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[三维超声成像的可能性]

[Possibilities of 3-dimensional ultrasound imaging].

作者信息

Sohn C, Grotepass J, Swobodnik W

机构信息

Abteilung Angiologie Universitätsklinik Essen.

出版信息

Ultraschall Med. 1989 Dec;10(6):307-13. doi: 10.1055/s-2007-1006013.

DOI:10.1055/s-2007-1006013
PMID:2696091
Abstract

This is a report on the clinical use of sonographic imaging. Experimental studies have shown that parallel sonographic sections are available only in vitro, which means no in-vivo three-dimensional reconstruction is possible as it is with magnetic resonance and computed tomography. The idea that a coordinated sequence of sections can be obtained by spatial rotation of the plane of sound so that the individual sections differ from one another by defined angular distances, enables three-dimensional reconstruction of sonographic in-vivo sections. A transducer was constructed that enables the production of sonographic sections rotating around a fixed center of rotation. Its clinical usefulness was tried and confirmed in the imaging of early pregnancies, benign and malignant carcinomas of the breast, and in imaging a gallbladder with a solitary gallstone. Three-dimensional imaging can be achieved either as a ring-shaped structure or with a continuous surface. This points to the possibility of diagnosing malformations early in pregnancy if the number of sections is sufficiently high. In tumour imaging the malignant tumour seems to be clearly distinguishable from the benign one; three-dimensional diagnosis is likely to furnish important additional criteria in diagnosis. Further clinical studies will have to verify this.

摘要

这是一篇关于超声成像临床应用的报告。实验研究表明,平行超声切面仅在体外可用,这意味着与磁共振成像和计算机断层扫描不同,体内三维重建是不可能的。通过声平面的空间旋转可以获得一系列相互协调的切面,使得各个切面之间存在特定的角度距离,这一想法实现了超声体内切面的三维重建。构建了一种能够产生围绕固定旋转中心旋转的超声切面的换能器。其临床实用性在早期妊娠成像、乳腺良恶性肿瘤成像以及有单个胆结石的胆囊成像中得到了验证。三维成像既可以呈现为环形结构,也可以具有连续表面。这表明如果切面数量足够多,有可能在妊娠早期诊断出畸形。在肿瘤成像中,恶性肿瘤似乎明显有别于良性肿瘤;三维诊断可能会为诊断提供重要的额外标准。进一步的临床研究将对此进行验证。

相似文献

1
[Possibilities of 3-dimensional ultrasound imaging].[三维超声成像的可能性]
Ultraschall Med. 1989 Dec;10(6):307-13. doi: 10.1055/s-2007-1006013.
2
[Initial studies of 3-dimensional imaging using ultrasound].[超声三维成像的初步研究]
Z Geburtshilfe Perinatol. 1988 Nov-Dec;192(6):241-8.
3
[3-dimensional organ representation with ultrasound. Experimental studies--computer simulation].[超声三维器官成像。实验研究——计算机模拟]
Fortschr Med. 1989 Apr 30;107(13):281-4.
4
[Three-dimensional ultrasonic diagnosis in gynecology and obstetrics].
Geburtshilfe Frauenheilkd. 1991 May;51(5):335-40. doi: 10.1055/s-2007-1026152.
5
[3-dimensional sonography--technical concept and image-producing possibilities].
Ultraschall Med. 1984 Feb;5(1):14-20. doi: 10.1055/s-2007-1012059.
6
[3-dimensional organ image using ultrasound].[使用超声的三维器官图像]
Ultraschall Med. 1990 Dec;11(6):295-301. doi: 10.1055/s-2007-1011580.
7
[The advantages of spatial, three-dimensional ultrasound imaging in clinical application].[空间三维超声成像在临床应用中的优势]
Bildgebung. 1994 Jun;61(2):87-94.
8
[Clinical application of 3-dimensional ultrasound display. Initial results].[三维超声显示的临床应用。初步结果]
Dtsch Med Wochenschr. 1989 Apr 7;114(14):534-7. doi: 10.1055/s-2008-1066630.
9
[3-dimensional ultrasound image of the infant hip].[婴儿髋关节的三维超声图像]
Ultraschall Med. 1990 Dec;11(6):302-5. doi: 10.1055/s-2007-1011581.
10
[Three-dimensional ultrasound imaging of benign and malignant breast tumors--initial clinical experiences].
Geburtshilfe Frauenheilkd. 1992 Sep;52(9):520-5. doi: 10.1055/s-2007-1023173.

引用本文的文献

1
Rapid prototyping techniques for anatomical modelling in medicine.医学中用于解剖建模的快速成型技术。
Ann R Coll Surg Engl. 1997 May;79(3):169-74.
2
3D-surface reconstruction of intravascular ultrasound images using personal computer hardware and a motorized catheter control.使用个人计算机硬件和电动导管控制对血管内超声图像进行三维表面重建。
Cardiovasc Intervent Radiol. 1992 Mar-Apr;15(2):97-101. doi: 10.1007/BF02734099.