Előző oldalÖsszesen 84 elem 1 oldalon, 84 listázva, a(z) 1. oldal megjelenítve.Következő oldalÁtlépés a keresőbeIn English
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Pongrácz A et al. Deep-brain silicon multielectrodes for simultaneous in vivo neural recording and drug delivery. (2013) SENSORS AND ACTUATORS B-CHEMICAL 0925-4005 0925-4005 189 97-105,
2193634
Szakcikk (Folyóiratcikk) | Tudományos[2193634]
Li Lizhu et al. Multimodal Technologies for Closed‐Loop Neural Modulation and Sensing. (2024) ADVANCED HEALTHCARE MATERIALS 2192-2640 2192-2659 13 24
Shan Y. et al. Recent progress of electroactive interface in neural engineering. (2023) WILEY INTERDISCIPLINARY REVIEWS-NANOMEDICINE AND NANOBIOTECHNOLOGY 1939-5116 1939-0041 15 1
Patel Dinesh K. et al. Microfluidics and Lab-on-a-Chip for Biomedical Applications: Chapter 11. (2023) Megjelent: Nanorobotics and Nanodiagnostics in Integrative Biology and Biomedicine pp. 263-283
Kim Youjoung et al. Fabrication Methods and Chronic In Vivo Validation of Mechanically Adaptive Microfluidic Intracortical Devices. (2023) MICROMACHINES 2072-666X 14 5
Chatterjee Suman et al. Design and fabrication of a microelectrode array for studying epileptiform discharges from rodents. (2023) BIOMEDICAL MICRODEVICES 1387-2176 1572-8781 25 3
Bhaskara S. et al. Recent advancements in Micro-engineered devices for surface and deep brain animal studies: A review. (2022) SENSING AND BIO-SENSING RESEARCH 2214-1804 36
Wan J. et al. Emerging Roles of Microfluidics in Brain Research: From Cerebral Fluids Manipulation to Brain-on-A-Chip and Neuroelectronic Devices Engineering. (2022) CHEMICAL REVIEWS 0009-2665 1520-6890 122 7 7142-7181
Sharma K. et al. Multifunctional optrode for opsin delivery, optical stimulation, and electrophysiological recordings in freely moving rats. (2021) JOURNAL OF NEURAL ENGINEERING 1741-2560 1741-2552 18 6
Kang Yoo Na et al. A 3D flexible neural interface based on a microfluidic interconnection cable capable of chemical delivery. (2021) MICROSYSTEMS & NANOENGINEERING 2096-1030 2055-7434 7 1
El-Safty Sherif A. et al. Nanoscale Dynamic Chemical, Biological Sensor Material Designs for Control Monitoring and Early Detection of Advanced Diseases. (2020) MATERIALS TODAY BIO 2590-0064 2590-0064 5
Sung C. et al. Multimaterial and multifunctional neural interfaces: From surface-type and implantable electrodes to fiber-based devices. (2020) JOURNAL OF MATERIALS CHEMISTRY B 2050-750X 2050-7518 8 31 6624-6666
Kim Chaebin et al. Recent Progress on Non-Conventional Microfabricated Probes for the Chronic Recording of Cortical Neural Activity. (2019) SENSORS 1424-8220 19 5
Sharma Kirti et al. Microfluidic Neural Probes with Buried Channels Fabricated Using Continuous Flow XeF 2 Etching of Silicon. (2019) Megjelent: 32nd IEEE International Conference on Micro Electro Mechanical Systems, MEMS 2019 pp. 569-572
Li Yan et al. In-plane silicon microneedles with open capillary microfluidic networks by deep reactive ion etching and sacrificial layer based sharpening. (2019) SENSORS AND ACTUATORS A-PHYSICAL 0924-4247 1873-3069 292 149-157
Juska Vuslat B. et al. Cu Nanodendrite Foams on Integrated Band Array Electrodes for the Nonenzymatic Detection of Glucose. (2019) ACS APPLIED NANO MATERIALS 2574-0970 2 9 5878-5889
Zhang S et al. Real-time simultaneous recording of electrophysiological activities and dopamine overflow in the deep brain nuclei of a non-human primate with Parkinson's disease using nano-based microelectrode arrays. (2018) MICROSYSTEMS & NANOENGINEERING 2096-1030 2055-7434 4
Erhan Kayabaşı et al. PROGRESS IN APPLICATIONS OF BLACK SILICON: Chaper 146. (2018) Megjelent: The Most Recent Studies in Science and Art pp. 1866-1882
Chapman Christopher A et al. Multifunctional Neural Interfaces for Closed-Loop Control of Neural Activity. (2018) ADVANCED FUNCTIONAL MATERIALS 1616-301X 1616-3028 28 12
Ngernsutivorakul Thitaphat et al. Microfabricated Probes for Studying Brain Chemistry: AReview. (2018) CHEMPHYSCHEM: A EUROPEAN JOURNAL OF CHEMICAL PHYSICS AND PHYSICAL CHEMISTRY 1439-4235 1439-7641 19 10 1128-1142
Zhao ZG et al. Flexible deep brain neural probes based on a parylene tube structure. (2018) JOURNAL OF MICROMECHANICS AND MICROENGINEERING 0960-1317 1361-6439 28 1
Song Yilin et al. Electrophysiological Detection of Cortical Neurons under Gamma-Aminobutyric Acid and Glutamate Modulation Based on Implantable Microelectrode Array Combined with Microinjection. (2018) Megjelent: 40th Annual International Conference of the IEEE Engineering in Medicine and Biology Society, EMBC 2018 pp. 4583-4586
O Nolasco-Jáuregui et al. HEADERS AND PAYLOADS INSIDE OF NERVOUS SYSTEM AS LIKE AS DIGITAL COMMUNICATION PROTOCOLS?. (2017) International Journal of Biomedical Engineering and Science 2394-0832 4 1 25-36
