全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

围手术期超声评估患者容量反应性的研究进展
Research Progress on Perioperative Ultrasound Assessment of Patients’ Volume Responsiveness

DOI: 10.12677/jcpm.2025.42220, PP. 602-608

Keywords: 超声,容量反应性,预测,麻醉,静脉呼吸变异度,动脉血流峰值呼吸变异度
Echocardiography
, Volume Reactivity, Forecast, Anaesthesia, Respiratory Variation of the Vein, Peak Respiratory Variability of Arterial Blood Flow

Full-Text   Cite this paper   Add to My Lib

Abstract:

利用超声技术评估容量反应性具有便捷、短时、无创等优点,同时超声技术在手术室内的广泛使用使得超声在围手术期评估容量成为可能。围手术期的容量管理首先需要评估的就是容量反应性。目前超声技术多应用于重症和急诊学科来评估患者的容量反应性,对于围手术期患者的容量评估,一些超声监测指标的可行性和可靠性仍存在诸多争议。本文就预测围手术期容量反应性超声指标静脉呼吸变异度指标(下腔静脉直径及其塌陷率、上腔静脉直径及其塌陷率、锁骨下静脉直径及其塌陷率、颈内静脉直径及其塌陷率)和动脉血流峰值呼吸变异度(主动脉峰流速和其他部位动脉峰流速等)的应用现状进行综述,以期为其合理使用提供参考。
The use of ultrasound technology to assess volume responsiveness has the advantages of convenience, short-term and non-invasive, and the widespread use of ultrasound technology in the operating room makes it possible to evaluate volume in the perioperative period. The first thing that needs to be assessed for perioperative volume management is volume responsiveness. At present, ultrasound technology is mostly used in the volume responsiveness of patients in critical care and emergency departments, and there are still many controversies about the feasibility and reliability of some ultrasound monitoring indicators for volume assessment of perioperative patients. This article reviews the application status of predicting perioperative volume-responsive ultrasound indexes (inferior vena cava diameter and its collapse rate, superior vena cava diameter and its collapse rate, subclavian vein diameter and its collapse rate, internal jugular vein diameter and its collapse rate, and peak respiratory variability of arterial blood flow, such as peak aortic flow velocity and peak arterial flow velocity at other sites), in order to provide a reference for its rational use.

