LEADER 04640oam 2200637I 450 001 996320734103316 005 20230721031437.0 010 $a0-429-12717-0 010 $a1-280-73310-1 010 $a9786610733101 010 $a1-4200-0586-3 024 7 $a10.1201/9781420005868 035 $a(CKB)1000000000470670 035 $a(EBL)283219 035 $a(OCoLC)85621647 035 $a(SSID)ssj0000145050 035 $a(PQKBManifestationID)11163572 035 $a(PQKBTitleCode)TC0000145050 035 $a(PQKBWorkID)10156190 035 $a(PQKB)10220193 035 $a(MiAaPQ)EBC283219 035 $a(OCoLC)270601258 035 $a(EXLCZ)991000000000470670 100 $a20180331d2007 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 00$aElectrochemical methods for neuroscience /$fedited by Adrian C. Michael, Laura M. Borland 210 1$aBoca Raton :$cCRC Press/Taylor & Francis,$d2007. 215 $a1 online resource (540 p.) 225 1 $aFrontiers in neuroscience ;$v33 300 $aDescription based upon print version of record. 311 $a0-8493-4075-6 327 $aFront cover; Series Preface; Preface; Editors; Contributors; Table of Contents; Chapter 1. An Introduction to Electrochemical Methods in Neuroscience; Chapter 2. Rapid Dopamine Release in Freely Moving Rats; Chapter 3. Presynaptic Regulation of Extracellular Dopamine as Studied by Continuous Amperometry in Anesthetized Animals; Chapter 4. Fast Scan Cyclic Voltammetry of Dopamine and Serotonin in Mouse Brain Slices; Chapter 5. High-Speed Chronoamperometry to Study Kinetics and Mechanisms for Serotonin Clearance In Vivo 327 $aChapter 6. Using High-Speed Chronoamperometry with Local Dopamine Application to Assess Dopamine Transporter FunctionChapter 7. Determining Serotonin and Dopamine Uptake Rates in Synaptosomes Using High- Speed Chronoamperometry; Chapter 8. Using Fast-Scan Cyclic Voltammetry to Investigate Somatodendritic Dopamine Release; Chapter 9. From Interferant Anion to Neuromodulator: Ascorbate Oxidizes Its Way to Respectability; Chapter 10. Biophysical Properties of Brain Extracellular Space Explored with Ion-Selective Microelectrodes, Integrative Optical Imaging and Related Techniques 327 $aChapter 11. Hydrogen Peroxide as a Diffusible Messenger: Evidence from Voltammetric Studies of Dopamine Release in Brain SlicesChapter 12. In Vivo Voltammetry with Telemetry; Chapter 13. Oxidative Stress at the Single Cell Level; Chapter 14. Electrochemistry at the Cell Membrane/Solution Interface; Chapter 15. The Patch Amperometry Technique: Design of a Method to Study Exocytosis of Single Vesicles; Chapter 16. Amperometric Detection of Dopamine Exocytosis from Synaptic Terminals; Chapter 17. Scanning Electrochemical Microscopy as a Tool in Neuroscience 327 $aChapter 18. Principles, Development and Applications of Self-Referencing Electrochemical Microelectrodes to the Determination of Fluxes at Cell MembranesChapter 19. Second-by-Second Measures of L-Glutamate and Other Neurotransmitters Using Enzyme-Based Microelectrode Arrays; Chapter 20. Telemetry for Biosensor Systems; Chapter 21. The Principles, Development and Application of Microelectrodes for the In Vivo Determination of Nitric Oxide; Chapter 22. In Vivo Fast-Scan Cyclic Voltammetry of Dopamine near Microdialysis Probes; Index; Back cover 330 $aSince the first implant of a carbon microelectrode in a rat 35 years ago, there have been substantial advances in the sensitivity, selectivity and temporal resolution of electrochemical techniques. Today, these methods provide neurochemical information that is not accessible by other means. The growing recognition of the versatility of electrochemical techniques indicates a need for a greater understanding of the scientific foundation and use of these powerful tools.Electrochemical Methods for Neuroscience provides an updated summary of the current, albeit evolving, state of the art an 410 0$aFrontiers in neuroscience ;$v33. 606 $aElectrochemical sensors 606 $aNeurophysiologic monitoring$xMethodology 615 0$aElectrochemical sensors. 615 0$aNeurophysiologic monitoring$xMethodology. 676 $a610.28 676 $a612.8/042 701 $aMichael$b Adrian C$01237594 701 $aBorland$b Laura M$01237595 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a996320734103316 996 $aElectrochemical methods for neuroscience$92872817 997 $aUNISA