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An alternative technology for effectively reducing dislocation density is a kind of selective epitaxial growth on patterned Si substrate, which has the capability to produce a low-threading-dislocation surface using a simple epitaxial growth process.
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His other surgical contributions include a method for reducing dislocations of the shoulder and improvements in operations on the stomach, the lungs, the tongue, and the cranial nerves and for hernia.
We provide targets for these parameters and show how our results can be used to determine the potential gains from reducing dislocations in experimental devices and materials.
We applied gentle, gradually increasing manual traction to reduce dislocation and fracture dislocation under image intensification.
This process exhausts nucleated dislocations in nanosphere and reduces dislocation density, corresponding to the dislocation starvation mechanism.
Dual mobility acetabular cups were initially introduced to reduce dislocation rates after primary total hip arthoplasty [3].
They also found that these CrN nanoislands can mask the dislocation propagation and thus reduce dislocation density of the GaN films effectively.
However, the efficient strategy to reduce dislocation density is to initiate annihilation and fusion reaction among them during their glide process.
Civinini et al. [13] have shown that at 3-year mean follow-up, dual-mobility cups reduce dislocation for isolated acetabular revisions, without increased risk of loosening.
The ex situ RPD AlN nucleation layer can significantly reduce dislocation density and thus improve the crystal quality of the GaN epitaxial layers.
Re-establishment of femoral offset in total hip replacement restores biomechanics of the hip and soft tissue balance, and may reduce dislocation risk.
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