Calcium depletion and repletion in laying hens. 2. The effect on radiocalcium and radiostrontium retention in bone and deposition in the egg shell.
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Biomedical subjects
Publications and source records attributed to S Hurwitz.
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The foot and ankle are among the hardest of all areas to image because of the complex three-dimensional anatomy. Magnetic resonance imaging (MRI), with its multiplanar capabilities, excellent soft-tissue contrast, ability to image bone marrow, noninvasiveness, and lack of ionizing radiation, has become a valuable tool in evaluating patients with foot and ankle problems. MRI is more specific than bone scintigraphy and provides more information than ultrasound and computed tomography. Arthroscopy of the ankle is limited to the articular surface and joint space. MRI allows a global evaluation of the bones, tendons, ligaments, and other structures with a single examination that exceeds the capabilities of all other available techniques. This monograph was written to provide a useful guide to basic technique, indications, positioning, anatomy, and interpretation of foot and ankle MRI. The first part describes the performance of the MRI examination with reference to the positioning of the foot, types of coils, and advantages and disadvantages of the different sequences and imaging planes. The next section was written by an experienced foot and ankle orthopedic surgeon and outlines the indications for MRI for the common foot and ankle symptom complexes and the information that the surgeon hopes to obtain from the study. This is followed by a review of pertinent anatomy, as it applies to imaging, with emphasis on osseous structures, ligaments, tendons, and muscles. The final section is a comprehensive review of the common pathologic conditions encountered in the foot and ankle. We hope that radiologists and radiologists-in-training find this article a useful reference tool and gain a better understanding of this complex area of musculoskeletal imaging.
The patient's position in bed may cause repositioning of free pleural fluid, which can track to paravertebral, subpulmonary, and paramediastinal planes. Awareness of this situation aids the clinician's recognition of the nature of the lesion on chest roentgenograms.
There is an increasing incidence of deep mycotic infections. The initial clue to the diagnosis is often radiologic. It is important therefore for the radiologist to be aware of these infections and the setting in which they occur, e.g., allergic bronchopulmonary aspergillosis in the asthmatic person, invasive aspergilliosis in the immune compromised host, and aspergilloma in cavitary lung disease. In so doing he can alert the clinician to the possibility of a mycotic infection and thus initiate further investigation to confirm the diagnosis.
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Data from a longitudinal clinical trial funded by the National Institute of Aging, testing the effects of staff education and consultation on restraint reduction in nursing homes, were used to examine disturbing behaviors in institutionalized elders and to identify related environmental and personal characteristics. Subjects were 586 residents from three well-matched nursing homes. Kayser-Jone's (1989) model on environment and quality of life in long-term care institutions served as the organizing framework. Data on disturbing behaviors from the Psychogeriatric Dependency Rating Scale were factor analyzed. Three factors, Agitated Psychomotor Behaviors, Aggressive Interpersonal Communication, and Expressive Difficulty, emerged from the principal factor analysis and accounted for 35% of the variance. The Kayser-Jones model partially explained Agitated Psychomotor Behavior (R2 = .22). A model comparison approach indicated that the addition of an organizational variable, staff mix, significantly increased the amount of variance explained over and above that contributed by the personal variables.
Gene expression and alkaline phosphatase (AP) activity, associated with chondrocyte differentiation, were evaluated in the epiphyses of normal and tibial dyschondroplasia (TD)-afflicted turkeys. In the normal turkey growth plate (GP), osteopontin (OPN) and type X collagen genes were expressed by the hypertrophic cells in both GP and secondary ossification center, parallel to manifestation of AP activity. Collagen type II gene expression was restricted to the nonhypertrophic chondrocytes at the upper part of the GP. OPN or collagen type X genes were not expressed within the TD lesion. However, these genes were expressed in areas proximal and distal to the lesion, suggesting that after reaching partial differentiation, chondrocytes within the developing TD lesion de-differentiate into cells that resemble chondrocytes in the prehypertrophic zone. This suggestion is supported by the observation that the cells in the lesion expressed the collagen type II gene. In some cases, the TD lesion was invaded by fibroblastlike cells that did not exhibit any AP activity or expressed the OPN gene. No lesions were observed in the secondary ossification centers.