Novel Simple Approach for Differentiating Concentrated or Diluted Blood Samples, Hematological Disorders and Organ Dysfunctions in Acute Care Settings-A Global Perspective

Authors

  • D.J. Govani Final Year Medical Student, B J Medical College and New Civil Hospital, Ahmedabad
  • R.A. Trambadia Final Year Medical Student, B J Medical College and New Civil Hospital, Ahmedabad
  • A.S. Bathani Mrunal Hospital, Bechar Rd, Valsad, Gujarat 396001, India
  • K.B. Swamy Faculty of Medicine, Lincoln University, Kuala Lumpur, Malaysia
  • P.K. Midha J. Watumull Global Hospital & Research Centre, Delwara Road, Mount Abu, Rajasthan 307501, India affiliated to Medical Faculty of God Fatherly Spiritual University, Mount Abu, Rajasthan
  • R.V. Patel Departments of Pediatrics and Pediatric Surgery, Postgraduate Institute of Child Health & Research and KT Children Govt University Teaching Hospital, Rajkot 360001, Gujarat, India

DOI:

https://doi.org/10.12974/2312-5411.2023.10.01

Keywords:

Acute myeloid leukemia, Acute infections, Cancer chemotherapy, Dilutional anemia, Liver disease, Kidney disease, Pathological anemia

Abstract

Dilution or concentration of blood sample during patient receiving intravenous fluids or at presentation of disease with severe volume depletion is common clinical scenario. There are various gold standard advanced technological time-consuming elective methods like radioactive chromium method, radioactive iodine method, etc which are useful for diagnosis of dilution or concentration. But during routine examination especially at smaller peripheral centres or low-income countries where these facilities are lacking, it is difficult to check that either sample is diluted, concentrated or due to altered pathological diseased state as both will give modified results than the actual state of the patient’s current pathophysiological condition. In acute care trauma settings, intensive or critical care units and high dependency units with critically ill patients many of them having multiple organ dysfunction and associated co-morbidities, many of the decisions about their care will be based on the results of hematological and biochemical profile and the time is very crucial to take decision and act in immediately. The simple innovative approach described allows quick and accurate decision making based on correct interpretation of the investigative findings.

References

Válka J, Čermák J. Differential diagnosis of anemia. Vnitr Lek. 2018; 64(5): 468-475. English. https://doi.org/10.36290/vnl.2018.067

Thachil J, Bates I. Approach to the Diagnosis and Classification of Blood Cell Disorders. Dacie and Lewis Practical Haematology. 2017: 497-510. https://doi.org/10.1016/B978-0-7020-6696-2.00023-0

Son MBF, Friedman K, COVID-19: Multisystem inflammatory syndrome in children (MIS-C) clinical features, evaluation, and diagnosis. UpToDate for Wolters Kluwer, https://www.uptodate.com/contents/covid-19-multisystem-inflammatory-syndrome-in-children-mis-c-clinical-features-evaluation-and-diagnosis#H3106676936 Mar 07, 2023.

World Health Organization. Director-General's remarks at the media briefing on 2019-nCoV on 11 February 2020. Available at: http://www.who.int/dg/speeches/detail/who-director-general-s-remarks-at-the-media-briefing-on-2019-ncov-on-11-february-2020 (Accessed on February 12, 2020).

laure-Del Granado R, Mehta RL. Fluid overload in the ICU: evaluation and management. BMC Nephrol 2016; 17: 109. https://doi.org/10.1186/s12882-016-0323-6

Iqbal MS, Tabassum A, Arbaeen AF, Qasem AH, Elshemi AG, Almasmoum H. Preanalytical Errors in a Hematology Laboratory: An Experience from a Tertiary Care Center. Diagnostics (Basel). 2023; 13(4): 591. https://doi.org/10.3390/diagnostics13040591

Silver HM, Seebeck MA, Cowett RM, Patterson KY, Veillon C. Red cell volume determination using a stable isotope of chromium. J Soc Gynecol Investig. 1997; 4(5): 254-8. https://doi.org/10.1177/107155769700400506

Mayerhöfer TG, Pipa AV, Popp J. Beer's Law-Why Integrated Absorbance Depends Linearly on Concentration. Chemphyschem. 2019; 20(21): 2748-2753. https://doi.org/10.1002/cphc.201900787

Study Suggests Medical Errors Now Third Leading Cause of Death in the U.S. https://www.hopkinsmedicine.org/news/media/releases/study_suggests_medical_errors_now_third_leading_cause_of_death_in_the_us

Makary MA, Daniel M. Medical error-the third leading cause of death in the US. BMJ. 2016; 353: i2139. PMID: 27143499. https://doi.org/10.1136/bmj.i2139

Gianoli GJ. Medical Error Epidemic Hysteria. Am J Med. 2016; 129(12): 1239-1240. Epub 2016 Jul 16. PMID: 27430404. https://doi.org/10.1016/j.amjmed.2016.06.037

Roel E, García-Díez M, Borrás Bermejo B. Errores médicos, la tercera causa de muerte en Estados Unidos? [Medical errors, the third leading cause of death in the United States?]. J Healthc Qual Res. 2019; 34(6): 339-341. https://doi.org/10.1016/j.jhqr.2019.06.005

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Published

2023-07-19

How to Cite

Govani, D. ., Trambadia, R. ., Bathani, A. ., Swamy, K. ., Midha, P. ., & Patel, R. . (2023). Novel Simple Approach for Differentiating Concentrated or Diluted Blood Samples, Hematological Disorders and Organ Dysfunctions in Acute Care Settings-A Global Perspective. Journal of Hematology Research, 10, 1–5. https://doi.org/10.12974/2312-5411.2023.10.01

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