Academic literature on the topic 'Biomimetic Electrode ArrayZ'

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Journal articles on the topic "Biomimetic Electrode ArrayZ"

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Bian, Yixiang, Can He, Kaixuan Sun, et al. "A biomimetic 3D airflow sensor made of an array of two piezoelectric metal-core fibers." Sensor Review 37, no. 3 (2017): 312–21. http://dx.doi.org/10.1108/sr-12-2016-0278.

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Purpose The purpose of this paper is to design and fabricate a three-dimensional (3D) bionic airflow sensing array made of two multi-electrode piezoelectric metal-core fibers (MPMFs), inspired by the structure of a cricket’s highly sensitive airflow receptor (consisting of two cerci). Design/methodology/approach A metal core was positioned at the center of an MPMF and surrounded by a hollow piezoceramic cylinder. Four thin metal films were spray-coated symmetrically on the surface of the fiber that could be used as two pairs of sensor electrodes. Findings In 3D space, four output signals of th
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Haq, Wadood, Sunetra Basavaraju, Achim Speck, and Eberhart Zrenner. "Nature-inspired saccadic-like electrical stimulation paradigm promotes sustained retinal ganglion cell responses by spatiotemporally alternating activation of contiguous multi-electrode patterns." Journal of Neural Engineering 19, no. 5 (2022): 055001. http://dx.doi.org/10.1088/1741-2552/ac8ad0.

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Abstract Objective. Retinal electrical stimulation using multi-electrode arrays (MEAs) aims to restore visual object perception in blind patients. However, the rate and duration of the artificial visual sensations are limited due to the rapid response decay of the stimulated neurons. Hence, we investigated a novel nature-inspired saccadic-like stimulation paradigm (biomimetic) to evoke sustained retinal responses. For implementation, the macroelectrode was replaced by several contiguous microelectrodes and activated non-simultaneously but alternating topologically. Approach. MEAs with hexagona
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Kwak, Jun-Hyuk, Youngdo Jung, Kyungjun Song, and Shin Hur. "Fabrication of Si3N4-Based Artificial Basilar Membrane with ZnO Nanopillar Using MEMS Process." Journal of Sensors 2017 (2017): 1–11. http://dx.doi.org/10.1155/2017/1308217.

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This paper presents the fabrication of Si3N4-based artificial basilar membrane (ABM) with ZnO nanopillar array. Structure of ABMs is composed of the logarithmically varying membrane fabricated by MEMS process and piezonanopillar array grown on the Si3N4-based membrane by hydrothermal method. We fabricate the bottom substrate containing Si3N4-based membrane for inducing the resonant motions from the sound wave and the top substrates of electrodes for acquiring electric signals. In addition, the bonding process of the top and bottom substrate is performed to build ABM device. Depending on sound
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Rodriguez-Mendez, Maria Luz, Celia García-Hernandez, Cristina Medina-Plaza, Cristina García-Cabezón, and Jose Antonio de Saja. "Multisensor systems based on phthalocyanines for monitoring the quality of grapes." Journal of Porphyrins and Phthalocyanines 20, no. 08n11 (2016): 889–94. http://dx.doi.org/10.1142/s1088424616500796.

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Arrays of phthalocyanine-based sensors with complementary activity have been used to develop voltammetric electronic tongues. Such systems have demonstrated to be useful in enology for the evaluation of quality of wines in different production stages, from grapes to bottles. In this paper, the state of the art of multisensor systems based on phthalocyanines dedicated to the analysis of musts (juices obtained from crushed grapes) is described. Such multisensor systems cover different types of sensors from simple Carbon Paste Electrodes, to sophiticated nanostructured sensors, including Langmuir
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Justin, Gusphyl, Stephen Finley, Abdur Rub Abdur Rahman, and Anthony Guiseppi-Elie. "Biomimetic hydrogels for biosensor implant biocompatibility: electrochemical characterization using micro-disc electrode arrays (MDEAs)." Biomedical Microdevices 11, no. 1 (2008): 103–15. http://dx.doi.org/10.1007/s10544-008-9214-3.

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George, J. A., D. T. Kluger, T. S. Davis, et al. "Biomimetic sensory feedback through peripheral nerve stimulation improves dexterous use of a bionic hand." Science Robotics 4, no. 32 (2019): eaax2352. http://dx.doi.org/10.1126/scirobotics.aax2352.

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We describe use of a bidirectional neuromyoelectric prosthetic hand that conveys biomimetic sensory feedback. Electromyographic recordings from residual arm muscles were decoded to provide independent and proportional control of a six-DOF prosthetic hand and wrist—the DEKA LUKE arm. Activation of contact sensors on the prosthesis resulted in intraneural microstimulation of residual sensory nerve fibers through chronically implanted Utah Slanted Electrode Arrays, thereby evoking tactile percepts on the phantom hand. With sensory feedback enabled, the participant exhibited greater precision in g
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Liu, Ying, Le Li, Jixin Zhu, et al. "A biomimetic Setaria viridis-inspired electrode with polyaniline nanowire arrays aligned on MoO3@polypyrrole core–shell nanobelts." Journal of Materials Chemistry A 6, no. 27 (2018): 13428–37. http://dx.doi.org/10.1039/c8ta04218g.

