scholarly journals Automated Analysis of Cerebrospinal Fluid Cells Using Commercially Available Blood Cell Analysis Devices—A Critical Appraisal

Cells ◽  
2021 ◽  
Vol 10 (5) ◽  
pp. 1232
Author(s):  
Manfred Wick ◽  
Catharina Gross ◽  
Hayrettin Tumani ◽  
Brigitte Wildemann ◽  
Martin Stangel ◽  
...  

The analysis of cells in the cerebrospinal fluid (CSF) is a routine procedure that is usually performed manually using the Fuchs–Rosenthal chamber and cell microscopy for cell counting and differentiation. In order to reduce the requirement for manual assessment, automated analyses by devices mainly used for blood cell analysis have been also used for CSF samples. Here, we summarize the current state of investigations using these automated devices and critically review their limitations. Despite technical improvements, the lower limit for reliable leukocyte counts in the CSF is still at approximately 20 cells/µL, to be validated depending on the device. Since the critical range for clinical decisions is in the range of 5–30 cells/µL this implies that cell numbers < 30/µL require a manual confirmation. Moreover, the lower limit of reliable erythrocyte detection by automated devices is at approximately 1000/µL. However, even low erythrocyte numbers may be of clinical importance. In contrast, heavily hemorrhagic samples from neurosurgery may be counted automatically at an acceptable precision more quickly. Finally, cell differentiation by automated devices provides only a rough orientation for lymphocytes, granulocytes and monocytes. Other diagnostically important cell types such as tumor cells, siderophages, blasts and others are not reliably detected. Thus, although the automation may give a gross estimate sufficient for the emergency room situation, each CSF requires a manual microscopy for cytological evaluation for the final report. In conclusion, although automated analysis of CSF cells may provide a first orientation of the cell profile in an individual sample, an additional manual cell count and a microscopic cytology are still required and represent the gold standard.

2012 ◽  
Vol 136 (2) ◽  
pp. 194-198 ◽  
Author(s):  
Andrea Perné ◽  
Johannes A. Hainfellner ◽  
Irene Womastek ◽  
Alexander Haushofer ◽  
Thomas Szekeres ◽  
...  

Context.—The newest generation hematology analyzer, Sysmex XE-5000 (Sysmex Corporation, Kobe, Japan) is equipped with an improved body fluid analysis mode. Objective.—To evaluate the applicability of the XE-5000 analyzer to white blood cell (WBC) analysis in cerebrospinal fluid (CSF). Design.—A total of 425 routinely collected, consecutive CSF samples were included in the study. For a comparison of total WBC counts, the results of routine chamber counts were grouped into categories of 0 to 5 (n  =  330), &gt;5 to 10 (n  =  36), &gt;10 to 50 (n  =  39), &gt;50 to 200 (n  =  15), and &gt;200 (n  =  5) WBC/µL. Microscopic differential counts were performed using cytospins from 276 samples. Results were grouped according to the percent content of polymorphonuclear (PMN) cells, 0% to 25% (n  =  263), &gt;25% to 50% (n  =  7), &gt;50% to 75% (n  =  3), and &gt;75% to 100% (n  =  3) of WBC. Corresponding results of XE-5000 analysis were matched to these particular count categories. Results.—For total WBC counts, the proportions of samples correctly classified by the XE-5000 from the percentage groups described above were 88%, 47%, 72%, 93%, and 100%, respectively. After the two lowest count categories were combined into one range of 0 to 10 WBC/µL, matches increased to 95%. For PMN counts in the 0% to 25% group, 37% of samples were misclassified by the XE-5000. Conversely, for samples with microscopic PMN counts of more than 25%, there was a trend toward underestimation by the XE-5000. Mismatches were most pronounced in samples with fewer than 10 WBC/µL. Conclusions.—The Sysmex XE-5000 hematology analyzer yields valid total CSF cell counts and may be considered an acceptable alternative to the traditional chamber method, even for samples with low WBC counts. However, it cannot be recommended as a suitable alternative for manual differential cytologic workup.


2020 ◽  
pp. 68-72
Author(s):  
V.G. Nikitaev ◽  
A.N. Pronichev ◽  
V.V. Dmitrieva ◽  
E.V. Polyakov ◽  
A.D. Samsonova ◽  
...  

The issues of using of information and measurement systems based on processing of digital images of microscopic preparations for solving large-scale tasks of automating the diagnosis of acute leukemia are considered. The high density of leukocyte cells in the preparation (hypercellularity) is a feature of microscopic images of bone marrow preparations. It causes the proximity of cells to eachother and their contact with the formation of conglomerates. Measuring of the characteristics of bone marrow cells in such conditions leads to unacceptable errors (more than 50%). The work is devoted to segmentation of contiguous cells in images of bone marrow preparations. A method of cell separation during white blood cell segmentation on images of bone marrow preparations under conditions of hypercellularity of the preparation has been developed. The peculiarity of the proposed method is the use of an approach to segmentation of cell images based on the watershed method with markers. Key stages of the method: the formation of initial markers and builds the lines of watershed, a threshold binarization, shading inside the outline. The parameters of the separation of contiguous cells are determined. The experiment confirmed the effectiveness of the proposed method. The relative segmentation error was 5 %. The use of the proposed method in information and measurement systems of computer microscopy for automated analysis of bone marrow preparations will help to improve the accuracy of diagnosis of acute leukemia.


