具有可比性的经济型替代方案,其定性成像分辨率可达 0.1 毫米。这些发现表明,有必要进一步研究便携式超声系统的使用及其在常规眼部护理中的实用性。