Dii Tracing

Dii tracing, commonly written DiI tracing, is a fluorescence-based method for mapping cell morphology and connections by following a lipophilic dye through biological membranes. DiI integrates into lipid bilayers and diffuses laterally without readily crossing into adjacent cells, labeling neuronal processes such as axons and dendrites in fixed or living tissue. In neuroscience, researchers use this technique to visualize pathway organization, trace projections, and examine neuronal development or regeneration. Combined with microscopy and anatomical analysis, Dii tracing provides spatial evidence of connectivity and complements electrophysiological and molecular methods.

Dii Tracing - Related Videos

Research

JoVE Journal - Behavior

Trace Fear Conditioning in Mice

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Cited by 32 •

2014

In the following experiment we describe a protocol for trace fear conditioning in mice. This type of associative memory includes a trace period that separates the neutral stimulus and the unconditioned stimulus.

Visualization of Caenorhabditis elegans Cuticular Structures Using the Lipophilic Vital Dye DiI

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Cited by 30 •

2012

We present a method to visualize cuticle in live C. elegans using the red fluorescent lipophilic dye DiI (1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate), which is commonly used in C. elegans to visualize environmentally exposed neurons. With this optimized protocol, alae and annular cuticular structures are stained by DiI and observed using compound microscopy.

DiI-Labeling of DRG Neurons to Study Axonal Branching in a Whole Mount Preparation of Mouse Embryonic Spinal Cord

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Cited by 20 •

2011

The stereotyped projections of sensory afferents into the rodent spinal cord offer an easily accessible experimental system to study axonal branching through the tracing of single axons.

DiI Perfusion as a Method for Vascular Visualization in Ambystoma mexicanum

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Cited by 3 •

2017

Using a lipophilic 1,1'-Dioctadecy-3,3,3',3'-tetramethylindocarbocyanine perchlorate (DiI) staining technique, Ambystoma mexicanum can undergo vascular perfusion to allow for easy visualization of the vasculature.

Conditional Genetic Transsynaptic Tracing in the Embryonic Mouse Brain

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Cited by 5 •

2014

Capitalizing on a binary genetic strategy we provide a detailed protocol for neural circuit tracing in mice that express complementary transsynaptic tracers after Cre-mediated recombination. Because cell-specific tracer production is genetically encoded, our experimental approach is suitable to study the formation and maturation of neural circuitry during murine embryonic brain development at a single cell resolution.

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