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Two-dimensional phased arrays for application in surgery: Scanning by several focuses
Authors:L R Gavrilov  J W Hand  I G Yushina
Institution:(1) Andreev Acoustics Institute, ul. Shvernika 4, Moscow, 117036, Russia;(2) Hammersmith Hospital, Imperial College, London, W12 0HS, UK;(3) Shirshov Oceanology Institute, Russian Academy of Sciences, Nakhimovskii pr. 36, Moscow, 117851, Russia
Abstract:Numerical simulation and comparative analysis of acoustic fields formed by two-dimensional phased arrays designed for ultrasonic surgery are conducted for the case of scanning by several focuses (in particular, by nine focuses arranged in a line and also by an array of nine focuses forming a 3×3 square grid). Calculations are performed for arrays with elements positioned at the surface both regularly (in square, ring, or hexagonal patterns) and randomly. Criteria for evaluating the “quality” of the intensity distributions in the field formed by the array in the case of scanning by several focuses are proposed. The quality of the intensity distributions for arrays containing 255 and 256 elements 5 mm in diameter arranged in regular patterns on the array’s surface (in square, ring, or hexagonal patterns) is inferior to that for arrays containing 256 randomly positioned elements. Among the regular arrays, the highest quality of intensity distributions is obtained for ring arrays, and the lowest quality is obtained for arrays with elements arranged in square or hexagonal patterns. The irregularity in the element positioning the array’s surface improves the quality of intensity distributions by reducing the secondary intensity peaks in the field formed by the array and, primarily, in the focal plane.
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