2020 ◽  
Vol 11 ◽  
Author(s):  
Dimitris G. Placantonakis ◽  
Maria Aguero-Rosenfeld ◽  
Abdallah Flaifel ◽  
John Colavito ◽  
Kenneth Inglima ◽  
...  

Neurologic manifestations of the novel coronavirus SARS-CoV-2 infection have received wide attention, but the mechanisms remain uncertain. Here, we describe computational data from public domain RNA-seq datasets and cerebrospinal fluid data from adult patients with severe COVID-19 pneumonia that suggest that SARS-CoV-2 infection of the central nervous system is unlikely. We found that the mRNAs encoding the ACE2 receptor and the TMPRSS2 transmembrane serine protease, both of which are required for viral entry into host cells, are minimally expressed in the major cell types of the brain. In addition, CSF samples from 13 adult encephalopathic COVID-19 patients diagnosed with the viral infection via nasopharyngeal swab RT-PCR did not show evidence for the virus. This particular finding is robust for two reasons. First, the RT-PCR diagnostic was validated for CSF studies using stringent criteria; and second, 61% of these patients had CSF testing within 1 week of a positive nasopharyngeal diagnostic test. We propose that neurologic sequelae of COVID-19 are not due to SARS-CoV-2 meningoencephalitis and that other etiologies are more likely mechanisms.


2020 ◽  
Vol 7 (6) ◽  
pp. 192136 ◽  
Author(s):  
Mats Olsson ◽  
Nicholas J. Geraghty ◽  
Erik Wapstra ◽  
Mark Wilson

Telomeres are repeat sequences of non-coding DNA-protein molecules that cap or intersperse metazoan chromosomes. Interest in telomeres has increased exponentially in recent years, to now include their ongoing dynamics and evolution within natural populations where individuals vary in telomere attributes. Phylogenetic analyses show profound differences in telomere length across non-model taxa. However, telomeres may also differ in length within individuals and between tissues. The latter becomes a potential source of error when researchers use different tissues for extracting DNA for telomere analysis and scientific inference. A commonly used tissue type for assessing telomere length is blood, a tissue that itself varies in terms of nuclear content among taxa, in particular to what degree their thrombocytes and red blood cells (RBCs) contain nuclei or not. Specifically, when RBCs lack nuclei, leucocytes become the main source of telomeric DNA. RBCs and leucocytes differ in lifespan and how long they have been exposed to ‘senescence' and erosion effects. We report on a study in which cells in whole blood from individual Australian painted dragon lizards ( Ctenophorus pictus ) were identified using flow cytometry and their telomere length simultaneously measured. Lymphocyte telomeres were on average 270% longer than RBC telomeres, and in azurophils (a reptilian monocyte), telomeres were more than 388% longer than those in RBCs. If this variation in telomere length among different blood cell types is a widespread phenomenon, and DNA for comparative telomere analyses are sourced from whole blood, evolutionary inference of telomere traits among taxa may be seriously complicated by the blood cell type comprising the main source of DNA.


Sensors ◽  
2016 ◽  
Vol 16 (11) ◽  
pp. 1836 ◽  
Author(s):  
Xiwei Huang ◽  
Yu Jiang ◽  
Xu Liu ◽  
Hang Xu ◽  
Zhi Han ◽  
...  

Lab on a Chip ◽  
2021 ◽  
Author(s):  
Wenxiu Zhao ◽  
Haibo Yu ◽  
Yangdong Wen ◽  
Hao Luo ◽  
Boliang Jia ◽  
...  

Counting the number of red blood cells (RBCs) in blood samples is a common clinical diagnostic procedure, but conventional methods are unable to provide the size and other physical properties...


1976 ◽  
Vol 22 (8) ◽  
pp. 1405-1407 ◽  
Author(s):  
P M Bayer ◽  
F Gabl ◽  
G Granditsch ◽  
K Widhalm ◽  
H Zyman ◽  
...  

Abstract We present a case of a 11/2-year-old boy with toxic enteritis, consecutive consumption coagulopathy, and sever brain damage. During the acute phase we found high activity of the BB isoenzyme of creatine kinase in cerebrospinal fluid, but not in the serum. Isoenzyme MM could also be found in the spinal fluid (37.9% of the total activity). We conclude that analysis for creatine kinase isoenzymes in spinal fluid is of clinical importance.


2019 ◽  
Vol 2 (1) ◽  
pp. 97-109 ◽  
Author(s):  
Jinchu Vijay ◽  
Marie-Frédérique Gauthier ◽  
Rebecca L. Biswell ◽  
Daniel A. Louiselle ◽  
Jeffrey J. Johnston ◽  
...  

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