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The mechanism of injury related to anterior shoulder dislocation is usually indirect force with a combination of abduction, extension and external rotation that leads to dislocation (Figure 4).
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Recent studies suggest that controlled alteration of local microstructure may lead to dislocation nucleation in certain SiC polytypes.
Recent studies suggest that controlled alteration of local micro-structure may lead to dislocation nucleation in certain SiC poly-types.
The results reveal that instrumental constraints lead to dislocation storage at the sample base and top, but will not affect the storage of excess dislocations in the sample center in case of an ideal alignment.
Dense lines indicate high local shearing forces which may lead to dislocation.
Combined with a smaller post with rounded tip, this could lead to dislocation.
In the presence of such instability, sudden laterally directed forces can lead to dislocation of the patella.
In contrast, fixed cell assays may have artifacts that lead to dislocation of constituents, and cancer cells are well known to have aberrant morphologies.
Sudden laterally directed forces which might result when the knee strikes some elevated surface on medial side can lead to dislocation of patella in patients with patellar instability.
The displacement of the radius against the ulna led to dislocation of the distal radio-ulnar joint, resulting in a full-blown Essex-Lopresti lesion.
(Septic arthritis of the hip in those days was not an uncommon condition in infants and children, and often led to dislocation owing to delayed diagnosis and lack of proper treatment).
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