Academic literature on the topic 'Visual Critical Voltage'

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Journal articles on the topic "Visual Critical Voltage"

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Riba, Jordi-Roger, Álvaro Gómez-Pau, and Manuel Moreno-Eguilaz. "Experimental Study of Visual Corona under Aeronautic Pressure Conditions Using Low-Cost Imaging Sensors." Sensors 20, no. 2 (2020): 411. http://dx.doi.org/10.3390/s20020411.

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Visual corona tests have been broadly applied for identifying the critical corona points of diverse high-voltage devices, although other approaches based on partial discharge or radio interference voltage measurements are also widely applied to detect corona activity. Nevertheless, these two techniques must be applied in screened laboratories, which are scarce and expensive, require sophisticated instrumentation, and typically do not allow location of the discharge points. This paper describes the detection of the visual corona and location of the critical corona points of a sphere-plane gap c
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Waldner, D. M., N. T. Bech-Hansen, and W. K. Stell. "Channeling Vision: CaV1.4—A Critical Link in Retinal Signal Transmission." BioMed Research International 2018 (2018): 1–14. http://dx.doi.org/10.1155/2018/7272630.

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Voltage-gated calcium channels (VGCC) are key to many biological functions. Entry of Ca2+into cells is essential for initiating or modulating important processes such as secretion, cell motility, and gene transcription. In the retina and other neural tissues, one of the major roles of Ca2+-entry is to stimulate or regulate exocytosis of synaptic vesicles, without which synaptic transmission is impaired. This review will address the special properties of one L-type VGCC,CaV1.4, with particular emphasis on its role in transmission of visual signals from rod and cone photoreceptors (hereafter cal
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Cohen-Duwek, Hadar, Hamutal Slovin, and Elishai Ezra Tsur. "Computational modeling of color perception with biologically plausible spiking neural networks." PLOS Computational Biology 18, no. 10 (2022): e1010648. http://dx.doi.org/10.1371/journal.pcbi.1010648.

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Biologically plausible computational modeling of visual perception has the potential to link high-level visual experiences to their underlying neurons’ spiking dynamic. In this work, we propose a neuromorphic (brain-inspired) Spiking Neural Network (SNN)-driven model for the reconstruction of colorful images from retinal inputs. We compared our results to experimentally obtained V1 neuronal activity maps in a macaque monkey using voltage-sensitive dye imaging and used the model to demonstrate and critically explore color constancy, color assimilation, and ambiguous color perception. Our parame
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Adjamskiy, Sergey, Ganna Kononenko, Rostyslav Podolskyi та Sergey Baduk. "Перспективи застосування електрохімічного полірування зразків скеффолд, виготовлених за адитивною технологією". Aerospace Technic and Technology, № 4sup2 (24 серпня 2023): 76–81. http://dx.doi.org/10.32620/aktt.2023.4sup2.10.

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In recent years, the actual production of metal products directly from electronic data according to a three-dimensional model based on layer-by-layer manufacturing has evolved from rapid prototyping to additive manufacturing. As the quality of additively manufactured metal products continues to increase and their manufacturing processes improve and develop, the demand for additive manufacturing is increasing. Additive manufacturing technology, also known as 3D printing, has become increasingly popular recently. Using additive manufacturing, almost any complex geometry can be manufactured with
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Obi, P. I., E. A. Amako, and C. S. Ezeonye. "INVESTIGATING THE CHARACTERISTICS OF CORONA EFFECT ON AC TRANSMISSION LINE WITH VARIATION OF LINE PARAMETERS." BAYERO JOURNAL OF ENGINEERING AND TECHNOLOGY (BJET) 16, no. 3 (2021): 1–8. https://doi.org/10.5281/zenodo.14519673.

