Source: Martianova, E., et al. Multi-Fiber Photometry to Record Neural Activity in Freely-Moving Animals. J. Vis. Exp. (2019).
This video demonstrates a method for recording neural activity in a freely moving mouse using fiber photometry. In this method, neurons in a specific brain region express a genetically encoded calcium indicator. A stimulus is applied to this brain region, and the stimulus-dependent change in fluorescence is measured to identify neural activity.
All procedures involving animal models have been reviewed by the local institutional animal care committee and the JoVE veterinary review board.
1. Alignment of the optical path between the CMOS (complementary metal oxide semiconductor) camera and the individual or branching patch cord
2. Setup of ROIs around fibers for measurement of mean fluorescent intensity
3. Setup of recording arena
4. In vivo recordings
Figure 1: Fiber photometry schematic. (A) The excitation light from two LEDs (410 nm and 470 nm) passes through a series of filters and dichroic mirrors and produces an excitation spot at the working distance of the 20x objective. The light passes through either a single patch cord or bundled fibers (for multiple site recordings) connected to the implanted cannulas. The emitted fluorescence is collected by the same fibers, filtered, and projected on a CMOS camera sensor. On the captured images, the mean fluorescence intensity is recorded at the ROIs of each fiber. A time-division multiplexing is implemented to simultaneously acquire signals from both 410 nm and 470 nm LEDs (lower right diagram). (B) Image of our custom-made photometry system and its components: (1) Fiber to the 465 nm LED, (2) Fiber to the 405 nm LED, (3) Collimators, (4) 470 nm bandpass filter, (5) 410 nm bandpass filter, (6) 535 nm bandpass filter, (7) Tube lens, (8) Cube with longpass 425 dichroic mirror, (9) Cube with longpass 495 dichroic mirror, (10) 20x objective, (11) 5-axis translator, (12) Mono- or bundled-fiber patch cord, (13) CMOS camera.
The authors have nothing to disclose.
1/4"-20 Stainless Steel Cap Screw, 1" Long | Thorlabs | SH25S100 | |
1/4"-20 Stainless Steel Cap Screw, 1/2" Long | Thorlabs | SH25S050 | |
1/4"-20 Stainless Steel Cap Screw, 3/8" Long | Thorlabs | SH25S038 | |
1000 µm, 0.50 NA, SMA-SMA Fiber Patch Cable |
Thorlabs | M59L01 | |
12.7 mm Optical Post | Thorlabs | TR30/M | |
12.7 mm Pedestal Post Holder | Thorlabs | PH20EM | |
15 V, 2.4 A Power Supply Unit with 3.5 mm Jack Connector for T-Cube |
Thorlabs | KPS101 | |
20x objective | Thorlabs | RMS20X | |
30 mm Cage Cube with Dichroic Filter Mount | Thorlabs | CM1-DCH/M | |
405 nm LED | Doric Lenses | CLED_405 | |
410 nm bandpass filter | Thorlabs | FB410-10 | |
465 nm. LED | Doric Lenses | CLED_465 | |
470 nm bandpass filter | Thorlabs | FB470-10 | |
560 nm bandpass filter | Semrock | FF01-560/14-25 | |
560 nm LED | Doric Lenses | CLED_560 | |
5-axis kinematic Mount | Thorlabs | K5X1 | |
Achromatic Doublet | Thorlabs | AC254-035-A-ML | |
Adaptor for 405 collimator | Thorlabs | AD11F | |
Adaptor for ajustable collimator | Thorlabs | AD127-F | |
Aluminum Breadboard | Thorlabs | MB1824 | |
Clamping Fork | Thorlabs | CF125 | |
Cube connector | Thorlabs | CM1-CC | |
Dual 493/574 dichroic | Semrock | FF493/574-Di01-25×36 | |
Emission filter for GCaMP6 | Semrock | FF01-535/22-25 | |
Enclosure with Black Hardboard Panels | Thorlabs | XE25C9 | |
Externally SM1-Threaded End Cap for Machining | Thorlabs | SM1CP2M | |
Fast-change SM1 Lens Tube Filter Holder | Thorlabs | SM1QP | |
Fixed Collimator for 405 nm light | Thorlabs | F671SMA-405 | |
Fixed collimator for 470 and 560 nm light | Thorlabs | F240SMA-532 | |
Green emission filter | Semrock | FF01-520/35-25 | In light beam splitter |
High-Resolution USB 3.0 CMOS Camera | Thorlabs | DCC3260M | |
Light beam splitter | Neurophotometrics | SPLIT | |
Longpass Dichroic Mirror, 425 nm Cutoff | Thorlabs | DMLP425R | |
Longpass Dichroic Mirror, 495 nm Cutoff | Semrock | FF495-Di03 | |
Metabond dental cement | C&B | ||
M8 – M8 cable | Doric Lenses | Cable_M8-M8 | |
Optic fiber cannulas | Doric Lenses | Need to specify that these will be used to photometry experiments requiring low autofluorescence | |
Optic fiber Patchcords | Doric Lenses | Need to specify that these will be used to photometry experiments requiring low autofluorescence | |
Red emission filter | Semrock | FF01-600/37-25 | In light beam splitter |
T7 LabJack | LabJack | ||
T-cube LED Driver | Thorlabs | LEDD1B | |
USB 3.0 I/O Cable, Hirose 25, for DCC3240 | Thorlabs | CAB-DCU-T3 |