Obenauer S, Alamo L, Herold T, Funke M, Kopka L, Grabbe E
Department of Radiology, Georg August-University Göttingen, Robert-Koch-Strasse 40, 37075 Göttingen, Germany.
Eur Radiol. 2002 Aug;12(8):2107-11. doi: 10.1007/s00330-001-1253-6. Epub 2002 Mar 21.
Our objective was to compare a single-slice CT (SS-CT) scanner with a multi-slice CT (MS-CT) scanner in the depiction of osseous anatomic structures and fractures of the upper cervical spine. Two cervical spine specimens with artificial trauma were scanned with a SS-CT scanner (HighSpeed, CT/i, GE, Milwaukee, Wis.) by using various collimations (1, 3, 5 mm) and pitch factors (1, 1.5, 2, 3) and a four-slice helical CT scanner (LightSpeed, QX/i, GE, Milwaukee, Wis.) by using various table speeds ranging from 3.75 to 15 mm/rotation for a pitch of 0.75 and from 7.5 to 30 mm/rotation for a pitch of 1.5. Images were reconstructed with an interval of 1 mm. Sagittal and coronal multiplanar reconstructions of the primary and reconstructed data set were performed. For MS-CT a tube current resulting in equivalent image noise as with SS-CT was used. All images were judged by two observers using a 4-point scale. The best image quality for SS-CT was achieved with the smallest slice thickness (1 mm) and a pitch smaller than 2 resulting in a table speed of up to 2 mm per gantry rotation (4 points). A reduction of the slice thickness rather than of the table speed proved to be beneficial at MS-CT. Therefore, the optimal scan protocol in MS-CT included a slice thickness of 1.25 mm with a table speed of 7.5 mm/360 degrees using a pitch of 1.5 (4 points), resulting in a faster scan time than when a pitch of 0.75 (4 points) was used. This study indicates that MS-CT could provide equivalent image quality at approximately four times the volume coverage speed of SS-CT.
我们的目的是比较单层CT(SS-CT)扫描仪和多层CT(MS-CT)扫描仪在上颈椎骨解剖结构和骨折的显示方面的情况。使用不同的准直(1、3、5毫米)和螺距因子(1、1.5、2、3),用一台SS-CT扫描仪(HighSpeed,CT/i,GE,密尔沃基,威斯康星州)对两个带有人工创伤的颈椎标本进行扫描;并用一台四层螺旋CT扫描仪(LightSpeed,QX/i,GE,密尔沃基,威斯康星州),针对螺距为0.75时,使用范围从3.75至15毫米/旋转的不同床速,以及针对螺距为1.5时,使用范围从7.5至30毫米/旋转的不同床速进行扫描。图像以1毫米的间隔重建。对原始数据集和重建数据集进行矢状面和冠状面多平面重建。对于MS-CT,使用能产生与SS-CT等效图像噪声的管电流。两名观察者使用4分制对所有图像进行评判。对于SS-CT,使用最小层厚(1毫米)和小于2的螺距,从而获得高达每机架旋转2毫米的床速时,可实现最佳图像质量(4分)。在MS-CT中,层厚的减小而非床速的减小被证明是有益的。因此,MS-CT的最佳扫描方案包括层厚为1.25毫米,床速为7.5毫米/360度,螺距为1.5(4分),与使用螺距0.75(4分)时相比,扫描时间更短。本研究表明,MS-CT能够以大约SS-CT四倍的容积覆盖速度提供等效的图像质量。