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一种带有内置舌-计算机接口系统芯片的拱形口腔内舌驱动系统。

An arch-shaped intraoral tongue drive system with built-in tongue-computer interfacing SoC.

作者信息

Park Hangue, Ghovanloo Maysam

机构信息

GT-Bionics Lab, Georgia Institute of Technology, 85 Fifth St. NW, Atlanta, GA 30308, USA.

出版信息

Sensors (Basel). 2014 Nov 14;14(11):21565-87. doi: 10.3390/s141121565.

Abstract

We present a new arch-shaped intraoral Tongue Drive System (iTDS) designed to occupy the buccal shelf in the user's mouth. The new arch-shaped iTDS, which will be referred to as the iTDS-2, incorporates a system-on-a-chip (SoC) that amplifies and digitizes the raw magnetic sensor data and sends it wirelessly to an external TDS universal interface (TDS-UI) via an inductive coil or a planar inverted-F antenna. A built-in transmitter (Tx) employs a dual-band radio that operates at either 27 MHz or 432 MHz band, according to the wireless link quality. A built-in super-regenerative receiver (SR-Rx) monitors the wireless link quality and switches the band if the link quality is below a predetermined threshold. An accompanying ultra-low power FPGA generates data packets for the Tx and handles digital control functions. The custom-designed TDS-UI receives raw magnetic sensor data from the iTDS-2, recognizes the intended user commands by the sensor signal processing (SSP) algorithm running in a smartphone, and delivers the classified commands to the target devices, such as a personal computer or a powered wheelchair. We evaluated the iTDS-2 prototype using center-out and maze navigation tasks on two human subjects, which proved its functionality. The subjects' performance with the iTDS-2 was improved by 22% over its predecessor, reported in our earlier publication.

摘要

我们展示了一种新型的拱形口腔内舌驱动系统(iTDS),其设计目的是占据使用者口腔内的颊侧牙槽嵴。这种新型的拱形iTDS,将被称为iTDS - 2,它集成了一个片上系统(SoC),该系统可对原始磁传感器数据进行放大和数字化处理,并通过感应线圈或平面倒F天线将其无线发送到外部TDS通用接口(TDS - UI)。内置发射器(Tx)采用双频段无线电,可根据无线链路质量在27 MHz或432 MHz频段运行。内置的超再生接收器(SR - Rx)监测无线链路质量,并在链路质量低于预定阈值时切换频段。配套的超低功耗现场可编程门阵列(FPGA)为发射器生成数据包并处理数字控制功能。定制设计的TDS - UI从iTDS - 2接收原始磁传感器数据,通过在智能手机中运行的传感器信号处理(SSP)算法识别预期的用户命令,并将分类后的命令传送到目标设备,如个人计算机或电动轮椅。我们在两名人类受试者身上使用中心外和迷宫导航任务对iTDS - 2原型进行了评估,证明了其功能。与我们早期出版物中报道的其前身相比,受试者使用iTDS - 2的表现提高了22%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8461/4279550/a9ba3762d890/sensors-14-21565f1.jpg

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