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遥测连接的脑机接口中的传输延迟。

Transmission latencies in a telemetry-linked brain-machine interface.

作者信息

Bossetti Chad A, Carmena Jose M, Nicolelis Miguel A L, Wolf Patrick D

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA.

出版信息

IEEE Trans Biomed Eng. 2004 Jun;51(6):919-24. doi: 10.1109/TBME.2004.827090.

Abstract

To be clinically viable, a brain-machine interface (BMI) requires transcutaneous telemetry. Spike-based compression algorithms can be used to reduce the amount of telemetered data, but this type of system is subject to queuing-based transmission delays. This paper examines the relationships between the ratio of output to average input bandwidth of an implanted device and transmission latency and required queue depth. The examination was performed with a computer model designed to simulate the telemetry link. The input to the model was presorted spike data taken from a macaque monkey performing a motor task. The model shows that when the output bandwidth/average input bandwidth is in unity, significant transmission latencies occur. For a 32-neuron system, transmitting 50 bytes of data per spike and with an average neuron firing rate of 8.93 spikes/s, the average maximum delay was approximately 3.2 s. It is not until the output bandwidth is four times the average input bandwidth that average maximum delays are reduced to less than 10 ms. A comparison of neuron firing rate and resulting latencies shows that high latencies result from neuron bursting. These results will impact the design of transcutaneous telemetry in a BMI.

摘要

要在临床上可行,脑机接口(BMI)需要经皮遥测技术。基于尖峰的压缩算法可用于减少遥测数据量,但这类系统会受到基于队列的传输延迟影响。本文研究了植入设备的输出与平均输入带宽之比、传输延迟和所需队列深度之间的关系。该研究通过一个旨在模拟遥测链路的计算机模型进行。模型的输入是从执行运动任务的猕猴获取的预分类尖峰数据。模型显示,当输出带宽/平均输入带宽为1时,会出现显著的传输延迟。对于一个32神经元系统,每个尖峰传输50字节数据,平均神经元放电率为8.93次/秒,平均最大延迟约为3.2秒。直到输出带宽是平均输入带宽的四倍时,平均最大延迟才会降至10毫秒以下。神经元放电率与由此产生的延迟之间的比较表明,高延迟是由神经元爆发引起的。这些结果将影响BMI中经皮遥测技术的设计。

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