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March 1, 1996170 citations

Involvement of the Central Nervous System in the General Response to Pulmonary Blast Injury

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IČIbolja ČernakJSJ SavićŽMŽivorad Maličević

Key Result

Bilateral vagotomy modified the general and local responses to pulmonary blast injury in rabbits, suggesting functional changes in the medulla oblongata are driven by afferent neural impulses.

Structured PICO

P
Population
Rabbits subjected to moderate pulmonary blast injury, with or without bilateral vagotomy, followed for 30 minutes post-injury.
I
Intervention
Pulmonary deafferentation via bilateral transections of the vagus, glossopharyngeal, and hypoglossal nerves
C
Comparator
Rabbits exposed to pulmonary blast injury without deafferentation
O
Outcome
Hemodynamic and biochemical parameters in systemic circulation, lung, and brain (medulla oblongata) tissuessurrogate

Vagal afferent neural impulses from injured lungs, rather than ischemia or energy transfer, may drive the functional changes in the medulla oblongata following pulmonary blast injury.

Abstract

The local, general, and cerebral responses of rabbits exposed to pulmonary blasts were examined to define the role of vagal afferentation in cardiorespiratory as well as metabolic control after a blast injury. Two series of experiments were conducted on rabbits to analyze the general, local, and cerebral responses to pulmonary injury caused by blast overpressure, and to evaluate the effects of bilateral vagotomy on the general, local, and cerebral responses to local (pulmonary) blast injury. The blast wave was generated in laboratory conditions using an air-driven shock tube that was able to cause moderate pulmonary blast injury, i.e., four pulmonary contusions characterized as confluent ecchymoses involving 30 to 60% of the lungs. One group of animals was subjected to pulmonary deafferentation, performed by bilateral transections of the vagus, glossopharyngeal, and hypoglossal nerves. Numerous hemodynamic as well as biochemical parameters were observed in systemic circulation and in lung and brain (medulla oblongata) tissues. After observation during the early posttraumatic period, rabbits were sacrificed by decapitation 30 minutes after the blast injury. On the basis of obtained results, it was concluded that vagal afferents have an important role in the modification of general and local responses to a pulmonary blast injury. Furthermore, it was suggested that functional changes in medulla oblongata may be the consequences of afferent neural impulses from the injured region (lungs) rather than consequences of ischemia, energy transfer to the brain, or both.

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Cite This Study

Černak et al. (1996) studied Pulmonary blast injury. Bilateral vagotomy (pulmonary deafferentation) vs. Intact vagus nerves (implied) was evaluated on Hemodynamic and biochemical parameters in systemic circulation, lung, and brain tissues. Bilateral vagotomy modified the general and local responses to pulmonary blast injury in rabbits, suggesting functional changes in the medulla oblongata are driven by afferent neural impulses.

synapsesocial.com/papers/6a2014dd7a14b33c8ba1a1efhttps://doi.org/10.1097/00005373-199603001-00023
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