Krister Johansson, Martin Lindström, Manaf Alhabshi, Marianne Ahmad, Peter J Svensson, Jonas P Becktor
{"title":"通过测量血液、唾液和生理盐水混合物中的低血红蛋白水平来估计口腔颌面外科出血量:一项实验室研究。","authors":"Krister Johansson, Martin Lindström, Manaf Alhabshi, Marianne Ahmad, Peter J Svensson, Jonas P Becktor","doi":"10.5037/jomr.2021.12203","DOIUrl":null,"url":null,"abstract":"<p><strong>Objectives: </strong>Estimating blood loss is an important factor in several surgical procedures. The accuracy of blood loss measurements in situations where blood is mixed with saliva and saline is however uncertain. The purpose of this laboratory study was to ascertain if blood loss measurements in mixtures of blood, saline, and saliva are reliable and could be applicable in a clinical setting.</p><p><strong>Material and methods: </strong>Venous blood and resting saliva were collected from six volunteers. Saliva, saline, and combinations thereof were mixed with blood to obtain different concentrations. A portable spectrophotometer was first used to measure the haemoglobin concentration in undiluted venous blood followed by measurements of the haemoglobin concentration after each dilution. To examine the strength of linear relationships, linear regression and Pearson correlations were used.</p><p><strong>Results: </strong>The measurements of haemoglobin concentrations in mixtures of blood, saline, and saliva were proven to be accurate for haemoglobin measurements > 0.3 g/dl (correlation = 0.986 to 1). For haemoglobin measurements < 0.3 g/dl, a small increase in haemoglobin values were reported, which was directly associated to the saliva concentration in the solution (correlation = 0.983 to 1). This interference of saliva was significantly eliminated by diluting the samples with saline, mimicking the clinical situation.</p><p><strong>Conclusions: </strong>The results suggest that a portable spectrophotometer can be used clinically to preoperatively measure the haemoglobin value of a venous blood sample and postoperatively measure the haemoglobin value of the collected liquids, including shed blood, thereby achieving a highly accurate method of measuring blood loss during oral and maxillofacial surgery.</p>","PeriodicalId":53254,"journal":{"name":"eJournal of Oral Maxillofacial Research","volume":null,"pages":null},"PeriodicalIF":1.0000,"publicationDate":"2021-06-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://ftp.ncbi.nlm.nih.gov/pub/pmc/oa_pdf/88/fb/jomr-12-e3.PMC8326882.pdf","citationCount":"0","resultStr":"{\"title\":\"Estimation of Blood Loss in Oral and Maxillofacial Surgery by Measurements of Low Haemoglobin Levels in Mixtures of Blood, Saliva and Saline: a Laboratory Study.\",\"authors\":\"Krister Johansson, Martin Lindström, Manaf Alhabshi, Marianne Ahmad, Peter J Svensson, Jonas P Becktor\",\"doi\":\"10.5037/jomr.2021.12203\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Objectives: </strong>Estimating blood loss is an important factor in several surgical procedures. The accuracy of blood loss measurements in situations where blood is mixed with saliva and saline is however uncertain. The purpose of this laboratory study was to ascertain if blood loss measurements in mixtures of blood, saline, and saliva are reliable and could be applicable in a clinical setting.</p><p><strong>Material and methods: </strong>Venous blood and resting saliva were collected from six volunteers. Saliva, saline, and combinations thereof were mixed with blood to obtain different concentrations. A portable spectrophotometer was first used to measure the haemoglobin concentration in undiluted venous blood followed by measurements of the haemoglobin concentration after each dilution. To examine the strength of linear relationships, linear regression and Pearson correlations were used.</p><p><strong>Results: </strong>The measurements of haemoglobin concentrations in mixtures of blood, saline, and saliva were proven to be accurate for haemoglobin measurements > 0.3 g/dl (correlation = 0.986 to 1). For haemoglobin measurements < 0.3 g/dl, a small increase in haemoglobin values were reported, which was directly associated to the saliva concentration in the solution (correlation = 0.983 to 1). 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引用次数: 0
摘要
目的:估计失血量是几种外科手术的重要因素。然而,在血液与唾液和生理盐水混合的情况下,血量测量的准确性是不确定的。本实验室研究的目的是确定血液、生理盐水和唾液混合物的失血量测量是否可靠,是否可以应用于临床环境。材料与方法:采集6名志愿者静脉血和静息唾液。将唾液、生理盐水及其混合物与血液混合以获得不同的浓度。首先使用便携式分光光度计测量未稀释静脉血中的血红蛋白浓度,然后测量每次稀释后的血红蛋白浓度。为了检验线性关系的强度,使用了线性回归和Pearson相关。结果:对于血红蛋白测量值> 0.3 g/dl(相关性= 0.986 to 1),血液、生理盐水和唾液混合物中的血红蛋白浓度测量值被证明是准确的。对于血红蛋白测量值< 0.3 g/dl,血红蛋白值有小幅增加,这与溶液中的唾液浓度直接相关(相关性= 0.983 to 1)。用生理盐水稀释样品可以显著消除唾液的干扰。模拟临床情况。结论:便携式分光光度计可用于临床术前测量静脉血标本的血红蛋白值,术后测量采集的液体(包括出血)的血红蛋白值,从而实现了口腔颌面外科手术中出血量的高精度测量方法。
Estimation of Blood Loss in Oral and Maxillofacial Surgery by Measurements of Low Haemoglobin Levels in Mixtures of Blood, Saliva and Saline: a Laboratory Study.
Objectives: Estimating blood loss is an important factor in several surgical procedures. The accuracy of blood loss measurements in situations where blood is mixed with saliva and saline is however uncertain. The purpose of this laboratory study was to ascertain if blood loss measurements in mixtures of blood, saline, and saliva are reliable and could be applicable in a clinical setting.
Material and methods: Venous blood and resting saliva were collected from six volunteers. Saliva, saline, and combinations thereof were mixed with blood to obtain different concentrations. A portable spectrophotometer was first used to measure the haemoglobin concentration in undiluted venous blood followed by measurements of the haemoglobin concentration after each dilution. To examine the strength of linear relationships, linear regression and Pearson correlations were used.
Results: The measurements of haemoglobin concentrations in mixtures of blood, saline, and saliva were proven to be accurate for haemoglobin measurements > 0.3 g/dl (correlation = 0.986 to 1). For haemoglobin measurements < 0.3 g/dl, a small increase in haemoglobin values were reported, which was directly associated to the saliva concentration in the solution (correlation = 0.983 to 1). This interference of saliva was significantly eliminated by diluting the samples with saline, mimicking the clinical situation.
Conclusions: The results suggest that a portable spectrophotometer can be used clinically to preoperatively measure the haemoglobin value of a venous blood sample and postoperatively measure the haemoglobin value of the collected liquids, including shed blood, thereby achieving a highly accurate method of measuring blood loss during oral and maxillofacial surgery.