• Title/Summary/Keyword: Blood gas analysis

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Comparison of the bovine blood gas parameters produced with three types of portable blood gas analyzers

  • Ro, Younghye;Choi, Woojae;Hong, Leegon;Kim, Eunkyung;Choe, Eunhui;Kim, Danil
    • Journal of Veterinary Science
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    • v.23 no.4
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    • pp.60.1-60.6
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    • 2022
  • Background: A definite diagnosis should be made in the bovine practice field, however, it was difficult to perform laboratory analysis immediately. Currently, three types of portable blood gas analyzers are available in Korea. Objectives: This study aimed to evaluate the correlations among these three analyzers. Methods: Seventy-two plasma samples from Holstein-Friesian cows were used for blood gas analysis, and three instruments (EDAN i15 Vet, VETSCAN i-STAT, and EPOC) were operated simultaneously. Moreover, plasma calcium levels were compared between these portable analyzers and blood chemistry device, which is usually used in a laboratory environment. Pearson analysis was performed to confirm the correlation of each parameter produced with the three instruments and blood chemistry analyzer. Results: As results, high correlation was observed in parameters of pH, pO2, potassium ion, ionized calcium, and glucose (p < 0.001, r > 0.7). In addition, pCO2 showed a moderate correlation among the three analyzers (p < 0.001, r > 0.5), and there was no correlation among all instruments for sodium ions. There was also a high correlation between ionized calcium from the three portable devices and total calcium from the biochemistry analyzer (p < 0.001, r > 0.9). Conclusions: In conclusion, there was a high correlation between results from the three different blood gas analyzers used in the bovine clinical field in Korea. Thus, a consistent diagnosis can be made even with different equipment if the operator is aware of the strengths and weaknesses of each piece of equipment and operates it properly.

Assessment of bovine blood sample stability for complete blood count and blood gases and electrolytes analysis during storage

  • Espiritu, Hector M.;Faruk, Shohel Al;Lee, Gyeong-jae;Lopez, Bryan Irvine M.;Lee, Sang-suk;Cho, Yong-il
    • Korean Journal of Veterinary Service
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    • v.42 no.4
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    • pp.265-274
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    • 2019
  • Delayed arrival of blood samples from the field and a large number of samples delivered often causes delay in sample analysis leading to inaccurate measurements. Therefore, this study aimed to assess whether prolonged storage in refrigerator could influence the stability of cattle blood samples and to establish an optimal time limit for complete blood count (CBC) parameters and blood gas and electrolyte (BGE) parameters analyses. Samples collected from healthy cows were tested immediately for CBC and BGE using automated hematology, blood gas and electrolyte analyzers. Samples were kept in refrigerator at 4℃ and analyzed after 6 h, 12 h, 24 h, 48 h, 72 h, 120 h, and 192 h of storage. Mean differences between observations were assessed at 5% significance level using ANOVA and Duncan's multiple range test. Total CBC parameters and the platelet profile remained stable for 192 h, except for MCHC. Among leukocyte-related counts, NEU and EOS remained stable for 192 hours. WBC and LYM, and MONO values produced inconsistent measurements which recovered its initial measurement after 12 h and 24 h of storage, respectively, then remained stable until 120 h. Among the blood gas indices, PCO2, PO2, tCO2, and BE showed declining and significant changes over time, but pH, tHb, and SO2 remained stable for 192 h. Electrolyte status in the blood showed that ions are unstable and tend to change in as early as 6 h of storage. This study established that cattle blood specimens for CBC analysis can be stored for 120 h at 4℃, but specimens for BGE analyses must be tested within 6 to 24 h.

Blood Toluene Concentration of Shoes Factory's Workers Exposed to Toluene (신발제조업 근로자의 톨루엔 노출정도에 따른 혈중 톨루엔 농도분석)

  • 양정선;강성규;정호근
    • YAKHAK HOEJI
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    • v.37 no.5
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    • pp.458-462
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    • 1993
  • Blood toluene concentrations of thirty nine Korean toluene-exposed workers in shoes making factory were checked by headspace-gas chromatographic analysis. Air toluene concentrations in each worker's working region also checked by personal sampler during workshift and analyzed by gas chromatography. The range of blood toluene concentration was 0.15-0.84mg/L. The range of toluene concentration of each worker's working area was 8.46-189.9ppm. The correlation between blood and air concentration of toluene was 0.824.

