Simulation-Informed Power Budget Estimate of a Fully-Implantable Brain-Computer Interface.

IF 3 2区 医学 Q3 ENGINEERING, BIOMEDICAL
Annals of Biomedical Engineering Pub Date : 2024-08-01 Epub Date: 2024-05-16 DOI:10.1007/s10439-024-03528-7
Claudia Serrano-Amenos, Frank Hu, Po T Wang, Payam Heydari, An H Do, Zoran Nenadic
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Abstract

This study aims to estimate the maximum power consumption that guarantees a thermally safe operation for a titanium-enclosed chest wall unit (CWU) subcutaneously implanted in the pre-pectoral area. This unit is a central piece of an envisioned fully-implantable bi-directional brain-computer interface (BD-BCI). To this end, we created a thermal simulation model using the finite element method implemented in COMSOL. We also performed a sensitivity analysis to ensure that our predictions were robust against the natural variation of physiological and environmental parameters. Based on this analysis, we predict that the CWU can consume between 378 and 538 mW of power without raising the surrounding tissue's temperature above the thermal safety threshold of 2  C. This power budget should be sufficient to power all of the CWU's basic functionalities, which include training the decoder, online decoding, wireless data transmission, and cortical stimulation. This power budget assessment provides an important specification for the design of a CWU-an integral part of a fully-implantable BD-BCI system.

Abstract Image

全植入式脑机接口的仿真功率预算估算。
本研究旨在估算在胸前区皮下植入钛合金封闭式胸壁装置(CWU)时能保证热安全运行的最大功耗。该装置是设想中的全植入式双向脑机接口(BD-BCI)的核心部件。为此,我们使用 COMSOL 中的有限元方法创建了一个热模拟模型。我们还进行了敏感性分析,以确保我们的预测能够抵御生理和环境参数的自然变化。根据这一分析,我们预测 CWU 可以消耗 378 到 538 mW 的功率,而不会使周围组织的温度超过 2 ∘ C 的热安全阈值。这一功率预算应该足以为 CWU 的所有基本功能供电,包括训练解码器、在线解码、无线数据传输和皮层刺激。功率预算评估为 CWU 的设计提供了重要的规范,CWU 是完全植入式 BD-BCI 系统不可或缺的一部分。
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来源期刊
Annals of Biomedical Engineering
Annals of Biomedical Engineering 工程技术-工程:生物医学
CiteScore
7.50
自引率
15.80%
发文量
212
审稿时长
3 months
期刊介绍: Annals of Biomedical Engineering is an official journal of the Biomedical Engineering Society, publishing original articles in the major fields of bioengineering and biomedical engineering. The Annals is an interdisciplinary and international journal with the aim to highlight integrated approaches to the solutions of biological and biomedical problems.
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