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1.
Microsyst Nanoeng ; 8: 24, 2022.
Article in English | MEDLINE | ID: mdl-35251689

ABSTRACT

Accurate motion feature extraction and recognition provide critical information for many scientific problems. Herein, a new paradigm for a wearable seamless multimode sensor with the ability to decouple pressure and strain stimuli and recognize the different joint motion states is reported. This wearable sensor is integrated into a unique seamless structure consisting of two main parts (a resistive component and a capacitive component) to decouple the different stimuli by an independent resistance-capacitance sensing mechanism. The sensor exhibits both high strain sensitivity (GF = 7.62, 0-140% strain) under the resistance mechanism and high linear pressure sensitivity (S = 3.4 kPa-1, 0-14 kPa) under the capacitive mechanism. The sensor can differentiate the motion characteristics of the positions and states of different joints with precise recognition (97.13%) with the assistance of machine learning algorithms. The unique integrated seamless structure is achieved by developing a layer-by-layer casting process that is suitable for large-scale manufacturing. The proposed wearable seamless multimode sensor and the convenient process are expected to contribute significantly to developing essential components in various emerging research fields, including soft robotics, electronic skin, health care, and innovative sports systems applications.

2.
Yao Xue Xue Bao ; 45(9): 1183-7, 2010 Sep.
Article in Chinese | MEDLINE | ID: mdl-21351577

ABSTRACT

The aim of this study is to prepare cationic biodegradable dextran microspheres loaded with tetanus toxoid (TT) and to investigate the mechanism of protein loading. Positively charged microspheres were prepared by polymerization of hydroxylethyl methacrylate derivatized dextran (dex-HEMA) and dimethyl aminoethyl methacrylate (DMAEMA) in an aqueous two-phase system. The loading of the microspheres with TT was based on electrostatic attraction. The net positive surface charge increased with increasing amounts of DMAEMA. Confocal images showed fluorescein isothiocyanate labeled bovine serum albumin (FITC-BSA) could penetrate into cationic dextran microspheres but not natural dextran microspheres. TT loading efficiency by post-loading was higher compared with by pre-loading. Even though TT is incorporated in the hydrogel network based on electrostatic interaction, still a controlled release can be achieved by varying the initial network density of the microspheres.


Subject(s)
Dextrans/chemistry , Methacrylates/chemistry , Tetanus Toxoid/administration & dosage , Delayed-Action Preparations , Drug Carriers/chemistry , Hydrogels/chemistry , Microscopy, Confocal , Microspheres , Particle Size , Polymerization , Serum Albumin, Bovine/chemistry , Tetanus Toxoid/chemistry
3.
J Nanosci Nanotechnol ; 6(8): 2525-8, 2006 Aug.
Article in English | MEDLINE | ID: mdl-17037867

ABSTRACT

Cage-like nano-tetrapod ZnO is a novel structure, which was successfully synthesized by combustion oxidation at 850 degrees C. No catalyst or carrier gases were used. Thorough SEM and TEM analyses revealed that the linking legs of the tetrapod ZnO can have or not interface. The formation or not of an interface is discussed and it was attributed to different growth process of the cage-like ZnO nano-tetrapod. Enhanced UV emission peak at the wavelength of 375 nm, featuring high intensity and narrow width, indicates a highly crystalline structure. A green emission, recorded at 502 nm, was related to the defects of the surface of the branching configuration as well as to the ZnO nuclei of the cage-like nano-tetrapod ZnO.


Subject(s)
Nanoparticles/chemistry , Nanostructures/chemistry , Nanotubes/chemistry , Zinc Oxide/chemistry , Crystallography, X-Ray , Light , Microscopy, Electron, Scanning , Microscopy, Electron, Transmission , Nanotechnology/methods , Spectrophotometry, Ultraviolet , Temperature , Ultraviolet Rays , X-Ray Diffraction
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