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Updated: Aug 24, 2026

Description of a Swine Infant Model of Volume-Controlled Hemorrhagic Shock
Published on: November 3, 2023
[Specific features of pathogenesis and diagnosis of hemorrhagic stroke in young patients]
The paper deals with hemorrhagic stroke (HS) pathogenesis and diagnosis in young people. Among cerebrovascular diseases in the young acute hemorrhagic strokes take noticeable place. Arterial hypertension, diabetes mellitus, smoking, alcoholism are among risk factors of subarachnoidal hemorrhage (SAH). Massive hemorrhages occur in the rupture of arterial aneurysms and arteriovenous malformations. HS in the young may be caused by blood diseases, i.e. leukemias, hemophilias, idiopathic thrombocytopenic purpura, coagulopathies; vasculitis in diffuse diseases of the connective tissue; non-inflammatory arteriopathies; drug addiction. Genetic predisposition to HS development is discussed with focus to such diseases as a family form of moya-moya disease, glucocorticoid-depressed hyperaldosteronism, elastic pseudoxanthoma, Marfan's syndrome, renal olycystosis, Sturge-Veber syndrome. It is recommended to use wider updated methods of neurovisualization (CT, MRT, angiography) in diagnosis of HS. The conclusion is made that HS diagnosis, especially in the young, needs a multidisciplinary approach with active participation of neurologist, neurosurgeon, therapist, endocrinologist, hematologist.
The paper deals with hemorrhagic stroke (HS) pathogenesis and diagnosis in young people. Among cerebrovascular diseases in the young acute hemorrhagic strokes take noticeable place. Arterial hypertension, diabetes mellitus, smoking, alcoholism are among risk factors of subarachnoidal hemorrhage (SAH). Massive hemorrhages occur in the rupture of arterial aneurysms and arteriovenous malformations. HS in the young may be caused by blood diseases, i.e. leukemias, hemophilias, idiopathic thrombocytopenic purpura, coagulopathies; vasculitis in diffuse diseases of the connective tissue; non-inflammatory arteriopathies; drug addiction. Genetic predisposition to HS development is discussed with focus to such diseases as a family form of moya-moya disease, glucocorticoid-depressed hyperaldosteronism, elastic pseudoxanthoma, Marfan's syndrome, renal olycystosis, Sturge-Veber syndrome. It is recommended to use wider updated methods of neurovisualization (CT, MRT, angiography) in diagnosis of HS. The conclusion is made that HS diagnosis, especially in the young, needs a multidisciplinary approach with active participation of neurologist, neurosurgeon, therapist, endocrinologist, hematologist.
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