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    Article

    Topic: Abdominal Wall Hernia — Epigastric hernia: choice of approach, repair, results, follow up

    C. Maldonado, D. Daroch, C. Maiz, J. Bachler, F. Crovari, C. Boza, R. Funke in Hernia (2015)

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    Article

    Complex Cases in Abdominal Wall Repair and Prophilactic Mesh

    T. Kubota, T. Mizuta, H. Katagiri, M. Shimaguchi, K. Okumura, T. Sakamoto in Hernia (2015)

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    Article

    Abdominal Wall Miscellaneous

    F. Tai, J. W. Li, J. Sun, M. H. Zheng, J. Wink, M. Basta, J. Fischer, S. Kovach in Hernia (2015)

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    Article

    Trial & Guidelines

    R. Roumen, O. Boelens, T. Van Assen, M. Scheltinga, S. Wijerathne, N. Agarwal in Hernia (2015)

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    Article

    Incisional Hernia: Difficult Cases 2

    Y. Novitsky, M. Fayezizadeh, A. Majumder, S. Yee, C. Petro, S. Orenstein in Hernia (2015)

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    Article

    Incisional Hernia: Plastic Aspects, Component Separation, Technical Details & Pediatrics

    G. Kenchadze, I. Pipia, Z. Demetrashvili, A. Botezatu, E. Marakutsa, R. Raileanu in Hernia (2015)

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    Article

    Incisional Hernia: Daily Cases

    K. LeBlanc, K. Jensen, P.-M. Krarup, L. Jorgensen, T. Mynster, B. Zappa in Hernia (2015)

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    Article

    Readmission following ventral hernia repair: a model derived from the ACS-NSQIP datasets

    Institutions are now incentivized to decrease rates of preventable readmissions. The purpose of this study was to examine readmissions following open ventral hernia repair (VHR), to ultimately create a model t...

    J. A. Nelson, J. Fischer, C. C. Chung, J. Wink, A. Wes, J. M. Serletti, S. Kovach in Hernia (2015)

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    Article

    Investigation of the Electronic Structure of Cd4GeSe6 by Photoelectrochemical and Photoluminescence Methods

    The Cd4GeSe6 crystals were grown by the chemical vapor transport method. The crystals were characterized by photoelectrochemical and photoluminescence methods and were found to be n-type, with a 1.759 eV direct b...

    S. Kovách, Á. Nemcsics, Z. Lábadi, S. Motrya in Inorganic Materials (2003)

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    Chapter

    Photoelectrochemical Characterization Of Some Argyrodite-Type Materials

    Materials from the “argyrodite”family (general formula: A(12-n-x)/mBX(6-x)Yx, where Am+ = Cu, Ag, Cd, Hg; Bn+ = P, Ge, Si; X = S, Se; Y = Cl, Br, I) have a wide variety of properties. Among the argyrodites, there...

    Yu. Stasyuk, S. Kovach, A. Kokhan, V. Panyko in Photovoltaic and Photoactive Materials — P… (2002)