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马氏回路的哈夫尼亚改良型在自主呼吸期间的流量需求。

Flow requirements in the Hafnia modifications of the Mapleson circuits during spontaneous respiration.

作者信息

Christensen K N, Thomsen A, Hansen O, Jørgensen S

出版信息

Acta Anaesthesiol Scand. 1978;22(1):27-32. doi: 10.1111/j.1399-6576.1978.tb01276.x.

Abstract

The Mapleson A, B, C and D circuits can be changed into non-polluting circuits by employing continuous gas evacuation directly from the circuit, via an ejector flowmeter (Jørgensen 1974); Mapleson A and C circuits with this modification have been described previously as the Hafnia A and C circuits (Christensen 1976, Thomsen & Jørgensen 1976). If evacuation from a closed reservoir is employed, total removal of the expired and surplus gases from the operating theatre is obtained (Jørgensen & Thomsen 1976). There will be resistance to expiration in all the circuits with a relief valve for the discharge of surplus gas. If surplus gas is continuously removed directly from the anaesthetic circuit, the patient breathes in an air compartment at ambient pressure, as long as the removal rate equals the inflow of fresh gas. The relief valve is only included in the circuit to ensure that high pressures do not develop. As in any other circuit, the relief valve remains open except during controlled ventilation. A dumping valve may also be included as a safeguard against low pressures (Jørgensen & Thomsen 1976). The flow requirements of the Hafnia B and D circuits and the corresponding Mapleson circuits have been studied in conscious, spontaneously breathing subjects, and the results are discussed in relation to the flow requirements of other semi-closed system.

摘要

通过使用喷射流量计直接从回路中持续排出气体,梅普索恩A、B、C和D回路可以转变为无污染回路(约根森,1974年);这种改良后的梅普索恩A和C回路先前已被描述为哈夫尼亚A和C回路(克里斯蒂安森,1976年;汤姆森和约根森,1976年)。如果采用从封闭储气囊排气的方式,就能将手术室中呼出的和多余的气体全部排出(约根森和汤姆森,1976年)。所有带有用于排出多余气体的安全阀的回路在呼气时都会有阻力。如果直接从麻醉回路中持续排出多余气体,只要排出速率等于新鲜气体的流入速率,患者就在环境压力下的空气腔中呼吸。回路中设置安全阀只是为了确保不会产生高压。与其他任何回路一样,安全阀在控制通气期间除外,其余时间保持打开状态。还可设置一个放气阀作为防止低压的安全装置(约根森和汤姆森,1976年)。已对清醒、自主呼吸受试者的哈夫尼亚B和D回路以及相应的梅普索恩回路的流量需求进行了研究,并结合其他半封闭系统的流量需求对结果进行了讨论。

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