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Published in: Annals of Hematology 10/2017

01-10-2017 | Original Article

A prolonged microscopic observation improves detection of underpopulated cells in peripheral blood smears

Authors: Antonio La Gioia, Fabiana Fiorini, Maurizio Fumi, Marcello Fiorini, Ylenia Pancione, Lucia Rocco, Silvia Sale, Maria Bombara, Vincenzo Rocco

Published in: Annals of Hematology | Issue 10/2017

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Abstract

We evaluated an extended time in the microscopic review in samples in which the potential clinical information could be increased with respect to those that could be achieved with the usual laboratory methodologies. We used samples containing nucleated red blood cells in a small amount and cytopenic samples. For these purposes for each peripheral blood smear, the timing of eye-count differential was increased up to 20 min, regardless of the final number of cells which could be counted. In addition, an automated system for digital analysis of peripheral blood smears was employed and the number of cells counted was brought up to 1000 leukocytes. In both manual and automatic light microscopy extended observation, we obtained more diagnostic information in respect to those with routine or standard methods. Both automated and manual increase systems of the timing for microscopic review are useful tools to find diagnostic information that otherwise would be lost using normal and standard procedures. So, these methods should be used especially when there is a higher pre-test probability for discovery of pathological cells.
Literature
1.
go back to reference Briggs C (2009) Quality counts: new parameters in blood cell counting. Int J Lab Hematol 31:277–297CrossRefPubMed Briggs C (2009) Quality counts: new parameters in blood cell counting. Int J Lab Hematol 31:277–297CrossRefPubMed
2.
go back to reference Barnes PW, McFadden SL, Machin SJ et al (2005) The International Consensus Group for Hematology Review: suggested criteria for action following automated CBC and WBC differential analysis. Lab Hematol 11:83–90CrossRefPubMed Barnes PW, McFadden SL, Machin SJ et al (2005) The International Consensus Group for Hematology Review: suggested criteria for action following automated CBC and WBC differential analysis. Lab Hematol 11:83–90CrossRefPubMed
5.
go back to reference Comar SR, Malvezzi M, Pasquini R (2014) Are the review criteria for automated complete blood counts of the International Society of Laboratory Hematology suitable for all hematology laboratories? Rev Bras Hematol Hemoter 36(3):219–225CrossRefPubMedPubMedCentral Comar SR, Malvezzi M, Pasquini R (2014) Are the review criteria for automated complete blood counts of the International Society of Laboratory Hematology suitable for all hematology laboratories? Rev Bras Hematol Hemoter 36(3):219–225CrossRefPubMedPubMedCentral
6.
go back to reference Pierre RV (2002) Peripheral blood film review. The demise of the eyecount leukocyte differential. Clin Lab Med 22(1):279–297CrossRefPubMed Pierre RV (2002) Peripheral blood film review. The demise of the eyecount leukocyte differential. Clin Lab Med 22(1):279–297CrossRefPubMed
7.
go back to reference Novis DA, Walsh M, Wilkinson D et al (2006) Laboratory productivity and the rate of manual peripheral blood smear review. A College of American Pathologists Q-probes study of 95141 complete blood count determinations performed in 263 institutions. Arch Pathol Lab Med 130:596–601PubMed Novis DA, Walsh M, Wilkinson D et al (2006) Laboratory productivity and the rate of manual peripheral blood smear review. A College of American Pathologists Q-probes study of 95141 complete blood count determinations performed in 263 institutions. Arch Pathol Lab Med 130:596–601PubMed
8.
go back to reference Tatsumi N, Pierre RV (2002) Automated image processing. Past, present, and future of blood cell morphology identification. Clin Lab Med 22:299–315CrossRefPubMed Tatsumi N, Pierre RV (2002) Automated image processing. Past, present, and future of blood cell morphology identification. Clin Lab Med 22:299–315CrossRefPubMed
9.
go back to reference Briggs C, Longair I, Slavik M, Thwaite K, Mills R, Thavaraja V et al (2009) Can automated blood film analysis replace the manual differential. An evaluation of the CellaVision DM96 automated image analysis system? Int J Lab Hematol 31:48–60CrossRefPubMed Briggs C, Longair I, Slavik M, Thwaite K, Mills R, Thavaraja V et al (2009) Can automated blood film analysis replace the manual differential. An evaluation of the CellaVision DM96 automated image analysis system? Int J Lab Hematol 31:48–60CrossRefPubMed
10.
go back to reference Rümke CL (1985) Statistical reflections on finding atypical cells. Blood Cells 11:141–144PubMed Rümke CL (1985) Statistical reflections on finding atypical cells. Blood Cells 11:141–144PubMed
11.
go back to reference CLSI (2007) Reference leukocyte (WBC) differential count (proportional) and evaluation of instrumental methods; approved standard, 2nd edn. CLSI document H20-A2. Wayne, Clinical and Laboratory Standards Institute CLSI (2007) Reference leukocyte (WBC) differential count (proportional) and evaluation of instrumental methods; approved standard, 2nd edn. CLSI document H20-A2. Wayne, Clinical and Laboratory Standards Institute
12.
13.
