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Targeting the Pedunculopontine Nucleus: A New Neurophysiological Method Based on Somatosensory Evoked Potentials to Calculate the Distance of the Deep Brain Stimulation Lead From the Obex

机译:瞄准人膝桥神经核:一种基于体感诱发电位的新神经生理学方法,可计算深部刺激物从肥胖者引出的距离

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BACKGROUND: Pedunculopontine tegmental nucleus (PPTg) deep brain stimulation (DBS) has been used in patients with Parkinson disease.OBJECTIVE: To verify the position of the DBS lead within the pons during PPTg targeting.METHODS: In 10 Parkinson disease patients undergoing electrode implantation in the PPTg, somatosensory evoked potentials were recorded after median nerve stimulation from the 4 DBS electrode contacts and from 2 scalp leads placed in the frontal and parietal regions.RESULTS: The DBS electrode recorded a P16 potential (latency at contact 0, 16.33 ± 0.76 ms). There was a P16 latency shift of 0.18 ± 0.07 ms from contact 0 (lower) to contact 3 (upper). The scalp electrodes recorded the P14 far-field response (latency, 15.44 ± 0.63 ms) and the cortical N20 potential (latency, 21.58 ± 1.42 ms). The PI6 potentials recorded by the intracranial electrode contacts are generated by the volley traveling along the medial lemniscus, whereas the scalp P14 potential represents a far-field response generated at the Obex level. Considering that the distance between the electrode contacts 0 and 3 is 6 mm, the distance of the electrode contact 0 from the Obex (AObex) was calculated by the equation: AObex = 6 x Alatency P14- PPTgO/ Alatency PPTgO-PPTg3. The Obex-to-brainstem electrode distance obtained by the neurophysiological method confirmed that the electrode was located within the pons in all patients. Moreover, this distance was very similar to that issued from the individual brain magnetic resonance imaging.CONCLUSION: Somatosensory evoked potentials may be a helpful tool for calculating the macroelectrode position within the pons during PPTg targeting.
机译:背景:帕金森病性脑膜被盖核(PPTg)已被用于帕金森病患者的深部脑刺激(DBS)。在PPTg中,从4个DBS电极触点和额叶和顶叶区域的2条头皮引线刺激正中神经后,记录了体感诱发电位。结果:DBS电极记录了P16电位(接触0时的潜伏期,16.33±0.76多发性硬化症)。从触点0(下部)到触点3(上部)的P16延迟时间为0.18±0.07 ms。头皮电极记录P14远场响应(潜伏期15.44±0.63 ms)和皮质N20电位(潜伏期21.58±1.42 ms)。颅内电极接触所记录的PI6电位是由沿着内侧圆盘菌传播的截击产生的,而头皮P14电位代表了在Obex水平产生的远场响应。考虑到电极触点0和3之间的距离为6mm,通过等式计算电极触点0到Obex(AObex)的距离:AObex = 6×延迟P14-PPTgO /延迟PPTgO-PPTg3。通过神经生理学方法获得的Obex到脑干电极的距离证实,该电极位于所有患者的脑桥内。此外,该距离与个人脑部磁共振成像所发出的距离非常相似。结论:体感诱发电位可能是计算PPTg靶向期间脑桥内大电极位置的有用工具。

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