Sheikh Zayed Institute for Pediatric Surgical Innovation, Children's National Hospital, Washington, DC, USA.
Brady Urological Institute, Johns Hopkins Medicine, Baltimore, MD, USA.
Int J Comput Assist Radiol Surg. 2024 Mar;19(3):405-409. doi: 10.1007/s11548-023-03042-6. Epub 2023 Dec 26.
Bone biopsies are currently conducted under computed tomography (CT) guidance using a battery-powered drill to obtain tissue samples for diagnosis of suspicious bone lesions. However, this procedure is suboptimal as images produced under CT lack soft tissue discrimination and involve ionizing radiation. Therefore, our team developed an MRI-safe pneumatic drill to translate this clinical workflow into the MR environment, which can improve target visualization and eliminate radiation exposure. We compare drill times and quality of samples between the 2 drills using animal bones.
Five porcine spare rib bones were obtained from a butcher shop. Each bone was drilled twice using the Arrow OnControl battery-powered drill and twice using our pneumatically actuated drill. For this study, we used an 11-gauge bone biopsy needle set with an internal core capturing thread. A stopwatch recorded the overall time of drilling for each specimen obtained.
All 20 samples collected contained a high-quality inner core and cortex. The total average time for drilling with the pneumatic drill was 8.5 s (+ / - 2.5 s) and 7.1 s (+ / - 1.4 s) with the standard battery-powered drill.
Both drills worked well and were able to obtain comparable specimens. The pneumatic drill took slightly longer, 1.39 s on average, but this extra time would not be significant in clinical practice. We plan to use the pneumatic drill to enable MRI-safe bone biopsy for musculoskeletal lesions. Biopsy under MRI would provide excellent lesion visualization with no ionizing radiation.
目前,在计算机断层扫描(CT)引导下,使用电池驱动的钻头进行骨活检,以获取组织样本用于诊断可疑的骨病变。然而,这种方法并不理想,因为 CT 生成的图像缺乏软组织分辨力,并且涉及电离辐射。因此,我们的团队开发了一种 MRI 安全的气动钻头,将这一临床工作流程转化到磁共振环境中,这可以改善目标可视化并消除辐射暴露。我们使用动物骨骼比较了两种钻头的钻孔时间和样本质量。
从肉店获得五根猪备用肋骨。每根骨头都用 Arrow OnControl 电池驱动的钻头钻两次,用我们的气动驱动的钻头钻两次。在这项研究中,我们使用了一套带有内部核心捕获线的 11 号骨活检针。秒表记录了每个标本的总钻孔时间。
收集的所有 20 个样本都包含高质量的内芯和皮质。气动钻头的总平均钻孔时间为 8.5 秒(+/-2.5 秒),标准电池驱动钻头的钻孔时间为 7.1 秒(+/-1.4 秒)。
两种钻头都能很好地工作,并能获得可比的样本。气动钻头的平均耗时稍长,为 1.39 秒,但在临床实践中,这额外的时间不会有显著影响。我们计划使用气动钻头实现 MRI 安全的骨骼活检,用于肌肉骨骼病变。磁共振引导下的活检将提供出色的病变可视化,没有电离辐射。