Zhao Zongya et al. In Vivo Neural Recording and Electrochemical Performance of Microelectrode Arrays Modified by Rough-Surfaced AuPt Alloy Nanoparticles with Nanoporosity. (2016) SENSORS 1424-8220 16 11
Michon Frederic et al. Integration of silicon-based neural probes and micro-drive arrays for chronic recording of large populations of neurons in behaving animals. (2016) JOURNAL OF NEURAL ENGINEERING 1741-2560 1741-2552 13 4
Tian Hong-Chang et al. IMPLANTABLE MULTI-FUNCTIONAL FLEXIBLE MICROELECTRODE COMBINING ELECTRICAL AND CHEMICAL INTERFACE. (2016) Megjelent: 29th IEEE International Conference on Micro Electro Mechanical Systems, MEMS 2016 pp. 387-390
Zhao Z. et al. Design, fabrication, simulation and characterization of a novel dual-sided microelectrode array for deep brain recording and stimulation. (2016) SENSORS 1424-8220 16 6
Jones Peter D et al. Can Nanofluidic Chemical Release Enable Fast, High Resolution Neurotransmitter-Based Neurostimulation?. (2016) FRONTIERS IN NEUROSCIENCE 1662-4548 1662-453X 10
Chae Uikyu et al. A NEW MEMS NEURAL PROBE SYSTEM INTEGRATED WITH PUSH-PULL MICROFLUIDIC CHANNELS AND BIOSENSORS FOR REAL-TIME MONITORING OF NEUROCHEMICALS. (2016) Megjelent: 29th IEEE International Conference on Micro Electro Mechanical Systems, MEMS 2016 pp. 329-332
Tian HC et al. Flexible multi-channel microelectrode with fluidic paths for intramuscular stimulation and recording. (2015) SENSORS AND ACTUATORS A-PHYSICAL 0924-4247 1873-3069 228 28-39
Lee HJ et al. A new thin silicon microneedle with an embedded microchannel for deep brain drug infusion. (2015) SENSORS AND ACTUATORS B-CHEMICAL 0925-4005 0925-4005 209 413-422
Son Yoojin et al. A NEW MONOLITHICALLY INTEGRATED MULTI-FUNCTIONAL MEMS NEURAL PROBE FOR OPTICAL STIMULATION AND DRUG DELIVERY. (2015) Megjelent: 28th IEEE International Conference on Micro Electro Mechanical Systems, MEMS 2015 pp. 158-161
Lee HJ et al. A multichannel neural probe with embedded microfluidic channels for simultaneous in vivo neural recording and drug delivery. (2015) LAB ON A CHIP 1473-0197 1473-0189 15 6 1590-1597
Tian Hong-Chang et al. Flexible Intramuscular Micro Tube Electrode Combining Electrical and Chemical Interface. (2014) Megjelent: 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC 2014) pp. 6949-6952
Marthi SR et al. Optical properties of passivation layers on black silicon. (2016) Megjelent: Materials Science and Technology Conference and Exhibition 2016, MS and T 2016 pp. 1141-1152
Nuggehalli M Ravindra et al. Modeling of Optical Properties of Black Silicon/Crystalline Silicon. (2015) JOURNAL OF SCIENTIFIC AND INDUSTRIAL METROLOGY 2472-1948 1 1 1-7
Fekete Z et al. Black poly-silicon: a nanostructured seed layer for sensor applications. (2014) SENSORS AND ACTUATORS A-PHYSICAL 0924-4247 1873-3069 216 277-286,
2698991
Szakcikk (Folyóiratcikk) | Tudományos[2698991]
Amirov II et al. Self-formation of a nanonet of fluorinated carbon nanowires on the Si surface by combined etching in fluorine-containing plasma. (2018) JOURNAL OF PHYSICS D-APPLIED PHYSICS 0022-3727 1361-6463 51 11
Yan ZX et al. Silver hierarchical structures grown on microstructured silicon in chip for microfluidic integrated catalyst and SERS detector. (2015) CHINESE OPTICS LETTERS 1671-7694 1671-7694 13 10
Nuggehalli M Ravindra et al. Modeling of Optical Properties of Black Silicon/Crystalline Silicon. (2015) JOURNAL OF SCIENTIFIC AND INDUSTRIAL METROLOGY 2472-1948 1 1 1-7
Fekete Z et al. Combined in vivo recording of neural signals and iontophoretic injection of pathway tracers using a hollow silicon microelectrode. (2016) SENSORS AND ACTUATORS B-CHEMICAL 0925-4005 0925-4005 236 815-824,
2999603
Szakcikk (Folyóiratcikk) | Tudományos[2999603]
Cai X. et al. Recent Advances in Intracortical Neural Interfaces for Freely Moving Animals: Technologies and Applications. (2025) ENGINEERING 2095-8099 2096-0026 44 73-86
Sun J. et al. High Performance and Intelligent Digital Active-Sensor System for Epilepsy Information Acquisition and Classification. (2025) IEEE SENSORS JOURNAL 1530-437X 1558-1748 25 9 16392-16410
Helmy A.M.. Overview of recent advancements in the iontophoretic drug delivery to various tissues and organs. (2021) JOURNAL OF DRUG DELIVERY SCIENCE AND TECHNOLOGY 1773-2247 2588-8943 61
Zhao ZG et al. Flexible deep brain neural probes based on a parylene tube structure. (2018) JOURNAL OF MICROMECHANICS AND MICROENGINEERING 0960-1317 1361-6439 28 1
Zhao Z. et al. Design, fabrication, simulation and characterization of a novel dual-sided microelectrode array for deep brain recording and stimulation. (2016) SENSORS 1424-8220 16 6