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Biomedical subjects

Robert A Probe

Publications and source records attributed to Robert A Probe.

4 recordsLinked to original sources

Intrathoracic humeral head fracture-dislocation.

There are few cases in the medical literature documenting intrathoracic glenohumeral fracture-dislocations. A total of eight cases have been reported-two intrathoracic humerus dislocations with greater tuberosity fractures 1, 2 and six cases with intrathoracic fracture-dislocations in which the fracture involved the humeral neck. 3-8 With so few cases, treatment modalities vary, and no guidelines exist. Patients in five of the reported cases underwent surgery, 1, 3-6 while the other three were treated nonoperatively. 2, 7, 8 We present a case of a middle-aged woman involved in a high-speed motor vehicle accident who sustained an intrathoracic humeral head fracture-dislocation and underwent operative treatment.

Arthroplasty↗

The effects of femoral shaft malrotation on lower extremity anatomy.

OBJECTIVE: To determine how axial rotation around the anatomic axis of the femur, as would occur with malrotation of a femoral fracture, affects frontal and sagittal plane alignment and knee joint orientation. DESIGN: Computer-generated models of the lower extremity were constructed using standardized dimensions. To simulate a malrotated fracture, these models were rotated in the shaft around the anatomic axis in 15 degrees increments from 60 degrees internal to 60 degrees external rotation. Rotation was performed at the proximal fourth, mid-shaft, and distal fourth. MAIN OUTCOME MEASUREMENTS: At each rotational position, the mechanical axis deviation in millimeters and the changes in mechanical lateral distal femoral angle in degrees were measured to quantify frontal plane malalignment and malorientation, respectively. The mechanical axis deviation in millimeters in the sagittal plane was also measured at each rotatory position. RESULTS: Femoral shaft malrotation greater than 30 degrees internal rotation of a subtrochanteric fracture or more than 45 degrees of a midshaft fracture or external rotation of 30 degrees or greater of a supracondylar fracture resulted in frontal plane malalignment. External rotation of a supracondylar fracture of 45 degrees or more results in knee joint malorientation. Any external rotation at all 3 fracture levels caused posterior displacement of the weight-bearing axis in the sagittal plane. CONCLUSIONS: Malrotation of a femoral shaft fracture is not just a cosmetic problem. Internal and external rotation causes malalignment and malorientation in the frontal plane, depending on the level of the fracture and the magnitude of malrotation. External rotation of any degree at the proximal fourth, mid-shaft, and distal fourth causes a posterior shift of the weight-bearing axis in the sagittal plane.

Biomechanical Phenomena↗

Lower extremity angular malunion: evaluation and surgical correction.

The lower extremity has a mechanical axis with joint orientation that allows joint longevity and efficiency in bipedal gait. When normal alignment is lost because of trauma or other conditions, deviations from this anatomic norm may be deleterious to long-term joint function. In fractures that have healed with angular malunion, all facets of the deformity must be carefully considered, including alteration in length, rotation, alignment, and translation. Once all elements are fully defined, the effects of the malunion on mechanical axis and joint orientation can be understood. Techniques for surgical correction include wedge, dome, and oblique osteotomies and distraction osteogenesis. Each method possesses characteristics appropriate for certain clinical situations. Judicious patient selection and thoughtful preoperative planning may allow restoration of normal mechanics.

Biomechanical Phenomena↗