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机械感生长周期光纤光栅的实验 被引量:3
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作者 姜明顺 冯德军 隋青美 《光学精密工程》 EI CAS CSCD 北大核心 2009年第7期1513-1518,共6页
为了研究机械感生长周期光纤光栅(MLPFGs)的特性,利用机械微弯法写制了长周期光纤光栅。采用机械先加工技术制作了周期性压力槽,通过设计机械写制结构,制作了MLPFGs,并实验验证了周期性压力槽的周期、周期数以及外加应力等参数与MLPFGs... 为了研究机械感生长周期光纤光栅(MLPFGs)的特性,利用机械微弯法写制了长周期光纤光栅。采用机械先加工技术制作了周期性压力槽,通过设计机械写制结构,制作了MLPFGs,并实验验证了周期性压力槽的周期、周期数以及外加应力等参数与MLPFGs透射谱的关系。最后,研究了温度对带有涂敷层和无涂敷层单模光纤写制的MLPFGs的影响。实验表明:MLPFGs的最大谐振峰值可达16dB,插入损耗<0.5dB;通过改变压力槽的周期,实现了谐振波长>14nm的调谐范围;带有涂敷层和无涂敷层单模光纤写制的MLPFGs谐振波长的温度灵敏度分别为0.057nm/℃,0.086nm/℃,谐振峰值的温度灵敏度分别为0.230dB/℃,0.312dB/℃。该写制结构能较好地控制MLPFGs的透射谱,同时结构简单、易擦除、成本低,在光纤传感领域具有一定的应用价值。 展开更多
关键词 导波与纤维光学 机械感生 长周期光纤光栅 周期性压力槽
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一种新颖的双边缘滤波光纤布拉格光栅解调技术 被引量:18
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作者 姜明顺 孟玲 +2 位作者 隋青美 彭蓬 赵增玉 《光电子.激光》 EI CAS CSCD 北大核心 2011年第3期355-358,共4页
设计了一种基于机械感生长周期光纤光栅(MI-LPG)的双边缘滤波光纤布拉格光栅(FBG)传感解调方案。采用不同写制参数制作了谐振边带对称交迭,谐振峰值和带宽相同的两个MI-LPG作为滤波器,利用反射FBG信号通过不同光谱特性的滤波器时输出不... 设计了一种基于机械感生长周期光纤光栅(MI-LPG)的双边缘滤波光纤布拉格光栅(FBG)传感解调方案。采用不同写制参数制作了谐振边带对称交迭,谐振峰值和带宽相同的两个MI-LPG作为滤波器,利用反射FBG信号通过不同光谱特性的滤波器时输出不同光强的比值对数算法确定被测波长。实验表明,本解调方法能够精确、稳定地实现FBG传感信号的解调,动态范围可达5 nm,解调系统线性拟合计算值和光谱仪所测波长值的均方差为6 pm,线性度好,精度高。 展开更多
关键词 双边缘滤波 长周期光纤光栅(LPG) 机械感生(MI) 解调
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Individual aortic baroreceptors are sensitive to different ranges of blood pressures 被引量:2
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作者 CHEN MengJiao YANG MingHao +4 位作者 HAN WenJuan AN ShuCheng LIU YiHui LIU ZhiQiang REN Wei 《Science China(Life Sciences)》 SCIE CAS 2014年第5期502-509,共8页
Many receptors,including thermal receptors and mechanical receptors,are only activated by stimuli within a clearly defined range of intensities.Differences in the receptive ranges enable individual receptors and their... Many receptors,including thermal receptors and mechanical receptors,are only activated by stimuli within a clearly defined range of intensities.Differences in the receptive ranges enable individual receptors and their sensory centers to precisely detect the intensity of the stimulus and changes in intensity.Baroreceptors are the sensory terminals of the baroreflex.It is well understood that an increasing number of baroreceptors are recruited to produce afferent action potentials as the blood pressure increases,indicating that individual baroreceptors have different pressure thresholds.The present study revealed that individual baroreceptors could stop their afferent signals when the blood pressure exceeds a certain level,indicating that individual baroreceptors are sensitive to a specific range of blood pressure.The receptive ranges of individual baroreceptors differ in terms of the total range,the lower threshold,and the upper threshold.Of 85 baroreceptors examined in this study,the upper thresholds for about half were within the physiological blood pressure range.These results indicate that supraphysiological blood pressure is unlikely to be encoded by the recruitment of more baroreceptors.Instead,supraphysiological blood pressure levels might be signaled by an increase in the frequency of action potentials or by other mechanisms.In conclusion,our results indicate that rabbit baroreceptors are activated by blood pressure levels within specific receptive ranges.These findings should encourage further studies to examine the role of population coding of blood pressure by baroreceptors in the baroreflex. 展开更多
关键词 depolarization block receptive range rabbit depressor nerve single fiber recording
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Underwater flexible mechanoreceptors constructed by anti-swelling self-healable hydrogel 被引量:4
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作者 Xin Liu Qin Zhang +1 位作者 Fei Jia Guanghui Gao 《Science China Materials》 SCIE EI CAS CSCD 2021年第12期3069-3078,共10页
Wet-resistant flexible electronics have acquired increasing attention on applications in wet environments,such as sweaty skin, rainy weather, biological fluids, and underwater. However, it remains challenging to achie... Wet-resistant flexible electronics have acquired increasing attention on applications in wet environments,such as sweaty skin, rainy weather, biological fluids, and underwater. However, it remains challenging to achieve nonswelling and underwater self-healing hydrogel sensors for the mechanical perception in aqueous solutions. Herein, a selfhealing and non-swellable hydrogel is successfully fabricated,which presents an automatically healing behavior in various aquatic environments, including deionized water, seawater,sweat, alkali and acidic aqueous solutions. Moreover, the hydrogel demonstrates high stretchability and stable electromechanical sensing properties in water. Furthermore, an electronic skin is designed with the features of fast responsiveness, reliability, and high sensitivity for detecting breathing, speaking, coughing, and diverse body movements. The self-healing hydrogel sensors enable a brilliant mechanical sensibility for detecting a series of dynamic stimuli in air and underwater, even after the healing of fracture interface in water. The underwater self-healing and anti-swelling hydrogel would provide enticing potential on various stable electronic devices for aquatic environments, such as implantable electrodes, triboelectric nanogenerators, and underwater soft robotics. 展开更多
关键词 HYDROGEL water-insensitive electronics underwater self-healing anti-swelling underwater sensing
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