Department of Neurosurgery, Great Metropolitan Hospital of Niguarda, University of Milano, Italy.
Department of Neurosurgery, Great Metropolitan Hospital of Niguarda, Milano, Italy.
J Neurosci Methods. 2024 May;405:110096. doi: 10.1016/j.jneumeth.2024.110096. Epub 2024 Feb 28.
Brainstem mapping with electrical stimulation allows functional identification of neural structures during resection of deep lesions. Single pulses or train of pulses are delivered to map cranial nerves and corticospinal tracts, respectively.
We introduce a hybrid stimulation technique for mapping the brainstem. The stimulus consists of an electrical single pulse followed by a short train of 3-5 pulses at 500 Hz, at an interval of 60-75 ms. The responses to this stimulation pattern are recorded from appropriate cranial and limb muscles.
Both the single pulse and the short train elicit electromyographic responses when motor fibers or motor nuclei of the cranial nerves are stimulated. Responses to the train but not to the preceding single pulse indicate activation of the descending motor tracts, in the mesencephalon and the pons. Conversely, in the medulla, limb responses to stimulation of the corticospinal tracts are elicited by a single pulse. Identification of the extra and intra-axial courses of the trigeminal motor and sensory fibers is possible by recording responses from the masseter and the tongue muscles.
COMPARISON WITH EXISTING METHOD(S): To date, either a pulse or a train is delivered during brainstem mapping, switching from one to the other modality according to the expected target structure. This procedure can be time-consuming and may even lead to false negative responses to the stimulation, eventually leading to inaccurate neurosurgical procedures.
The novel hybrid pulse-train technique enhances the advantage of brainstem mapping procedure, minimizing pitfalls and improving patient safety.
通过电刺激进行脑干映射可在切除深部病变时对神经结构进行功能识别。分别使用单个脉冲或脉冲串来映射颅神经和皮质脊髓束。
我们介绍了一种用于脑干映射的混合刺激技术。刺激由电单个脉冲后跟在 500 Hz 时的 3-5 个短脉冲串组成,间隔 60-75 ms。从适当的颅神经和肢体肌肉记录对这种刺激模式的反应。
当刺激运动纤维或颅神经的运动核时,单个脉冲和短脉冲串都能引起肌电图反应。对该脉冲串的反应而不是对前面的单个脉冲的反应表明,在中脑和脑桥中,下行运动束被激活。相反,在延髓中,刺激皮质脊髓束会引起单个脉冲引起的肢体反应。通过记录咬肌和舌肌的反应,可以识别三叉神经运动和感觉纤维的外轴和内轴路径。
迄今为止,在脑干映射期间,无论是单个脉冲还是脉冲串,都根据预期的目标结构进行切换。该过程可能很耗时,甚至可能导致对刺激的假阴性反应,最终导致神经外科手术不准确。
新型混合脉冲串技术增强了脑干映射程序的优势,最大限度地减少了陷阱并提高了患者安全性。