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Ali Maleki , Mehrdad Payandeh , Fatemeh Nadali ,
Volume 73, Issue 9 (December 2015)
Abstract

Background: Presently, the graphical data of blood cells (histograms and cytograms or/ scattergrams) that they are usually available in all modern automated hematology analyzers are an integral a part of automated complete blood count (CBC). To find incorrect results from automated hematology analyzer and establish the samples that require additional analysis, Laboratory employees will use those data for quality control of obtaining results, to assist identification of complex and troublesome cases.

Methods: During this descriptive analytic study, in addition to erythrocyte graphs from variety of patients, referring from March 2013 to Feb 2014 to our clinical laboratory, Zagros Hospital, Kermanshah, Iran, are given, the papers published in relevant literature as well as available published manuals of automatic blood cell counters were used. articles related to the key words of erythrocyte graphs and relevant literature as well as available published manuals of automatic blood cell counters were searched from valid databases such as Springer Link, google scholar, Pubmed and Sciencedirect. Then, the articles related to erythrogram, erythrocyte histogram and hematology analyzer graphs are involved in diagnosis of hematological disorder were searched and selected for this study.

Results: Histograms and different automated CBC parameter become abnormal in various pathologic conditions, and can present important clues for diagnosis and treatment of hematologic and non-hematologic disorders. In several instances, these histograms have characteristic appearances in an exceedingly wide range of pathological conditions. In some hematologic disorders like iron deficiency or megaloblastic anemia, a sequential histogram can clearly show the progressive treatment and management.

Conclusion: These graphical data are often accompanied by other automated CBC parameter and microscopic examination of peripheral blood smears (PBS), and can help in monitoring and interpretation of abnormal morphological changes. In the diagnosis and monitoring of anemias, analysis of histograms could also be considered as a new parameter in the combine with red blood cell indices. Histograms ought to use as a screening tool, and not considered diagnostic for pathological conditions.


Hosna Moradi, Nasser Behpour, Mehrdad Payandeh, Mansoor Khazaei ,
Volume 82, Issue 10 (January 2025)
Abstract

Background: With the rising survival rates among individuals with colorectal cancer, improving quality of life and reducing the risk of recurrence have become key priorities in supportive care. High-intensity interval training (HIIT), due to its pronounced effects on physical function, inflammatory markers, and tumor-related indicators, has emerged as a promising intervention. This study aimed to evaluate the effect of an eight-week high-intensity interval training (HIIT) program on serum carcinoembryonic antigen (CEA) levels, quality of life, and sleep quality in female survivors of colorectal cancer.
Methods: This quasi-experimental study employed a pretest-posttest control group design and was conducted from July to September 2021 at the Kosar Women’s Sports Complex in Kermanshah, Iran. Twelve female colorectal cancer survivors (mean age=55.66±4.99 years) were randomly assigned to either an experimental (n=6) or control group (n=6). The experimental group participated in a supervised HIIT program for eight weeks. Sleep quality was assessed using the Pittsburgh Sleep Quality Index (PSQI), and quality of life was evaluated using the World Health Organization Quality of Life (WHOQOL) questionnaire.
Results: Post-intervention analysis revealed a non-significant increase in CEA levels in the experimental group (mean±SD: 2.49±0.79; CI95%: 1.66-3.33; P=0.456), while the control group showed a statistically significant reduction (mean±SD: 1.04±0.22; CI95%: 0.84-1.25; P=0.044). However, significant improvements were observed in both sleep quality (mean±SD: 5.00±2.19; CI95%: 3.27-6.72; P=0.027) and quality of life (mean±SD: 77±9.40; CI95%: 84.11-88; P=0.028) within the experimental group. No significant changes were reported in the control group for either variable.
Conclusion: Findings suggest that high-intensity interval training may serve as an effective non-pharmacological intervention for enhancing sleep quality and overall quality of life in female colorectal cancer survivors. Nevertheless, the effects of HIIT on biological markers such as CEA require further investigation through larger and longer-term studies.


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