Variability of motor neuron spike timing maintains and shapes contractions of the accessory radula closer muscle of Aplysia

被引:25
作者
Zhurov, Yuriy [1 ]
Brezina, Vladimir [1 ]
机构
[1] Mt Sinai Sch Med, Fishberg Dept Neurosci, New York, NY 10029 USA
关键词
spike timing; neural code; neuromodulators; neuromuscular system; motor control; feeding behavior; INTERRUPTUS STOMATOGASTRIC SYSTEM; NEUROMUSCULAR MODULATION; PEPTIDE COTRANSMITTERS; FEEDING-BEHAVIOR; FIRING PATTERNS; BUCCAL MASS; NEUROPEPTIDE; TRANSFORM; MYOMODULIN; RESPONSES;
D O I
10.1523/JNEUROSCI.5277-05.2006
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The accessory radula closer ( ARC) muscle of Aplysia has long been studied as a typical "slow" muscle, one that would be assumed to respond only to the overall, integrated spike rate of its motor neurons, B15 and B16. The precise timing of the individual spikes should not much matter. However, but real B15 and B16 spike patterns recorded in vivo show great variability that extends down to the timing of individual spikes. By replaying these real as well as artificially constructed spike patterns into ARC muscles in vitro, we examined the consequences of this spike-level variability for contraction. Replaying the same pattern several times reproduces precisely the same contraction shape: the B15/B16-ARC neuromuscular transform is deterministic. However, varying the timing of the spikes produces very different contraction shapes and amplitudes. The transform in fact operates at an interface between "fast" and "slow" regimens. It is fast enough that the timing of individual spikes greatly influences the detailed contraction shape. At the same time, slow integration of the spike pattern through the nonlinear transform allows the variable spike timing to determine also the overall contraction amplitude. Indeed, the variability appears to be necessary to maintain the contraction amplitude at a robust level. This phenomenon is tuned by neuromodulators that tune the speed and nonlinearity of the transform. Thus, the variable timing of individual spikes does matter, in at least two, functionally significant ways, in this "slow" neuromuscular system.
引用
收藏
页码:7056 / 7070
页数:15
相关论文
共 62 条
[1]  
Abbott LF, 1997, SCIENCE, V275, P220, DOI 10.1126/science.275.5297.221
[2]   Distributed motor pattern underlying whole-body shortening in the medicinal leech [J].
Arisi, I ;
Zoccolan, D ;
Torre, V .
JOURNAL OF NEUROPHYSIOLOGY, 2001, 86 (05) :2475-2488
[3]   Modeling neuromuscular modulation in Aplysia.: III.: Interaction of central motor commands and peripheral modulatory state for optimal behavior [J].
Brezina, V ;
Horn, CC ;
Weiss, KR .
JOURNAL OF NEUROPHYSIOLOGY, 2005, 93 (03) :1523-1556
[4]   Neuromuscular modulation in Aplysia.: II.: Modulation of the neuromuscular transform in behavior [J].
Brezina, V ;
Orekhova, IV ;
Weiss, KR .
JOURNAL OF NEUROPHYSIOLOGY, 2003, 90 (04) :2613-2628
[5]   Neuromuscular modulation in Aplysia.: I.: Dynamic model [J].
Brezina, V ;
Orekhova, IV ;
Weiss, KR .
JOURNAL OF NEUROPHYSIOLOGY, 2003, 90 (04) :2592-2612
[6]   Optimization of rhythmic behaviors by modulation of the neuromuscular transform [J].
Brezina, V ;
Orekhova, IV ;
Weiss, KR .
JOURNAL OF NEUROPHYSIOLOGY, 2000, 83 (01) :260-279
[7]   9 MEMBERS OF THE MYOMODULIN FAMILY OF PEPTIDE COTRANSMITTERS AT THE B16-ARC NEUROMUSCULAR-JUNCTION OF APLYSIA [J].
BREZINA, V ;
BANK, B ;
CROPPER, EC ;
ROSEN, S ;
VILIM, FS ;
KUPFERMANN, I ;
WEISS, KR .
JOURNAL OF NEUROPHYSIOLOGY, 1995, 74 (01) :54-72
[8]   The neuromuscular transform: The dynamic, nonlinear link between motor neuron firing patterns and muscle contraction in rhythmic behaviors [J].
Brezina, V ;
Orekhova, IV ;
Weiss, KR .
JOURNAL OF NEUROPHYSIOLOGY, 2000, 83 (01) :207-231
[9]   Control of time-dependent biological processes by temporally patterned input [J].
Brezina, V ;
Orekhova, IV ;
Weiss, KR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (19) :10444-10449
[10]   EFFECT OF ACTIVATION HISTORY ON TENSION PRODUCTION BY INDIVIDUAL MUSCLE UNITS [J].
BURKE, RE ;
RUDOMIN, P ;
ZAJAC, FE .
BRAIN RESEARCH, 1976, 109 (03) :515-529