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真实的解剖学详细的开源脊髓刺激 (RADO-SCS) 模型。

Realistic anatomically detailed open-source spinal cord stimulation (RADO-SCS) model.

机构信息

Department of Biomedical Engineering, The City College of New York, CUNY, New York, United States of America.

出版信息

J Neural Eng. 2020 Apr 23;17(2):026033. doi: 10.1088/1741-2552/ab8344.

Abstract

OBJECTIVE

Computational current flow models of spinal cord stimulation (SCS) are widely used in device development, clinical trial design, and patient programming. Proprietary models of varied sophistication have been developed. An open-source model with state-of-the-art precision would serve as a standard for SCS simulation.

APPROACH

We developed a sophisticated SCS modeling platform, named Realistic Anatomically Detailed Open-Source Spinal Cord Stimulation (RADO-SCS) model. This platform consists of realistic and detailed spinal cord and ancillary tissues anatomy derived based on prior imaging and cadaveric studies. In our finite element model of the T9-T11 spine levels, we represented the following tissues: vertebrae, intervertebral disc, epidural space, epidural space vasculature, dura mater, dural sac, intraforaminal tissue, cerebrospinal fluid (CSF), whitematter, spinal cord vasculature, Lissauer's tract, gray matter, dorsal and ventral roots and rootlets, dorsal root ganglion (DRG), sympathetic chain (trunk and ganglion), thoracic aorta and its branching, peripheral vasculature, and soft tissues (thorax). As an exemplary application to illustrate the model workflow, we simulated a bipolar SCS montage and calculated the corresponding activation thresholds for individual axons populating the spinal cord.

MAIN RESULTS

RADO-SCS provides state-of-the-art precision across 19 tissue compartments. The resulting model calculations of the electric fields generated in the white-matter and gray matter, and the axonal activation thresholds are broadly consistent with prior simulations.

SIGNIFICANCE

The RADO-SCS can be used to simulate any SCS approach with both unprecedented resolution (precision) and transparency (reproducibility). Freely-available online, the RADO-SCS will be updated continuously with version control.

摘要

目的

脊髓刺激(SCS)的计算电流流动模型广泛用于设备开发、临床试验设计和患者编程。已经开发了各种复杂程度的专有模型。具有最先进精度的开源模型将作为 SCS 模拟的标准。

方法

我们开发了一种复杂的 SCS 建模平台,命名为 Realistic Anatomically Detailed Open-Source Spinal Cord Stimulation (RADO-SCS) 模型。该平台基于先前的成像和尸体研究,由逼真而详细的脊髓和辅助组织解剖结构组成。在我们的 T9-T11 脊柱水平的有限元模型中,我们表示了以下组织:椎骨、椎间盘、硬膜外腔、硬膜外腔血管、硬脑膜、硬脑膜囊、椎间组织、脑脊液 (CSF)、白质、脊髓血管、Lissauer 束、灰质、背根和腹根及根丝、背根神经节 (DRG)、交感神经链(干和神经节)、胸主动脉及其分支、周围血管和软组织(胸部)。作为说明模型工作流程的示例应用,我们模拟了双极 SCS 导联,并计算了填充脊髓的单个轴突的相应激活阈值。

主要结果

RADO-SCS 在 19 个组织隔室中提供最先进的精度。在白质和灰质中产生的模型计算电场以及轴突激活阈值与先前的模拟广泛一致。

意义

RADO-SCS 可以用于模拟任何具有前所未有的分辨率(精度)和透明度(可重复性)的 SCS 方法。该模型可在线免费获得,将通过版本控制不断更新。

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