Fry F J, Sanghvi N T, Morris R F, Clendenon J L, Dines K A, Patrick J T, Goss S A
Invest Radiol. 1982 Sep-Oct;17(5):463-9. doi: 10.1097/00004424-198209000-00005.
An integrated ultrasonic system has been developed employing static gray scale imaging, digital image processing, and analyses of quantitative ultrasonic backscatter for interactive interrogation of brain through the adult human skull. Operating at 750 kHz, to avoid severe spatial and temporal pulse distortion which accompany ultrasonic transkull transmission at higher frequencies, storage and image processing of successive images taken at selected gain settings in the same image plane allow the reconstruction of a composite cross-section of the brain and skull and enable visualization of internal brain structure. Analyses of digitized backscatter data obtained with the visualization transducer over selectable interrogation paths referenced to the cross-sectional image permit quantitative classification of tissue type independent of qualitative visual image analysis, such that enhanced diagnostic potential is provided. A previous paper described in detail the modifications of the commercial ultrasound diagnostic unit which serves as the core of this system. The present paper presents the rationale for the integrated system design approach, as well as a description of graphics display and tissue classification features which have been incorporated into the instrumentation configuration and are deemed necessary for successful transkull ultrasonic imaging and diagnosis.
已经开发出一种集成超声系统,该系统采用静态灰度成像、数字图像处理以及对定量超声背向散射的分析,以便通过成人颅骨对大脑进行交互式检测。该系统工作在750kHz,以避免在较高频率下超声经颅骨传输时伴随的严重空间和时间脉冲失真。在同一图像平面中,对在选定增益设置下拍摄的连续图像进行存储和图像处理,可以重建大脑和颅骨的复合横截面,并能够可视化大脑内部结构。通过可视化换能器在参考横截面图像的可选检测路径上获得的数字化背向散射数据的分析,允许独立于定性视觉图像分析对组织类型进行定量分类,从而提供增强的诊断潜力。先前的一篇论文详细描述了作为该系统核心的商用超声诊断单元的改进。本文介绍了集成系统设计方法的基本原理,以及对图形显示和组织分类功能的描述,这些功能已被纳入仪器配置中,并且被认为是成功进行经颅骨超声成像和诊断所必需的。