4.4 Article

Two-photon imaging of spatially extended neuronal network dynamics with high temporal resolution

Journal

JOURNAL OF NEUROSCIENCE METHODS
Volume 172, Issue 2, Pages 178-184

Publisher

ELSEVIER
DOI: 10.1016/j.jneumeth.2008.04.024

Keywords

calcium imaging; laser scanning; epileptiform; spatiotemporal

Funding

  1. NCRR NIH HHS [R01 RR020115] Funding Source: Medline
  2. NIBIB NIH HHS [R21 EB005736, R21 EB005736-02, EB005736] Funding Source: Medline
  3. NIMH NIH HHS [MH61604, R01 MH061604] Funding Source: Medline
  4. NINDS NIH HHS [R29 NS034425, NS34425, R01 NS034425, R56 NS034425] Funding Source: Medline

Ask authors/readers for more resources

We describe a simple two-photon fluorescence imaging strategy, called targeted path scanning (TPS), to monitor the dynamics of spatially extended neuronal networks with high spatiotemporal resolution. Our strategy combines the advantages of mirror-based scanning, minimized dead time, ease of implementation, and compatibility with high-resolution low-magnification objectives. To demonstrate the performance of TPS, we monitor the calcium dynamics distributed across an entire juvenile rat hippocampus (> 1.5 mm), at scan rates of 100 Hz, with single cell resolution and single action potential sensitivity. Our strategy for fast, efficient two-photon microscopy over spatially extended regions provides a particularly attractive solution for monitoring neuronal population activity in thick tissue, without sacrificing the signal-to-noise ratio or high spatial resolution associated with standard two-photon microscopy. Finally, we provide the code to make our technique generally available. (c) 2008 Elsevier B.V. All rights reserved.

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