Modeling neuromuscular modulation in Aplysia.: III.: Interaction of central motor commands and peripheral modulatory state for optimal behavior

被引:27
作者
Brezina, V
Horn, CC
Weiss, KR
机构
[1] Mt Sinai Sch Med, Dept Physiol & Biophys, New York, NY 10029 USA
[2] Mt Sinai Sch Med, Fishberg Res Ctr Neurobiol, New York, NY USA
[3] Monell Chem Senses Ctr, Philadelphia, PA 19104 USA
关键词
D O I
10.1152/jn.00475.2004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Recent work in computational neuroethology has emphasized that "the brain has a body": successful adaptive behavior is not simply commanded by the nervous system, but emerges from interactions of nervous system, body, and environment. Here we continue our study of these issues in the accessory radula closer (ARC) neuromuscular system of Aplysia. The ARC muscle participates in the animal's feeding behaviors, a set of cyclical, rhythmic behaviors driven by a central patient generator (CPG). Patterned firing of the ARC muscle's two motor neurons, B 15 and B 16, releases not only ACh to elicit the muscle's contractions but also peptide neuromodulators that then shape the contractions through a complex network of I actions on the muscle. These actions are dynamically complex: some are fast, but some are slow, so that they are temporally uncoupled from the motor neuron firing pattern in the current cycle. Under these circumstances, how can the nervous system, through just the narrow channel of the firm,, patterns of the motor neurons, control the contractions, movements, and behavior in the periphery? In two earlier papers, we developed a realistic mathematical model of the B15/B16-ARC neuromuscular system and its modulation. Here we use this model to study the functional performance of the system in a realistic behavioral task. We run the model with two kinds of inputs: a simple set of regular motor neuron firing patterns that allows us to examine the entire space of patterns. and the real firing patterns of B15 and B16 previously recorded in a 21/2-h-long meal of 749 cycles in an intact feeding animal. These real patterns are extremely irregular. Our main conclusions are the following. 1) The modulation in the periphery is necessary for superior functional performance. 2) The components of the modulatory network interact in nonlinear, context- and task-dependent combinations for best performance overall, although not necessarily in any particular cycle. 3) Both the fast and the slow dynamics of the modulatory state make important contributions. 4) The nervous system controls different components of the periphery to different degrees. To some extent the periphery operates semiautonomously. However. the structure of the peripheral modulatory network ensures robust performance under all circumstances, even with the irregular motor neuron firing patterns and even when the parameters of he functional task are randomly varied from cycle to cycle to simulate a variable feeding environment. In the variable environment, regular firing patterns. which are fine-tuned to one particular task, fail to provide robust performance. We propose that the CPG generates the irregular firing patterns, which nevertheless are guaranteed to give robust performance overall through the actions of the peripheral modulatory network, as part of a trial-and-error feeding strategy in a variable, uncertain environment.
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页码:1523 / 1556
页数:34
相关论文
共 90 条
[61]  
Mobus GE, 1999, OSCILLATIONS NEURAL
[62]   INVIVO BUCCAL NERVE ACTIVITY THAT DISTINGUISHES INGESTION FROM REJECTION CAN BE USED TO PREDICT BEHAVIORAL TRANSITIONS IN APLYSIA [J].
MORTON, DW ;
CHIEL, HJ .
JOURNAL OF COMPARATIVE PHYSIOLOGY A-SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, 1993, 172 (01) :17-32
[63]   Attractors: Architects sf network organization? [J].
Mpitsos, GJ .
BRAIN BEHAVIOR AND EVOLUTION, 2000, 55 (05) :256-277
[64]   Neuropeptides, amines and amino acids in an elementary insect ganglion: Functional and chemical anatomy of the unfused abdominal ganglion [J].
Nassel, DR .
PROGRESS IN NEUROBIOLOGY, 1996, 48 (4-5) :325-+
[65]   Multiple presynaptic and postsynaptic sites of inhibitory modulation by myomodulin at ARC neuromuscular junctions of Aplysia [J].
Orekhova, IV ;
Alexeeva, V ;
Church, PJ ;
Weiss, KR ;
Brezina, V .
JOURNAL OF NEUROPHYSIOLOGY, 2003, 89 (03) :1488-1502
[66]   Sonometric measurements of motor-neuron-evoked movements of an internal feeding structure (the radula) in Aplysia [J].
Orekhova, IV ;
Jing, J ;
Brezina, V ;
DiCaprio, RA ;
Weiss, KR ;
Cropper, EC .
JOURNAL OF NEUROPHYSIOLOGY, 2001, 86 (02) :1057-1061
[67]  
Press W.H., 2002, NUMERICAL RECIPES C, V2nd ed
[68]   CAMP-DEPENDENT PHOSPHORYLATION OF APLYSIA TWITCHIN MAY MEDIATE MODULATION OF MUSCLE CONTRACTIONS BY NEUROPEPTIDE COTRANSMITTERS [J].
PROBST, WC ;
CROPPER, EC ;
HEIERHORST, J ;
HOOPER, SL ;
JAFFE, H ;
VILIM, F ;
BEUSHAUSEN, S ;
KUPFERMANN, I ;
WEISS, KR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (18) :8487-8491
[69]   Dynamical basis of intentions and expectations in a simple neuronal network [J].
Proekt, A ;
Brezina, V ;
Weiss, KR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (25) :9447-9452
[70]   The role of chaos in neural systems [J].
Rabinovich, MI ;
Abarbanel, HDI .
NEUROSCIENCE, 1998, 87 (01) :5-14