Effects of changes in power setting of an ultrasonic aspirator on amount of damage to the cerebral cortex of healthy dogs

Citation
Rs. Bagley et al., Effects of changes in power setting of an ultrasonic aspirator on amount of damage to the cerebral cortex of healthy dogs, AM J VET RE, 62(2), 2001, pp. 248-251
Citations number
11
Categorie Soggetti
Veterinary Medicine/Animal Health
Journal title
AMERICAN JOURNAL OF VETERINARY RESEARCH
ISSN journal
00029645 → ACNP
Volume
62
Issue
2
Year of publication
2001
Pages
248 - 251
Database
ISI
SICI code
0002-9645(200102)62:2<248:EOCIPS>2.0.ZU;2-Q
Abstract
Objective-To determine the minimal ultrasonic aspirator pressure necessary to damage the cerebral cortex of healthy dogs. Animals-9 mixed-breed dogs. Procedure-The study comprised 2 parts. In part A, 6 dogs were euthanatized immediately prior to the experiment. In parr B, 3 dogs were anesthetized fo r recording of physiologic variables. In both parts, craniectomy and duroto my were performed to bilaterally expose the lateral aspect of the cerebral cortex. An ultrasonic aspirator was placed in contact with various areas of the cerebral cortex, and aspirator power was altered (10, 20, 30. and 40%) . Duration of contact at each power was 5 and 10 seconds. Subsequently, gro ss morphologic and histologic damage was assessed in the cortex. Results-Gross observations for all dogs were similar. At 10% power, visible or histologic damage was not evident in the cortex. At 20% power, the cort ex was slightly indented from contact with the hand piece; however, cortica l disruption was not evident. Cortical disruption was initially detectable at 30% power in some dogs and was consistently evident at 40% power in both sets of dogs. Conclusions and Clinical Relevance-Ultrasonic aspirator power of < 20% crea ted minimal acute morphologic damage to the cortex. Power settings between 20 and 30% may superficially damage the cerebral cortex in healthy dogs, wh ereas 40% power consistently damages the cerebral cortex. Knowledge of the degree of damage to cerebral cortex caused by various amounts of power for ultrasonic aspirators will allow surgeons to avoid damaging normal brain ti ssues during surgery.