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Updated: Nov 22, 2025

A Microbiomechanical System for Studying Varicosity Formation and Recovery in Central Neuron Axons
Published on: April 30, 2018
Correlative Imaging of Motoneuronal Cell Elasticity by Pump and Probe Spectroscopy
Ahmed Hamraoui1, Océane Sénépart2, Maxime Schneider2
1Sorbonne Université, CNRS, Collège de France, UMR7574, Laboratoire de Chimie de la Matière Condensée de Paris, Paris, France; Université de Paris, Paris Descartes, Faculté des Sciences Fondamentales et Biomédicales, Paris, France.
Abstract:
Because of their role of information transmitter between the spinal cord and the muscle fibers, motor neurons are subject to physical stimulation and mechanical property modifications. We report on motoneuron elasticity investigated by time-resolved pump and probe spectroscopy. A dual picosecond geometry simultaneously probing the acoustic impedance mismatch at the cell-titanium transducer interface and acoustic wave propagation inside the motoneuron is presented. Such noncontact and nondestructive microscopy, correlated to standard atomic force microscopy or a fluorescent labels approach, has been carried out on a single cell to address some physical properties such as bulk modulus of elasticity, dynamical longitudinal viscosity, and adhesion.
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