Key result
Assessment of autonomic function using tools like heart rate variability provides prognostic information in critically ill patients and may offer insights into the pathogenesis of MODS and sepsis.
Assessment of autonomic dysfunction using tools like heart rate variability may offer prognostic value and insights into the pathogenesis of multiple organ dysfunction syndrome in critically ill patients.
Should not alter critical care practice yet; leaves open whether autonomic monitoring improves outcomes or clarifies MODS mechanisms.
The sympathetic-parasympathetic balance may be altered in critically ill patients. Assessment of autonomic function provides information concerning prognosis, pathogenesis, and treatment strategies in ICU-relevant disorders. Proven tools are heart rate variability, baroreflex sensitivity, and, with limitations, cardiac chemoreflex sensitivity. New nonlinear methods are being evaluated that may predict risk more precisely in critically ill patients. This article summarizes application of these tools in the ICU. In addition, a model is introduced for investigating the impaired autonomic function in multiple organ dysfunction syndrome and sepsis, integrating extrinsic mechanisms and factors that are intrinsic to the cardiac tissue. By this combined approach, the authors hope to gain insight into the pathogenesis of multiple organ dysfunction syndrome. New pathophysiologic concepts are needed for the development of treatment strategies for this life-threatening disease.
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Schmidt et al. (2001) conducted a review in Critically ill patients (ICU patients, multiple organ dysfunction syndrome, sepsis). Assessment of autonomic function was evaluated. Assessment of autonomic function using tools like heart rate variability provides prognostic information in critically ill patients and may offer insights into the pathogenesis of MODS and sepsis.
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