Increased vascular resistance in paralyzed legs after spinal cord injury is reversible by training
- 1 December 2002
- journal article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 93 (6) , 1966-1972
- https://doi.org/10.1152/japplphysiol.00897.2001
Abstract
The purpose of the present study was to determine the effect of a spinal cord injury (SCI) on resting vascular resistance in paralyzed legs in humans. To accomplish this goal, we measured blood pressure and resting flow above and below the lesion (by using venous occlusion plethysmography) in 11 patients with SCI and in 10 healthy controls (C). Relative vascular resistance was calculated as mean arterial pressure in millimeters of mercury divided by the arterial blood flow in milliliters per minute per 100 milliliters of tissue. Arterial blood flow in the sympathetically deprived and paralyzed legs of SCI was significantly lower than leg blood flow in C. Because mean arterial pressure showed no differences between both groups, leg vascular resistance in SCI was significantly higher than in C. Within the SCI group, arterial blood flow was significantly higher and vascular resistance significantly lower in the arms than in the legs. To distinguish between the effect of loss of central neural control vs. deconditioning, a group of nine SCI patients was trained for 6 wk and showed a 30% increase in leg blood flow with unchanged blood pressure levels, indicating a marked reduction in vascular resistance. In conclusion, vascular resistance is increased in the paralyzed legs of individuals with SCI and is reversible by training.Keywords
This publication has 31 references indexed in Scilit:
- Abnormal regional blood flow responses during and after exercise in human sympathetic denervationThe Journal of Physiology, 1997
- Control of Skeletal Muscle Blood Flow During Dynamic ExerciseSports Medicine, 1996
- Properties of the venous vascular system in the lower extremities of individuals with paraplegiaSpinal Cord, 1994
- Limb blood flow, cardiac output and quadriceps muscle bulk following spinal cord injury and the effect of training for the Odstock functional electrical stimulation standing systemSpinal Cord, 1993
- Non-invasive evaluation of the conduit function and the buffering function of large arteries in manClinical Physiology and Functional Imaging, 1991
- Cardiovascular Control in Spinal ManAnnual Review of Physiology, 1988
- SYMPATHETIC ACTIVITY IN MAN AFTER SPINAL CORD INJURYBrain, 1986
- Reductions in Arterial Diameter Produced by Chronic Decreases in Blood Flow Are Endothelium-DependentScience, 1986
- CIRCULATORY CHANGES IN THE FOOT AFTER LUMBAR SYMPATHECTOMYThe Lancet, 1950
- EFFECTS OF BLADDER DISTENSION ON AUTONOMIC MECHANISMS AFTER SPINAL CORD INJURIESBrain, 1947