Zirconium dioxide porous biologic bone repair scaffold customized in individualized way based on light curing three-dimensional (3D) printing technology, and preparation method of zirconium dioxide porous biologic bone repair scaffold
A 3D printing and zirconium dioxide technology, which is applied in prosthetics, tissue regeneration, drug delivery, etc., can solve problems such as the inability to solve scaffold manufacturing problems, and achieve the effects of short manufacturing process time, high efficiency, and precise porosity
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[0032] The following canine femoral shaft HA / ZrO 2 The bioceramic scaffold material is taken as an example to describe the present invention in detail.
[0033] 1.1 Animal model of femoral shaft defect
[0034]Male adult Beagle dogs weighing 7.3±1.2 kg were used in the experiment. According to the critical value of canine femoral diaphysis bone defect of 15 mm, 15 mm of the middle section of canine femur was amputated in the experiment to establish the femoral diaphysis defect model. Operation method: Fasting for 12 hours before the operation, intravenous anesthesia with 3% pentobarbital sodium (1 ml / kg), after anesthesia, endotracheal intubation, and continuous oxygen inhalation during the operation. The skin in the surgical area was depilated, cleaned, disinfected, and draped. An incision about 8 cm in the lateral femur of the right lower extremity was taken, and the skin and subcutaneous tissue were cut layer by layer. Hemostasis was achieved by electrocoagulation. The thi...
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