Brainstem control of head movements during orienting; organization of the premotor circuits

被引:107
作者
Isa, T [1 ]
Sasaki, S
机构
[1] Natl Inst Physiol Sci, Dept Integrat Physiol, Okazaki, Aichi 4448585, Japan
[2] Tokyo Metropolitan Inst Neurosci, Dept Neurophysiol, Fuchu, Tokyo 1838526, Japan
关键词
D O I
10.1016/S0301-0082(02)00006-0
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
When an object appears in the visual field, animals orient their head, eyes, and body toward it in a well-coordinated manner (orienting movement). The head movement is a major portion of the orienting movement. Interest in the neural control of head movements in the monkey and human have increased in the 1990's, however, fundamental knowledge about the neural circuits controlling the orienting head movement continues to be based on a large number of experimental studies performed in the cat. Thus, it is crucial now to summarize information that has been clarified in the cat for further advancement in understanding the neural control of head movements in different animal species. The superior colliculus (SC) has been identified as the primary brainstem center controlling the orienting. Its output signal is transmitted to neck motoneurons via two major separate pathways: one through the reticulospinal neurons (RSNs) in the pons and medulla and the other through neurons in Forel's field H (FFH) in the mesodiencephalic junction. The tecto-reticulo-spinal pathway controls orienting chiefly in the horizontal direction, while the tecto-FFH-spinal pathway controls orienting. in the vertical direction. In each pathway, a subgroup of neurons functions as premotor neurons for both extraocular and neck motoneurons, while others are specified for each, which allows both coordinated and separate control of eye and head movements. Head movements almost always produce shifts in the center of gravity that might cause postural disturbances. The postural equilibrium may be maintained by transmitting the orienting command to the limb segments via descending axons of the reticulospinal and long propriospinal neurons. The SC and brainstem relay neurons receive descending inputs from higher order structures such as the cerebral cortex, cerebellum, and basal ganglia. These inputs may serve context-dependent control of orienting by modulating the activities of the primary brainstem pathways. (C) 2002 Elsevier Science Ltd. All rights reserved.
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页码:205 / 241
页数:37
相关论文
共 192 条
[1]   EMG ACTIVITIES OF NECK MUSCLES UNDERLYING LATERAL FLEXION OF THE NECK DURING HEAD-TURNING INDUCED BY ELECTRICAL-STIMULATION OF THE CAUDATE-NUCLEUS IN CATS [J].
AKAIKE, N ;
OHNO, T ;
TSUBOKAWA, H .
NEUROSCIENCE RESEARCH, 1989, 6 (05) :397-410
[2]  
ALSTERMARK B, 1991, EXP BRAIN RES, V84, P569
[3]   PYRAMIDAL EFFECTS IN DORSAL NECK MOTONEURONES OF THE CAT [J].
ALSTERMARK, B ;
PINTER, MJ ;
SASAKI, S .
JOURNAL OF PHYSIOLOGY-LONDON, 1985, 363 (JUN) :287-302
[4]   DESCENDING PATHWAYS MEDIATING DISYNAPTIC EXCITATION OF DORSAL NECK MOTONEURONS IN THE CAT - FACILITATORY INTERACTIONS [J].
ALSTERMARK, B ;
PINTER, MJ ;
SASAKI, S .
NEUROSCIENCE RESEARCH, 1992, 15 (1-2) :32-41
[5]   TECTAL AND TEGMENTAL EXCITATION IN DORSAL NECK MOTONEURONS OF THE CAT [J].
ALSTERMARK, B ;
PINTER, MJ ;
SASAKI, S .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 454 :517-532
[6]   DESCENDING PATHWAYS MEDIATING DISYNAPTIC EXCITATION OF DORSAL NECK MOTONEURONS IN THE CAT - BRAIN-STEM RELAY [J].
ALSTERMARK, B ;
PINTER, MJ ;
SASAKI, S .
NEUROSCIENCE RESEARCH, 1992, 15 (1-2) :42-57
[7]   FIBER PROJECTIONS OF SUPERIOR COLLICULUS IN CAT [J].
ALTMAN, J ;
CARPENTER, MB .
JOURNAL OF COMPARATIVE NEUROLOGY, 1961, 116 (02) :157-&
[8]   INFLUENCE OF SUPERIOR COLLICULUS ON CAT NECK MOTONEURONS [J].
ANDERSON, ME ;
YOSHIDA, M ;
WILSON, VJ .
JOURNAL OF NEUROPHYSIOLOGY, 1971, 34 (05) :898-+
[9]  
[Anonymous], HYPOTHALAMUS THALAMU
[10]  
BAHILL A T, 1975, Mathematical Biosciences, V24, P191, DOI 10.1016/0025-5564(75)90075-9