Assessing the capacity of the sympathetic nervous system to respond to a cardiovascular challenge in human spinal cord injury.
case_control · Level III
Where this comes from
- Record sourced from PubMed, PMID 18392038.
- Also identified by DOI 10.1038/sc.2008.35.
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Abstract
Measurement of haemodynamic responses and cutaneous blood flow during an inspiratory-capacity apnoea following spinal cord injury (SCI). To assess the capacity of the sympathetic nervous system to respond to a cardiovascular challenge following SCI. Prince of Wales Medical Research Institute, Australia. Thirteen spinal cord injured subjects with injuries ranging from C5-T8 and eight able-bodied control subjects. Continuous blood pressure, an electrocardiogram, respiration and cutaneous blood flow were recorded during a static maximum inspiratory breath-hold for 40 s. On average, systolic blood pressure decreased 26% from baseline in the spinal group during the breath-hold and remained below baseline throughout the entire apnoeic period. Heart rate in this group had an initial decrease from baseline but quickly increased throughout the breath-hold, being 17% above baseline in the recovery period. Systolic pressure in the control group decreased 12% from baseline at the beginning of the breath-hold but quickly stabilized for the remainder of the apnoea, with heart rate initially decreasing 22% and remaining below baseline throughout the breath-hold. A maximal inspiratory breath-hold, which is known to cause a sustained increase in muscle sympathetic nerve activity, is a simple test to perform in supine spinal cord-injured subjects, and provides information on the capacity of muscle and splanchnic vasoconstrictor activity to increase blood pressure in SCI. A sustained decrease in blood pressure, coupled with an increase in heart rate, infers interruption of sympathetic vasoconstrictor pathways to muscle and splanchnic vascular beds.
Medical subject headings
- Blood Pressure
- Heart Rate
- Maximal Voluntary Ventilation
- Skin
- Spinal Cord Injuries
- Sympathetic Nervous System