go back to reference Constantino BT, Cogionis B (2000) Nucleated RBCs-significance in the peripheral blood film. Lab Med 31(4):223–229CrossRef Constantino BT, Cogionis B (2000) Nucleated RBCs-significance in the peripheral blood film. Lab Med 31(4):223–229CrossRef
14.
go back to reference Hwang DH, Dorfman DM, Hwang DG et al (2016) Automated nucleated RBC measurement using the sysmex XE-5000 hematology analyzer: frequency and clinical significance of the nucleated RBCs. Am J Clin Pathol 145(3):379-384 Hwang DH, Dorfman DM, Hwang DG et al (2016) Automated nucleated RBC measurement using the sysmex XE-5000 hematology analyzer: frequency and clinical significance of the nucleated RBCs. Am J Clin Pathol 145(3):379-384
15.
go back to reference Danise P, Maconi M, Barrella F et al (2011) Evaluation of nucleated red blood cells in the peripheral blood of hematological diseases. Clin Chem Lab Med 50(2):357–360PubMed Danise P, Maconi M, Barrella F et al (2011) Evaluation of nucleated red blood cells in the peripheral blood of hematological diseases. Clin Chem Lab Med 50(2):357–360PubMed
16.
go back to reference La Gioia S, Seghezzi M, Barcella V et al (2016) Erythroblastaemia in natalizumab-treated patients with multiple sclerosis. Mult Scler Relat Disord 8:141–144CrossRefPubMed La Gioia S, Seghezzi M, Barcella V et al (2016) Erythroblastaemia in natalizumab-treated patients with multiple sclerosis. Mult Scler Relat Disord 8:141–144CrossRefPubMed
17.
go back to reference Bridel C, Beauverd Y, Samii K et al (2015) Hematologic modifications in natalizumab-treated multiple sclerosis patients: an 18-month longitudinal study. Neuroimmunol Neuroinflamm 2(4):e123CrossRef Bridel C, Beauverd Y, Samii K et al (2015) Hematologic modifications in natalizumab-treated multiple sclerosis patients: an 18-month longitudinal study. Neuroimmunol Neuroinflamm 2(4):e123CrossRef
18.
go back to reference Hu G, Guan R, Li L (2016) Nucleated red blood cell count in maternal peripheral blood and hypertensive disoders in pregnant women. Am J Med Sci 351(2):140–146CrossRefPubMed Hu G, Guan R, Li L (2016) Nucleated red blood cell count in maternal peripheral blood and hypertensive disoders in pregnant women. Am J Med Sci 351(2):140–146CrossRefPubMed
19.
go back to reference Constantino BT, Bessie C (2000) Nucleated RBCs—significance in the peripheral blood film. Lab Med 31(4):223–229CrossRef Constantino BT, Bessie C (2000) Nucleated RBCs—significance in the peripheral blood film. Lab Med 31(4):223–229CrossRef
20.
go back to reference Buoro S, Apassiti Esposito S, Balboni F et al (2015) Stato dell’arte della diagnostica ematologica nei servizi di Medicina di Laboratorio in Italia. Biochim Clin 29(1):25–41 Buoro S, Apassiti Esposito S, Balboni F et al (2015) Stato dell’arte della diagnostica ematologica nei servizi di Medicina di Laboratorio in Italia. Biochim Clin 29(1):25–41
21.
go back to reference Cui W, Wu W, Wang X, Wang G et al (2010) Development of the personalized criteria for microscopic review following four different series of hematology analyzer in a Chinese large scale hospital. Chin Med J 123(22):3231–3237PubMed Cui W, Wu W, Wang X, Wang G et al (2010) Development of the personalized criteria for microscopic review following four different series of hematology analyzer in a Chinese large scale hospital. Chin Med J 123(22):3231–3237PubMed
22.
go back to reference Pratumvinit B, Wongkrajang P, Reesukumal K et al (2013) Validation and optimization of criteria for manual smear review following automated blood cell analysis in a large university hospital. Arch Pathol Lab Med 137(3):408–414CrossRefPubMed Pratumvinit B, Wongkrajang P, Reesukumal K et al (2013) Validation and optimization of criteria for manual smear review following automated blood cell analysis in a large university hospital. Arch Pathol Lab Med 137(3):408–414CrossRefPubMed
23.
go back to reference Felgar RE, Ryan DH (2005) Automated analysis of blood cells. In: Hoffman R, Benz E, Shattil S et al (eds) Hematology: basic principles and practice, 4th edn. Elsevier Inc, Philadelphia, pp 2673–2686 Felgar RE, Ryan DH (2005) Automated analysis of blood cells. In: Hoffman R, Benz E, Shattil S et al (eds) Hematology: basic principles and practice, 4th edn. Elsevier Inc, Philadelphia, pp 2673–2686
24.
go back to reference Froom P, Barak M (2015) Auto-validation of complete blood counts in an outpatient’s regional laboratory. Clin Chem Lab Med 53(2):275–279CrossRefPubMed Froom P, Barak M (2015) Auto-validation of complete blood counts in an outpatient’s regional laboratory. Clin Chem Lab Med 53(2):275–279CrossRefPubMed
25.
go back to reference Senn JS, Messner HA, Pinkerton PH et al (1982) Peripheral blood blast cell progenitors in human preleukemia. Blood 59(1):106–109PubMed Senn JS, Messner HA, Pinkerton PH et al (1982) Peripheral blood blast cell progenitors in human preleukemia. Blood 59(1):106–109PubMed
Metadata
Title
A prolonged microscopic observation improves detection of underpopulated cells in peripheral blood smears
Authors
Antonio La Gioia
Fabiana Fiorini
Maurizio Fumi
Marcello Fiorini
Ylenia Pancione
Lucia Rocco
Silvia Sale
Maria Bombara
Vincenzo Rocco
Publication date
01-10-2017
Publisher
Springer Berlin Heidelberg
Published in
Annals of Hematology / Issue 10/2017
Print ISSN: 0939-5555
Electronic ISSN: 1432-0584
DOI
https://doi.org/10.1007/s00277-017-3073-z

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