04.03. Department of Molecular Biology and Genetics

OrgUnit's Researchers publications
(Dept/Workgroup Publication)

Refined By:
Subject:  Magnetic levitation

Results 1-9 of 9 (Search time: 0.009 seconds).

Issue DateTitleAuthor(s)
12019Application of magnetic levitation induced weightlessness to detect cell lineageSarıgil, Öykü ; Anıl İnevi, Müge ; Yılmaz, Esra; Çağan, Melike; Meşe, Gülistan ; Tekin, Hüseyin Cumhur ; Özçivici, Engin 
22020Assessment of cell cycle and viability of magnetic levitation assembled cellular structuresAnıl İnevi, Müge ; Ünal, Yağmur Ceren ; Yaman, Sena ; Tekin, H. Cumhur ; Meşe, Gülistan ; Meşe, Gülistan 
32019Biofabrication of cellular structures using weightlessness as a biotechnological toolAnıl İnevi, Müge ; Sarıgil, Öykü ; Yaman, Sena ; Yalçın Özuysal, Özden ; Meşe, Gülistan ; Tekin, Hüseyin Cumhur ; Özçivici, Engin 
4Dec-2018Biofabrication of in situ self assembled 3D cell cultures in a weightlessness environment generated using magnetic levitationAnıl İnevi, Müge ; Yaman, Sena ; Arslan Yıldız, Ahu ; Meşe, Gülistan ; Yalçın Özuysal, Özden ; Tekin, Hüseyin Cumhur ; Özçivici, Engin 
52021HologLev: A hybrid magnetic levitation platform integrated with lensless holographic microscopy for density-based cell analysisDelikoyun, Kerem ; Yaman, Sena ; Yılmaz, Esra; Sarıgil, Öykü ; Anıl İnevi, Müge ; Telli, Kübra; Yalçın Özuysal, Özden 
62021Magnetic levitation assisted biofabrication, culture, and manipulation of 3D cellular structures using a ring magnet based setupAnıl İnevi, Müge ; Delikoyun, Kerem ; Meşe Özçivici, Gülistan ; Tekin, Hüseyin Cumhur ; Özçivici, Engin 
72020Magnetic levitation-based adipose tissue engineering using horizontal magnet deploymentSarıgil, Öykü ; Anıl İnevi, Müge ; Yılmaz, Esra; Özçelik, Özge; Meşe, Gülistan ; Tekin, H. Cumhur 
8Mar-2021Scaffold-free biofabrication of adipocyte structures with magnetic levitationSarıgil, Öykü ; Anıl İnevi, Müge ; Fıratlıgil Yıldırır, Burcu ; Ünal, Yağmur Ceren ; Yalçın Özuysal, Özden ; Meşe, Gülistan ; Özçivici, Engin 
92023μDACS platform: A hybrid microfluidic platform using magnetic levitation technique and integrating magnetic, gravitational, and drag forces for density-based rare cancer cell sortingKeçili, Seren; Yılmaz, Esra; Özçelik, Özge Solmaz; Anıl İnevi, Müge ; Günyüz, Zehra Elif; Yalçın Özuysal, Özden ; Özçivici, Engin ; Tekin, Hüseyin Cumhur