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N Mayer

Publications and source records attributed to N Mayer.

82 records · Page 5Linked to original sources

Ultrasonographic guidance reduces the amount of local anesthetic for 3-in-1 blocks.

BACKGROUND AND OBJECTIVES: Recently it has been demonstrated that the use of ultrasound (US) improves the onset time and the quality of sensory block for 3-in-1 blocks compared with conventional nerve stimulator (NS) techniques. The present study was designed to evaluate if US guidance for 3-in-1 blocks reduces the amount of local anesthetic compared to NS guidance. METHODS: After institutional approval and informed consent, 60 patients undergoing hip surgery following trauma were randomly assigned to three groups of 20 patients each. In group A, the 3-in-1 block was performed using US guidance with 20 mL 0.5% bupivacaine. Group B received 20 mL 0.5% bupivacaine, and group C received 30 mL 0.5% bupivacaine during NS guidance. The quality and the onset time was assessed by pinprick test in the central sensory region of each of the three targeted nerves and compared with the contralateral leg every 10 minutes for 1 hour by a blinded observer. The rating was undertaken using a scale from 100% (uncompromised sensibility) to 0% (no sensation). RESULTS: Overall success for the 3-in-1 block in group A was 95% and in groups B and C 80%. Onset time was significantly shorter in the US-guided group compared with both NS-guided groups (group A 13+/-6 minutes; group B 27+/-12 minutes; and group C 26+/-13 minutes; P < .01 to groups B and C). Quality of sensory block was significantly better in group A (4%+/-5% of initial value) compared with groups B and C (group B 21%+/-11% of initial value, P < .01 to group A; group C 22%+/-19%, P < .01 to group A). CONCLUSION: The amount of local anesthetic for 3-in-1 blocks can be reduced by using US guidance compared with the conventional NS-guided technique.

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Cardiovascular effects of 6% hetastarch and lactated Ringer's solution during spinal anesthesia.

BACKGROUND AND OBJECTIVES: The purpose of this prospective, randomized, double-blinded study was to compare the hemodynamic effects of 6% hetastarch with lactated Ringer's solution and to determine the main reasons for hemodynamic impairment following spinal anesthesia in elderly patients undergoing emergent hip surgery. METHODS: After receiving institutional approval and informed consent, we enrolled 24 ASA physical status III patients for this study. Hemodynamics were recorded with pulmonary artery and arterial catheters and an electrocardiogram. Following fluid administration with either 500 mL 6% hetastarch (group H) or 1500 mL lactated Ringer's solution (group R), spinal anesthesia was administered with 3.0 mL 0.5% bupivacaine (isobaric). Hemodynamic measurements were recorded prior to fluid administration, before spinal anesthesia, and 10, 20, and 30 minutes following spinal anesthesia and reported as relative changes relating to baseline. RESULTS: Although the hemodynamic measurements after spinal anesthesia remained stable in group H throughout the observation period, blood pressure, central venous pressure, pulmonary artery (PA) wedge pressure and systemic vascular resistance decreased significantly in group R (blood pressure: -7 +/- 10 vs - 14 +/- 8% 30 minutes after spinal anesthesia, P < .05 to group R; central venous pressure: 51 +/- 106 vs -26 +/- 27% 10 minutes, 63 +/- 89 vs -36 +/- 30% 20 minutes and 73 +/- 112 vs -33 +/- 29% 30 minutes after spinal anesthesia, P < .01 to group R; PA wedge pressure: 40 +/- 37 vs -5 +/- 40% 10 minutes, 40 +/- 35 vs -23 +/- 32% 20 minutes and 38 +/- 36 vs -23 +/- 32% 30 minutes after spinal anesthesia, P < .01 to group R; systemic vascular resistance: -10 +/- 16 vs -18 +/- 7% 20 minutes and -10 +/- 15 vs - 19 +/- 12% 30 minutes after spinal anesthesia, P < .05 to group R). CONCLUSIONS: Six percent hetastarch minimizes the hemodynamic responses during spinal anesthesia in elderly patients undergoing emergent hip surgery. In this study population, spinal anesthesia-induced hemodynamic impairment is caused by decreases in cardiac filling pressures and systemic vascular resistance.

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Propranolol ameliorates exercise-induced regional myocardial dysfunction in dogs.

The effects of propranolol (0.5 mg/kg) on exercise-induced regional myocardial dysfunction were investigated in an animal model with limited coronary reserve. Limited coronary reserve was accomplished in conscious, chronically instrumented dogs by external filling of a hydraulic cuff occluder placed on a coronary vessel which did not impair resting myocardial function but induced severe dysfunction during treadmill exercise. Propranolol led to a distinct reduction of heart rate, myocardial contractility and systolic blood pressure, thereby ameliorating exercise-induced regional myocardial dysfunction.

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