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  • Küçük Resim Yok
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    Clinical reflection of anatomical evaluation in coccydynia
    (Soc Anatomica Espanola, 2024) Guler, Emel; Guler, Ilkay; Arslan, Ayla; Uzun, Gokce Bagci
    Coccydynia is a pain in the coccyx and the surrounding anatomical structures. Our aim in the study was to evaluate whether the disease duration, pain assessment, and coccyx morphological type had an effect on this clinic in patients with a diagnosis of coccydynia. A total of 68 coccyx Magnetic Resonance Imaging (MRI) results were evaluated. Coccyx segment number, morphological typing, lumbosacral, sacrococcygeal, and intercoccygeal angle measurements were made. Disease duration, day and night movement and the rest of Numerical Pain Scale (NRS) values were recorded from existing records of patients with a diagnosis of coccydynia. When the morphological typing was evaluated, type 4 subluxation was found to be high in the group with coccydynia. Pain complaint duration was 13.94 +/- 12.22 months, sitting time was 16.82 +/- 14.22 minutes, and the numerical pain scale was 7.62 +/- 1.48. Morphologically, type 1;14 (3 coccydynia), type 2;22 (9 coccydynia), type 3;14 (6 coccydynia), type 4;18 (16 coccydynia) images were also detected. A moderately statistically significant positive cor-- relation was found between the sacrococcygeal and intercoccygeal angles (p<0.05). We believe that evaluating clinical data and anatomical measurements together will contribute to the treatment of coccydynia, which is especially difficult to treat.
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    Effect of carnosine on ovarian follicle in rats exposed to electromagnetic field
    (Soc Anatomica Espanola, 2022) Arslan, Ayla; Balcioglu, Esra; Nisari, Mehtap; Yalcin, Betul; Ulger, Menekse; Guler, Emel; Uzun, Gokce Bagci
    The electromagnetic field (EMF) has an effect on various organs, including the female reproductive system. The purpose of this study was to evaluate the impact of carnosine on ovarian follicle number and diameter in rats exposed to a 900 Megahertz (Mhz) electromagnetic field. In this study, six different groups were used. 40 female rats divided into groups were evaluated. The ovaries of the rats were removed at the end of the study. Routine histological procedures were performed on ovarian tissues. Follicle number and diameter of all groups were calculated and evaluated under the light microscope. When primary follicle number and diameters were compared statistically among the groups, there was a remarkably meaningful difference between the EMF group and the control, 20 mg carnosine and EMF+20 mg carnosine groups (p<0.05). There were significant irregularities in the structure of the oocyte and the granulosa cells surrounding the oocyte, especially in the EMF-treated groups. However, the structure of the oocyte and the granulosa cells surrounding the oocyte in the EMF+20 mg carnosine group showed a more regular structure compared to the EMF group. In this study, it can be concluded that the number and diameter of ovarian follicles decreased in rats exposed to electromagnetic field and 20 mg of carnosine may prevent damage caused by EMF.

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