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地中海贫血儿童供血机制的建立及指导策略 被引量:4
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作者 苏相耿 李彬 +1 位作者 覃水庆 陈悦 《临床输血与检验》 CAS 2013年第2期184-186,共3页
依据《中华人民共和国献血法》规定,救治临床患者需要的血液均来自无偿献血,但是,随着医疗水平的提高及医疗技术的发展,无偿献血的血液供应远远不能满足临床医疗对于血液的需求[1],血液供应长期处于紧张状态。广西属于地中海贫血(... 依据《中华人民共和国献血法》规定,救治临床患者需要的血液均来自无偿献血,但是,随着医疗水平的提高及医疗技术的发展,无偿献血的血液供应远远不能满足临床医疗对于血液的需求[1],血液供应长期处于紧张状态。广西属于地中海贫血(Mediterraneananemia,简称地贫)高发区之一,输血是维持重症地中海贫血儿童(重症地中海贫血儿童能够长大成年的相对较少)生命的重要医疗手段,保障重症地中海贫血儿童能够定期输血,解决的不仅是医疗问题,更主要是解决社会稳定的问题。 展开更多
关键词 地中海贫 疗法 机制
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从临床供血短缺看其破解路径 被引量:3
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作者 范本梅 郑汝峰 《中国继续医学教育》 2019年第1期56-58,共3页
常态化临床供血短缺直接影响正常的医疗活动和医疗秩序。文章就临床供血短缺的现状,总结了导致临床供血短缺的主要原因在于临床用血量的刚性增长、不合理的临床用血以及血液供应量的不足等因素;提出了可通过多方面联动来缓解此现状:首先... 常态化临床供血短缺直接影响正常的医疗活动和医疗秩序。文章就临床供血短缺的现状,总结了导致临床供血短缺的主要原因在于临床用血量的刚性增长、不合理的临床用血以及血液供应量的不足等因素;提出了可通过多方面联动来缓解此现状:首先,医疗机构要加强对临床医师合理科学用血的培训并加强监管力度,不对患者输人情血、安慰血且杜绝把输血当成一种常规临床治疗手段,同时临床医师对符合条件的择期手术患者应用自体输血等新技术;其次,血站应更新宣传平台,力求在政府协助下建立全社会无偿献血联动机制,积极扩充血源,破解临床供血短缺现状。 展开更多
关键词 临床短缺 原因分析 破解途径 合理科学用 液替代途径 联动机制
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丁咯地尔治疗椎基底动脉供血不足50例临床报告 被引量:1
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作者 张有富 贾龙斌 《临床医药实践》 2004年第8期591-592,共2页
关键词 丁咯地尔 椎-基底动脉不足发病机制 静脉滴注 药物治疗
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皮肤表面温度测定对阻隔式皮瓣存活影响的实验研究 被引量:1
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作者 邹天南 赵晓芳 《昆明医学院学报》 2006年第2期28-30,共3页
目的 探索皮温测定与阻隔式皮瓣成活的关系,为皮瓣血供判断提供一新的定量指标.方法 选用5头版纳微型猪,共制作7组,每组两个皮瓣,采用左、右侧自身对照,经阻隔迟延术后第3、7、10、20天,第3、7、10天用皮温测定仪测定其皮温.结... 目的 探索皮温测定与阻隔式皮瓣成活的关系,为皮瓣血供判断提供一新的定量指标.方法 选用5头版纳微型猪,共制作7组,每组两个皮瓣,采用左、右侧自身对照,经阻隔迟延术后第3、7、10、20天,第3、7、10天用皮温测定仪测定其皮温.结果 术前二者皮温无明显差异,阻隔迟延术后及转位术后二者有显著差异.结论 皮温测定可作为阻隔式皮瓣转位时机的一个参考指标,在32.5~33.5℃之间. 展开更多
关键词 皮温测定 阻隔式皮瓣 血供机制
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Cholangiocytes and blood supply 被引量:9
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作者 Eugenio Gaudio Antonio Franchitto +6 位作者 Luigi Pannarale Guido Carpino Gianfranco Alpini Heather Francis Shannon Glaser Domenico Alvaro Paolo Onori 《World Journal of Gastroenterology》 SCIE CAS CSCD 2006年第22期3546-3552,共7页
The microvascular supply of the biliary tree, the peribiliary plexus (PBP), stems from the hepatic artery branches and flows into the hepatic sinusoids. A detailed three-dimensional study of the PBP has been perform... The microvascular supply of the biliary tree, the peribiliary plexus (PBP), stems from the hepatic artery branches and flows into the hepatic sinusoids. A detailed three-dimensional study of the PBP has been performed by using the Scanning Electron Microscopy vascular corrosion casts (SEMvcc) technique. Considering that the PBP plays a fundamental role in supporting the secretory and absorptive functions of the biliary epithelium, their organization in either normalcy and pathology is explored. The normal liver shows the PBP arranged around extra-and intrahepatic biliary tree. In the small portal tract PBP was characterized by a single layer of capillaries which progressively continued with the extrahepatic PBP where it showed a morecomplex vascular network. After common duct ligation (BDL), progressive modifications of bile duct and PBP proliferation are observed. The PBP presents a three-dimensional network arranged around many bile ducts and appears as bundles of vessels, composed by capillaries of homogeneous diameter with a typical round mesh structure. The PBP network is easily distinguishable from the sinusoidal network which appears normal. Considering the enormous extension of the PBP during BDL, the possible role played by the Vascular Endothelial Growth Factor (VEGF) is evaluated. VEGF-A,VEGF-C and their related receptors appeared highly immunopositive in proliferating cholangiocytes of BDL rats. The administration of anti-VEGF-A or anti-VEGF-C antibodies to BDL rats as well as hepatic artery ligation induced a reduced bile duct mass. The administration of rVEGF-A to BDL hepatic artery ligated rats prevented the decrease of cholangiocyte proliferation and VEGF-A expression as compared to BDL control rats. These data suggest the role of arterial blood supply of the biliary tree in conditions of cholangiocyte proliferation, such as it occurs during chronic cholestasis. On the other hand,the role played by VEGF as a tool of cross-talk between cholangiocytes and PBP endothelial cells suggests that manipulation of VEGF release and function could represent a therapeutic strategy for human pathological conditions characterized by damage of hepatic artery or the biliary tree. 展开更多
关键词 Peribiliary plexus Periportal plexus CHOLANGIOCYTES
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