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Biomedical subjects

C Minoni

Publications and source records attributed to C Minoni.

10 recordsLinked to original sources

[Variations of esophageal temperature during general anesthesia with a low-flow circuit].

BACKGROUND: Anaesthesia drugs cause the cutaneous vasodilatation that produces core temperature lowering at the beginning of general anaesthesia; when the thermal threshold for vasoconstriction is reached the cutaneous heat losses are decreased. Furthermore, the soda lime begins to produce water and heat after 40 minutes of closed circuit ventilation. WORK HYPOTHESIS: The technique of inhalatory anaesthesia affects the thermal loss of patients after some hours of ventilation. DESIGN: Prospective randomized clinical trial. SETTING: Surgical Clinical operating theatre of the University of Florence. PATIENTS: 50 patients submited to abdominal non vascular surgery, for longer than 2 hours, with xifo-pubic cut, subdivided into two groups with the same anthropometric characters and age; the first ventilated with open system, the second with low flow circuit (fresh gas flow 700 ml/min). STATISTIC: "t" Student test; MEASURES: Lower one third oesophageal and inspiratory jaw of the circuit temperatures recorded for three hours. MAIN RESULTS: The savings of low flow anaesthesia begin to be significant in the third hour of anaesthesia. CONCLUSIONS: The thermal saving of closed circuit anaesthesia is, very probably, related to the humidifying and the warming of inspired air by soda lime reaction; the effect is more evident if cutaneous losses are reduced.

Anesthesia, General

[Unexpected accumulation of nitrogen in a circuit during low-flow anesthesia. Presentation of two clinical cases].

The authors report two cases of unexpected nitrogen accumulation in the circuit during low flow anaesthesia with a fresh gas flow of 600 ml/min (O2:N2O = 1.1). Though the presence in the anaesthesia circuit of nitrogen eliminated by the patient is a common feature of closed circuit and low flow techniques, the magnitude and the speed of increase of inert gas concentration (compared with data from previous experiences) were highly suspicious for an external source. This was readily identified as a "mini" leak (30 ml/min of N2) from the air flowmeter, although his valve was in fully closed position. The report depicts an uncommon cause of air entry in the anaesthesia circuit and confirms the need for monitoring gases and vapours when closed circuit and low flow techniques are employed.

Anesthesia

[Inhalation anesthesia in low-flow systems. Clinical evaluation of the kinetics of isoflurane in induction phase].

Closed circuit and low flow anaesthesia offer numerous advantages such as reduction of gas consumption, low cost, and less pollution in both the operating theatre and the environment. These procedures also offer increases in inspired gas humidity and temperature. However the time needed to attain the alveolar concentration MAC 95, is too long. Prefilling the whole circuit, the bellow and the bag with anaesthetic vapours shortens that time without overdosage.

Anesthesia, Closed-Circuit

[Closed circuit inhalation anesthesia. Consumption and cost].

Closed circuit anaesthesia (CCA) and minimal flow anaesthesia diminish inhalatory anaesthetic consumption. Consumption of inhalatory anaesthesia was calculated using two different techniques: CCA and "non rebreathing" system. Costs were compared on the basis of the official list price. The CCA allowed for reduced consumption at lower costs. The resulting annual savings are equal to one third of the total price of the whole apparatus with its complementary monitoring and control systems.

Anesthesia, Closed-Circuit