References

[1]  何福娟, 秦晨光, 彭晶, 等. IVC_(max)及IVC-CI预测结/直肠癌根治术患者全身麻醉诱导后低血压发生率的研究[J]. 重庆医学, 2022, 51(7): 1135-1139.
[2]  杨勇勇. 超声颈总动脉校正血流时间预测麻醉诱导后低血压和容量反应性[D]: [硕士学位论文]. 福州: 福建医科大学, 2020.
[3]  Marik, P.E. and Cavallazzi, R. (2013) Does the Central Venous Pressure Predict Fluid Responsiveness? An Updated Meta-Analysis and a Plea for Some Common Sense. Critical Care Medicine, 41, 1774-1781.
https://doi.org/10.1097/ccm.0b013e31828a25fd
[4]  Nakamura, K., Tomida, M., Ando, T., Sen, K., Inokuchi, R., Kobayashi, E., et al. (2013) Cardiac Variation of Inferior Vena Cava: New Concept in the Evaluation of Intravascular Blood Volume. Journal of Medical Ultrasonics, 40, 205-209.
https://doi.org/10.1007/s10396-013-0435-6
[5]  Feissel, M., Michard, F., Faller, J. and Teboul, J. (2004) The Respiratory Variation in Inferior Vena Cava Diameter as a Guide to Fluid Therapy. Intensive Care Medicine, 30, 1834-1837.
https://doi.org/10.1007/s00134-004-2233-5
[6]  Kaptein, M.J. and Kaptein, E.M. (2021) Inferior Vena Cava Collapsibility Index: Clinical Validation and Application for Assessment of Relative Intravascular Volume. Advances in Chronic Kidney Disease, 28, 218-226.
https://doi.org/10.1053/j.ackd.2021.02.003
[7]  Chong, Y., Yu, Y., Zhao, Y. and Zhang, Y. (2023) Value of Inferior Vena Cava Diameter and Inferior Vena Cava Collapse Index in the Evaluation of Peripartum Volume: A Prospective Cohort Study. European Journal of Obstetrics & Gynecology and Reproductive Biology, 285, 69-73.
https://doi.org/10.1016/j.ejogrb.2023.03.045
[8]  Abbasi, S., Nemati, K., Alikiaii, B. and Saghaei, M. (2023) The Value of Inferior Vena Cava Ultrasonography Administration for Hypovolemia Detection in Patients with Acute Kidney Injury Hospitalized in Intensive Care Unit. Advanced Biomedical Research, 12, 38.
https://doi.org/10.4103/abr.abr_394_21
[9]  Yoshimura, M., Shiramoto, H., Koga, M. and Morimoto, Y. (2022) Preoperative Echocardiography Predictive Analytics for Postinduction Hypotension Prediction. PLOS ONE, 17, e0278140.
https://doi.org/10.1371/journal.pone.0278140
[10]  Moschovaki, N., Saranteas, T., Spiliotaki, E., Giannoulis, D., Anagnostopoulos, D., Talliou, C., et al. (2023) Point of Care Transthoracic Echocardiography for the Prediction of Post—Spinal Anesthesia Hypotension in Elderly Patients with Cardiac Diseases and Left Ventricular Dysfunction. Journal of Clinical Monitoring and Computing, 37, 1207-1218.
https://doi.org/10.1007/s10877-023-00981-y
[11]  Szabó, M., Bozó, A., Darvas, K., Horváth, A. and Iványi, Z.D. (2019) Role of Inferior Vena Cava Collapsibility Index in the Prediction of Hypotension Associated with General Anesthesia: An Observational Study. BMC Anesthesiology, 19, Article No. 139.
https://doi.org/10.1186/s12871-019-0809-4
[12]  丁欣, 王小亭, 张宏民, 晁彦公. 中国重症超声专家共识解读[J]. 中国实用内科杂志, 2017, 37(5): 434-436.
[13]  李坤鹏. 基于床旁超声监测下腔静脉内径的个体化液体治疗策略对脓毒症患者预后的影响[J]. 中外医学研究, 2023, 21(12): 156-160.
[14]  王平, 李辉, 苑晓姣, 等. 基于下腔静脉相关指标及其变异性对脓毒症休克液体复苏效果预测价值分析[J]. 疑难病杂志, 2023, 22(5): 505-509.
[15]  姜城, 马晓妍, 卢燕. 肺部超声联合下腔静脉变异度指导ARDS患者容量管理的临床研究[J]. 宁夏医学杂志, 2023, 45(4): 354-357.
[16]  林益钦, 陈英勒, 吴黄辉, 等. 超声下腔静脉预测容量反应性和容量状态的临床应用[J]. 安徽医学, 2023, 44(5): 534-540.
[17]  刘莉, 王莹莹, 吕瑞兆, 柳洁, 张慧娟, 井郁陌. 基于下腔静脉塌陷指数导向补液预防骨科手术患者蛛网膜下腔阻滞麻醉后低血压的研究[J]. 中国医刊, 2023, 58(3): 316-320.
[18]  Di Nicolò, P., Tavazzi, G., Nannoni, L. and Corradi, F. (2023) Inferior Vena Cava Ultrasonography for Volume Status Evaluation: An Intriguing Promise Never Fulfilled. Journal of Clinical Medicine, 12, Article 2217.
https://doi.org/10.3390/jcm12062217
[19]  Millington, S.J. (2019) Ultrasound Assessment of the Inferior Vena Cava for Fluid Responsiveness: Easy, Fun, but Unlikely to Be Helpful. Canadian Journal of Anesthesia/Journal canadien d'anesthésie, 66, 633-638.
https://doi.org/10.1007/s12630-019-01357-0
[20]  程志, 张小宝, 冯继英, 刘金东, 赵志斌. 超声测量静脉内径和变异率应用于容量评估的研究进展[J]. 国际麻醉学与复苏杂志, 2018, 39(3): 230-233, 238.
[21]  Vieillard-Baron, A., Chergui, K., Rabiller, A., Peyrouset, O., Page, B., Beauchet, A., et al. (2004) Superior Vena Caval Collapsibility as a Gauge of Volume Status in Ventilated Septic Patients. Intensive Care Medicine, 30, 1734-1739.
