Kleindorfer et al2021 Guideline for the Secondary Prevention of Ischemic Stroke
AdherenceA key component of secondary stroke prevention is assessing and addressing barriers to adherence to medications and a healthy lifestyle. If a patient has a recurrent stroke while on secondary stroke prevention medications, it is vital to assess whether they were taking the medications that they were prescribed and, if possible, to explore and address factors that contributed to nonadherence before assuming that the medications were ineffective.
Antithrombotic DosingUnless stated otherwise in the recommendations herein, the international normalized ratio (INR) goal for warfarin is 2.0 to 3.0 and the dose of aspirin is 81 to 325 mg.
Application Across PopulationsUnless otherwise indicated, the recommendations in this guideline apply across race/ethnicity, sex, and age groups. Special considerations to address health equity are delineated in section 6.3, Health Equity.
DIAGNOSTIC EVALUATION FOR SECONDARY STROKE PREVENTION
Recommendations for Diagnostic EvaluationReferenced studies that support recommendations are summarized in online Data Supplements 1 and 2.
CORLOE Recommendations 1 B-R Recommendations for Diagnostic Evaluation (Continued) COR LOE Recommendations
full . The American Heart Association makes every effort to avoid any actual or potential conflicts of interest that may arise as a result of an outside relationship or a personal, professional, or business interest of a member of the writing panel . Specifically, all members of the writing group are required to complete and submit a Disclosure Questionnaire showing all such relationships that might be perceived as real or potential conflicts of interest .
Abstract-Poststroke depression (PSD) is common, affecting approximately one third of stroke survivors at any one time after stroke. Individuals with PSD are at a higher risk for suboptimal recovery, recurrent vascular events, poor quality of life, and mortality. Although PSD is prevalent, uncertainty remains regarding predisposing risk factors and optimal strategies for prevention and treatment. This is the first scientific statement from the American Heart Association on the topic of PSD. Members of the writing group were appointed by the American Heart Association Stroke Council's Scientific Statements Oversight Committee and the American Heart Association's Manuscript Oversight Committee. Members were assigned topics relevant to their areas of expertise and reviewed appropriate literature, references to published clinical and epidemiology studies, clinical and public health guidelines, authoritative statements, and expert opinion. This multispecialty statement provides a comprehensive review of the current evidence and gaps in current knowledge of the epidemiology, pathophysiology, outcomes, management, and prevention of PSD, and provides implications for clinical practice. (Stroke. 2017;48:e30-e43.
Background and Purpose
To provide the first correlative study of the hyperdense MCA sign (HMCAS) and gradient-echo (GRE) MRI blooming artifact (BA) with pathology of retrieved thrombi in acute ischemic stroke.
Methods
Noncontrast CT and GRE MRI studies prior to mechanical thrombectomy in 50 consecutive cases of acute MCA ischemic stroke were reviewed, blinded to clinical and pathology data. Occlusions retrieved by thrombectomy underwent histopathologic analysis, including automated quantitative and qualitative rating of proportion composed of red blood cells (RBC), white blood cells (WBC), and fibrin on microscopy of sectioned thrombi.
Results
Among 50 patients, mean age was 66 years and 48% were female. Mean (SD) proportion was 61% (±21) fibrin, 34% (±21) RBC, and 4% (±2) WBC. Of retrieved clots, 22 (44%) were fibrin-dominant, 13 (26%) RBC-dominant and 15 (30%) mixed. HMCAS was identified in 10/20 MCA stroke cases with CT, with mean Hounsfield Unit (HU) density of 61 (SD±8). BA occurred in 17/32 with GRE MRI. HMCAS was more commonly seen with RBC-dominant and mixed than fibrin-dominant clots (100% vs. 67% vs. 20%, p=0.016). Mean percent RBC composition was higher in clots associated with HMCAS (47% vs. 22%, p=0.016). BA was more common in RBC-dominant and mixed clots compared to fibrin-dominant clots (100% vs. 63% vs. 25%, p=0.002). Mean percent RBC was greater with BA (42% vs. 23%, p=0.011).
Conclusions
CT HMCAS and GRE MRI BA reflect pathology of occlusive thrombus. RBC content determines appearance of HMCAS and BA, whereas absence of HMCAS or BA may indicate fibrin-predominant occlusive thrombi.
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