1988AnesthesiologyRequires access

Acute Cerebral Effects of Isotonic Crystalloid and Colloid Solutions Following Cryogenic Brain Injury in the Rabbit

Mark H. Zornow, Mark S. Scheller, Michael M. Todd, Suzanne S. Moore

Open publisher page 65 citations

Abstract

Despite the numerous studies examining the relative merits of crystalloids versus colloids for expansion of intravascular volume, little attention has been directed to the cerebral effects of these solutions. In particular, the effect of changes in plasma oncotic pressure on brain water content are poorly understood. The authors recently examined the acute effects of changes in plasma osmolality and colloid oncotic pressure in normal animals, and found that a 65% reduction in oncotic pressure had no detectable effect on brain water content or intracranial pressure. In an effort to extend these studies to a more clinically relevant situation, the authors have now compared the acute effects of 0.9% saline, 6% hetastarch, and 5% albumin on regional cerebral water content and intracranial pressure in an animal model of brain injury produced by focal cortical freezing. Under general anesthesia and following the production of the cryogenic brain lesion, rabbits underwent a 45-min period of isovolemic hemodilution to a hematocrit of 20-25% with one of the three selected fluids. The saline group required approximately twice as much fluid (207 +/- 17 ml) to maintain a stable mean arterial pressure and central venous pressure as did the hetastarch (105 +/- 14 ml) or albumin (103 +/- 29 ml) groups. As intended, the oncotic pressure decreased by a mean of 9.6 +/- 2.4 mmHg in the saline group, while remaining stable in the hetastarch and albumin groups. There were no significant changes in osmolality in any group during the hemodilution period.(ABSTRACT TRUNCATED AT 250 WORDS)

About this research paper

What this paper is about

Despite the numerous studies examining the relative merits of crystalloids versus colloids for expansion of intravascular volume, little attention has been directed to the cerebral effects of these solutions. In particular, the effect of changes in plasma oncotic pressure on brain water content are poorly understood. The authors recently examined the acute effects of changes in plasma osmolality and colloid oncotic pressure in normal animals, and found that a 65% reduction in oncotic pressure had no detectable effect on brain water content or intracranial pressure. In an effort to extend these studies to a more clinically relevant situation, the authors have now compared the acute effects of 0.9% saline, 6% hetastarch, and 5% albumin on regional cerebral water content and intracranial pressure in an animal model of brain injury produced by focal cortical freezing. Under general anesthesia and following the production of the cryogenic brain lesion, rabbits underwent a 45-min period of isovolemic hemodilution to a hematocrit of 20-25% with one of the three selected fluids. The saline group required approximately twice as much fluid (207 +/- 17 ml) to maintain a stable mean arterial pressure and central venous pressure as did the hetastarch (105 +/- 14 ml) or albumin (103 +/- 29 ml) groups. As intended, the oncotic pressure decreased by a mean of 9.6 +/- 2.4 mmHg in the saline group, while remaining stable in the hetastarch and albumin groups. There were no significant changes in osmolality in any group during the hemodilution period.(ABSTRACT TRUNCATED AT 250 WORDS)

Why it matters

OpenAlex reports 65 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Despite the numerous studies examining the relative merits of crystalloids versus colloids for expansion of intravascular volume, little attention has been directed to the cerebral effects of these solutions. In particular, the effect of changes in plasma oncotic pressure on brain water content are poorly understood. The authors recently examined the acute effects of changes in plasma osmolality and colloid oncotic pressure in normal animals, and found that a 65% reduction in oncotic pressure had no detectable effect on brain water content or intracranial pressure. In an effort to extend these studies to a more clinically relevant situation, the authors have now compared the acute effects of 0.9% saline, 6% hetastarch, and 5% albumin on regional cerebral water content and intracranial pressure in an animal model of brain injury produced by focal cortical freezing. Under general anesthesia and following the production of the cryogenic brain lesion, rabbits underwent a 45-min period of isovolemic hemodilution to a hematocrit of 20-25% with one of the three selected fluids. The saline group required approximately twice as much fluid (207 +/- 17 ml) to maintain a stable mean arterial pressure and central venous pressure as did the hetastarch (105 +/- 14 ml) or albumin (103 +/- 29 ml) groups. As intended, the oncotic pressure decreased by a mean of 9.6 +/- 2.4 mmHg in the saline group, while remaining stable in the hetastarch and albumin groups. There were no significant changes in osmolality in any group during the hemodilution period.(ABSTRACT TRUNCATED AT 250 WORDS)

Key concepts: Oncotic pressure, Hetastarch, Medicine, Intravascular volume status, Intracranial pressure, Anesthesia, Hematocrit, Hypervolemia

Related papers

Back to paper searchBrowse research topicsOriginal source
Acute Cerebral Effects of Isotonic Crystalloid and Colloid Solutions Following Cryogenic Brain Injury in the Rabbit — Research Paper | ScholarLens