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钽和钛脊柱内固定植入后磁共振成像与计算机断层扫描图像质量的比较。

A comparison of magnetic resonance and computed tomographic image quality after the implantation of tantalum and titanium spinal instrumentation.

作者信息

Wang J C, Yu W D, Sandhu H S, Tam V, Delamarter R B

机构信息

Department of Orthopaedic Surgery, University of California, Los Angeles Center for Health Sciences, USA.

出版信息

Spine (Phila Pa 1976). 1998 Aug 1;23(15):1684-8. doi: 10.1097/00007632-199808010-00014.

Abstract

STUDY DESIGN

Tantalum- and titanium-based lumbar interbody fusion devices were implanted into two fresh human cadavers, and magnetic resonance and computed tomographic imaging were performed to evaluate adjacent spinal structures and the amount of metallic artifact.

OBJECTIVE

The objective of this study was to prospectively compare the preliminary results of magnetic resonance imaging and computed tomography scanning image quality after the implantation of both titanium and tantalum spinal implants.

SUMMARY OF BACKGROUND DATA

The availability of tantalum and titanium spinal implants brings theoretical magnetic resonance imaging compatibility along with several other desirable characteristics. The magnetic resonance imaging and computed tomographic imaging of tantalum spinal instrumentation has never been studied previously or compared with titanium instrumentation.

METHODS

Titanium and tantalum spinal implants produced for anterior spinal fusion were each placed at two levels in the lumbar spine of two fresh cadaver specimens. Sequential spin echo T1-weighted and T2-weighted magnetic resonance imaging studies and computed tomographic scans were obtained. The resulting images were then graded to describe and compare the behavior of tantalum metal in magnetic resonance imaging and computed tomographic studies.

RESULTS

Good T1 and T2 images were obtained that allowed visualization of the neural structures with minimal artifact. The optimal T1 images for tantalum metal were similar in quality to the optimal T1 parameters for titanium metal. T2 images for both tantalum and titanium metal were obtained with similar results for both metals. Gradient echo magnetic resonance imaging scans of both were poorly imaged with a large amount of artifact. Computed tomographic studies of tantalum implants produced a large amount of metal artifact when compared with computed tomographic studies of titanium implants.

CONCLUSIONS

High-quality magnetic resonance imaging studies can be obtained after the implantation of both titanium and tantalum spinal instrumentation. Both of the metals produce similar images on magnetic resonance imaging studies with comparable amounts of metallic artifact. High-quality computed tomographic scans of titanium implants can be obtained with minimal distortion secondary to artifact. However, computed tomographic scanning is not the imaging modality of choice for the tantalum spinal implants because of the large amounts of artifact.

摘要

研究设计

将钽基和钛基腰椎椎间融合器植入两具新鲜人体尸体中,并进行磁共振成像和计算机断层扫描成像,以评估相邻脊柱结构及金属伪影量。

目的

本研究的目的是前瞻性比较钛和钽脊柱植入物植入后磁共振成像和计算机断层扫描图像质量的初步结果。

背景资料总结

钽和钛脊柱植入物的可用性带来了理论上的磁共振成像兼容性以及其他一些理想特性。钽脊柱器械的磁共振成像和计算机断层扫描成像此前从未被研究过,也未与钛器械进行比较。

方法

将用于前路脊柱融合的钛和钽脊柱植入物分别置于两具新鲜尸体标本腰椎的两个节段。获取连续的自旋回波T1加权和T2加权磁共振成像研究以及计算机断层扫描。然后对所得图像进行分级,以描述和比较钽金属在磁共振成像和计算机断层扫描研究中的表现。

结果

获得了良好的T1和T2图像,能以最小伪影显示神经结构。钽金属的最佳T1图像质量与钛金属的最佳T1参数相似。钽和钛金属的T2图像结果相似。两者的梯度回波磁共振成像扫描因大量伪影成像不佳。与钛植入物的计算机断层扫描研究相比,钽植入物的计算机断层扫描研究产生大量金属伪影。

结论

钛和钽脊柱器械植入后均可获得高质量的磁共振成像研究。两种金属在磁共振成像研究中产生的图像相似,金属伪影量相当。钛植入物的高质量计算机断层扫描可在伪影导致的失真最小的情况下获得。然而,由于大量伪影,计算机断层扫描并非钽脊柱植入物的首选成像方式。

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