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    • 5. 发明申请
    • MULTIMODAL COMMUNICATION SYSTEM
    • 多模通信系统
    • US20130090931A1
    • 2013-04-11
    • US13542399
    • 2012-07-05
    • Maysam GhovanlooXueliang Huo
    • Maysam GhovanlooXueliang Huo
    • G06F3/01G10L15/26
    • G06F3/011A61F4/00G06F3/012G10L15/265
    • The present invention, in various embodiments, comprises systems and methods for providing a communication system. In one embodiment, the system is an assistive technology (AT) in a single, highly integrated, multimodal, multifunctional, multipurpose, minimally invasive, unobtrusive, wireless, wearable, easy to use, low cost, and reliable AT that can potentially provide people with severe disabilities with flexible and effective computer access and environmental control in various conditions. In one embodiment, a multimodal Tongue Drive System (mTDS) is disclosed that uses tongue motion as its primary input modality. Secondary input modalities including speech, head motion, and diaphragm control are added to the tongue motion as additional input channels to enhance the system speed, accuracy, robustness, and flexibility, which are expected to address many of the aforementioned issues with traditional ATs that have limited number of input channels/modalities and can only be used in certain conditions by a certain group of users.
    • 在各种实施例中,本发明包括用于提供通信系统的系统和方法。 在一个实施例中,该系统是一种单一,高度集成,多模态,多功能,多用途,微创,不引人注目,无线,可穿戴,易于使用,低成本和可靠的AT的辅助技术(AT),可以为人们提供 严重残疾人在各种条件下灵活有效地进行电脑访问和环境控制。 在一个实施例中,公开了使用舌头运动作为其主要输入模态的多模式舌头驱动系统(mTDS)。 包括语音,头部运动和光圈控制在内的次级输入模式被添加到舌头运动中作为附加输入通道,以增强系统速度,精度,鲁棒性和灵活性,预期将解决传统AT的许多上述问题, 有限数量的输入通道/模式,只能由特定用户群在一定条件下使用。
    • 6. 发明申请
    • ORAL DRUG COMPLIANCE MONITORING USING MAGNETIC-FIELD SENSORS
    • 使用磁场传感器进行口服药物监测
    • US20100322859A1
    • 2010-12-23
    • US12297321
    • 2007-04-24
    • Christopher M. JonesMaysam GhovanlooDouglas P. WhitePeter K. MercureMalcolm W. Warren, II
    • Christopher M. JonesMaysam GhovanlooDouglas P. WhitePeter K. MercureMalcolm W. Warren, II
    • A61K49/00G01R33/12G01N33/15
    • A61B5/06A61B5/0002A61B5/4205A61B5/4833A61B5/4839A61B5/6822A61J3/007A61J2200/30
    • A method to measure compliance with a pharmaceutical regimen, by the steps of: (a) ingesting a dose of a medication (10) into the gastrointestinal tract of a person, the dose of medication (10) comprising a drug formulation (13) and a permanent magnet (14); (b) as a result of the ingestion of step (a), detecting passage of the permanent magnet (14) past at least two magnetic field sensors (20) positioned apart from each other and adjacent to the gastrointestinal tract; and (c) measuring compliance with the pharmaceutical regimen by way of the detection of step (b). And, apparatus useful to measure compliance with a pharmaceutical regimen by detecting ingestion of a dose of medication (10) comprising a drug formulation (13) and a permanent magnet (14), the apparatus including at least two magnetic field sensors (20) positioned apart from each other on a necklace (22), each magnetic field sensor (20) being in electronic communication with a microprocessor for receiving signals from the magnetic field sensors (20) to determine the passage of a permanent magnet (14) between the magnetic field sensors (20).
    • 一种通过以下步骤测量药物制剂的顺应性的方法:(a)将剂量的药物(10)摄入人的胃肠道,包含药物制剂(13)的药物剂量(10)和 永久磁铁(14); (b)作为步骤(a)摄取的结果,检测永磁体(14)经过位于彼此分开并邻近胃肠道的至少两个磁场传感器(20)的通道; 和(c)通过检测步骤(b)测量药物方案的顺应性。 以及用于通过检测摄取包含药物制剂(13)和永磁体(14)的药物剂量(10)来测量药物方案的依从性的装置,所述装置包括至少两个磁场传感器(20),其定位 在项链(22)上彼此分开,每个磁场传感器(20)与微处理器电子通信,用于接收来自磁场传感器(20)的信号,以确定永磁体(14)在磁性 场传感器(20)。
    • 7. 发明申请
    • Demodulator, Chip And Method For Digital Demodulating An Fsk Signal
    • 用于数字解调Fsk信号的解调器,芯片和方法
    • US20080169872A1
    • 2008-07-17
    • US10597392
    • 2005-01-21
    • Maysam GhovanlooKhalil Najafi
    • Maysam GhovanlooKhalil Najafi
    • H03D3/00
    • H03D3/006
    • A demodulator, chip and method for digitally demodulating an FSK signal utilizing a digital data transfer protocol and a digital demodulator circuit have been developed. The data-rate approaches the carrier-frequency. The one application for this technique is in the magnetically powered wireless systems such as biomedical implants and radio frequency identification (RFID) tags with high data rates above 1 Mbps. The demodulator circuit extracts the serial data bit-stream and a constant-frequency clock from an FSK carrier signal in the 1˜20 MHZ range, which can power the wireless system as well. The digital demodulator circuit is implemented entirely with digital circuitry and is called a digital-FSK (DFSK) demodulator.
    • 已经开发了使用数字数据传输协议和数字解调器电路对FSK信号进行数字解调的解调器,芯片和方法。 数据速率接近载波频率。 该技术的一个应用是在具有高于1Mbps的高数据速率的诸如生物医学植入物和射频识别(RFID)标签的磁力无线系统中。 解调器电路从1〜20MHz范围内的FSK载波信号中提取串行数据比特流和恒定频率时钟,也可为无线系统供电。 数字解调器电路完全由数字电路实现,称为数字FSK(DFSK)解调器。
    • 9. 发明授权
    • Tongue operated magnetic sensor systems and methods
    • 舌操作磁传感器系统及方法
    • US08242880B2
    • 2012-08-14
    • US12474891
    • 2009-05-29
    • Maysam GhovanlooXueliang Huo
    • Maysam GhovanlooXueliang Huo
    • G09B21/00
    • A61F4/00
    • A method of tracking movement, position, or both of a tongue of a subject. The method includes positioning a tracer unit on the tongue of the subject in a non-obstructively manner; positioning a sensor system in proximity to the tongue carrying the tracer unit; calibrating the sensor system relative to the tracer unit; and detecting the position of the tracer unit. An assistive system/apparatus can track movement, position, or both of the tongue. The system/apparatus includes the tracer unit; the sensor system for detecting position of the tracer unit and adapted for non-obstructive placement proximal the sensor system; and a control system for transmitting to a processing system.
    • 跟踪受试者的舌头的运动,位置或两者的方法。 该方法包括以阻碍方式将示踪单元定位在受试者的舌头上; 将传感器系统定位在携带示踪器单元的舌头附近; 相对于示踪单元校准传感器系统; 并且检测示踪单元的位置。 辅助系统/装置可以跟踪舌头的运动,位置或两者。 系统/装置包括示踪单元; 传感器系统,用于检测示踪单元的位置,适用于传感器系统附近的非阻塞性放置; 以及用于发送到处理系统的控制系统。