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软组织厚度自动测量器械的设计与实验研究

史琴 宋成利 张宽 吕坤勇 周宇 毛琳 郝进争

北京生物医学工程2018,Vol.37Issue(3):297-302,6.
北京生物医学工程2018,Vol.37Issue(3):297-302,6.DOI:10.3969/j.issn.1002-3208.2018.03.013

软组织厚度自动测量器械的设计与实验研究

Design and experimental research on the automatic instrument for thickness measurement of soft tissues

史琴 1宋成利 1张宽 1吕坤勇 1周宇 1毛琳 1郝进争2

作者信息

  • 1. 上海理工大学医疗器械与食品学院 上海200093
  • 2. 上海宇度医学科技股份(集团)有限公司 上海201318
  • 折叠

摘要

Abstract

Objective To study the key technologies for automatic thickness measurement of soft tissues,and to design the instrument for thickness measurement and verify its feasibility and accuracy by experiments. Methods An experimental system for measuring thickness was designed. The feedback and control of the measurement structure were achieved by the slowing direct-current motor with an encoder. The relationship between master motion and slave motion was built according to the transmission between internal structures. Finally,experiments for thickness measurement were conducted,and,the error size and distribution were analyzed by comparing results of the experiment group with those of the contrast group. Results 27 pairs of thickness data were produced from 9 groups of experiments. The average error was -0.07 mm and the variance was 0.03 mm2. There was a small error fluctuation when the data was divided by experiment time,while the error fluctuation was obvious when divided by thickness. Conclusions The instrument for thickness measurement has been shown feasible with a small average error for all data,in spite of the existence of errors. The experiment time, which determines the initial measurement position, has great influence on the result. However, different thickness, which means different opening angle of the instrument,shows negligible effect on the measuring data.

关键词

软组织/自动测量/组织厚度/可行性/误差分析

Key words

soft tissue/automatic measurement/tissue thickness/feasibility/error analysis

分类

医药卫生

引用本文复制引用

史琴,宋成利,张宽,吕坤勇,周宇,毛琳,郝进争..软组织厚度自动测量器械的设计与实验研究[J].北京生物医学工程,2018,37(3):297-302,6.

基金项目

国家自然科学基金(51377024)资助 (51377024)

北京生物医学工程

OACSTPCD

1002-3208

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