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超声生物显微镜的临床应用。

Clinical use of ultrasound biomicroscopy.

作者信息

Pavlin C J, Harasiewicz K, Sherar M D, Foster F S

机构信息

Department of Ophthalmology, Princess Margaret Hospital (Ontario Cancer Institute), Toronto, Canada.

出版信息

Ophthalmology. 1991 Mar;98(3):287-95. doi: 10.1016/s0161-6420(91)32298-x.

Abstract

The authors have developed a method of obtaining images of cross-sections of the intact anterior globe at microscopic resolution. High-frequency ultrasound transducers (50-100 MHz) have been developed and incorporated into a clinical B-scan device capable of producing images in the living human eye to a depth of approximately 4 mm at an axial and lateral resolution approaching 20 microns. Clinical use of this instrument is no more difficult than conventional immersion ultrasonography. The authors' results in a series of 14 clinical cases have shown that this method can provide information unavailable from any other imaging technique. Anterior segment tumors difficult to define with conventional ultrasound can be measured and the extent of invasion determined. Differentiation of tissue on the basis of internal acoustic characteristics is aided by the very fine backscatter speckle patterns at these frequencies. Pathology behind anterior segment opacities can be imaged in detail and the ability to image angle structures in cross-section allows a new quantitative method of gonioscopy. The ability to define the relationship of the iris, posterior chamber, zonules, ciliary body, and lens is potentially helpful in understanding mechanisms of glaucoma. Ocular structures can be measured with increased accuracy. Clinical ultrasound biomicroscopy (UBM) has shown significant potential as an aid in diagnoses of ocular disease.

摘要

作者们开发出一种方法,能够以微观分辨率获取完整眼球前部横截面的图像。已研发出高频超声换能器(50 - 100兆赫),并将其整合到一台临床B超设备中,该设备能够在活体人眼中生成图像,轴向和侧向分辨率接近20微米,成像深度约为4毫米。该仪器的临床应用并不比传统的浸入式超声检查更难。作者们在14例临床病例中的结果表明,这种方法能够提供其他任何成像技术都无法获取的信息。难以用传统超声界定的前部肿瘤能够被测量,其浸润范围也能被确定。基于内部声学特征对组织进行区分,得益于这些频率下非常精细的背散射斑点图案。前部混浊物背后的病理情况能够被详细成像,并且对房角结构进行横截面成像的能力使得一种新的房角镜定量方法成为可能。明确虹膜、后房、悬韧带、睫状体和晶状体之间关系的能力,在理解青光眼发病机制方面可能会有所帮助。眼部结构能够被更精确地测量。临床超声生物显微镜检查(UBM)已显示出作为辅助眼部疾病诊断的巨大潜力。

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