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R E Lazarus

Publications and source records attributed to R E Lazarus.

3 recordsLinked to original sources

The peripheral generation of action potentials in excitatory motor neurons of a crab.

The effects of temperature on the firing patterns of the excitatory motor supply to the bender muscle were examined in autotomized walking limbs of the crab Pachygrapsus crassipes. A brief electrical shock applied to the limb nerve evoked an action potential in one or both of the excitor axons and an excitatory junctional potential (ejp) in the bender muscle fibers. However, at high temperatures a single shock to one of the excitor axons (E2) resulted in a short train of nerve spikes and a concomitant burst of ejps. Extracellular recordings made from two sites along the E2 axon demonstrated that the additional action potentials are generated peripherally. Furthermore, myogram recordings from bender muscles in untethered animals indicate that peripheral generation of spikes does take place in intact crabs exposed to high temperatures. The peripheral generation of action potentials exhibited a critical temperature threshold which could be altered by acclimation and by low levels of ethanol in the saline bathing the autotomized limb preparation. This phenomenon may, therefore, be closely associated with membrane fluidity.

Action Potentials

Ethanol and temperature modify motor axon firing patterns.

At high temperature a single orthodromic action potential in the excitor (E) axon to the stretcher muscle of the crab Pachygrapsus crassipes provokes the generation of additional spikes in the peripheral E axon branches. This phenomenon exhibits a critical temperature threshold. Bathing preparations in crab salines made up with ethanol at levels as low as 0.5% (109 mM) reversibly decreased the temperature threshold for peripheral spike generation. Higher levels of ethanol resulted in the peripheral generation of E axon spikes at lower temperatures. These results, together with the observation that the temperature threshold is dependent upon the acclimation temperature, indicate that the peripheral generation of action potentials in the E axon is associated with an increase membrane lipid fluidity.

Animals