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Benefiting from the structural superiority achieved by mimicking Setaria viridis, the resultant MoO<sub>3</sub>/PPy/PANI electrodes exhibit enhanced electrochemical activity including high capacitance and excellent cycling stability for supercapacitors.
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Rodriguez-Mendez, Maria Luz. "Enhancing the Capabilities of Electrochemical Sensor Arrays Using Nanomaterials and Nanostructured Films." ECS Meeting Abstracts MA2023-01, no. 15 (2023): 1402. http://dx.doi.org/10.1149/ma2023-01151402mtgabs.

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In the last years electronic tongues (ET) based on electrochemical sensors coupled to a pattern recognition system, have been developed and applied to the analysis of a variety of foods [1]. Nowadays it is evident that improvements in the field involve the development of instruments dedicated to a specific application. This requires the search of sensors specifically designed to analyze an specific target, using the appropriate sensing materials and transduction methods adapted to a specific problem. Important advances in the field of electrochemical sensors are linked to the use of techniques
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Yang, Liju, Adilah Guiseppi-Wilson, and Anthony Guiseppi-Elie. "Design considerations in the use of interdigitated microsensor electrode arrays (IMEs) for impedimetric characterization of biomimetic hydrogels." Biomedical Microdevices 13, no. 2 (2010): 279–89. http://dx.doi.org/10.1007/s10544-010-9492-4.

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Liu, Zhe, Diansheng Chen, Junlin Ma, et al. "A warm hug from a robot: A dual-mode e-skin with programming compliance." Review of Scientific Instruments 93, no. 11 (2022): 115007. http://dx.doi.org/10.1063/5.0112754.

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Recent achievements in the field of electronic skin (e-skin) have provided promising technology for service robots. However, the development of a bionic perception system that exhibits superior performance in terms of safety and interaction quality remains a challenge. Here, we demonstrate a biomimetic soft e-skin that is composed of an array of capacitors and air pouches. It is a single platform that shows dual-mode sensing capabilities of tactile sensing and proximity perception. We optimized the shape and area of the electrode via simulation of the approach of a robot to an object. Moreover
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Book chapters on the topic "Biomimetic Electrode ArrayZ"

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Wang, Jun, and Andrew Ewing. "Electrode Array Probes of Exocytosis at Single-Cell Membranes and Exocytosis Measurements at Cell Biomimetic Systems." In Nanoelectrochemistry. CRC Press, 2015. http://dx.doi.org/10.1201/b18066-17.

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Conference papers on the topic "Biomimetic Electrode ArrayZ"

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Bruinink, C. M., R. K. Jaganatharaja, M. J. de Boer, et al. "Advancements in Technology and Design of Biomimetic Flow-Sensor Arrays." In 2009 IEEE 22nd International Conference on Micro Electro Mechanical Systems (MEMS). IEEE, 2009. http://dx.doi.org/10.1109/memsys.2009.4805341.

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Jaganatharaja, R. K., H. Droogendijk, S. Vats, B. Hagedoorn, C. M. Bruinink, and G. Krijnen. "Unraveling the viscosity-mediated coupling effect in biomimetic hair sensor arrays." In 2011 IEEE 24th International Conference on Micro Electro Mechanical Systems (MEMS). IEEE, 2011. http://dx.doi.org/10.1109/memsys.2011.5734509.

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Peng, Zhiting, Tianzhun Wu, Weiliang Shu, and Yunlong Wang. "Facile and High-Efficiency Microbead Array Based on Biomimetic Nepenthes Peristome Surfaces." In 2019 IEEE 32nd International Conference on Micro Electro Mechanical Systems (MEMS). IEEE, 2019. http://dx.doi.org/10.1109/memsys.2019.8870716.

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Tang, Y., R. L. Peterson, and K. Najafi. "Technology for fabricating dense 3-D microstructure arrays for biomimetic hair-like sensors." In 2013 IEEE 26th International Conference on Micro Electro Mechanical Systems (MEMS). IEEE, 2013. http://dx.doi.org/10.1109/memsys.2013.6474251.

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Chidurala, Manohar, Benjamin T. Dickinson, and Uttam K. Chakravarty. "Dynamic Response of Biomimetic Hair Receptors in Both Steady and Unsteady Flow Environment." In ASME 2013 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/imece2013-65250.

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The high performance of nature’s creations and biological assemblies has inspired the development of engineered counter parts that may outperform or provide new capabilities to conventional systems. In particular, the wings of bats contain distributed arrays of micro-scaled flow sensitive hair receptors over their surface, which inspires artificial hair sensors (AHS) development in aerodynamic feedback control designs using the micro-electro-mechanical systems (MEMS). One approach investigates the possibility of installing AHS on the leading edges of the wings of small-scaled unmanned aerial v
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