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Biomedical subjects

M A Posner

Publications and source records attributed to M A Posner.

62 records · Page 4Linked to original sources

Blood loss and hypotensive anesthesia in oral-facial corrective surgery.

To evaluate accurately changes in blood volume during oral-facial corrective surgery, double-tagged radioisotope blood volume studies were performed preoperatively and postoperatively. Unexpectedly large RCV deficits that were not consistent with EBL were observed in studies conducted at two separate facilities. Hypotensive general anesthesia was used for the intended purpose of reducing blood loss in oral-facial corrective surgery. Various physiological parameters were measured preoperatively, intraoperatively, and postoperatively to evaluate patient response to this anesthetic method. The MAP was reduced from 89.94 +/- 2.13 to 72.79 +/- 1.63 mm Hg under the influence of NaN infusion supplemented with halothane. No dose-response relationship existed between NaN and the intraoperative MAP. A 44% reduction in the measured red cell volume was observed in comparison to a previously studied group of patients who underwent similar surgical procedures under normotensive anesthesia. It is concluded from an extensive review of the literature that the most vulnerable period for serious complications is in the immediate postoperative period. No significant complications or adverse effects were observed in this study. It cannot be emphasized too strongly that the safety of this hypotensive technique lies in constant and careful monitoring of the patient and meticulous attention to all details of anesthetic management.

Anesthesia, General↗

Aortic valve replacement in a hemodialysis-dependent patient: anesthetic considerations--a case report.

In the anesthetic management of a hemodialysis-dependent patient undergoing aorticvalve replacement, technical and pathophysiologic problems considered included: 1. The presence of an arteriovenous hemodialysis fistula. 2. Hemodynamic alterations associated with aortic insufficiency. 3. Choice of anesthetic agents, fluid, and electrolyte balance in the presence of renal failure. 4. Postoperative management of hypertension and hyperkalemia. While there are many possible approaches, the authors present one successful technic for consideration.

Adult↗

Compressive ulnar neuropathies at the elbow: I. Etiology and diagnosis.

Ulnar nerve compression at the elbow can occur at any of five sites that begin proximally at the arcade of Struthers and end distally where the nerve exits the flexor carpi ulnaris muscle in the forearm. Compression occurs most commonly at two sites-the epicondylar groove and the point where the nerve passes between the two heads of the flexor carpi ulnaris muscle (i.e., the true cubital tunnel). The differential diagnosis of ulnar neuropathies at the elbow includes lesions that cause additional proximal or distal nerve compression and systemic metabolic disorders. A complete history and a thorough physical examination are essential first steps in establishing a correct diagnosis. Electrodiagnostic studies may be useful, especially when the site of compression cannot be determined by physical examination, when compression may be at multiple levels, and when there are systemic and metabolic problems.

Diagnosis, Differential↗

Compressive ulnar neuropathies at the elbow: II. treatment.

Initial treatment of most compressive neuropathies at the elbow is nonoperative, consisting of rest, avoidance of elbow flexion, and, when necessary, temporary immobilization of the elbow and wrist. If symptoms persist, particularly when accompanied by muscle weakness, surgery is usually indicated. Operative procedures include decompression without transposition of the nerve (in situ or by means of medial epicondylectomy) and decompression with transposition of the nerve carried out in a subcutaneous, intramuscular, or submuscular fashion. The indications, advantages, disadvantages, and surgical technique of each operative procedure are discussed.

Decompression, Surgical↗

Continuous venous oximetry for hemodynamic and oxygen transport stability post cardiac surgery.

Under the diagnostic-related group (DRG) reimbursement system, hospitals are looking to decrease costs related to unnecessary laboratory measurements. To assess the efficacy of continuous SvO2 as the only means to monitor the balance of the oxygen transport of the stable postoperative cardiac patient in the ICU, we studied 26 adult patients undergoing cardiac surgery with an uneventful postoperative course. All subjects had an Opticath fiberoptic PA catheter inserted for 29.6. +/- 11.0 hours (range 16-66) and spent an average of 42.4 +/- 17.5 hours in the Intensive Care Unit (range 20-87). Cardiac output, and Hemoglobin/Hematocrit were determined serially every 2 hours during the first 6 postoperative hours and 4 hours respectively according to our ICU practice. Arterial blood gases were determined freely in relation to changes in the hemodynamic and respiratory status. No clinical decisions were undertaken on the basis of SvO2. Retrospectively it was determined whether basing decisions on the SvO2 would have reduced the number of unnecessary cardiac outputs, ABGs and Hgb/Hcts. Using the SvO2 as potential indicator of hemodynamic and oxygen transport stability it could significantly reduce the number of determinations per patient, ie, cardiac output (11.7 +/- 4.2 vs 2.1 +/- 0.3, p less than 0.05), ABGs (11.3 +/- 2.8 vs 2.8 +/- 0.4, p less than 0.05) and Hgb/Hcts (5.7 +/- 1.3 vs 2.0 +/- 0.0, p less than 0.05). The use of SvO2 would save the hospital $84.5 +/- 27.5 (range 31.5 +/- 140.9) per stable patient in the ICU and a total of 220.4 +/- 69.9 minutes (range 90-300) of ICU nursing time.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