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This paper presents the study of characteristics of corona effect on AC high voltage transmission line with variation of parameters associated with the transmission line. This objective was achieved with the aid of MATLAB m-file function program. The line specifications are 220 kV line-to-line, 50 Hz, 1.2 cm conductor radius, 200 cm distance between conductors, and 0.85 conductor surface condition factor. The responses of the simulation on the effect of corona on transmission line show that as line width from the point of electric field intensity is decreased towards the conductor radius, the
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Riba, Jordi-Roger, Santiago Bogarra, Álvaro Gómez-Pau, and Manuel Moreno-Eguilaz. "Experimental Study of the Corona Performance of Aged Sand-Cast Substation Connectors." Energies 13, no. 11 (2020): 2785. http://dx.doi.org/10.3390/en13112785.

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Substation connectors, like many other high-voltage products, are tested once manufactured. However, the corona behavior of aged specimens can differ from that exhibited by newer ones, thus generating detrimental technical and environmental effects. Manufacturers need to know the long-term corona behavior of substation connectors to offer their customers maximum safety and transparency about such critical products. This paper analyzes the ageing effect on the surface roughness and the visual corona extinction voltage of sand-cast aluminum connectors, which were artificially aged in a salt spra
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Miller, Kenneth D., and Todd W. Troyer. "Neural Noise Can Explain Expansive, Power-Law Nonlinearities in Neural Response Functions." Journal of Neurophysiology 87, no. 2 (2002): 653–59. http://dx.doi.org/10.1152/jn.00425.2001.

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Many phenomenological models of the responses of simple cells in primary visual cortex have concluded that a cell's firing rate should be given by its input raised to a power greater than one. This is known as an expansive power-law nonlinearity. However, intracellular recordings have shown that a different nonlinearity, a linear-threshold function, appears to give a good prediction of firing rate from a cell's low-pass-filtered voltage response. Using a model based on a linear-threshold function, Anderson et al. showed that voltage noise was critical to converting voltage responses with contr
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MITRA, PRATIP, and ROBERT F. MILLER. "Normal and rebound impulse firing in retinal ganglion cells." Visual Neuroscience 24, no. 1 (2007): 79–90. http://dx.doi.org/10.1017/s0952523807070101.

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Given that the action potential output of retinal ganglion cells (RGCs) determines the nature of the visual information that is transmitted from the retina, an understanding of their intrinsic impulse firing characteristics is critical for an appreciation of the overall processing of visual information. Recordings from RGCs within an isolated whole-mount retina preparation showed that their normal impulse firing from the resting membrane potential (RMP) was linearly correlated in its frequency with the stimulus intensity. In addition to describing the relationship between the magnitude of the
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Khattak, Abraiz, and Muhammad Amin. "Accelerated aging investigation of high voltage EPDM/silica composite insulators." Journal of Polymer Engineering 36, no. 2 (2016): 199–209. http://dx.doi.org/10.1515/polyeng-2015-0004.

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Abstract Ethylene-propylene-diene-monomer (EPDM) is one of the most frequently used outdoor insulating materials. Like other polymeric materials, EPDM and its composites also degrade in outdoor applications. For evaluation of aging of insulating materials, accelerated multistress aging/weathering is an efficient method. In the current paper, comparative multistress aging performance investigation of neat EPDM (NE), EPDM with 20% microsilica (microcomposite, EMC), EPDM with 5% nanosilica (nanocomposite, ENC) and EPDM 20% microsilica 5% nanosilica (hybrid composite, EHC) is presented. Materials
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Jeon, Dabin, Seung Hun Lee, and Sung-Nam Lee. "Gate-Controlled Three-Terminal ZnO Nanoparticle Optoelectronic Synaptic Devices for In-Sensor Neuromorphic Memory Applications." Nanomaterials 15, no. 12 (2025): 908. https://doi.org/10.3390/nano15120908.

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This study reports a gate-tunable three-terminal optoelectronic synaptic device based on an Al/ZnO nanoparticles (NPs)/SiO2/Si structure for neuromorphic in-sensor memory applications. The ZnO NP film, fabricated via spin coating, exhibited strong UV-induced excitatory post-synaptic current (EPSC) responses that were modulated by gate voltage through charge injection across the SiO2 dielectric rather than by conventional field effect. Optical stimulation enabled short-term synaptic plasticity, with paired-pulse facilitation (PPF) values reaching 185% at a gate voltage of −5.0 V and decreasing
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Books on the topic "Visual Critical Voltage"

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di Pagolo Morelli, Giovanni. Ricordi. Nuova edizione e introduzione storica. Edited by Claudia Tripodi. Firenze University Press, 2019. http://dx.doi.org/10.36253/978-88-6453-913-3.

