Neurotrophins enhance electric field-directed growth cone guidance and directed nerve branching.
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Cellular and molecular mechanisms of action of transcranial direct current stimulation: evidence from in vitro and in vivo modelsEvaluation of EGFR and RTK signaling in the electrotaxis of lung adenocarcinoma cells under direct-current electric field stimulationDetermination of zeta-potential and tortuosity in rat organotypic hippocampal cultures from electroosmotic velocity measurements under feedback control.Membrane potential controls adipogenic and osteogenic differentiation of mesenchymal stem cells.Controlling cell behavior electrically: current views and future potential.The morphological and molecular changes of brain cells exposed to direct current electric field stimulation.Regulation of axonal growth and guidance by the neurotrophin family of neurotrophic factors.Synthesis and characterization of a hydrogel with controllable electroosmosis: a potential brain tissue surrogate for electrokinetic transportA review of the responses of two- and three-dimensional engineered tissues to electric fields.Influence of Electric Fields and Conductivity on Pollen Tube Growth assessed via Electrical Lab-on-Chip.Determination of zeta-potential in rat organotypic hippocampal cultures.Role of electrical stimulation for rehabilitation and regeneration after spinal cord injury: an overview.A retrograde neuronal survival response: target-derived neurotrophins regulate MEF2D and bcl-w.Regulation of cell cytoskeleton and membrane mechanics by electric field: role of linker proteinsThe regenerative effects of electromagnetic field on spinal cord injury.Anodal Transcranial Direct Current Stimulation Enhances Survival and Integration of Dopaminergic Cell Transplants in a Rat Parkinson Model.Therapeutic Application of Electric Fields in the Injured Nervous System.Electric field-mediated growth of osteoblasts - the significant impact of dynamic flow of medium.Recovery of supraspinal control of leg movement in a chronic complete flaccid paraplegic man after continuous low-frequency pelvic nerve stimulation and FES-assisted training.New design of hydrogels with tuned electro-osmosis: a potential model system to understand electro-kinetic transport in biological tissues
P2860
Q26851192-92A9DB87-2009-46C8-8E80-13D09AAAB773Q28535226-9F4F37AF-8492-4C74-95A6-AA0C9018BA23Q30489921-58391DC4-507E-4C37-9A6F-928E2CB4E1BDQ33384638-09C8065F-A1B3-4675-8379-37039C4EDB51Q34650760-D1C213D4-3EEB-4EE2-B447-9ACBC1921632Q35224286-72E7590B-51AC-4BA4-8E7C-30C9FDFF1522Q35546411-2D71A676-E28E-471A-8AAE-758C5DF50087Q35565923-8E9BE2CB-C29E-45E2-B35B-229590C0E207Q35975711-3813A5E0-4A79-4DD9-9648-EC9D1AFB71AAQ36501234-F31D8C20-ED93-4AFB-BB3F-5D8E482FADCFQ36785189-99BB9275-51C9-4588-B812-6FA77B685373Q36856898-A72E537F-8987-4FE0-9B5B-FC330ADF867AQ37260150-6329C03B-F59D-493B-8383-86324D1246B2Q37277008-2AD5EC74-8343-406E-B90A-AAEBD6787E4FQ38758872-9D692C57-C666-420B-A207-DD0220BCC220Q41664936-140FF4DE-00DA-4CDE-A55F-145D6F719FD9Q42465712-39E8CCDF-FF52-47DE-8324-2A1D55767666Q51686605-104A7F62-42C5-451C-BA70-CB203332F94CQ53810401-372BB2D1-CBF5-401D-9B4B-B9211979DB7DQ58423596-3165B9E2-9EAB-4C95-84D9-D1E24A514792
P2860
Neurotrophins enhance electric field-directed growth cone guidance and directed nerve branching.
description
2000 nî lūn-bûn
@nan
2000年の論文
@ja
2000年学术文章
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2000年学术文章
@zh
2000年学术文章
@zh-cn
2000年学术文章
@zh-hans
2000年学术文章
@zh-my
2000年学术文章
@zh-sg
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2000年學術文章
@zh-hant
name
Neurotrophins enhance electric ...... and directed nerve branching.
@en
Neurotrophins enhance electric ...... and directed nerve branching.
@nl
type
label
Neurotrophins enhance electric ...... and directed nerve branching.
@en
Neurotrophins enhance electric ...... and directed nerve branching.
@nl
prefLabel
Neurotrophins enhance electric ...... and directed nerve branching.
@en
Neurotrophins enhance electric ...... and directed nerve branching.
@nl
P2093
P2860
P1476
Neurotrophins enhance electric ...... and directed nerve branching.
@en
P2093
P2860
P304
P356
10.1002/(SICI)1097-0177(200003)217:3<299::AID-DVDY8>3.0.CO;2-G
P577
2000-03-01T00:00:00Z