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    <title>PolyU IR Collection: RS Patents</title>
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  <item rdf:about="http://hdl.handle.net/10397/5239">
    <title>Electrical stimulation method as well as relative device and system thereof  = 一种电刺激方法、相关装置及系统</title>
    <link>http://hdl.handle.net/10397/5239</link>
    <description>Title: Electrical stimulation method as well as relative device and system thereof  = 一种电刺激方法、相关装置及系统&lt;br/&gt;&lt;br/&gt;Authors: Yeung, Sai-mo Simon (楊世模); Yeung, Wai Ella (楊慧); Zhang, Bao-Ting (張保亭)&lt;br/&gt;&lt;br/&gt;Abstract: The invention provides an electrical stimulation method as well as relative device and system thereof. The system comprises an output module and a stimulation module, wherein the output module obtainslow-frequency and long-term electrical stimulation parameters and transmits the electrical stimulation parameters to the stimulation module; and the stimulation module acts on skeletal muscle according to an electrical stimulation signal produced by the electrical stimulation parameters. With the electrical stimulation method, the system can increase the number and improve the proliferation and the differentiation of muscle satellite cells. A device adopting the system has small size, light weight and convenient carrying and use.; 本发明提供了一种电刺激方法、相关装置及系统，该系统包括，获得低频率、长时间的电刺激参数的输出模块，输出模块将该电刺激参数传输给刺激模块；刺激模块，根据电刺激参数产生的电刺激信号，作用于骨骼肌。采用该系统的电刺激方法，可以改善肌肉卫星细胞数量及增值分化功能。采用该系统的装置体积小、质量轻、携带方便、使用便捷。</description>
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  <item rdf:about="http://hdl.handle.net/10397/5234">
    <title>Personal tracking device with low power consumption</title>
    <link>http://hdl.handle.net/10397/5234</link>
    <description>Title: Personal tracking device with low power consumption&lt;br/&gt;&lt;br/&gt;Authors: Chow, Martin H. L.; Chung, Ching-ching Jenny; Lai, Kam-yuk Claudia; Lee, Hor-yau Carrie; Ma, Kam Wah; Mak, Diana P. S.; Wai, Ping-kong Alexander; Mak, Arthur F. T.; You, Jane; Tong, Kai-yu Raymond; Zheng, Yong-Ping&lt;br/&gt;&lt;br/&gt;Abstract: An portable tracking device integrating a mobile phone module (e.g. based on GSM or 3G networks), a GPS module, a radio Beacon and ultrasonic beacon. The tracking device is normally in a hibernated state when the entire device consumes little energy and require no periodically changing or recharging batteries to power the device. It consumes power from the primary battery only when a tracking process is actually taken place. With this portable tracking device on the person who is unable to affirmatively report his or her whereabout, the remote center and/or a search team can communicate the GPS module, radio beacon and ultrasonic beacon of the tracking device via the mobile phone module based on existing wireless communication technologies, such SMS, GPRS, ect, on GSM or 3 G networks, which also serves as a means of initial rough estimation of the tracking device's location.</description>
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  <item rdf:about="http://hdl.handle.net/10397/4697">
    <title>Wearable portable device for increasing user awareness of a paretic limb and recording the user awareness = 一种增强用户偏瘫肢体的意识并记录此用户意识的可佩带式便携装置、系统及方法</title>
    <link>http://hdl.handle.net/10397/4697</link>
    <description>Title: Wearable portable device for increasing user awareness of a paretic limb and recording the user awareness = 一种增强用户偏瘫肢体的意识并记录此用户意识的可佩带式便携装置、系统及方法&lt;br/&gt;&lt;br/&gt;Authors: Fong, Nai-kuen Kenneth (方乃權)&lt;br/&gt;&lt;br/&gt;Abstract: A wearable portable device (10) for increasing user awareness of a paretic limb and recording the user awareness, the device (10) comprising: a sensory signal generator (52, 20) to emit a continuous sensory signal to remind the user to move the paretic limb according to a predetermined schedule; a switch (13) to be actuated by the user for stopping the emission of the sensory signal; and an accelerometer (61) to detect movement of the paretic limb in 3-axis; wherein after the switch (13) is actuated by the user, the user is instructed to move the paretic limb in accordance with predetermined instructions and the movement of the paretic limb detected by the accelerometer (61) and response time of when the switch (13) is actuated after the sensory signal is emitted are recorded for analysis by data analysis software.; 一种增强用户(患者)偏瘫肢体意识并且记录此用户意识的可佩带式便携装置(10)，包括：一个感官信号发生器(52，20)用于发出连续的感官信号来提醒用户按照预定的时间移动偏瘫肢体，一个用户开启的停止发出感官信号的开关(13)，以及一个加速计(61)用来检测偏瘫肢体在三轴方向上的移动；其中，用户开启开关(13)后，在事先设定的说明的指导下活动其偏瘫肢体；加速计(61)检测到的偏瘫肢体的移动和感官信号发出后开关(13)被开启的反应时间被数据分析软件记录下来用于分析。本发明还涉及利用这种装置的系统和方法。</description>
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  <item rdf:about="http://hdl.handle.net/10397/4696">
    <title>Method for producing intelligent pressure coat = 一种智能压力衣的制造方法</title>
    <link>http://hdl.handle.net/10397/4696</link>
    <description>Title: Method for producing intelligent pressure coat = 一种智能压力衣的制造方法&lt;br/&gt;&lt;br/&gt;Authors: Li-Tsang, Wai-ping Cecilia (李曾慧平)&lt;br/&gt;&lt;br/&gt;Abstract: A method for manufacturing an intelligent pressure suit, comprising: step 1, testing physical characteristics of compound elastic fiber fabrics to select suitable compound elastic fiber fabric; step 2, testing and obtaining figure data of patient, calculating numerical value of pressure exerted on afflicted part; step 3, inputting tested data in computer, and processing the figure data and the numerical value of pressure with drawing process module in the computer to generate patterns of the intelligent pressure suit; step 4, drawing pressure suit plans with drawer via controlling the computer; step 5, fabricating the intelligent pressure suit with selected compound elastic fiber fabrics according to the plans. Pressure suit manufactured with the method for manufacturing intelligent pressure suit according to this invention has nice profile, excellent ventilation and wearing comfort, reduced manufacture procedures and mere deformation for practical duration.; 一种智能压力衣的制造方法，包括：第一步骤：测试合成弹力纤维布料的物理性能以选择合成弹力纤维布料；第二步骤：测量患者的体形数据，计算需要施加于患处的压力数值；第三步骤：将所测得的体形数据输入计算机中，并利用所述计算机中的绘图处理模块处理所述体形数据和所述压力数值以生成智能压力衣的图案；第四步骤：利用所述计算机控制绘图仪绘制压力衣图纸；以及第五步骤：根据所述图纸利用所选择的合成弹力纤维布料缝制所述智能压力衣。本发明智能压力衣的制造方法制作出来的压力衣外观具有美感，且透气性好穿着舒适，并缩短了整个的制衣过程，同时所制作的压力衣在穿着一段时间后变形量很小。</description>
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