A microscale soft ionic power source modulates neuronal network activity
暂无分享,去创建一个
H. Bayley | E. Mikhailova | Linna Zhou | Yongcheng Jin | Xingyun Yang | Yujia Zhang | Jorin Riexinger
[1] K. Deisseroth,et al. Maturation and circuit integration of transplanted human cortical organoids , 2022, Nature.
[2] Madeline A. Lancaster,et al. A nomenclature consensus for nervous system organoids and assembloids , 2022, Nature.
[3] Rodolfo Miranda,et al. Nanostructured gold electrodes promote neural maturation and network connectivity. , 2021, Biomaterials.
[4] H. Bayley,et al. Functional multivesicular structures with controlled architecture from 3D-printed droplet networks , 2021 .
[5] M. Elimelech,et al. Selective membranes in water and wastewater treatment: Role of advanced materials , 2021, Materials Today.
[6] Trevor J. Kalkus,et al. Powering Electronic Devices from Salt Gradients in AA‐Battery‐Sized Stacks of Hydrogel‐Infused Paper , 2021, Advanced materials.
[7] M. Elimelech,et al. Nanopore-Based Power Generation from Salinity Gradient: Why It Is Not Viable. , 2021, ACS nano.
[8] Diego Marcos Gonzalez,et al. Droplet printing reveals the importance of micron-scale structure for bacterial ecology , 2020, Nature Communications.
[9] Danny C. W. Chan,et al. Lipid‐Bilayer‐Supported 3D Printing of Human Cerebral Cortex Cells Reveals Developmental Interactions , 2020, Advanced materials.
[10] Lei Jiang,et al. Bioinspired Ionic Sensory Systems: The Successor of Electronics , 2020, Advanced materials.
[11] H. Bayley,et al. Controlled packing and single-droplet resolution of 3D-printed functional synthetic tissues , 2020, Nature Communications.
[12] Yujia Zhang,et al. A Bioinspired Wireless Epidermal Photoreceptor for Artificial Skin Vision , 2020, Advanced Functional Materials.
[13] A. Dolphin,et al. Presynaptic calcium channels: specialized control of synaptic neurotransmitter release , 2020, Nature Reviews Neuroscience.
[14] David J. Lunn,et al. Multi-responsive hydrogel structures from patterned droplet networks , 2020, Nature Chemistry.
[15] R. N. Saha,et al. Merits and Limitations of Studying Neuronal Depolarization-Dependent Processes Using Elevated External Potassium , 2020, ASN neuro.
[16] Yihui Zhang,et al. Binodal, wireless epidermal electronic systems with in-sensor analytics for neonatal intensive care , 2019, Science.
[17] Jayoung Kim,et al. Wearable biosensors for healthcare monitoring , 2019, Nature Biotechnology.
[18] D. Trauner,et al. Light-Controlled Lipid Interaction and Membrane Organization in Photolipid Bilayer Vesicles. , 2018, Langmuir : the ACS journal of surfaces and colloids.
[19] Benoit Charlot,et al. Neuronal network maturation differently affects secretory vesicles and mitochondria transport in axons , 2018, Scientific Reports.
[20] Christophe Bernard,et al. Electrophoretic drug delivery for seizure control , 2018, Science Advances.
[21] Yulong Zhang,et al. Self-Powered Multifunctional Transient Bioelectronics. , 2018, Small.
[22] Joseph S. Najem,et al. Encapsulating Networks of Droplet Interface Bilayers in a Thermoreversible Organogel , 2018, Scientific Reports.
[23] M. Wood,et al. Molecular and electrophysiological features of spinocerebellar ataxia type seven in induced pluripotent stem cells , 2018, bioRxiv.
[24] S. Pașca,et al. The rise of three-dimensional human brain cultures , 2018, Nature.
[25] D. Sept,et al. An electric-eel-inspired soft power source from stacked hydrogels , 2017, Nature.
[26] Mitsuhiro Morita,et al. Astrocyte calcium waves propagate proximally by gap junction and distally by extracellular diffusion of ATP released from volume-regulated anion channels , 2017, Scientific Reports.
[27] H. Bayley,et al. Functional aqueous droplet networks. , 2017, Molecular bioSystems.
[28] F. Omenetto,et al. Modulation of Multiscale 3D Lattices through Conformational Control: Painting Silk Inverse Opals with Water and Light , 2017, Advanced materials.
[29] Steven D. Lacey,et al. Inverted battery design as ion generator for interfacing with biosystems , 2017, Nature Communications.
[30] H. Bayley,et al. Gel Microrods for 3D Tissue Printing , 2017, Advanced biosystems.
[31] M. Z. Cader,et al. A Highly Efficient Human Pluripotent Stem Cell Microglia Model Displays a Neuronal-Co-culture-Specific Expression Profile and Inflammatory Response , 2017, Stem cell reports.
[32] Anne M. Benneker,et al. Desalination by Electrodialysis Using a Stack of Patterned Ion‐Selective Hydrogels on a Microfluidic Device , 2016 .
[33] Kenneth C Catania,et al. Leaping eels electrify threats, supporting Humboldt’s account of a battle with horses , 2016, Proceedings of the National Academy of Sciences.
[34] R. Ghaffari,et al. Recent Advances in Flexible and Stretchable Bio‐Electronic Devices Integrated with Nanomaterials , 2016, Advanced materials.
[35] Stephen A. Sarles,et al. Droplet immobilization within a polymeric organogel improves lipid bilayer durability and portability. , 2016, Lab on a chip.
[36] H. Bayley,et al. Light-activated communication in synthetic tissues , 2016, Science Advances.
[37] Gabriel Villar,et al. A Tissue-Like Printed Material , 2013, Science.
[38] David L. Kaplan,et al. Silk inverse opals , 2012, Nature Photonics.
[39] M. Stanley Whittingham,et al. History, Evolution, and Future Status of Energy Storage , 2012, Proceedings of the IEEE.
[40] Christine Grienberger,et al. Imaging Calcium in Neurons , 2012, Neuron.
[41] W. N. Ross. Understanding calcium waves and sparks in central neurons , 2012, Nature Reviews Neuroscience.
[42] Jongyoon Han,et al. Electrochemical Activation and Inhibition of Neuromuscular Systems through Modulation of Ion Concentrations with Ion-Selective Membranes , 2011, Nature materials.
[43] Fred J Sigworth,et al. Synthetic Protocells to Mimic and Test Cell Function , 2010, Advanced materials.
[44] David A. LaVan,et al. Designing artificial cells to harness the biological ion concentration gradient. , 2008, Nature nanotechnology.
[45] David Needham,et al. Functional bionetworks from nanoliter water droplets. , 2007, Journal of the American Chemical Society.
[46] Li I. Zhang,et al. Electrical activity and development of neural circuits , 2001, Nature Neuroscience.
[47] R. E. Pattle. Production of Electric Power by mixing Fresh and Salt Water in the Hydroelectric Pile , 1954, Nature.
[48] Z. Suo,et al. Hydrogel ionotronics , 2018, Nature Reviews Materials.