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在使用部分干燥的二氧化碳吸收剂的情况下,猪在七氟醚麻醉期间会出现高浓度的碳氧血红蛋白。

High carboxyhemoglobin concentrations occur in swine during desflurane anesthesia in the presence of partially dried carbon dioxide absorbents.

作者信息

Frink E J, Nogami W M, Morgan S E, Salmon R C

机构信息

Department of Anesthesiology, The University of Arizona Health Sciences Center, Tucson 85724-5114, USA.

出版信息

Anesthesiology. 1997 Aug;87(2):308-16. doi: 10.1097/00000542-199708000-00018.

Abstract

BACKGROUND

Increased carboxyhemoglobin concentrations in patients receiving inhalation anesthetics (desflurane, enflurane, and isoflurane) have been reported. Recent in vitro studies suggest that dry carbon dioxide absorbents may allow the production of carbon monoxide.

METHODS

The authors used high fresh oxygen flow (5 or 10 l/min) through a conventional circle breathing system of an anesthesia machine for 24 or 48 h to produce absorbent drying. Initial studies used 10 l/min oxygen flow with the reservoir bag removed or with the reservoir bag left in place during absorbent drying (this increases resistance to gas flow through the canister). A third investigation evaluated a lower flow rate (5 l/min) for absorbent drying. Water content of the absorbent and temperature were measured. Pigs received a 1.0 (human) minimum alveolar concentration desflurane anesthetic (7.5%) for 240 min using a 1 l/min oxygen flow rate with dried absorbent. Carbon monoxide concentrations in the circuit and carboxyhemoglobin concentrations in the pigs were measured.

RESULTS

Pigs anesthetized with desflurane using Baralyme exposed to 48 h of 10 l/min oxygen flow (reservoir bag removed) had extremely high carboxyhemoglobin concentrations (more than 80%). Circuit carbon monoxide concentrations during desflurane anesthesia using absorbents exposed to 10 l/min oxygen flow (reservoir bag removed, 24 h) reached peak values of 8,800 to 13,600 ppm, depending on the absorbent used. Carboxyhemoglobin concentrations reached peak values of 73% (Baralyme) and 53% (soda lime). The water content of Baralyme decreased from 12.1 +/- 0.3% (mean +/- SEM) to as low as 1.9 +/- 0.4% at the bottom of the lower canister (oxygen flow direction during drying was from bottom to top). Absorbent temperatures in the bottom canister increased to temperatures as high as 50 degrees C. With the reservoir bag in place during drying (10 l/min oxygen flow), water removal from Baralyme was insufficient to produce carbon monoxide (lowest water content = 5.5%). Use of 5 l/min oxygen flow (reservoir bag removed) for 24 h did not reduce water content sufficiently to produce carbon dioxide with desflurane.

CONCLUSIONS

An oxygen flow rate of 10 l/min for 24 h in a conventional anesthesia circuit can dry carbon dioxide absorbents sufficiently to produce extremely high levels of carbon monoxide with high carboxyhemoglobin concentrations in desflurane-anesthetized pigs. When the reservoir bag is in place on the anesthesia machine or when a lower oxygen flow rate (5 l/min) is used, carbon dioxide absorbent drying still occurs, but 24-48-h exposure time is insufficient to allow for carbon monoxide production with desflurane.

摘要

背景

有报道称,接受吸入麻醉剂(地氟烷、恩氟烷和异氟烷)的患者体内碳氧血红蛋白浓度会升高。最近的体外研究表明,干燥的二氧化碳吸收剂可能会产生一氧化碳。

方法

作者通过麻醉机的传统循环呼吸系统,以高新鲜氧气流量(5或10升/分钟)持续24或48小时,以使吸收剂干燥。最初的研究使用10升/分钟的氧气流量,在吸收剂干燥过程中移除储气囊或保留储气囊(这会增加气体通过滤罐的阻力)。第三项研究评估了较低的流量(5升/分钟)用于吸收剂干燥的情况。测量了吸收剂的含水量和温度。猪使用干燥的吸收剂,以1升/分钟的氧气流量接受1.0(人体)最低肺泡浓度的地氟烷麻醉(7.5%)240分钟。测量了回路中的一氧化碳浓度和猪体内的碳氧血红蛋白浓度。

结果

使用钡石灰并以10升/分钟的氧气流量暴露48小时(移除储气囊)进行地氟烷麻醉的猪,其碳氧血红蛋白浓度极高(超过80%)。在使用暴露于10升/分钟氧气流量(移除储气囊,24小时)的吸收剂进行地氟烷麻醉期间,回路中的一氧化碳浓度达到峰值8800至13600 ppm,具体取决于所使用的吸收剂。碳氧血红蛋白浓度达到峰值,钡石灰为73%,苏打石灰为53%。钡石灰的含水量从下部滤罐底部的12.1±0.3%(平均值±标准误)降至低至1.9±0.4%(干燥过程中氧气流动方向为从底部到顶部)。下部滤罐中的吸收剂温度升高至高达50摄氏度。在干燥过程中保留储气囊(10升/分钟氧气流量),钡石灰的水分去除不足以产生一氧化碳(最低含水量=5.5%)。使用5升/分钟的氧气流量(移除储气囊)24小时,水分去除不足以与地氟烷产生一氧化碳。

结论

在传统麻醉回路中,以10升/分钟的氧气流量持续24小时可使二氧化碳吸收剂充分干燥,从而在接受地氟烷麻醉的猪体内产生极高水平的一氧化碳和高碳氧血红蛋白浓度。当麻醉机上保留储气囊或使用较低的氧气流量(5升/分钟)时,二氧化碳吸收剂仍会干燥,但24 - 48小时的暴露时间不足以使地氟烷产生一氧化碳。

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