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Transabdominal Motor Action Potential Monitoring of Pedicle Screw Placement During Minimally Invasive Spinal Procedures: A Case Study

机译:在微创脊髓手术期间,TanageAdminal Motor作用潜在监测椎弓根螺钉放置:一个案例研究

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Precise pedicle screw placement is a critical skill during minimally invasive spinal surgeries but can pose various challenges. Techniques such as electromyography (EMG) have been traditionally utilized for this purpose but have several shortcomings. Transabdominal motor action potential (TaMAP) has been examined as a possible effective neuromonitoring alternative and is hypothesized to provide important data on symptomatic malpositioned pedicle screws. The current study seeks to determine whether TaMAP may be an advantageous technique in the neuromonitoring of percutaneous pedicle screw placement during minimally invasive spinal procedures. The methodology involved recording TaMAP signals at the outset and the conclusion of spinal surgical procedures in human participants, for which comparisons were made of pre- and post-operative data. Results revealed that TaMAP signals remained stable during accurate pedicle screw placement?and degraded during a case of inaccurate placement, for which initial misplaced hardware altered the depolarization threshold and resulted in substantial signal alteration. These results suggest that TaMAP, which is stable,?repeatable, and reflects real-time information, can potentially be used as a reliable and more precise indication of accuracy in pedicle screw placement during spinal surgeries. This is the first TaMAP study conducted in human participants.
机译:精确的椎弓根螺杆放置是在微创脊柱外科手术期间的关键技能,但可以构成各种挑战。诸如肌电图(EMG)的技术传统上用于此目的,但具有几个缺点。经过跨境电机动作电位(TAMAP)被检查为可能有效的神经监测替代方案,并假设为在症状置形椎弓根螺钉上提供重要数据。目前的研究旨在确定TAMAP在微创脊髓手术期间经皮椎弓根螺钉放置的神经道中的有利技术。该方法涉及在人类参与者的一开始和脊柱外科手术中记录Tamap信号的方法,用于进行比较和操作后的数据。结果表明,在精确的椎弓根螺钉放置期间,TAMAP信号保持稳定?并且在不准确的放置期间降低,初始错位硬件改变了去极化阈值并导致了大量信号改变。这些结果表明,稳定性,稳定的Tamap可以是可重复的,并且反映实时信息,可能被用作脊柱手术期间椎弓根螺钉放置中的可靠和更精确的准确性指示。这是在人类参与者中进行的第一个Tamap学习。

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