IDENTIFICATION OF THE AXON PATHWAYS WHICH MEDIATE FUNCTIONAL RECOVERY OF A PARALYZED HEMIDIAPHRAGM FOLLOWING SPINAL-CORD HEMISECTION IN THE ADULT-RAT

被引:119
作者
MORENO, DE
YU, XJ
GOSHGARIAN, HG
机构
[1] Department of Anatomy and Cell Biology, Wayne State University, School of Medicine, Detroit
关键词
D O I
10.1016/0014-4886(92)90001-7
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Despite extensive neurophysiological work carried out to characterize the crossed phrenic phenomenon, relatively little is known about the morphological substrate of this reflex which restores function to a hemidiaphragm paralyzed by spinal cord injury. In the present study WGA-HRP was injected into normal and functionally recovered hemidiaphragm muscle in rats during the crossed phrenic phenomenon. The retrograde transynaptic transport characteristics of WGA-HRP was utilized to delineate the source of the neurons which mediate the crossed phrenic phenomenon. The results indicated that the neurons which drive phrenic motoneurons in spinal hemisected rats during the crossed phrenic phenomenon are located bilaterally in the rostral ventral respiratory group (rVRG) of the medulla. No transneuronal labeling of propriospinal neurons was noted in either normal or spinal-hemisected rats. Thus, propriospinal neurons do not relay respiratory drive to phrenic motoneurons. The neurons of the rVRG project monosynaptically to phrenic motoneurons. The present results suggest that both crossed and uncrossed bulbospinal pathways from the rVRG collateralize to both the left and right phrenic nucleic and functional recovery of a hemidiaphragm paralyzed by ipsilateral spinal cord hemisection is mediated by supraspinal neurons from both sides of the brain stem. These results are important to our complete understanding of the mechanisms which govern motor recovery in mammals following spinal cord injury. © 1992.
引用
收藏
页码:219 / 228
页数:10
相关论文
共 40 条
[1]   GENERATION OF SPONTANEOUS RESPIRATORY RHYTHM IN HIGH SPINAL CATS [J].
AOKI, M ;
MORI, S ;
KAWAHARA, K ;
WATANABE, H ;
EBATA, N .
BRAIN RESEARCH, 1980, 202 (01) :51-63
[2]   EFFECTS OF USAGE OF A DORMANT RESPIRATORY NERVE PATHWAY UPON ITS SUBSEQUENT ACTIVITY [J].
ASERINSKY, E .
EXPERIMENTAL NEUROLOGY, 1961, 3 (05) :467-&
[3]   MORPHOLOGY OF CAT PHRENIC MOTONEURONS AS REVEALED BY INTRACELLULAR INJECTION OF HORSERADISH-PEROXIDASE [J].
CAMERON, WE ;
AVERILL, DB ;
BERGER, AJ .
JOURNAL OF COMPARATIVE NEUROLOGY, 1983, 219 (01) :70-80
[4]  
CHATFIELD PO, 1948, AM J PHYSIOL, V54, P417
[5]  
Deason J, 1911, AM J PHYSIOL, V28, P57
[6]   SPINAL-CORD LOCALIZATION AND CHARACTERIZATION OF THE NEURONS WHICH GIVE RISE TO THE ACCESSORY PHRENIC-NERVE IN THE ADULT-RAT [J].
DEVRIES, KL ;
GOSHGARIAN, HG .
EXPERIMENTAL NEUROLOGY, 1989, 104 (01) :88-90
[7]   RECOVERY OF LOCOMOTOR FUNCTION AFTER HEMISECTION OF THE SPINAL-CORD IN CATS [J].
EIDELBERG, E ;
NGUYEN, LH ;
DEZA, LD .
BRAIN RESEARCH BULLETIN, 1986, 16 (04) :507-515
[8]   BRAIN-STEM CONNECTIONS OF THE ROSTRAL VENTRAL RESPIRATORY GROUP OF THE RAT [J].
ELLENBERGER, HH ;
FELDMAN, JL .
BRAIN RESEARCH, 1990, 513 (01) :35-42
[9]   VENTRAL RESPIRATORY GROUP PROJECTIONS TO PHRENIC MOTONEURONS - ELECTRON-MICROSCOPIC EVIDENCE FOR MONOSYNAPTIC CONNECTIONS [J].
ELLENBERGER, HH ;
FELDMAN, JL ;
GOSHGARIAN, HG .
JOURNAL OF COMPARATIVE NEUROLOGY, 1990, 302 (04) :707-714
[10]   BRAIN-STEM PROJECTIONS TO THE PHRENIC NUCLEUS - AN ANTEROGRADE AND RETROGRADE HRP STUDY IN THE RABBIT [J].
ELLENBERGER, HH ;
VERA, PL ;
HASELTON, JR ;
HASELTON, CL ;
SCHNEIDERMAN, N .
BRAIN RESEARCH BULLETIN, 1990, 24 (02) :163-174