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Study of pH and Gas Analysis of Umbilical Arterial Blood and Apgar Score as Indicators of Newborn Health (신생아 건강지표로서 제대동맥혈의 pH와 Gas Analysis 및 Apgar Score에 관한 연구)

  • Cho, Dae-Hyun;Lee, Mi-Na;Koh, Min-Whan;Lee, Tae-Hyung;Lee, Sung-Ho
    • Journal of Yeungnam Medical Science
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    • v.8 no.1
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    • pp.98-106
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    • 1991
  • Apgar score is most widely used evaluating indicator of newborn health, but it is very Subjective. Umbilical cord blood gas analysis is more objective and effective than Apgar score in evaluation of newborn status. Cord blood gas was changed slightly by processing of time after fetal birth. This study was undertaken to observe objectiveness and effectiveness of umbilical arterial blood gas analysis and effects of time interval of cord clamping to newborn health with 122 pregnant women and their babies. We observed following results : 1. There were poor correlation between Apgar score and umbilical cord arterial blood analysis in evaluating of newborn health (P>0.05). 2. There was no clinical significance of Apgar score or umbilical arterial blood gas analysis as single indicator in evaluating of newborn health (P>0.05). 3. Gas analysis and pH of umbilical arterial blood was more helpful in evaluating of newborn health than Apgasr score. 4. There were no significant effects of time interval of umbilical cord clamping to newborn health. 5. If there were no indications of early umbilical cord clamping, cord blood sampling at immediately after birth without cord clamping was more effective to evaluate newborn status.

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Availability of Capillary Blood Gas Analysis in Neonate (신생아에서 모세혈 가스분석 검사의 유용성)

  • Jeong, Jong Tae;Yun, Su Young;Lee, Ran;Hyun, Jae Ho;Jung, Gyu Young
    • Clinical and Experimental Pediatrics
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    • v.45 no.4
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    • pp.449-453
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    • 2002
  • Purpose : Arterial blood gas analysis is frequently performed in neonatal intensive care unit (NICU) to evaluate ventilation and the metabolic state of critically ill infants. In occasions when umbilical arterial catheterization is not available, frequent arterial puncture is mandatory. This requires some technical skill and may occasionally have side effects. So we studied the validity of capillary blood gas analysis which can be performed conveniently compared with arterial blood. Methods : Twenty-four neonates admitted to NICU during April to Aug. 2001 were studied. They were more than two weeks old without indwelling arterial catheters. Thirty-six times, simultaneous arterial, and capillary blood gases were drawn by puncture and the pH, $pCO_2$ and $pO_2$ of each sample was measured. Blood pressure and body temperature was checked before sampling to rule out impaired peripheral circulation. Capillary blood was collected from warmed heels. Results : There was a strong correlation between capillary and arterial pH(r=0.91, P<0.05). The absolute value of the difference between arterial and capillary pH was less than 0.05. Also capillary $pCO_2$ showed correlation with arterial $pCO_2$(r=0.77, P<0.05). Despite a statistically significant correlation between capillary and arterial $pO_2$(r=0.68, P<0.05), the absolute value of the difference was more than 10 mmHg in 92% of cases. Conclusion : Capillary blood gases accurately reflected arterial pH and $pCO_2$ and showed a relative correlation with $pO_2$. Capillary blood gas analysis can be a useful alternative to arterial blood when continuation of the umbilical arterial catheter is no longer available.

Non-invasive Transcutaneous pCO2 Gas Monitoring System for Arterial Blood Gas Analysis

  • Bang, Hyang-Yi;Kang, Byoung-Ho;Eum, Nyeon-Sik;Kang, Shin-Won
    • Journal of Sensor Science and Technology
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    • v.20 no.5
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    • pp.311-316
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    • 2011
  • Monitoring the carbon dioxide concentration in arterial blood is vital for the evaluation and prevention of pulmonary disease. Yet, domestic pure arterial blood carbon dioxide sensor technologies are not being developed, instead all sensors are imported. In this paper, we develop a real time monitoring system for arterial blood partial pressure of carbon dioxide($pCO_2$) gas from the wrist by using a carbon micro-heater. The micro-heater was fabricated with a thickness of 0.3 ${\mu}m$ in order to collect the carbon dioxide under the skin. The micro-heater has been designed to perform temperature compensation in order to prevent damage to the skin. Two clinical trials of the system were undertaken. As a result, we demonstrated that a portable, transcutaneous carbon dioxide analysis($TcpCO_2$) device produced domestically is possible. In addition, this system reduced the analysis time significantly. Carbon films could reduce the unit price of these sensors by replacing the gold film used in foreign models. Also, we developed a real time monitoring system which can be used with optical biosensors for medical diagnostics as well as gas sensors for environmental monitoring.

