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فهرست مطالب mehmet demirci

  • Mehmet Demirci, Şevket EVCİ *, Mehmet Karsli, İlkay Aydoğan
    This study aimed to explore the impact of incorporating hemp seed oil (Cannabis sativa L.) at 1.5% and 3% levels in broiler diets on broiler performance, carcass yield, weights of some internal organs, and some blood parameters. In total, 132 day-old broiler chicks (Ross 308) were utilized, with the control group (C) receiving a basal diet without supplementation. Experimental groups included 1.5% hemp seed oil (HOA) and 3% hemp seed oil (HOB) added to the basal diet. The 42-day experiment concluded with the total average live weight (LW) for control, HOA, and HOB groups reaching 2637.90, 2647.81, and 2665.68 g, respectively. Average live weight gains (LWG) were 2595.03, 2605.16, and 2622.54 g; average feed intake (FI) amounted to 4044.25, 3880.78, and 3900.36 g, and feed conversion ratio  (FCR) values were 1.56, 1.50, and 1.49, respectively. While LW, LWG, and FI values did not differ significantly between groups (P > 0.05), the addition of hemp seed oil notably improved FCR (P < 0.05). Relative carcass rates and weights of carcass, heart, pancreas, and spleen were similar across groups (P > 0.05). However, liver weight was lowest in the HOA group, and the bursa of Fabricius weight was lowest in the C group (P < 0.05). No statistical differences were observed in serum glucose, albumin, triglyceride, and total cholesterol parameters among groups (P > 0.05). Total protein, HDL-c, non-HDL-c, LDL-c, TAC, and TOC values were significantly influenced by hemp seed oil (P < 0.05). In conclusion, the data suggest that adding up to 3% hemp seed oil to broiler diets can have notable effects on feed conversion ratio and serum biochemical parameters, offering critical health benefits, particularly in improving serum lipid profiles. However, the antioxidant properties of hemp seed oil were found to be weak.
    Keywords: Broiler, Hemp Seed Oil, Performance, Antioxidant, Oxidant}
  • Meltem Kumas, Ozge Altintas Kadirhan *, Mehmet Demirci
    Context

    Vascular dementia (VaD) is the second most common type of dementia after Alzheimer’s disease worldwide. Vascular dementia is a neurodegenerative disorder characterized by gradual cognitive impairment. Ischemic and hemorrhagic strokes result in VaD, markedly distributing cerebral blood flow and decreasing patients’ cognitive and memory performance. Due to their high energy demands, neurons are more sensitive to cellular architecture changes and exposed to mitochondrial stress than other cell types. Mitochondrial dysfunction and selective autophagy of mitochondria, known as mitophagy, are associated with VaD. This review aims to elucidate the association between mitophagy and VaD.

    Evidence Acquisition

    This review was conducted independently by at least two researchers dominant in various VaD studies. We searched databases including Elsevier, Google Scholar, and PubMed using the terms ‘vascular dementia’, ‘vascular cognitive impairment’, and ‘mitophagy’. We evaluated 70 articles on the relationship between VaD and mitophagy and interpreted the results. Adobe Photoshop 2022 was used for drawing figures by researchers.

    Results

    The autophagy process plays a protective role in experimental VaD models via preserving vascular integrity and the structure of the blood-brain barrier, upregulating occludin and claudin protein expressions, reducing oxidative stress, and decreasing cognitive dysfunction. Some studies claim that autophagy could have adverse effects in a time-dependent manner against neuronal injury. Prolonged autophagy and overexpressed autophagic proteins induce ischemic injury and cause neuronal cells to undergo apoptotic cell death.

    Conclusions

    Although there are limited studies on the activation of mitophagy-related pathways in VaD, and the definitive role of mitophagy in neuronal healing is unclear, further research is needed to elucidate mitophagy pathways in neurons.

    Keywords: Mitophagy, Neurodegeneration, Autophagy, Vascular Dementia}
  • Y. Mehmet Demirci *
    We call a ring R right generalized semiperfect if every simple right R-module is an epimorphic image of a flat right R-module with small kernelý, ýthat isý, ýevery simple right R-module has a flat B-coverý. ýWe give some properties of such rings along with examplesý. ýWe introduce flat strong covers as flat covers which are also flat B-covers and give characterizations of A-perfectý, ýB-perfect and perfect rings in terms of flat strong covers.
    Keywords: Flat cover?, ?flat B, cover?, ?flat strong cover?, ?G, semiperfect ring?, ?perfect ring?}
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