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排序方式: 共有1327条查询结果,搜索用时 17 毫秒
21.
Laird JR Dangas G Jaff M Satler LF Mehran R Leon MB 《The Journal of invasive cardiology》1999,11(12):757-762
The removal of urokinase from the market has created a dilemma for interventionists and vascular surgeons treating patients with acute limb threatening ischemia due to arterial thrombosis or embolization. Reteplase is a newer, fibrin-specific thrombolytic agent with properties that make it an attractive alternative to urokinase. We report two cases of successful treatment of acute, limb threatening ischemia with intra-arterial Reteplase therapy. 相似文献
22.
C. Laird Birmingham Adel F. Alothman Elliot M. Goldner 《The International journal of eating disorders》1996,20(2):211-213
A case of anorexia nervosa (AN) is reported where heart failure occurred secondary to severe hypophosphatemia despite oral phosphate supplementation. We recommend starting patients with AN on oral phosphate when refeeding is begun, monitoring serum phosphate every 1 to 2 days for at least the first week of refeeding, and discontinuation of refeeding during phosphate supplementation should severe hypophosphatemia develop. © 1996 by John Wiley & Sons, Inc. 相似文献
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Kathleen Goodchild Carl Laird Birmingham Roger Shick 《The International journal of eating disorders》1988,7(6):853-858
A case of bilateral cerebrovascular accidents in a patient with anorexia nervosa is presented. This is the first such case to be reported in the literature. The neurological complications of anorexia nervosa are reviewed. This case highlights the potential seriousness of mitral valve prolapse in anorexia nervosa. 相似文献
25.
Lohman AW Billaud M Straub AC Johnstone SR Best AK Lee M Barr K Penuela S Laird DW Isakson BE 《Journal of vascular research》2012,49(5):405-416
Aims: Pannexins (Panx) form ATP release channels and it has been proposed that they play an important role in the regulation of vascular tone. However, distribution of Panx across the arterial vasculature is not documented. Methods: We tested antibodies against Panx1, Panx2 and Panx3 on human embryonic kidney cells (which do not endogenously express Panx proteins) transfected with plasmids encoding each Panx isoform and Panx1(-/-) mice. Each of the Panx antibodies was found to be specific and was tested on isolated arteries using immunocytochemistry. Results: We demonstrated that Panx1 is the primary isoform detected in the arterial network. In large arteries, Panx1 is primarily in endothelial cells, whereas in small arteries and arterioles it localizes primarily to the smooth muscle cells. Panx1 was the predominant isoform expressed in coronary arteries, except in arteries less than 100 μm where Panx3 became detectable. Only Panx3 was expressed in the juxtaglomerular apparatus and cortical arterioles. The pulmonary artery and alveoli had expression of all 3 Panx isoforms. No Panx isoforms were detected at the myoendothelial junctions. Conclusion: We conclude that the specific localized expression of Panx channels throughout the vasculature points towards an important role for these channels in regulating the release of ATP throughout the arterial network. 相似文献
26.
Biswas Mainak Saba Luca Omerzu Tomaž Johri Amer M. Khanna Narendra N. Viskovic Klaudija Mavrogeni Sophie Laird John R. Pareek Gyan Miner Martin Balestrieri Antonella Sfikakis Petros P Protogerou Athanasios Misra Durga Prasanna Agarwal Vikas Kitas George D Kolluri Raghu Sharma Aditya Viswanathan Vijay Ruzsa Zoltan Nicolaides Andrew Suri Jasjit S. 《Journal of digital imaging》2021,34(3):581-604
Journal of Digital Imaging - Cardiovascular diseases (CVDs) are the top ten leading causes of death worldwide. Atherosclerosis disease in the arteries is the main cause of the CVD, leading to... 相似文献
27.
Growth and time: an interpretation of allometry 总被引:1,自引:0,他引:1
28.
Carotid inter‐adventitial diameter is more strongly related to plaque score than lumen diameter: An automated tool for stroke analysis 下载免费PDF全文
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Variations in internal structure,composition and protein distribution between intra‐ and extra‐articular knee ligaments and tendons 下载免费PDF全文
Yalda A. Kharaz Elizabeth G. Canty‐Laird Simon R. Tew Eithne J. Comerford 《Journal of anatomy》2018,232(6):943-955
Tendons and ligaments play key roles in the musculoskeletal system in both man and animals. Both tissues can undergo traumatic injury, age‐related degeneration and chronic disease, causing discomfort, pain and increased susceptibility to wider degenerative joint disease. To date, tendon and ligament ultrastructural biology is relatively under‐studied in healthy, non‐diseased tissues. This information is essential to understand the pathology of these tissues with regard to function‐related injury and to assist with the future development of tissue‐engineered tendon and ligament structures. This study investigated the morphological, compositional and extracellular matrix protein distribution differences between tendons and ligaments around the non‐diseased canine stifle joint. The morphological, structural characteristics of different regions of the periarticular tendons and ligaments (the intra‐articular anterior cruciate ligament, the extra‐articular medial collateral ligament, the positional long digital extensor tendon and energy‐storing superficial digital flexor tendons) were identified using a novel semi‐objective histological scoring analysis and by determining their biochemical composition. Protein distribution of extracellular matrix collagens, proteoglycans and elastic fibre proteins in anterior cruciate ligament and long digital extensor tendon were also determined using immunostaining techniques. The anterior cruciate ligament was found to have significant morphological differences in comparison with the other three tissues, including less compact collagen architecture, differences in cell nuclei phenotype and increased glycosaminoglycan and elastin content. Intra‐ and interobserver differences of histology scoring resulted in an average score 0.7, indicative of good agreement between observers. Statistically significant differences were also found in the extracellular matrix composition in terms of glycosaminoglycan and elastin content, being more prominent in the anterior cruciate ligament than in the other three tissues. A different distribution of several extracellular matrix proteins was also found between long digital extensor tendon and anterior cruciate ligament, with a significantly increased immunostaining of aggrecan and versican in the anterior cruciate ligament. These findings directly relate to the different functions of tendon and ligament and indicate that the intra‐articular anterior cruciate ligament is subjected to more compressive forces, reflecting an adaptive response to normal or increased loads and resulting in different extracellular matrix composition and arrangement to protect the tissue from damage. 相似文献