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Hamid Reza Choobdari , Mohammad Ali Gharaat ,
Volume 81, Issue 10 (January 2024)
Abstract

Stroke is a medical condition in which occluded blood flow to the brain causes cell necrosis. The main types of stroke are ischemic (due to lack of blood flow with much higher prevalence) and hemorrhagic (due to bleeding with low prevalence). Ischemic stroke is caused by the reduction of blood to the brain tissue or complete occlusion of brain vessels by a blood clot following arterial plaques rapture of cerebral arteries due to atherosclerosis, cerebral myocardial infarction and small vascular lesion infarction. Inflammatory reactions, increased oxidative stress, cell death and autophagy are the most aggravating factors in this condition. Instead, hemorrhagic stroke is caused by spontaneous intracranial hemorrhage and subarachnoid hemorrhage, highly common in men. To prevent the possible causes of stroke, investigators attempted to study about the ways that may decrease the risk factors such as trauma, high arterial hypertension, alcohol, low-density lipoprotein and glycerides, tobacco and drugs. Physical activity is a potent inhibitory factor which reported to be effective in prevention of stroke and post-stroke rehabilitation. Aerobic, combined or strenuous activities protect brain tissue by balancing apoptotic and anti-apoptotic pathways, stimulating angiogenesis, reducing oxidative stress, increasing antioxidant activity, optimizing Integrity and preservation of the blood-brain barrier, improving nerve functions and preventing neuronal death. The mechanisms involved in rehabilitation after ischemic stroke with physical activity mostly refer to improved dendrites and synapses, synaptic flexibility, regulation of inotropic receptors with glutamate, increased BDNF, GAP43 and insulin-like growth factor. In patients with cognitive impairments following acute ischemic stroke, high intensity exercise improves processing timing and attention allocation, self-independence, walking ability, aerobic power and reduces memory degradation. Moreover, early start of physical activity after ischemic stroke inhibits the initial physiological response to stroke and prevents optimal recovery. In contrary, reports show positive effects of onset of physical exercise a day after stroke. In hemorrhagic stroke, exercise reduces systolic blood pressure, moderates resting blood pressure via parasympathetic regulations and triggers angiogenesis in the nervous system. Light to moderate or long-term physical training is recommended in comparison to short-term high-intensity training. In addition, early onset of physical activity during recovery after stroke may be beneficial.

Yasser Hasanzadeh, Zahra Sagheb Movafagh , Atena Sahrabeygi , Hamid Heidarian Miri , Masoumeh Gharib ,
Volume 81, Issue 10 (January 2024)
Abstract

Background: Identifying the epidemiological aspects of central nervous system (CNS) tumors is the first step in implementing management protocols to control the condition of these tumors. We aimed to examine the epidemiology and histopathology of both benign and malignant tumors of the CNS in one of the referral and university centers in the east of Iran.
Methods: This cross-sectional study was conducted on all files of patients admitted to Qaem Hospital in Mashhad City, Iran, in a period of 10 years from March 2009 to February 2018 with a definitive diagnosis of benign or malignant tumors of the CNS, including tumors of the brain, cerebellum, spinal cord, or meningeal membranes. Information sources included the patients' physical files and the hospital information system (HIS). The statistical software SPSS version 28.0 for Windows (IBM SPSS, Armonk, New York, USA) was used for the statistical analysis.
Results: In total, 775 patients with benign and 771 patients with malignant CNS tumors were included in the study. Regarding epidemiological aspects of benign tumors, the incidence rate of women was almost twice that of men (68.47% versus 31.53%), with an overall average age of 45.31±19.81 years. The most common benign tumors were meningioma (72.77%), followed by schwannoma (13.67%). Regarding malignant brain tumors, the mean age of affected patients was 36.64±19.67 years, with males accounting for 53.04% of cases and females for 46.96%. The most frequent type of tumor was glioblastoma (32.68%), followed by diffuse astrocytoma (16.47%). Both benign and malignant CNS tumors were associated with significant hospital mortality; in-hospital mortality rates for benign and malignant tumors were 10.1% and 17.5%, respectively. Tumor type and its grade were the main determinants of early death in malignant CNS tumors.
Conclusion: The epidemiological characteristics of benign and malignant tumors in our study community were similar to the reports presented in other communities. Knowledge of these characteristics provides the possibility of managing patients and reducing morbidity and mortality related to these tumors.


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