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医学应用中的高频超声透视

A perspective on high-frequency ultrasound for medical applications.

作者信息

Mamou Jonathan, Aristizába Orlando, Silverman Ronald H, Ketterling Jeffrey A

机构信息

Riverside Research Institute, F. L. Lizi Center for Biomedical Engineering, New York, NY, USA.

Skirball Institute of Biomolecular Medicine, New York University School of Medicine, New York, NY, USA.

出版信息

Phys Procedia. 2010 Jan 1;3(1):289-295. doi: 10.1016/j.phpro.2010.01.039. Epub 2010 Mar 3.

Abstract

High-frequency ultrasound (HFU, > 15 MHz) is a rapidly developing field. HFU is currently used and investigated for ophthalmologic, dermatologic, intravascular, and small-animal imaging. HFU offers a non-invasive means to investigate tissue at the microscopic level with resolutions often better than 100 μm. However, fine resolution is only obtained over the limited depth-of-field (~1 mm) of single-element spherically-focused transducers typically used for HFU applications. Another limitation is penetration depth because most biological tissues have large attenuation at high frequencies. In this study, two 5-element annular arrays with center frequencies of 17 and 34 MHz were fabricated and methods were developed to obtain images with increased penetration depth and depth-of-field. These methods were used in ophthalmologic and small-animal imaging studies. Improved blood sensitivity was obtained when a phantom mimicking a vitreous hemorrhage was imaged. Central-nervous systems of 12.5-day-old mouse embryos were imaged and in three dimensions for the first time.

摘要

高频超声(HFU,>15兆赫兹)是一个快速发展的领域。HFU目前用于眼科、皮肤科、血管内和小动物成像,并正在对此进行研究。HFU提供了一种非侵入性手段,能够在微观层面研究组织,其分辨率通常优于100微米。然而,仅在通常用于HFU应用的单元素球形聚焦换能器的有限景深(约1毫米)内才能获得高分辨率。另一个限制是穿透深度,因为大多数生物组织在高频下具有较大的衰减。在本研究中,制作了两个中心频率分别为17兆赫兹和34兆赫兹的五元素环形阵列,并开发了获得具有增加的穿透深度和景深的图像的方法。这些方法被用于眼科和小动物成像研究。对模拟玻璃体积血的体模进行成像时,获得了更高的血液敏感度。首次对12.5天大的小鼠胚胎的中枢神经系统进行了三维成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c60/11661831/616b11316526/nihms-2038293-f0001.jpg

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A perspective on high-frequency ultrasound for medical applications.医学应用中的高频超声透视
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