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I Ricordi di Giovanni di Pagolo Morelli, da tempo noti agli storici, sono qui pubblicati per la prima volta in versione integrale e linguisticamente fedele al testo originale del manoscritto. A questa nuova edizione critica si accompagna un lungo saggio introduttivo sull’autore, sugli intenti della sua opera e sugli esiti che essa ebbe presso gli eredi cui era destinata. I 74 anni vissuti da Giovanni Morelli dagli anni ’70 del Trecento alla metà degli anni ’40 del secolo successivo attraversano un arco temporale decisivo per la storia fiorentina, segnato da una forte mobilità sociale di cui i
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Book chapters on the topic "Visual Critical Voltage"

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Koch, Christof. "The Membrane Equation." In Biophysics of Computation. Oxford University Press, 1998. http://dx.doi.org/10.1093/oso/9780195104912.003.0007.

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Any physical or biophysical mechanism instantiating an information processing system that needs to survive in the real world must obey several constraints: (1) it must operate at high speeds, (2) it must have a rich repertoire of computational primitives, with the ability to implement a variety of linear and nonlinear, high-gain, operations, and (3) it must interface with the physical world—in the sense of being able to represent sensory input patterns accurately and translate the result of the computations into action, that is motor output (Keyes, 1985). The membrane potential is the one phys
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Meregalli, Franco. "Sobre el Teatro Español en la Critica de Voltaire a los Hermanos Schlegel." In La literatura desde el punto de vista del receptor. BRILL, 1989. http://dx.doi.org/10.1163/9789004656543_010.

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Eilks, Ingo, Torsten Witteck, and Verena Pietzner. "Using Multimedia Learning Aids from the Internet for Teaching Chemistry." In Multiple Literacy and Science Education. IGI Global, 2010. http://dx.doi.org/10.4018/978-1-61520-690-2.ch004.

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Large advances in technology in the last few years have made computers cheap and presentation technologies easily available in most secondary schools, at least in industrialised countries. Due to recent developments in software technology nearly anyone can create animations and visualisations. The Internet has helped to make the distribution of such graphic tools both wide and fast. Thus, using multimedia in science teaching is becoming more and more common. Today, integrating visualisations and animations from the Internet into the science classroom seems an obvious choice for enhancing scien
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Conference papers on the topic "Visual Critical Voltage"

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Shah, Jimil M., Syed Haider I. Rizvi, Indu Sravani Kota, Sahithi Reddy Nagilla, Dhaval Thakkar, and Dereje Agonafer. "Design Considerations Relating to Non-Thermal Aspects of Oil Immersion Cooling." In ASME 2016 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/imece2016-67320.

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Full submersion of servers in dielectric oils offers an opportunity for significant cooling energy savings and increased power densities for data centers. The enhanced thermal properties of oil can lead to considerable savings in both the upfront and operating costs over traditional air cooling methods. Despite recent findings showing the improved cooling efficiency and cost savings of oil as a cooling fluid, this technique is still not widely adopted. Many uncertainties and concerns persist regarding the non-thermal aspects of an oil immersion cooled data center. This paper presents useful in
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Kumar Mandal, Diptesh, Kazunori Kaede, and Keiichi Watanuki. "Real-Time Adaptive Gripping Mechanism Using Object Classification and Feedback Control." In 16th International Conference on Applied Human Factors and Ergonomics (AHFE 2025). AHFE International, 2025. https://doi.org/10.54941/ahfe1006059.

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Building on the foundation of our previous research, this study transitions from theoretical object classification to practical applications in adaptive gripping mechanisms. In the previous study, we introduced a TensorFlow-based machine learning model capable of classifying objects as hard or soft using visual data from image files or live camera input. The classification process addresses the initial challenge of identifying object types, and this research extends to the critical next step: enabling a robotic gripper to apply appropriate and dynamically adjusted pressure to objects based on
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