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Wearable Alignment‑Free Microfber‑Based Sensor Chip for Precise Vital Signs Monitoring and Cardiovascular Assessment 被引量:7
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作者 Liangye Li Yunfei Liu +5 位作者 Changying Song Shunfeng Sheng Liuyang Yang Zhijun Yan Dora Juan Juan Hu Qizhen Sun 《Advanced Fiber Materials》 SCIE CAS 2022年第3期475-486,共12页
Continuous pulse wave signals monitoring is the essential basis for clinical cardiovascular diagnosis and treatment.Recent researches show the majority of current electronic pulse sensors usually face challenges in el... Continuous pulse wave signals monitoring is the essential basis for clinical cardiovascular diagnosis and treatment.Recent researches show the majority of current electronic pulse sensors usually face challenges in electrical safety concern,poor durability and demanding precision in position alignment.Thus,a highly sensitive,inherently electrical safe,robust and alignment-free device is highly desired.Here,we present a wearable alignment-free microfber-based sensor chip(AFMSC)for precise vital signs monitoring and cardiovascular health assessment.The AFMSC comprises an optical micro/nano fber sensor(MNF)and a fexible soft liquid sac while the MNF sensor is used to perceive the physiological signals and the liquid sac is used to eliminate the misalignment.The real-time and accurate monitoring of the pulse signals was realized by tracking the optical power variation of transmitted light from MNF.Then,the cardiovascular vital signs extracted from radial artery pulse signals were used to evaluate cardiovascular health condition and the results were in accordance with human physiological characteristics.Moreover,the pulse signals from diferent arterial area,the respiration signals from chest and the radial pulse signals before and after exercise were detected and analyzed.The non-invasive,continuous and accurate monitoring of cardiovascular health based on the reported wearable and alignment-free device is promising in both ftness monitoring and medical diagnostics for cardiovascular disease prevention and diagnosis. 展开更多
关键词 Optical microfber sensor Wearable alignment-free Physiological signal Cardiovascular health
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Optical Microfber Neuron for Finger Motion Perception 被引量:3
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作者 Yanpeng Li Shijie Tan +3 位作者 Liuyang Yang Liangye Li Fang Fang Qizhen Sun 《Advanced Fiber Materials》 SCIE CAS 2022年第2期226-234,共9页
To achieve dexterous motion controlling of robot,the sensors that function like human neurons for motion perception are essential.In this work,a silica microfber probe-based optical neuron(MPON)for robot fnger motion ... To achieve dexterous motion controlling of robot,the sensors that function like human neurons for motion perception are essential.In this work,a silica microfber probe-based optical neuron(MPON)for robot fnger motion detection is proposed.The silica microfber probe was fabricated by snapping a biconical silica optical microfber that drawn from the standard optical fbre.Then it was embedded into thin polydimethylsiloxane(PDMS)to detect and recognize motions of robotic fnger.Specifcally,a PDMS-Tefon-Microfber-Tefon-PDMS composite structure was prepared to protect the waveguide structure of silica microfber probe and avoid the environmental pollution.With the help of this composite structure,the proposed MPON achieved the accurate measurement of bending angle with large range and fast response.The repeatability and stability of MPON were also investigated.Additionally,diferent fnger motions were successfully distinguished through observing the output power variation of MPON.The proposed MPON could serve as the perceptron of robot hand,which could be applied in dexterous gesture control even human machine interaction. 展开更多
关键词 Optical neuron Silica microfber probe fnger motion detection
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低压近场静电纺丝ZnO/PVDF复合微米纤维阵列的制备及压力传感性(英文) 被引量:2
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作者 司文燕 张红娣 +5 位作者 刘燕杰 赵艾靖 张志广 公茂刚 张君诚 龙云泽 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2017年第6期997-1001,共5页
利用低压近场静电纺丝技术制备了ZnO/PVDF(聚二偏氟乙烯)微米纤维平行阵列,通过光学显微镜、扫描电子显微镜(SEM)和X射线能量色散光谱(EDS)对ZnO/PVDF微米纤维进行了表征.该复合纤维的平均直径约为40μm.EDS分析测试证明ZnO纳米颗粒已... 利用低压近场静电纺丝技术制备了ZnO/PVDF(聚二偏氟乙烯)微米纤维平行阵列,通过光学显微镜、扫描电子显微镜(SEM)和X射线能量色散光谱(EDS)对ZnO/PVDF微米纤维进行了表征.该复合纤维的平均直径约为40μm.EDS分析测试证明ZnO纳米颗粒已经掺杂进入了平行微米纤维中.压电性能和电学性能测试结果表明,ZnO/PVDF微米纤维阵列的压电性能增强.研究结果表明,近场电纺丝ZnO/PVDF复合微米纤维阵列在压电型压力传感器和纳米发电机领域具有潜在的应用价值. 展开更多
关键词 ZnO/PVDF复合微米纤维 低压近场静电纺丝 压电型压力传感器
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