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To further determine the effects of CXCR7 on in vivo tumor metastasis, HepG2 or LM3 tumor xenografts were isolated from the foregoing subcutaneous tumor specimens and implanted into the liver to establish orthotopic models, and each overexpression or depletion CXCR7 group contained eight mice.
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An FDFG is harvested from the lower abdomen as a columnar-shaped specimen and implanted into the defect of the breast after a partial mastectomy as a volume replacement technique.
However, bonding strength of the specimens implanted with high acceleration voltage and/or total dose were still superior to that of the specimens without implantation and implanted with low acceleration voltage and/or total dose.
Two 3D-printed aneurysm models, basilar apex and middle cerebral artery, were generated and implanted in four cadaveric specimens.
Specimens were implanted and then rapidly rotated until fracture to simulate internal rotation on a planted foot, as might occur during stumbling.
Zirconium specimens were implanted with yttrium and lanthanum ions with a fluence ranging from 1×1016 to 1×1017 ions/cm2 at approx. 130 °C, using a metal vapor vacuum arc source at an extraction voltage of 40 kV.
The LuCaP series of xenografts were generated in our department from surgical specimens and donor necropsies implanted subcutaneously in mice [ 24].
Several cylindrical specimens and dental implants, presenting diagonal lattice structures with different cell sizes (600, 900 and 1200 μm) were additively manufactured by selective laser melting process.
An in vitro study with human specimens and prototype implants (nominal radial interference 170 and 420 μm) was used to investigate the effect of interference on primary stability.
Five specimens and six implants were used at this stage.
In order to investigate the effect of lanthanum ion implantation on the aqueous corrosion behavior of zirconium, specimens were implanted with lanthanum ions at a dose ranging from 1×1016 to 1×1017 ions/cm2 at maximum 130 °C, using a metal vapor vacuum arc (MEVVA) source at an extracted voltage of 40 kV.
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