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弹簧加载式粗针活检装置诱导的空化活性。

Cavitation activity induced by spring-loaded core needle biopsy devices.

作者信息

Kiviluoto Jussi, Fauconnier Maxime, Nieminen Heikki J

机构信息

Medical Ultrasonics Laboratory (MEDUSA), Department of Neuroscience and Biomedical Engineering, Aalto University, 02150, Espoo, Finland.

出版信息

Sci Rep. 2025 May 6;15(1):15825. doi: 10.1038/s41598-025-97497-z.

Abstract

Core needle biopsy is a common medical procedure to obtain tissue samples with tissue architecture for pathological assessment. One prevalent method involves the use of spring-loaded core needle biopsy devices, or "biopsy guns". Despite their intense motion dynamics when shot through tissue, possible cavitation activity has received limited attention. Cavitation bubbles imploding in biological environments are known for their mechanical effects on cells and tissue. In this study, visual and acoustic monitoring was applied to characterize and quantify cavitation phenomena around longitudinally or flexurally oscillating core needle biopsy needles, when immersed in deionized water or embedded in agarose-based tissue mimicking phantom. In water, we observed that cavitation was most prominent with side cut needle, but bubble activity was also present with front cut needle. In agarose, the intensity of the cavitation was found to decrease with increasing agarose concentration. Cavitation was still observed at 0.3% w/v agarose gel, but at 1.0% w/v gel, cavitation activity was essentially eliminated. Acoustic emission was observed with both needle types from audible to ultrasound ranges. The study suggests that cavitation as a physical mechanism can occur in operation of spring-loaded core needle biopsy devices in water and tissue-mimicking hydrogels and should be considered as an opportunity for the development of new in vivo applications related to the echogenicity of the cavitation bubbles in ultrasound imaging as well as considered as a physical mechanism for safety studies.

摘要

粗针活检是一种常见的医学操作,用于获取具有组织结构的组织样本以进行病理评估。一种普遍的方法是使用弹簧加载的粗针活检装置,即“活检枪”。尽管它们在穿过组织时具有强烈的运动动力学,但可能的空化活动却受到的关注有限。在生物环境中内爆的空化气泡因其对细胞和组织的机械作用而闻名。在本研究中,当纵向或横向振荡的粗针活检针浸入去离子水中或嵌入基于琼脂糖的组织模拟体模中时,应用视觉和声学监测来表征和量化空化现象。在水中,我们观察到侧切针的空化最为显著,但前切针也存在气泡活动。在琼脂糖中,发现空化强度随着琼脂糖浓度的增加而降低。在0.3% w/v的琼脂糖凝胶中仍观察到空化现象,但在1.0% w/v的凝胶中,空化活动基本消除。两种针型在可听范围到超声范围内均观察到声发射。该研究表明,空化作为一种物理机制可能发生在弹簧加载的粗针活检装置在水和组织模拟水凝胶中的操作过程中,应被视为开发与超声成像中空化气泡的回声性相关的新体内应用的机会,同时也应被视为安全研究的一种物理机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0693/12055970/711d32eb5301/41598_2025_97497_Fig1_HTML.jpg

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