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首页> 外文期刊>Acta Neurochirurgica >Frameless image-guided stereotaxy with real-time visual feedback for brain biopsy
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Frameless image-guided stereotaxy with real-time visual feedback for brain biopsy

机译:具有实时视觉反馈的无框图像引导立体定位术,用于脑活检

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摘要

Background Frame-based stereotaxy remains the "gold standard" for cerebral biopsies and functional neurosurgery though new frameless stereotactic systems are evolving continually. As the technique of frameless stereotaxy gains increasing acceptance among neurosurgeons, this study assesses the feasibility of a system for frameless imageguided stereotaxy. Methods All patients biopsied for intracranial lesions between February 2007 and August 2010 using the BrainLAB VarioGuide frameless stereotactic system were evaluated prospectively. Prior to surgery, patients underwent magnetic resonance (MR) imaging; additionally, fluoroethyl-tyrosine (FET)-positron emission tomography (PET) images were acquired and fused to MR images in selected cases. Biopsy trajectory length, lesion volume, procedure duration, and diagnostic yield were assessed. Results Ninety-six diagnostic biopsies in 91 patients were evalu 0.17 to 121.8 cm 3; trajectory length from 25.3 to 101.9 mm. Diagnostic yield was 93.8%. Mean operation time from skin incision to wound closure was 42 min; in the operating room, it was 99 min. Conclusions Clinical experience indicates VarioGuide to be safe and accurate. Reachable range of lesion localisation appears to be comparable to a frame-based stereotaxy system. Operation times are brief. The unique design of this frameless stereotactic system allows real-time visual feedback of needle positioning.
机译:背景技术尽管新的无框架立体定向系统不断发展,但基于框架的立体定向仍是脑活检和功能性神经外科手术的“黄金标准”。随着无框立体定向技术在神经外科医师中越来越多的接受,这项研究评估了无框图像引导立体定向系统的可行性。方法对2007年2月至2010年8月之间使用BrainLAB VarioGuide无框立体定位系统对颅内病变进行活检的所有患者进行前瞻性评估。手术前,患者要进行磁共振成像。此外,在某些情况下,还可以获取氟乙基酪氨酸(FET)-正电子发射断层扫描(PET)图像并将其融合到MR图像中。评估活检轨迹长度,病变体积,手术时间和诊断结果。结果91例患者的96例诊断性活检评估为0.17至121.8 cm 3。弹道长度从25.3到101.9毫米。诊断产率为93.8%。从皮肤切口到伤口闭合的平均手术时间为42分钟;在手术室里,这是99分钟。结论临床经验表明,VarioGuide安全,准确。病变定位的可达到范围似乎与基于帧的立体定位系统相当。操作时间很短。这种无框架立体定位系统的独特设计可实现针定位的实时视觉反馈。

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