PubMed Health⌕ Search

PubMed · 11571902

Lung isolation techniques.

Abstract

Left-sided double-lumen endotracheal tubes should be the tube of choice for most cases in which lung isolation is required. A right-sided double-lumen endotracheal tube can be used effectively when a contraindication to placing a left-sided double-lumen endotracheal tube exists. The method of choice to select left-sided double-lumen endotracheal tubes is based on chest radiograph or CT scan measurements of the trachea or bronchus. Based on clinical reports, Univents or WEB blockers may be a better choice for patients with difficult airways who require one-lung ventilation or for when a selective lobar blockade is needed. For all selective intubation, the method of choice for proper tube placement and bronchial blockade is fiberoptic bronchoscopy with the patient in a supine position at first or in a lateral decubitus position later, or if a malposition occurs.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J H Campos. 2001. Lung isolation techniques.. https://doi.org/10.1016/s0889-8537(05)70243-1

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Professional monitoring and critical incident reporting using personal digital assistants.

OBJECTIVE: To assess the practicality of using personal digital assistants (PDAs) for the collection of logbook data, procedural performance data and critical incident reports in anaesthetic trainees. DESIGN: Pilot study. SETTING: Two tertiary referral centres (in Victoria and New Zealand) and a large district hospital in Queensland. PARTICIPANTS: Six accredited Australian and New Zealand College of Anaesthetists (ANZCA) registrars and their ANZCA training supervisors. INTERVENTIONS: Registrars and supervisors underwent initial training for one hour, and supervisors were provided with ongoing support. MAIN OUTCOME MEASURES: Reliable use of the program, average time for data entry and number of procedures logged. RESULTS: ANZCA trainees reliably enter data into PDAs. The data can be transferred to a central database, where they can be remotely analysed before results are fed back to trainees. CONCLUSIONS: This technology can be used to monitor professional performance in ANZCA trainees.

Anesthesia↗

Nitric oxide synthase (NOS) coexists with activated neurons by skeletal muscle contraction in the brainstem of cats.

Contraction of skeletal muscle evokes increases in arterial blood pressure and heart rate. Some regions of the brainstem have been implicated for expression of the cardiovascular responses to muscle contraction. Previous studies have reported that static muscle contraction induced c-Fos protein in the nucleus of tractus solitarii (NTS), lateral reticular nucleus (LRN), lateral tegmental field (FTL), subretrofacial nucleus (SRF), A1 region and periaqueductal gray (PAG) of the brainstem. Furthermore, neuronal NADPH-diaphorase (NADPH-d), which is considered as a marker of neuronal nitric oxide synthase (nNOS), has been localized in those same regions. In this study, static muscle contraction was induced by electrical stimulation of the L7 and S1 ventral roots in anaesthetized cats. Distribution of c-Fos protein within neurons containing nNOS was evaluated by double labeling methods in order to determine if nNOS containing neurons in the brainstem were activated during muscle contraction. The results indicate that c-Fos protein colocalized with NADPH-d positive staining within the neurons of the SRF and PAG, but not within the NTS neurons. Distinct number of neurons with c-Fos protein was in close proximity to NADPH-d positive staining in the NTS, SRF, and PAG. Coexisting of c-Fos protein and NADPH-d positive staining was not observed in the LRN, FTL and A1 region. These findings demonstrate that nNOS containing neurons were activated by muscle contraction in the selective regions of the brainstem, and nNOS positive staining had close anatomic contacts with the neurons activated by contraction. This result provides neuroanatomic evidence suggesting that nitric oxide modulates the cardiovascular responses to muscle contraction within the NTS, SRF and PAG of the brainstem.

Anesthesia↗