Publications by authors named "M Culha"

Background: Rigicon is a newer inflatable penile prostheses (IPP) manufacturer that has produced the Infla10 IPP for countries outside the United States (US) since 2019, with Food and Drug Administration studies for approval of Infla10 in the US presently underway.

Aim: This study aims to report the first patient satisfaction, efficacy, and safety from revision data for the newly available Rigicon Infla10 IPP.

Methods: A single surgeon's first 58 patients who underwent Rigicon Infla10 IPP implantation between 2019 and 2023 were included.

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Feline hemotropic mycoplasmosis is an emerging infectious disease in domestic cats caused by a group of hemotropic species, including three main species: (), Mycoplasma hemominutum (Mhm), and Mycoplasma turicensis (Mt). The primary objective of this investigation was to ascertain the molecular prevalence and characterization of hemotropic mycoplasmas in domestic cats from twenty-three districts of Konya province in Türkiye. For this purpose, 384 apparently healthy cats belonging to different breeds were enrolled in this study.

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Aims: To assess the outcomes of robotic surgery for patients with neurogenic lower urinary tract dysfunctions (NLUTD).

Materials And Methods: Studies evaluating the outcomes (efficacy and safety) of robot-assisted ileal conduit creation or artificial urinary sphincter (R-AUS) implantation or augmentation cystoplasty or continent urinary diversion creation in patients with NLUTD were included. The search strategy and studies selection were performed on Medline, Embase and Cochrane using the PICOS method according to the PRISMA statement (PROSPERO 2022 CRD42022333157).

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The aim of this study was to investigate the effect of putrescine, anti-apoptotic, antioxidant, and a cell proliferation stimulant, on embryo development and quality by supplementing it to in vitro culture medium. In this study, oocytes were obtained from the ovaries of Holstein cattle. Following maturation and fertilization, the presumptive zygotes were randomly assigned to two groups.

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Nanomaterials with piezoelectric properties can significantly improve the applicability of polymers used in tissue engineering applications. In this study, we report the one-step synthesis of a novel hybrid piezoelectric composite comprising barium titanates and boron nitride nanotubes. This composite is distinguished by its unique microstructures, including nanoflakes, triangular boron nitride structures, and fiber-like boron nitride nanotube configurations, which contribute to its enhanced piezoelectric properties.

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