Effect of motor cortex ablation on conditioned learning in sheep.
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Biomedical subjects
Publications and source records attributed to T F Fletcher.
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Under controlled, but varied dietary conditions among geriatric, uninephrectomized Beagle bitches (dogs) observed for 4 years, renal size increase as assessed radiographically and ultrasonographically occurred at variable rates, but on a seemingly continuous basis. The maximum observed mean renal linear parameter increase found was approximately 15%. However, a 10 and 15% increase is a more representative expectation among the 4 parameters (sonographic length, radiographic length, sonographic width, radiographic width) under consideration. The rate of renal size increase was rapid during the first 2 to 3 months following uninephrectomy. Thereafter, the rate of increase was slow, but occurred to varying degrees in both the length and width as assessed radiographically or ultrasonographically. The mechanism creating the size change was hypertrophy, not hyperplasia. Within limits of the 3 diets used in the study, no significant diet effect was found on the rate or degree of long term compensatory hypertrophy. Radiographically and ultrasonographically measured renal length had the greatest correlation with each other as well as with post mortem measurements and are, therefore, the recommended parameter for imaging assessment of compensatory hypertrophy. When the prenephrectomy, radiographic renal lengths and widths were normalized as a ratio of the second lumbar vertebral body length (L2) measured from ventrodorsal radiographs, the diet group means across dogs (approximately three L2 lengths for renal length; two L2 lengths for renal width) were in the middle of the respective previously published normal radiographic ranges for mature dogs (e.g. 2.5 L2 < or = length < or = 3.5 L2; 1.58 L2 < or = width < or = 2.38 L2 lengths). Even after the hypertrophic changes occurred, the radiographic group mean lengths and widths across dogs were still within the specified normal ranges, although toward the upper end of the respective range. This information provides background for clinical interpretation of potential compensatory hypertrophy that may be encountered following uninephrectomy for spontaneous disease in aged dogs. In addition, it appears that available radiographic renal linear ranges for normal mature dogs are applicable to geriatric dogs as well.
Under controlled, but varied dietary conditions 35 geriatric, uninephrectomized, spayed Beagle bitches (dogs) observed for 4 years, renal cortical and renal medullary echogenicity was measured relative to hepatic and splenic echogenicity. Regardless of the diet fed, 60-75% of these aged dogs had renal cortical echogenicity less than that of either the liver or spleen across time; 25-35% of these dogs had renal cortical echogenicity equal to that of the liver, but less than that of the spleen across time. Less than 3% of these dogs had renal cortical echogenicity greater than that of the liver, but less than that of the spleen. Only 1 (one) of these dogs had renal cortical echogenicity equal to that of the spleen and that occurred at only one of the 14 chronologic assessments. Therefore, in either mature or aged dogs imaged with 4.0 to 5.0 MHz equipment, the renal cortical echogenicity should be considered normal if it is less than or equal to that of the liver and less than that of the spleen. In 29 dogs imaged with the 4.0/5.0 MHz equipment and 6 dogs imaged with 7.5 MHz equipment, there was no significant diet or individual dog effect. The 7.5 MHz (6 dog) group had significantly higher average cortical echogenicity scores than the 4.0/5.0 MHz (29 dog) group. However, the occurrence of renal cortical echogenicity greater than liver echogenicity was seen in only 5 of 83 samples (approximately 6.0%) made on 6 dogs imaged with 7.5 MHz equipment and only 1 of 375 samples (approximately 0.27%) made on 29 dogs with 4.0/5.0 MHz equipment. With the exception of one occurrence, all dogs had renal medullary echogenicity less than that of the liver or spleen regardless of imaging equipment frequency. The renal medulla was always hypoechoic compared to the cortex.
Furazolidone (FZ) at a dose of 700 ppm was fed to turkey poults 2-5 weeks posthatch. At 3, 4, and 5 weeks of age, seven poults each were sacrificed from control and FZ-fed groups. A section of ventricular tissue 1 mm thick was excised from the heart distal to the base at a level one-fourth of the distance between the base and apex. Parameters estimated from tracings of each section were area and circumference of both right and left ventricular lumen profile, area and circumference of entire heart profile, area of right ventricular free wall profile, area of left ventricular and septal wall profile, and area of entire heart muscle profile. A major finding was a sequential increase in the area of the ventricular lumina in the FZ-fed poults. Differences between the control and FZ-fed poults were statistically significant for the right lumen profile at 3 and 5 weeks of age and for the left lumen profile at 4 and 5 weeks of age. The area of the heart muscle profile was decreased in FZ-fed poults, but this difference was statistically significant only at 4 weeks of age. Data suggest that the pathogenesis of FZ-induced cardiomyopathy involves a dilation of ventricular lumina resulting in increased intraventricular blood volume and altered ECG patterns. Relationships between gross morphology and ECGs may be seen only in terminal cases of several weeks duration. This explains the inability to correlate ECGs with gross morphologic changes in all poults observed at necropsy.