Inhibitory connections between motor neurons modify a centrally generated motor pattern in the leech nervous system. 1986

B Granzow, and W B Kristan

Both excitatory and inhibitory motor neurons innervate longitudinal body wall muscles in the leech Hirudo medicinalis. Each inhibitory motor neuron also centrally inhibits the excitatory motor neurons that innervate its same muscle field. This central inhibition is strong, probably monosynaptic, and largely a function of graded membrane potential changes in the inhibitory motor neurons. During leech swimming, both the excitatory and inhibitory motor neurons are rhythmically active. Here, we present evidence that the inhibitory motor neurons phasically inhibit the excitatory motor neurons during swimming, thereby augmenting the amplitude of membrane potential oscillations and the burst intensity of the excitors.

UI MeSH Term Description Entries
D007865 Leeches Annelids of the class Hirudinea. Some species, the bloodsuckers, may become temporarily parasitic upon animals, including man. Medicinal leeches (HIRUDO MEDICINALIS) have been used therapeutically for drawing blood since ancient times. Hirudinea,Hirudineas,Leeche
D008564 Membrane Potentials The voltage differences across a membrane. For cellular membranes they are computed by subtracting the voltage measured outside the membrane from the voltage measured inside the membrane. They result from differences of inside versus outside concentration of potassium, sodium, chloride, and other ions across cells' or ORGANELLES membranes. For excitable cells, the resting membrane potentials range between -30 and -100 millivolts. Physical, chemical, or electrical stimuli can make a membrane potential more negative (hyperpolarization), or less negative (depolarization). Resting Potentials,Transmembrane Potentials,Delta Psi,Resting Membrane Potential,Transmembrane Electrical Potential Difference,Transmembrane Potential Difference,Difference, Transmembrane Potential,Differences, Transmembrane Potential,Membrane Potential,Membrane Potential, Resting,Membrane Potentials, Resting,Potential Difference, Transmembrane,Potential Differences, Transmembrane,Potential, Membrane,Potential, Resting,Potential, Transmembrane,Potentials, Membrane,Potentials, Resting,Potentials, Transmembrane,Resting Membrane Potentials,Resting Potential,Transmembrane Potential,Transmembrane Potential Differences
D009043 Motor Activity Body movements of a human or an animal as a behavioral phenomenon. Activities, Motor,Activity, Motor,Motor Activities
D009046 Motor Neurons Neurons which activate MUSCLE CELLS. Neurons, Motor,Alpha Motorneurons,Motoneurons,Motor Neurons, Alpha,Neurons, Alpha Motor,Alpha Motor Neuron,Alpha Motor Neurons,Alpha Motorneuron,Motoneuron,Motor Neuron,Motor Neuron, Alpha,Motorneuron, Alpha,Motorneurons, Alpha,Neuron, Alpha Motor,Neuron, Motor
D009424 Nervous System Physiological Phenomena Characteristic properties and processes of the NERVOUS SYSTEM as a whole or with reference to the peripheral or the CENTRAL NERVOUS SYSTEM. Nervous System Physiologic Processes,Nervous System Physiological Processes,Nervous System Physiology,Nervous System Physiological Concepts,Nervous System Physiological Phenomenon,Nervous System Physiological Process,Physiology, Nervous System,System Physiology, Nervous
D009433 Neural Inhibition The function of opposing or restraining the excitation of neurons or their target excitable cells. Inhibition, Neural
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013550 Swimming An activity in which the body is propelled through water by specific movement of the arms and/or the legs. Swimming as propulsion through water by the movement of limbs, tail, or fins of animals is often studied as a form of PHYSICAL EXERTION or endurance.

Related Publications

B Granzow, and W B Kristan
July 2014, Journal of neurophysiology,
B Granzow, and W B Kristan
September 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience,
B Granzow, and W B Kristan
April 1957, Biulleten' eksperimental'noi biologii i meditsiny,
B Granzow, and W B Kristan
January 2002, Zhurnal evoliutsionnoi biokhimii i fiziologii,
B Granzow, and W B Kristan
March 1972, Proceedings of the National Academy of Sciences of the United States of America,
B Granzow, and W B Kristan
August 1969, Science (New York, N.Y.),
Copied contents to your clipboard!