Related Experiment Video
Updated: Feb 14, 2026

Localized RNAi and Ectopic Gene Expression in the Medicinal Leech
Published on: April 17, 2008
Effects of Touch Location and Intensity on Interneurons of the Leech Local Bend Network
Friederice Pirschel1,2, Gerrit Hilgen3,4, Jutta Kretzberg3,5
1Computational Neuroscience, Department for Neuroscience, University of Oldenburg, Oldenburg, Germany. fpirschel@uchicago.edu.
Abstract:
Touch triggers highly precise behavioural responses in the leech. The underlying network of this so-called local bend reflex consists of three layers of individually characterised neurons. While the population of mechanosensory cells provide multiplexed information about the stimulus, not much is known about how interneurons process this information. Here, we analyse the responses of two local bend interneurons (cell 157 and 159) to a mechanical stimulation of the skin and show their response characteristics to naturalistic stimuli. Intracellular dye-fills combined with structural imaging revealed that these interneurons are synaptically coupled to all three types of mechanosensory cells (T, P, and N cells). Since tactile stimulation of the skin evokes spikes in one to two cells of each of the latter types, interneurons combine inputs from up to six mechanosensory cells. We find that properties of touch location and intensity can be estimated reliably and accurately based on the graded interneuron responses. Connections to several mechanosensory cell types and specific response characteristics of the interneuron types indicate specialised filter and integration properties within this small neuronal network, thus providing evidence for more complex signal processing than previously thought.
Related Concept Videos
Local Anesthetics: Adverse Effects
Once absorbed into the systemic circulation, local anesthetics can affect the organs that depend on the functioning of sodium...
Responses to Gravity and Touch
Bending
In pure bending, the bending stress in a beam is calculated based on the bending moment and...
Symmetric Member in Bending
Unsymmetric Bending
Protein Networks
These interactions can be represented through maps depicting protein-protein interaction networks, represented as nodes and edges. Nodes are circles that are representative of a protein,...

