SUMMARYPurpose: Lamotrigine (LTG) is an effective clinical treatment for epilepsy associated with absence seizures. However, the impact of LTG administration in studies employing various animal models of epilepsy remains controversial. This study aimed to clarify the outcomes of LTG treatment on absence seizures and comorbid anxiety and depression disorders in Long-Evans rats with spontaneous spike-wave discharges (SWDs). Methods: LTG (10 mg/kg) or water vehicle was chronically administered perorally to Long-Evans rats (twice daily for 35 days). Cortical activities were recorded to assess the presence of SWDs. Five behavioral tests, including the open field (OF), elevated plus maze (EPM), sucrose consumption (SC), sucrose preference, and forced swimming (FS) tests, were performed after LTG/ vehicle treatment. The behavioral indexes of these tests were designed to assess anxiety (OF and EPM tests), depression (SC and FS tests), and preference for hedonistic stimuli (sugar preference test). Key Findings: Total SWD duration, SWD number, and mean SWD duration were significantly decreased in rats that received 35-day LTG treatment compared with rats that received vehicle treatment. Rats with spontaneous SWDs versus rats with no SWDs showed significant levels of anxiety and depression in the OF, EPM, and SC tests. Rats with SWDs also showed longer immobility in the FS test. However, the LTG-treated group compared with the vehicle group presented with significantly lower manifestations of anxiety and depression in the OF, EPM, SC, and sucrose preference tests and shorter immobility in the FS test. Significance: The results of this study suggest that chronic LTG treatment can benefit patients with epilepsy via suppression of absence seizures and amelioration of comorbid anxiety and depression.
Degradation, damage evolution, and fatigue models in the literature for various engineering materials, mostly metals and composites, are reviewed. For empirical models established under the framework of Newtonian mechanics, Gurson–Tvergaard–Needleman (GTN) type model, Johnson-Cook (J-C) type damage model, microplasticity model, some other micro-mechanism based damage models, and models using irreversible entropy as a metric with an empirical evolution function are thoroughly discussed. For Physics-based models, the development and applications of unified mechanics theory is reviewed.
Prenatal thalassemia studies from Taiwan show that one-third of fetuses with genetic abnormalities have β-thalassemia major (β-TM). However, the phenotypes and genotypes of adult thalassemia warrant further investigation. From September 2006 to April 2014, 741 male candidates drafted for military service with mean corpuscular volume (MCV) <80 fL and serum ferritin >20 µg/L were analyzed. The results showed that the detection rates of α- and β-thalassemia (α- an β-thal) were 50.20% (372/741) and 49.12% (364/741), respectively. Only five patients (0.67%) were diagnosed with both α- and β-thal. The - -(SEA)/αα mutation was found in 76.88% (286/372) of α-thal patients. Heterozygous mutations in IVS-II-654 (C > T) and codons 41/42 (-TCTT) accounted for 55.77% (203/364) of β-thal cases. The leukocyte counts for α- and β-thal were 6241.74 ± 1552.99 and 6622.87 ± 1814.41 × 10(9)/L, respectively (p = 0.007). The α-thal patients had lower red blood cell (RBC) mass (5.85 ± 0.44 × 10(12)/L vs. 6.09 ± 0.45 × 10(12)/L; p < 0.001) and higher hemoglobin (Hb) (12.82 ± 0.72 vs. 12.35 ± 0.71 g/dL; p < 0.001) than β-thal patients. Mean serum ferritin values were 169.67 and 241.36 µg/L, respectively, in α- and β-thal patients (p < 0.001), indicating more profound ineffective erythropoiesis in β-thal. Only four of the 741 patients underwent further hematological follow-up. Our study suggests that iron overload might be a potential problem in β-thal patients; therefore, regular follow-up is highly recommended.
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