Analysis of Residual Furan in Human Blood Using Solid Phase Microextraction-Gas Chromatography/Mass Spectrometry (SPME-GC/MS)

  • Lee, Yun-Kyung;Jung, Seung-Won;Lee, Sung-Joon;Lee, Kwang-Geun
    • Food Science and Biotechnology
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    • v.18 no.2
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    • pp.379-383
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    • 2009
  • For an accurate risk assessment of furan, a potential human carcinogen, levels must be determined in human blood plasma using a simple and robust assay. In this study, solid phase microextraction-gas chromatography/mass spectrometry (SPME-GC/MS) was used to analyze blood plasma levels of furan in 100 healthy individuals who consumed a normal diet. The subjects were 30 to 70 years of age and 51% were women. Ultimately, an analytical method was established for analyzing furan in human blood. The limit of quantification (LOQ) and furan recovery rate in blood were 1.0 ppb and 104%, respectively. Finally, furan was detected in 21 individuals (13 males, 8 females) with levels ranging up to 17.86 ppb (ng furan/g food).

Implementation on the Portable Blood Gas Analyzer and Performance Estimation (휴대형 혈액가스분석 시스템의 구현 및 성능평가)

  • Jeong, Do-Un;Jeon, Gye-Rok;Bae, Jin-Woo;Kim, Gil-Jung;Sim, Yoon-Bo
    • Journal of Sensor Science and Technology
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    • v.12 no.1
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    • pp.34-43
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    • 2003
  • In this study, we implemented the measurement of pH, $pO_2$, $pCO_2$ of the arterial blood on a portable blood gas analysis system. This system is consist of two parts of hardware and software. The hardware part is divided into a fluidic mechanism and an electronic circuit unit. The system program is composed of operating, washing, correcting, and measuring routines. Both of 1-point and 2-point calibration schemes were used to enhance the accuracy of the measurement. In order to evaluate the performance of the developed system, we measured and performed statistical analysis on the characteristics of the sensing electrode response. As a result, coefficient variation was within 1.12, and maximum error was within 1.298%. We confirmed development possibility of portable blood gas analyzer.

Quantitative analysis of lee Amino Acids in Human Blood Seum by Gas-Liquid Chromatography

  • Seo, Bae-Seok;Kim, Ui-Rak;Lee, Kyu-Yong
    • Nuclear Engineering and Technology
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    • v.7 no.1
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    • pp.3-8
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    • 1975
  • The quantitative analysis of various kinds of free amino acids contained in blood serum of patients with chronic mandible ostities, epidermic hemorrhagic fever, chronic renal failure and liver cirrhosis were measured with the gas-liquid chromatography (G. L. C.). The results compared with the quantity of free amino acids of healthy persons. It was found that the quantity of free amino acids were differently contained in blood serum in accordance with kinds of patients.

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Effects of Malotilate on Levels of Ethanol and Acetaldehyde in Blood (혈중 Ethanol 및 Acetaldehyde의 농도에 미치는 Malotilate의 영향)

  • 허인회;이상준;주왕기;허문영;김형춘;송계용
    • YAKHAK HOEJI
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    • v.31 no.6
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    • pp.399-401
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    • 1987
  • A gas chromatographic utilizing procedure headspace gas analysis is performed to study effect of malotilate on levels of ethanol and its metabolite acetaldehyde in a blood sample from the rat. The concentrations of ethanol and acetaldehyde were determined simultaneously at 1, 3, and 6h after ethanol administration. Our results would suggest the malotilate could promote clearances of ethanol and acetaldehyde in blood, and could accelerate it, especially, in $CCl_4$ pretreated rats.

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