Department of Diagnostic and Interventional Radiology, University of Tübingen, Tübingen, Germany.
Eur J Radiol. 2011 Sep;79(3):353-8. doi: 10.1016/j.ejrad.2010.07.007. Epub 2010 Aug 4.
To assess the artefact properties of a MR-compatible carbon fibre needle with a nitinol mandrin in vitro and to report first clinical experiences.
In vitro, the carbon fibre/nitinol needle was imaged at different angles against the main magnetic field (1.5T open bore magnet). A gradient echo MR fluoroscopy sequence (GRE: TR 9.3 ms, TE 3.12 ms, bandwidth 200 Hz/pixel, flip-angle 12°) and a fast turbo spin echo sequence (FSE: TR 412 ms, TE 9.7 ms, bandwidth 200 Hz/pixel, flip-angle 150°) were used. Artefact width, needle intensity contrast and needle tip location errors were assessed. In vivo, lumbar periradicular corticosteroid injections and one sclerotherapy were performed with carbon fibre needles (10 procedures) and with titanium alloy needles (2 procedures). The artefact sizes and contrasts were measured.
In vitro, artefact diameters of the carbon fibre needle ranged from 3.3 to 4.6 mm, contrasts from 0.11 to 0.52, with larger artefact contrasts and widths with the GRE sequence. Needle tip location errors of -2.1 to -2.8 mm were observed. Decreasing angles to the main field lead to smaller artefacts. In vivo, the carbon fibre/nitinol needle produced smaller artefacts (mean width FSE/GRE: 2.8mm/4.6mm) with lower contrast (0.30-0.42) than the titanium alloy needle (mean width FSE/GRE: 4.1 mm/7.5 mm, contrast 0.60-0.73).
The carbon fibre/nitinol needle is useful for performing MR-guided interventions at 1.5T, producing more subtle artefacts than a titanium alloy needle, but with an incomplete depiction and thus inaccurate localization of the needle tip.
评估体外带有镍钛合金芯的磁共振兼容碳纤维针的伪影特性,并报告初步临床经验。
在体外,碳纤维/镍钛合金针在不同角度下与主磁场(1.5T 开放式磁体)成像。使用梯度回波磁共振透视序列(GRE:TR 9.3ms,TE 3.12ms,带宽 200Hz/像素,翻转角 12°)和快速涡轮自旋回波序列(FSE:TR 412ms,TE 9.7ms,带宽 200Hz/像素,翻转角 150°)进行成像。评估伪影宽度、针强度对比度和针尖位置误差。在体内,用碳纤维针(10 例)和钛合金针(2 例)进行腰椎旁神经根皮质类固醇注射和一次硬化治疗。测量了伪影的大小和对比度。
在体外,碳纤维针的伪影直径范围为 3.3 至 4.6mm,对比度范围为 0.11 至 0.52,GRE 序列的伪影对比度和宽度较大。观察到针尖位置误差为-2.1 至-2.8mm。角度越小,主磁场的伪影越小。在体内,碳纤维/镍钛合金针产生的伪影(FSE/GRE 的平均宽度分别为 2.8mm/4.6mm)比钛合金针(FSE/GRE 的平均宽度分别为 4.1mm/7.5mm,对比度为 0.60-0.73)小,对比度也低(0.30-0.42)。
碳纤维/镍钛合金针可用于 1.5T 磁共振引导介入,产生的伪影比钛合金针更细微,但针尖的描述不完整,因此定位不准确。