1.Three-dimensional CT angiography of the canine hepatic vasculature.
Yucheol JEONG ; Changyun LIM ; Sunkyoung OH ; Joohyun JUNG ; Jinhwa CHANG ; Junghee YOON ; Mincheol CHOI
Journal of Veterinary Science 2008;9(4):407-413
Eight Beagle dogs were anesthetized and were imaged using a single channel helical CT scanner. The contrast medium used in this study was iohexol (300 mg I/ml) and doses were 0.5 ml/kg for a cine scan, 3 ml/kg for an enhanced scan. The flow rate for contrast material administration was 2 ml/sec for all scans. This study was divided into three steps, with unenhanced, cine and enhanced scans. The enhanced scan was subdivided into the arterial phase and the venous phase. All of the enhanced scans were reconstructed in 1 mm intervals and the scans were interpreted by the use of reformatted images, a cross sectional histogram, maximum intensity projection and shaded surface display. For the cine scans, optimal times were a 9-sec delay time post IV injection in the arterial phase, and an 18-sec delay time post IV injection in the venous phase. A nine-sec delay time was acceptable for the imaging of the canine hepatic arteries by CT angiography. After completion of arterial phase scanning, venous structures of the liver were well visualized as seen on the venous phase.
Angiography/methods/*veterinary
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Animals
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Contrast Media/pharmacology
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Dogs/*anatomy & histology
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Iohexol/pharmacology
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Liver/*blood supply
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Tomography, X-Ray Computed/methods/*veterinary
2.Efficacy of nano-hydroxyapatite prepared by an aqueous solution combustion technique in healing bone defects of goat.
Samit Kumar NANDI ; Biswanath KUNDU ; Samir Kumar GHOSH ; Dipak Kumar DE ; Debabrata BASU
Journal of Veterinary Science 2008;9(2):183-191
The present study was undertaken to evaluate porous hydroxyapatite (HAp), the powder of which was prepared by a novel aqueous solution combustion technique, as a bone substitute in healing bone defects in vivo, as assessed by radiologic and histopathologic methods, oxytetracycline labeling, and angiogenic features in Bengal goat. Bone defects were created in the diaphysis of the radius and either not filled (group I) or filled with a HAp strut (group II). The radiologic study in group II showed the presence of unabsorbed implants which acted as a scaffold for new bone growth across the defect, and the quality of healing of the bone defect was almost indistinguishable from the control group, in which the defect was more or less similar, although the newly formed bony tissue was more organized when HAp was used. Histologic methods showed complete normal ossification with development of Haversian canals and well-defined osteoblasts at the periphery in group II, whereas the control group had moderate fibro-collagenization and an adequate amount of marrow material, fat cells, and blood vessels. An oxytetracycline labeling study showed moderate activity of new bone formation with crossing-over of new bone trabeculae along with the presence of resorption cavities in group II, whereas in the control group, the process of new bone formation was active from both ends and the defect site appeared as a homogenous non-fluoroscent area. Angiograms of the animals in the control group showed uniform angiogenesis in the defect site with establishment of trans-transplant angiogenesis, whereas in group II there was complete trans-transplant shunting of blood vessel communication. Porous HAp ceramic prepared by an aqueous combustion technique promoted bone formation over the defect, confirming their biologic osteoconductive property.
Angiography/veterinary
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Animals
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Collagen/*therapeutic use
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Durapatite/*therapeutic use
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Fractures, Bone/radiography/therapy/*veterinary
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Goat Diseases/*therapy
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Goats
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Osteogenesis/*physiology
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Oxytetracycline
3.Coronary angiography of in vitro porcine heart using MSCT.
Lei WAN ; Siy It TELET ; Hua WEI ; Chong-Liang YING ; Ya-hui WANG ; Kai-fei DENG ; Dong-Hua ZOU ; Zheng-done LI ; Guang-You ZHU
Journal of Forensic Medicine 2014;30(5):321-336
OBJECTIVE:
To establish standardized methods and parameters of the isolated heart coronary angiography through the experiment of in vitro porcine heart by MSCT.
METHODS:
Based on different perfusion volume (50, 60 and 70 mL) and different perfusion-imaging time (5, 10 and 20 min), the in vitro porcine coronary artery was injected liposoluble and water-soluble contrast agents using remodel angiography equipment and scanned by MSCT. And the 3D image results were compared. The images were recorded and evaluated by 2 radiologists and analyzed by statistical software.
RESULTS:
Liposoluble contrast agent affected the images by damaging and infiltrating the fats around the coronary artery, while the water-soluble contrast agent didn't affect the images. The groups with 60 mL or 70 mL perfusion and 5 min perfusion-imaging time had the best images.
CONCLUSION
The suitable parameters of the angiography lay the foundation of postmortem coronary angiography.
Animals
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Coronary Angiography/veterinary*
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Coronary Vessels/diagnostic imaging*
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Heart
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Imaging, Three-Dimensional/methods*
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In Vitro Techniques
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Multidetector Computed Tomography/veterinary*
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Predictive Value of Tests
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Sensitivity and Specificity
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Software
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Software Validation
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Swine