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Comparison of manual hand drill versus an electric dual-motor drill for bedside craniotomy

机译:手动钻头对床侧开颅钻头的手动钻头与电动双电机钻头的比较

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Rapid decompression of elevated intracranial pressure is essential to reducing morbidity and mortality rates associated with subdural and epidural hematomas. The increase of speed and accuracy will improve patient outcomes by reducing red blood cell breakdown and avoiding infarction and vasospasm of cerebral tissue. A dual-motor drill was created to mitigate overpenetration to reduce iatrogenic injury and improve accuracy and efficiency of bone drilling. The dual-motor drill simultaneously controls revolutions per minute (600 RPM) and insertion rate with a real time display monitoring depth and torque. The purpose of this study was to compare the drilling accuracy and technical malfunctions associated with the use of a manual drill to an experimental battery powered drill. Our hypothesis was that a dual-motor drill would be more accurate, require less time, and have fewer technical malfunctions than a manual drill. A 2.7?mm drill bit was used to burr ten pilot holes in the temporal bone, spaced one centimeter apart. The depth of these pilot holes served as a control and each burr hole was measured using C-arm fluoroscopy and a digital caliper. Drilling accuracy was calculated by the measured plunge (mm) of the drill bit past the inner cortex of the skull. The dual-motor drill showed significantly less depth measurement error, plunge depth, improved burr hole accuracy, reduced overpenetration, and decreased intraoperative time for drilling in cadaveric bone.
机译:快速减压升高的颅内压力对于降低与硬膜外和硬膜外血肿相关的发病率和死亡率至关重要。通过减少红细胞衰弱和避免脑组织的梗死和血管痉挛来提高速度和准确度的增加将改善患者结果。采用双电机钻头来减轻过度预备,以降低经理损伤,提高骨钻的准确性和效率。双电机钻头同时控制每分钟的转数(600 rpm)和插入速率,具有实时显示监测深度和扭矩。本研究的目的是比较与使用手动钻头到实验电池供电钻头相关的钻井精度和技术故障。我们的假设是双电机钻头将更准确,需要更少的时间,并且具有比手动钻头更少的技术发生故障。 2.7?MM钻头用于颞骨中的十个导向孔,间隔一厘米。使用C形臂透视和数字卡尺测量这些导孔的深度作为控制和每个毛刺孔。钻孔精度通过钻头的钻头的测量插入(mm)计算出颅骨的内皮层。双电机钻头显示出深度测量误差,暴力深度,提高的毛刺孔精度,减少过度预备,并降低在尸体骨中钻孔的术中时间。

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