Validation of a blood gas device for ionized calcium analysis in Holstein cows.
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[1] J. Aschenbach,et al. Changes in the Relationship between Ionized and Total Calcium in Clinically Healthy Dairy Cows in the Period around Calving , 2021, Animals : an open access journal from MDPI.
[2] K. Ikeda,et al. Validation of the bovine blood calcium checker as a rapid and simple measuring tool for the ionized calcium concentration in cattle , 2021, The Journal of veterinary medical science.
[3] P. Melendez,et al. The association of prepartum urine pH, plasma total calcium concentration at calving and postpartum diseases in Holstein dairy cattle. , 2020, Animal : an international journal of animal bioscience.
[4] H. Bang,et al. Effect of continued metabolic acidification into the first 3 days of lactation on blood calcium status in postpartum dairy cattle: A randomized controlled trial. , 2020, Journal of dairy science.
[5] K. Kawai,et al. Changes in ionized calcium concentration in the blood of dairy cows with peracute coliform mastitis , 2020, The Journal of veterinary medical science.
[6] C. Nelson,et al. Symposium review: Transition cow calcium homeostasis-Health effects of hypocalcemia and strategies for prevention. , 2020, Journal of dairy science.
[7] P. Constable,et al. Effects of pH and the plasma or serum concentrations of total calcium, chloride, magnesium, l‐lactate, and albumin on the plasma ionized calcium concentration in calves , 2019, Journal of veterinary internal medicine.
[8] T. Karapinar,et al. Evaluation of the i‐STAT analyzer for determination of ionized calcium concentrations in bovine blood , 2019, Veterinary clinical pathology.
[9] J. McArt,et al. Epidemiology of subclinical hypocalcemia in early-lactation Holstein dairy cows: The temporal associations of plasma calcium concentration in the first 4 days in milk with disease and milk production. , 2018, Journal of dairy science.
[10] D. Grove-White,et al. Effect of blood ionised calcium concentration at calving on fertility outcomes in dairy cattle , 2018, Veterinary Record.
[11] T. Stokol,et al. Method comparison and validation of a prototype device for measurement of ionized calcium concentrations cow-side against a point-of-care instrument and a benchtop blood-gas analyzer reference method. , 2018, Journal of dairy science.
[12] R. Trevethan,et al. Sensitivity, Specificity, and Predictive Values: Foundations, Pliabilities, and Pitfalls in Research and Practice , 2017, Front. Public Health.
[13] T. Overton,et al. Short communication: Relationship between methods for measurement of serum electrolytes and the relationship between ionized and total calcium and neutrophil oxidative burst activity in early postpartum dairy cows. , 2017, Journal of dairy science.
[14] D. Nydam,et al. Association between subclinical hypocalcemia in the first 3 days of lactation and reproductive performance of dairy cows. , 2017, Theriogenology.
[15] M. Maquivar,et al. Effect of serum calcium status at calving on survival, health, and performance of postpartum Holstein cows and calves under certified organic management. , 2017, Journal of dairy science.
[16] P. Constable. Acid-base assessment: when and how to apply the Henderson-Hasselbalch equation and strong ion difference theory. , 2014, The Veterinary clinics of North America. Food animal practice.
[17] C. Risco,et al. Effect of induced subclinical hypocalcemia on physiological responses and neutrophil function in dairy cows. , 2014, Journal of dairy science.
[18] J. Santos,et al. The association of serum metabolites with clinical disease during the transition period. , 2011, Journal of dairy science.
[19] J. Goff,et al. Prevalence of subclinical hypocalcemia in dairy herds. , 2011, Veterinary journal.
[20] A. Šimundić. Measures of Diagnostic Accuracy: Basic Definitions , 2009, EJIFCC.
[21] I. Lean,et al. Milk fever in dairy cows: a review of pathophysiology and control principles. , 2008, Veterinary journal.
[22] J. Goff. The monitoring, prevention, and treatment of milk fever and subclinical hypocalcemia in dairy cows. , 2008, Veterinary journal.
[23] S. Teerenstra,et al. Reliability of point-of-care hematocrit, blood gas, electrolyte, lactate and glucose measurement during cardiopulmonary bypass , 2006, Perfusion.
[24] M. Mohri,et al. Interpretation of bovine serum total calcium: effects of adjustment for albumin and total protein , 2005, Comparative Clinical Pathology.
[25] D. Altman,et al. Measuring agreement in method comparison studies , 1999, Statistical methods in medical research.
[26] P. Sartorelli,et al. Ionized calcium in calf serum: relation to total serum calcium, albumin, total protein and pH. , 1993, Zentralblatt fur Veterinarmedizin. Reihe A.
[27] S. Rehfeld,et al. Effect of pH and NaCl on measurements of ionized calcium in matrices of serum and human albumin with a new calcium-selective electrode. , 1984, Clinical chemistry.
[28] S. Lincoln,et al. Serum ionized calcium concentration in clinically normal dairy cattle, and changes associated with calcium abnormalities. , 1990, Journal of the American Veterinary Medical Association.