https://doi.org/10.1007/s00134-004-2361-y
[22]  Charbonneau, H., Riu, B., Faron, M., Mari, A., Kurrek, M.M., Ruiz, J., et al. (2014) Predicting Preload Responsiveness Using Simultaneous Recordings of Inferior and Superior Vena Cavae Diameters. Critical Care, 18, Article No. 473.
https://doi.org/10.1186/s13054-014-0473-5
[23]  Bubenek-Turconi, Ş., Hendy, A., Băilă, S., Drăgan, A., Chioncel, O., Văleanu, L., et al. (2019) The Value of a Superior Vena Cava Collapsibility Index Measured with a Miniaturized Transoesophageal Monoplane Continuous Echocardiography Probe to Predict Fluid Responsiveness Compared to Stroke Volume Variations in Open Major Vascular Surgery: A Prospective Cohort Study. Journal of Clinical Monitoring and Computing, 34, 491-499.
https://doi.org/10.1007/s10877-019-00346-4
[24]  闫雁, 董士民. 超声评估容量反应性的研究进展[J]. 中国急救医学, 2017, 37(4): 295-297.
[25]  Seif, D., Perera, P., Mailhot, T., Riley, D. and Mandavia, D. (2012) Bedside Ultrasound in Resuscitation and the Rapid Ultrasound in Shock Protocol. Critical Care Research and Practice, 2012, Article ID: 503254.
https://doi.org/10.1155/2012/503254
[26]  Kent, A., Bahner, D.P., Boulger, C.T., Eiferman, D.S., Adkins, E.J., Evans, D.C., et al. (2013) Sonographic Evaluation of Intravascular Volume Status in the Surgical Intensive Care Unit: A Prospective Comparison of Subclavian Vein and Inferior Vena Cava Collapsibility Index. Journal of Surgical Research, 184, 561-566.
https://doi.org/10.1016/j.jss.2013.05.040
[27]  Lu, Y., Zhang, Y., Xu, Z., Shen, F., Wang, J. and Liu, Z. (2023) Subclavian Vein Ultrasound-Guided Fluid Management to Prevent Post-Spinal Anesthetic Hypotension during Cesarean Delivery: A Randomized Controlled Trial. BMC Anesthesiology, 23, Article No. 288.
https://doi.org/10.1186/s12871-023-02242-6
[28]  瞿敏, 张秀青, 李婧, 等. 颈内静脉呼吸变异度评估患者术中容量反应性的作用[J]. 国际麻醉学与复苏杂志, 2019, 40(4): 307-312.
[29]  Cecconi, M., De Backer, D., Antonelli, M., Beale, R., Bakker, J., Hofer, C., et al. (2014) Consensus on Circulatory Shock and Hemodynamic Monitoring. Task Force of the European Society of Intensive Care Medicine. Intensive Care Medicine, 40, 1795-1815.
https://doi.org/10.1007/s00134-014-3525-z
[30]  Guarracino, F., Ferro, B., Forfori, F., Bertini, P., Magliacano, L. and Pinsky, M.R. (2014) Jugular Vein Distensibility Predicts Fluid Responsiveness in Septic Patients. Critical Care, 18, Article No. 647.
https://doi.org/10.1186/s13054-014-0647-1
[31]  栗亚茹, 姜陆洋, 冯艺, 等. 围手术期超声对全身麻醉患者容量反应性的评估作用[J]. 国际麻醉学与复苏杂志, 2021, 42(9): 966-972.
[32]  Monnet, X. and Teboul, J. (2018) Assessment of Fluid Responsiveness: Recent Advances. Current Opinion in Critical Care, 24, 190-195.
https://doi.org/10.1097/mcc.0000000000000501
[33]  Ashley, M. and Justin, M. (2016) Predicting and Measuring Fluid Responsiveness with Echocardiography. Echo Research & Practice, 3, G1-G12.
https://doi.org/10.1530/erp-16-0008
[34]  Banothu, K.K., Sankar, J., Pathak, M., Kandasamy, D., Gupta, P., Kabra, S.K., et al. (2023) Utility of Inferior Vena Cava Distensibility and Respiratory Variation in Peak Aortic Blood Flow Velocity to Predict Fluid Responsiveness in Children with Shock. Indian Journal of Pediatrics, 90, 1077-1082.
https://doi.org/10.1007/s12098-023-04585-x
[35]  Karlsson, J., Peters, E., Denault, A., Beaubien‐Souligny, W., Karsli, C. and Roter, E. (2023) Assessment of Fluid Responsiveness in Children Using Respiratory Variations in Descending Aortic Flow. Acta Anaesthesiologica Scandinavica, 67, 1045-1053.
https://doi.org/10.1111/aas.14265
[36]  王宁, 宋伟, 王岩, 等. 动脉血流峰值流速变异度评价危重症患者容量反应状态的Meta分析[J]. 临床超声医学杂志, 2020, 22(4): 270-274.
[37]  裴颖皓, 杨洋, 冯颖, 等. 床旁即时超声测量动脉峰流速呼吸变异度评价危重症患者容量反应性的Meta分析[J]. 中华危重病急救医学, 2020, 32(1): 99-105.
[38]  Zhou, K., Ran, S., Guo, Y. and Ye, H. (2023) Carotid Artery Ultrasound for Assessing Fluid Responsiveness in Patients Undergoing Mechanical Ventilation with Low Tidal Volume and Preserved Spontaneous Breathing. Shock, 61, 360-366.
https://doi.org/10.1097/shk.0000000000002288

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133