Broken Bones: Anthropological Analysis of Blunt Force Trauma |
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Page 149
chisel effect produced by the ulnar styloid during dorsiflexion . This is most often
produced by falls onto the outstretched hand ( Smith and Murray 1996 ) . These
fractures are classified by the location and severity of the injuries ( Levy et al .
chisel effect produced by the ulnar styloid during dorsiflexion . This is most often
produced by falls onto the outstretched hand ( Smith and Murray 1996 ) . These
fractures are classified by the location and severity of the injuries ( Levy et al .
Page 194
The more comminuted tibial shaft fractures produced in motor vehicle accidents
and other high - energy trauma are more likely to be accompanied by other
serious injuries ( Johner and Wruhs 1983 ; Leach 1984 ) . Comminuted fractures
are ...
The more comminuted tibial shaft fractures produced in motor vehicle accidents
and other high - energy trauma are more likely to be accompanied by other
serious injuries ( Johner and Wruhs 1983 ; Leach 1984 ) . Comminuted fractures
are ...
Page 218
Amongst osteoporotics , forceful abduction of the forefoot may produce avulsion
fractures of the navicular ( de Souza ... These intraarticular body fractures have
been further subdivided into ( 1 ) type 1 - produced by centrally directed axial
force ...
Amongst osteoporotics , forceful abduction of the forefoot may produce avulsion
fractures of the navicular ( de Souza ... These intraarticular body fractures have
been further subdivided into ( 1 ) type 1 - produced by centrally directed axial
force ...
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Contents
Chapter | 5 |
The Biomechanics of Fracture Production | 35 |
Alison Galloway | 63 |
Copyright | |
11 other sections not shown
Common terms and phrases
accidents addition adults analysis anterior anthropologist appear applied articular surface associated avulsion fractures base bending blows blunt force body bone cause changes classification combination comminuted common complete compression consists damage death defects depressed determined direct direct blows dislocation displacement distal elements et al examination extensive extremely falls femoral Figure foot forces forensic frac fragment frequently greater hand head humerus impact important increase indicate individual injuries interpretation involved joint lateral less ligaments loading loss lower margin material mechanism medial motor vehicle neck oblique occur pattern pelvic portion position possible posterior produced proximal rare region relatively remains reported resistance result Rogers rotation seen segment separation severe shaft shearing side skeletal skull soft tissue specific spine spiral stress structure tend tension third tibia tion transverse trauma tures Type usually vertebrae vertical victim