Three-dimensional freehand ultrasound: Image reconstruction and volume analysis

被引:148
作者
Barry, CD [1 ]
Allott, CP [1 ]
John, NW [1 ]
Mellor, PM [1 ]
Arundel, PA [1 ]
Thomson, DS [1 ]
Waterton, JC [1 ]
机构
[1] ZENECA PHARMACEUT, DEPT LEAD DISCOVERY, MACCLESFIELD SK10 4TG, CHESHIRE, ENGLAND
关键词
three-dimensional ultrasound; free-hand image registration; compound data reconstruction; Grey-scale segmentation; volume measurement;
D O I
10.1016/S0301-5629(97)00123-3
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
A system is described that rapidly produces a regular 3-dimensional (3-D) data block suitable for processing by conventional image analysis and volume measurement software, The system uses electromagnetic spatial location of 2-dimensional (2-D) freehand-scanned ultrasound B-mode images, custom-built signal-conditioning hardware, UNIX-based computer processing and an efficient 3-D reconstruction algorithm, Utilisation of images from multiple angles of insonation, ''compounding,'' reduces speckle contrast, improves structure coherence within the reconstructed grey-scale image and enhances the ability to detect structure boundaries and to segment and quantify features, Volume measurements using a series of water-filled latex and cylindrical foam rubber phantoms with volumes down to 0.7 mt show that a high degree of accuracy, precision and reproducibility can be obtained, Extension of the technique to handle in vivo data sets by allowing physiological criteria to be taken into account in selecting the images used for reconstruction is also illustrated. (C) 1997 World Federation for Ultrasound in Medicine & Biology.
引用
收藏
页码:1209 / 1224
页数:16
相关论文
共 35 条
[1]  
ALLOTT CP, 1996, EUR J ULTRASOUND S, V3, pS9
[2]   USE OF ACTIVE SHAPE MODELS FOR LOCATING STRUCTURE IN MEDICAL IMAGES [J].
COOTES, TF ;
HILL, A ;
TAYLOR, CJ ;
HASLAM, J .
IMAGE AND VISION COMPUTING, 1994, 12 (06) :355-365
[3]   3D ULTRASONIC IMAGE FEATURE LOCALIZATION BASED ON MAGNETIC SCANHEAD TRACKING - IN-VITRO CALIBRATION AND VALIDATION [J].
DETMER, PR ;
BASHEIN, G ;
HODGES, T ;
BEACH, KW ;
FILER, EP ;
BURNS, DH ;
STRANDNESS, DE .
ULTRASOUND IN MEDICINE AND BIOLOGY, 1994, 20 (09) :923-936
[4]   An object-oriented system for 3D medical image analysis [J].
Elliott, PJ ;
Diedrichsen, J ;
Goodson, KJ ;
RisteSmith, R ;
Sivewright, GJ .
IBM SYSTEMS JOURNAL, 1996, 35 (01) :4-24
[5]   3-DIMENSIONAL (3D) ULTRASOUND IMAGING OF THE GALLBLADDER AND DILATED BILIARY TREE - RECONSTRUCTION FROM REAL-TIME B-SCANS [J].
FINE, D ;
PERRING, S ;
HERBETKO, J ;
HACKING, CN ;
FLEMING, JS ;
DEWBURY, KC .
BRITISH JOURNAL OF RADIOLOGY, 1991, 64 (767) :1056-1057
[6]   A NEW APPROACH FOR 3-DIMENSIONAL RECONSTRUCTION OF ARTERIAL ULTRASONOGRAPHY [J].
FRANCESCHI, D ;
BONDI, JA ;
RUBIN, JR .
JOURNAL OF VASCULAR SURGERY, 1992, 15 (05) :800-805
[7]  
GARDENER JE, 1991, RADIOLOGY, V181, P133
[8]   DYNAMIC 3-DIMENSIONAL ECHOCARDIOGRAPHIC RECONSTRUCTION OF THE INTACT HUMAN LEFT-VENTRICLE - TECHNIQUE AND INITIAL OBSERVATIONS IN PATIENTS [J].
GEISER, EA ;
ARIET, M ;
CONETTA, DA ;
LUPKIEWICZ, SM ;
CHRISTIE, LG ;
CONTI, CR .
AMERICAN HEART JOURNAL, 1982, 103 (06) :1056-1065
[9]   IN-VITRO EVALUATION OF 3-DIMENSIONAL ULTRASONOGRAPHY IN VOLUME ESTIMATION OF ABDOMINAL ORGANS [J].
GILJA, OH ;
THUNE, N ;
MATRE, K ;
HAUSKEN, T ;
ODEGAARD, S ;
BERSTAD, A .
ULTRASOUND IN MEDICINE AND BIOLOGY, 1994, 20 (02) :157-165
[10]   3-DIMENSIONAL US - PRELIMINARY CLINICAL-EXPERIENCE [J].
HAMPER, UM ;
TRAPANOTTO, V ;
SHETH, S ;
DEJONG, MR ;
CASKEY, CI .
RADIOLOGY, 1994, 191 (02) :397-401