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丘脑前核在癫痫的深部脑刺激术中的神经生理学特征。

Neurophysiologic Characteristics of the Anterior Nucleus of the Thalamus during Deep Brain Stimulation Surgery for Epilepsy.

机构信息

Rocky Vista University College of Osteopathic Medicine, Greenwood Village, Colorado, USA.

Department of Neurosurgery, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA.

出版信息

Stereotact Funct Neurosurg. 2024;102(5):293-307. doi: 10.1159/000539398. Epub 2024 Jul 15.

Abstract

INTRODUCTION

Anterior nucleus of the thalamus (ANT) deep brain stimulation (DBS) is an increasingly promising treatment option for refractory epilepsy. Optimal therapeutic benefit has been associated with stimulation at the junction of ANT and the mammillothalamic tract (mtt), but electrophysiologic markers of this target are lacking. The present study examined microelectrode recordings (MER) during DBS to identify unique electrophysiologic characteristics of ANT and the ANT-mtt junction.

METHODS

Ten patients with medically refractory epilepsy underwent MER during ANT-DBS implantation under general anesthesia. MER locations were determined based on coregistration of preoperative MRI, postoperative CT, and a stereotactic atlas of the thalamus (Morel atlas). Several neurophysiological parameters including single unit spiking rate, bursting properties, theta and alpha power and cerebrospinal fluid (CSF)-normalized root mean square (NRMS) of multiunit activity were characterized at recording depths and compared to anatomic boundaries.

RESULTS

From sixteen hemispheres, 485 recordings locations were collected from a mean of 30.3 (15.64 ± 5.0 mm) recording spans. Three-hundred and ninety-four of these recording locations were utilized further for analysis of spiking and bursting rates, after excluding recordings that were more than 8 mm above the putative ventral ANT border. The ANT region exhibited discernible features including: (1) mean spiking rate (7.52 Hz ± 6.9 Hz; one-way analysis of variance test, p = 0.014 when compared to mediodorsal nucleus of the thalamus [MD], mtt, and CSF), (2) the presence of bursting activity with 40% of ANT locations (N = 59) exhibited bursting versus 24% the mtt (χ2; p < 0.001), and 32% in the MD (p = 0.38), (3) CSF-NRMS, a proxy for neuronal density, exhibited well demarcated changes near the entry and exit of ANT (linear regression, R = -0.33, p < 0.001). Finally, in the ANT, both theta (4-8 Hz) and alpha band power (9-12 Hz) were negatively correlated with distance to the ventral ANT border (linear regression, p < 0.001 for both). The proportion of recordings with spiking and bursting activity was consistently highest 0-2 mm above the ventral ANT border with the mtt.

CONCLUSION

We observed several electrophysiological markers demarcating the ANT superior and inferior borders including multiple single cell and local field potential features. A local maximum in neural activity just above the ANT-mtt junction was consistent with the previously described optimal target for seizure reduction. These features may be useful for successful targeting of ANT-DBS for epilepsy.

摘要

简介

丘脑前核(ANT)深部脑刺激(DBS)是治疗难治性癫痫的一种越来越有前途的治疗选择。最佳治疗效果与刺激 ANT 与乳头丘脑束(mtt)交界处有关,但该目标的电生理标记物却缺乏。本研究通过微电极记录(MER)在 DBS 期间检查,以确定 ANT 和 ANT-mtt 交界处的独特电生理特征。

方法

10 名患有医学难治性癫痫的患者在全身麻醉下接受 ANT-DBS 植入期间进行 MER。MER 位置是根据术前 MRI、术后 CT 和丘脑立体定向图谱(Morel 图谱)的核注册确定的。在记录深度上,记录了包括单个单位的尖峰率、爆发特性、θ和α功率以及脑脊液(CSF)归一化均方根(NRMS)的多个单位活动等几个神经生理参数,并与解剖边界进行了比较。

结果

在 16 个半球中,从平均 30.3(15.64 ± 5.0 mm)个记录跨度中收集了 485 个记录位置。在排除了位于假定的腹侧 ANT 边界上方超过 8 毫米的记录后,对 394 个记录位置进行了进一步的尖峰和爆发率分析。ANT 区域具有明显的特征,包括:(1)平均尖峰率(7.52 Hz ± 6.9 Hz;单向方差分析测试,与丘脑内侧背核[MD]、mtt 和 CSF 相比,p = 0.014),(2)存在爆发活动,40%的 ANT 位置(N = 59)表现出爆发,而 mtt 为 24%(χ2;p < 0.001),MD 为 32%(p = 0.38),(3)CSF-NRMS,神经元密度的代理,在 ANT 的进入和退出附近表现出明显的变化(线性回归,R = -0.33,p < 0.001)。最后,在 ANT 中,θ(4-8 Hz)和α频段功率(9-12 Hz)均与腹侧 ANT 边界的距离呈负相关(线性回归,p < 0.001)。在腹侧 ANT 上方 0-2 毫米处,具有尖峰和爆发活动的记录比例始终最高,而 mtt 则为 2 毫米。

结论

我们观察到一些电生理标记物划定了 ANT 的上、下边界,包括多个单细胞和局部场电位特征。在 ANT-mtt 交界处上方的神经活动局部最大值与先前描述的减少癫痫发作的最佳目标一致。这些特征可能对成功靶向 ANT-DBS 治疗癫痫有用。

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