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术中脊髓麻醉下使用热像仪测定热稀释相对潮气量。

Thermodiluted relative tidal volume estimation using a thermal camera in operating room under spinal anesthesia.

机构信息

Department of Medical Engineering, Yonsei University College of Medicine, Seoul, Republic of Korea.

Department of Anesthesiology and Pain Medicine, Severance Hospital, Anesthesia and Pain Research Institute, Yonsei University College of Medicine, Seoul, Republic of Korea.

出版信息

Biomed Eng Online. 2022 Sep 7;21(1):64. doi: 10.1186/s12938-022-01028-0.

Abstract

BACKGROUND

Estimating relative tidal volume is an important factor when monitoring breathing status. The relationship between temperature and respiration volume has rarely been studied. In this paper, a formula was derived for calculating thermodiluted respiration volume from temperature changes in the nasal cavity. To evaluate the proposed formula, the study compared the relative tidal volume estimated by the proposed formula with that recorded by a respiration volume monitor (Exspiron1Xi, RVM). Thermal data were obtained for 8 cases at a rate of 10 measurements per second. Simultaneous recordings by the RVM are regarded as the reference.

RESULTS

The mean of ICC coefficient is 0.948 ± 0.030, RMSE is 0.1026 ± 0.0284, R-squared value is 0.8962 ± 0.065 and linear regression coefficient [Formula: see text] is 0.966 ± 0.104, [Formula: see text] is 0.042 ± 0.057. Bland-Altman plot showed 96.01% of samples that the difference between the measured and estimated values exists within 2 standard deviations.

CONCLUSIONS

In this paper, a model that can thermodynamically calculate the relationship between thermal energy and respiration volume is proposed. The thermodiluted model is a feasible method for estimating relative respiration tidal volumes.

摘要

背景

在监测呼吸状态时,估计相对潮气量是一个重要因素。温度和呼吸量之间的关系很少被研究。本文推导出了一个从鼻腔温度变化计算热稀释呼吸量的公式。为了评估所提出的公式,该研究将所提出的公式估计的相对潮气量与呼吸量监测仪(Exspiron1Xi,RVM)记录的相对潮气量进行了比较。以每秒 10 次测量的速率为 8 个病例获得了热数据。RVM 的同步记录被视为参考。

结果

ICC 系数的平均值为 0.948 ± 0.030,RMSE 为 0.1026 ± 0.0284,R 平方值为 0.8962 ± 0.065,线性回归系数 [公式:见文本]为 0.966 ± 0.104,[公式:见文本]为 0.042 ± 0.057。Bland-Altman 图显示,96.01%的样本测量值与估计值之间的差异在 2 个标准差内。

结论

本文提出了一种可以从热力学上计算热能和呼吸量之间关系的模型。热稀释模型是估计相对呼吸潮气量的一种可行方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acec/9450307/049ff89a51aa/12938_2022_1028_Fig1_HTML.jpg

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