Anesthesia ventilators should have adjustable high-pressure alarms.
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Biomedical subjects
Publications and source records attributed to G Bashein.
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We have developed computer software to store data on all surgical and obstetrical anesthetics administered by our department. The computer system provides information for monitoring the residency training program, department and operating room management, professional fee billing, and research. It imposes little additional workload on our clinical personnel, who use simple codes to record the necessary data directly on the anesthetic record. Department secretarial staff transcribe data from the anesthesia and operating room records into the computer file, which is then available for producing scheduled reports and for answering inquiries from a video terminal. The system employs extensive manual and computer verification to minimize errors and omissions in the data. We report design details and more than 3.5 years experience with this system, which is now used at four affiliated teaching hospitals, has over 50,000 cases on file, and adds more than 1800 cases monthly.
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We compared the electrical characteristics of insulated and uninsulated needles in two models that simulate use of a stimulator for nerve localization. With a digital computer, we solved for and graphed the contours of constant electric field strength, defining regions of simulated tissue in which a nerve would become depolarized for a particular stimulation current. We found that with an uninsulated needle, these regions extend proximally along the needle shaft with their widest dimension located slightly shallow to the tip, but with insulated needles, the regions are almost circular and are centered slightly deep to the needle tip. We confirmed these findings by electrophoresis of bromphenol blue dye in polyacrylamide gel. We also found that the necessary stimulator current is much more dependent on the depth of needle insertion with uninsulated needles than with insulated needles. We conclude that the electrical characteristics of insulated needles are more favorable for successful nerve block.
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Three-dimensional (3D) reconstruction from a single esophageal scanning position requires a stable relationship between the probe and the heart. The purpose of this study was to examine the movement of a transesophageal echocardiographic probe during 3D image acquisition. A new dual-axis multiplane probe was used that includes a miniature (6 x 6 x 9 mm) magnetic sensor in the tip. The sensor identifies the probe's 3D position and 3D orientation in space with respect to the location of a magnetic field generator placed beneath the subject. In vivo 3D scanning was performed in five anesthetized, ventilated dogs, with positional determinations acquired every 66 msec. Probe movement was estimated by computing the deviations of each x, y, and z position and orientation determination, compared with the average values during each 3D scan or cardiac cycle. Ten 3D scans were analyzed, involving 263 cardiac cycles and 2328 determinations. The range and SD of the translational movement of the transducer were 2.3 and 0.8 mm, 1.7 and 0.5 mm, and 2.4 and 0.7 mm in x, y, and z directions, respectively, during 3D scanning. Translational movement was more dominant than was rotational movement. Misregistration of three-dimensional reconstructions may be due to subtle probe movement. The ability to monitor probe movement may be helpful in optimizing 3D data sets.