...
首页> 外文期刊>Spine >Minimizing ferromagnetic artefact with metallic lumbar total disc arthroplasty devices at adjacent segments: technical note.
【24h】

Minimizing ferromagnetic artefact with metallic lumbar total disc arthroplasty devices at adjacent segments: technical note.

机译:在相邻区段的金属腰部总碟形塑料术装置最小化铁磁艺术品:技术说明。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

STUDY DESIGN: Technical report. OBJECTIVE: To minimize the gross artefact associated with a conventional metallic lumbar total disc arthroplasty (TDA) device on a conventional high field-strength (1.5 Tesla [T]) magnetic resonance imaging (MRI) scanner. SUMMARY OF BACKGROUND DATA: Gross artefact is often apparent with ferromagnetic metallic TDA devices on conventional high field-strength MRI scanners. Such artefact completely obliterates MRI assessment at the operated level, and usually obscures visualization of adjacent segments. Because adjacent segment preservation is a raison d'etre of spinal TDA, clarity of imaging at this latter level is imperative. A failure to image adjacent segments may presage investigations, which are either invasive (e.g., myelography) or associated with significant radiation hazard (e.g., computed tomography), both with significantly less diagnostic sensitivity. This could negatively direct TDA choice with certain TDAs. METHODS: Progressive modifications to specific imaging parameter settings were sought on a conventional high field-strength (1.5T) closed-bore scanner to match the minimal artefact previously observed on a lower field-strength (0.3T) open scanner. Direct comparisons were made between each modified protocol image obtained initially using a phantom; however, routine postoperative MRIs were subsequently obtained in n = 40 patients following lumbar TDA insertion. RESULTS: Key parameter modifications were required in the receive bandwidth, the strength of the frequency encoding gradient, as well as in the echo train length. The use of higher specification "focused gradients" was also avoided. The overall effect was to reduce the slew rate of the gradients, which limited artefact due to a decrease in phase dispersion. Such appearances effectively matched with those previously obtained on the low field-strength (0.3T) open scanner in n = 40 patients. CONCLUSION: Relatively simple modifications to MRI parameter settings can be made on conventional high field-strength (1.5T) closed-bore scanners, which minimize metal artefact and enhance imaging of adjacent segments with ferromagnetic TDA devices. Such modifications effectively match appearances to those obtained with outmoded low field-strength (0.3T) open-bore scanners.
机译:研究设计:技术报告。目的:最小化与传统金属腰部总椎间盘置换术(TDA)装置相关的毛坯遗传学术(TDA)装置在传统的高场强度(1.5特斯拉[T])磁共振成像(MRI)扫描仪上。背景数据摘要:常规高场强MRI扫描仪的铁磁金属TDA器件常见明显。这些人工制品完全删除了在操作水平的MRI评估,并且通常模糊相邻段的可视化。由于相邻的段保存是脊柱TDA的Rairon d'Etre,因此在后一级的成像清晰度是必要的。图像相邻段的失败可以预设调查,其是侵入性(例如,myElography)或与显着的辐射危害(例如,计算机断层扫描)相关,无论是显着更少的诊断敏感性。这可能会对某些TDA的TDA选择负面直接。方法:寻求对传统的高场强(1.5T)闭孔扫描仪寻求对特定成像参数设置的渐进修改,以匹配先前在较低场强(0.3T)开路扫描仪上观察到的最小艺术品。在最初使用幻像获得的每个修改的协议图像之间进行直接比较;然而,随后在腰部TDA插入后N = 40名患者中获得常规术后MRI。结果:在接收带宽中需要键参数修改,频率编码梯度的强度以及回声列车长度。还避免了使用更高规格的“聚焦梯度”。总体效果是降低梯度的转换速率,由于相分散的降低导致的人工制品有限。这种外观与先前在N = 40名患者的低场强(0.3T)开扫描仪上获得的那些出现。结论:对MRI参数设置的相对简单的修改可以在传统的高场 - 强度(1.5T)闭孔扫描仪上进行,这使金属伪像最小化与铁磁TDA器件的相邻区段的成像。这种修改有效地将外观与过时的低场强(0.3T)开孔扫描仪一起匹配。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号