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Hebrew University-Hadassah Faculty of Dental Medicine

2 ARTICLES PUBLISHED IN JoVE

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Bioengineering

Computed Tomography and Optical Imaging of Osteogenesis-angiogenesis Coupling to Assess Integration of Cranial Bone Autografts and Allografts
Doron Cohn Yakubovich 1, Wafa Tawackoli 2,3,4, Dmitriy Sheyn 2,3, Ilan Kallai 1, Xiaoyu Da 4, Gadi Pelled 1,2,3,4, Dan Gazit 1,2,3,4, Zulma Gazit 1,2,3
1Skeletal Biotech Laboratory, The Hebrew University–Hadassah Faculty of Dental Medicine, 2Department of Surgery, Cedars-Sinai Medical Center, 3Board of Governors Regenerative Medicine Institute, Cedars-Sinai Medical Center, 4Biomedical Imaging Research Institute, Cedars-Sinai Medical Center

Implantation of autologous and allogeneic bone grafts constitute accepted approaches to treat major craniofacial bone loss. Yet the effect of graft composition on the interplay among neovascularization, cell differentiation and bone formation is unclear. We present a multimodal imaging protocol aimed to elucidate the angiogenesis-osteogenesis interdependence at the graft proximity.

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Bioengineering

Semiautomated Longitudinal Microcomputed Tomography-based Quantitative Structural Analysis of a Nude Rat Osteoporosis-related Vertebral Fracture Model
Galina Shapiro 1, Maxim Bez 1, Wafa Tawackoli 2,3,4, Zulma Gazit 1,2,3,5, Dan Gazit 1,2,3,4,5, Gadi Pelled 1,2,3,4
1Skeletal Biotech Laboratory, Hebrew University-Hadassah Faculty of Dental Medicine, 2Department of Surgery, Cedars-Sinai Medical Center, 3Board of Governors Regenerative Medicine Institute, Cedars-Sinai Medical Center, 4Biomedical Imaging Research Institute, Cedars-Sinai Medical Center, 5Department of Orthopedics, Cedars-Sinai Medical Center

The goal of this protocol is to generate a nude rat osteoporosis-related vertebral compression fracture model that can be longitudinally evaluated in vivo using a semiautomated microcomputed tomography-based quantitative structural analysis.

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