Human spinal cord retains substantial structural mass in chronic stages after injury

被引:37
作者
Tuszynski, MH [1 ]
Gabriel, K
Gerhardt, K
Szollar, S
机构
[1] Univ Calif San Diego, Dept Neurosci 0608, La Jolla, CA 92093 USA
[2] Vet Affairs Med Ctr, San Diego, CA 92161 USA
关键词
atrophy; chronic; MRI; regeneration; spinal cord injury; stereology;
D O I
10.1089/neu.1999.16.523
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
In chronic stages of human spinal cord injury, atrophy. of the cord has been reported in regions both at and distant to the injury site. Local cord atrophy results from the direct effects of bony impact and ischemia, whereas distant atrophy results from anterograde (Wallerian) and retrograde axonal degeneration. However, the actual extent of degenerative changes in the chronically injured human spinal cord both at and remote from the injury site has rarely been reported, and has not been rigorously quantified to date. In the present study, we quantified the extent of spinal cord atrophy in 12 humans with chronic injury (2-34 years posttrauma) utilizing quantitative stereological assessment of spinal cord magnetic resonance images, and compared the results to uninjured human spinal cords, Focal cystic atrophy of the cord, characterized by signal attenuation on T1-weighted images, was regularly present at the actual site of impact injury and replaced a mean longitudinal area equaling less than one spinal cord segment in length (2.01 +/- 0.60 cm(2), or a loss of 89.3 +/- 17.4% of the longitudinal area of one spinal cord segment). Spinal cord segments immediately rostral to the zone of cystic degeneration showed atrophy of only 19.4 +/- 7.5% of normal cord longitudinal area, and spinal cord segments immediately caudal to the zone of cystic degeneration showed atrophy of 16.5 +/- 4.1% of normal cord longitudinal area. Extensive spinal cord atrophy extending beyond the region of injury occurred in two of twelve cases (16.7 %), and both were caused by late syrinx formation. Thus, spinal cord atrophy after trauma remains primarily restricted to the original site of injury. Experimental neural repair strategies should take into account the importance of "bridging" relatively short zones of cystic atrophy, then promoting axonal regeneration through potentially long segments of remaining cord parenchyma.
引用
收藏
页码:523 / 531
页数:9
相关论文
共 64 条
[41]   MR-IMAGING OF CHRONIC SPINAL-CORD INJURY - ASSOCIATION WITH NEUROLOGIC FUNCTION [J].
NIDECKER, A ;
KOCHER, M ;
MAEDER, M ;
GRATZL, O ;
ZACH, GA ;
BENZ, UF ;
BURCKHARDT, B .
NEUROSURGICAL REVIEW, 1991, 14 (03) :169-179
[42]   INDUCTION OF AXON GROWTH INTO SCHWANN-CELL IMPLANTS GRAFTED INTO LESIONED ADULT-RAT SPINAL-CORD [J].
PAINO, CL ;
BUNGE, MB .
EXPERIMENTAL NEUROLOGY, 1991, 114 (02) :254-257
[43]   DETERMINATION OF NEURONAL NUMBER AND PROCESS SURFACE-AREA IN ORGANOTYPIC CULTURES - A STEREOLOGICAL APPROACH [J].
PETERSON, DA ;
JONES, DG .
JOURNAL OF NEUROSCIENCE METHODS, 1993, 46 (02) :107-120
[44]  
Ramon y Cajal S., 1928, DEGENERATION REGENER, DOI [10.1093/acprof:oso/9780195065169.001.0001, DOI 10.1093/ACPROF:OSO/9780195065169.001.0001]
[45]   FETAL CELL GRAFTS INTO RESECTION AND CONTUSION COMPRESSION INJURIES OF THE RAT AND CAT SPINAL-CORD [J].
REIER, PJ ;
STOKES, BT ;
THOMPSON, FJ ;
ANDERSON, DK .
EXPERIMENTAL NEUROLOGY, 1992, 115 (01) :177-188
[46]  
REIER PJ, 1992, J NEUROTRAUM, V9, pS223
[47]  
REIER PJ, 1988, PROG BRAIN RES, V78, P173
[48]  
RICHMOND G, 1980, PROG SURF SCI, V28, P1
[49]   AXONAL REGENERATION IN THE RAT SPINAL-CORD PRODUCED BY AN ANTIBODY AGAINST MYELIN-ASSOCIATED NEURITE GROWTH-INHIBITORS [J].
SCHNELL, L ;
SCHWAB, ME .
NATURE, 1990, 343 (6255) :269-272
[50]   NEUROTROPHIN-3 ENHANCES SPROUTING OF CORTICOSPINAL TRACT DURING DEVELOPMENT AND AFTER ADULT SPINAL-CORD LESION [J].
SCHNELL, L ;
SCHNEIDER, R ;
KOLBECK, R ;
BARDE, YA ;
SCHWAB, ME .
NATURE, 1994, 367 (6459) :170-173