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G Squires

Publications and source records attributed to G Squires.

4 recordsLinked to original sources

Quantification of the learning curve for percutaneous dilatational tracheotomy.

OBJECTIVES/HYPOTHESIS: Although numerous investigators have reported a bedside percutaneous dilatational tracheotomy (PDT) complication incidence similar to that of standard operative tracheostomy, others have proposed a "learning curve" for PDT resulting in increased complications early in individual or institutional experience with this procedure. The objective of this investigation is to characterize and quantify the proposed learning curve for PDT. STUDY DESIGN: Prospective analysis of complication incidence for the first 100 PDT procedures performed in a local community hospital Department of General Surgery. METHODS: Demographic data, patient disease variables, and patient anatomic features, as well as perioperative, postoperative, and late complications, were recorded prospectively. Patients were divided into sequential cohorts of 20 and were evaluated for complications at regular intervals. RESULTS: Perioperative and late complication incidence was significantly higher in the first 20 patients who underwent PDT. However, postoperative complication incidence did not significantly vary with operator or institutional experience. In addition, patients with suboptimal anatomy were found to have a significantly increased complication incidence, independent of operator and institutional experience. CONCLUSIONS: Percutaneous dilational tracheotomy has an identifiable learning curve that is most prominent in the first 20 patients treated. Early experience with PDT should be obtained under controlled circumstances, ideally the operating suite. Although most complications occur during acquisition of early experience with PDT, certain life-threatening complications such as tube dislodgment or inability to complete procedure may occur even after extensive experience is obtained. Bedside PDT has an acceptable complication incidence, but any surgeon employing this technique must be prepared to perform immediate standard open tracheotomy to minimize potentially lethal complications of this elective procedure.

Adolescent↗

Detection of mutations and polymorphisms using fluorescence-based dideoxy fingerprinting (F-ddF).

We have adapted the dideoxy finger-printing (ddF) technique for detecting DNA sequence variants to fluorescence detection (F-ddF) using an Applied Biosystems Model 373A DNA Sequencer equipped with GENESCAN 672 software and an external temperature control device. The fingerprints can be precisely aligned using an internal standard run in the same lanes. This facilitates location and characterization of mobility changes resulting from sequence variants. As compared to fluorescence detected single-strand conformation polymorphism analysis (F-SSCP), F-ddF is equally efficient for detection of sequence variants, and it offers additional advantages. These include information regarding location of the sequence variation, greater reliability for distinguishing one sequence variant from another and the capacity to generate large PCR fragments and analyze them in smaller subsegments. Read length and overall quality of data from F-ddF are sequence-dependent when Taq DNA polymerase is used, but reducing terminator concentration can extend read length. The strengths and weakness of F-ddF and F-SSCP are different. Thus F-ddF may work better in a given situation than F-SSCP and vice versa. A strategy for using F-ddF to circumvent limitations of F-SSCP is described.

Animals↗