Paper
17 June 2002 Compact two-photon laser-scanning microscope made from minimally modified commercial components
Vijay Iyer, Tycho Hoogland, Bradley Edward Losavio, A. Rory McQuiston, Peter Saggau
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Abstract
A compact two-photon laser-scanning microscope (TPLSM) was constructed using a diode-pumped, mode-locked Nd:YLF laser (Biolight 1000, Coherent Laser Group) and a small confocal laser scan-head (PCM2000, Nikon Bioscience). The laser emits at 1047nm and is fiber-coupled to a compact compressor unit producing a pulse-width of ~175fsec. Both the pulse compressor and confocal scan head were interfaced on a small optical breadboard that was directly attached to an upright research microscope (Eclipse E600FN, Nikon Bioscience). Two-photon fluorescence emitted from the specimen was collected into a multimode fiber and transmitted directly to an external PMT supplied with the Nikon confocal system. The modifications to the scanhead were minimal (a single mirror replacement) and did not interfere with its confocal function. The resulting system offers several advantages: compact size, turnkey operation, and the ability to translate the microscope rather than an often delicate specimen. In addition, it is possible to switch between confocal and two-photon operation, allowing for straightforward comparison. Using this compact TPLSM, we obtained structural and functional images from hippocampal neurons in living brain slices using commonly available fluorophores.
© (2002) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Vijay Iyer, Tycho Hoogland, Bradley Edward Losavio, A. Rory McQuiston, and Peter Saggau "Compact two-photon laser-scanning microscope made from minimally modified commercial components", Proc. SPIE 4620, Multiphoton Microscopy in the Biomedical Sciences II, (17 June 2002); https://doi.org/10.1117/12.470698
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CITATIONS
Cited by 4 scholarly publications.
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KEYWORDS
Confocal microscopy

Microscopes

Mirrors

Calcium

Luminescence

Neurons

Semiconductor lasers

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