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无会阴侧切低位产钳术在产妇分娩中的应用 被引量:1
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作者 黎祖娟 吴言英 黄练 《实用妇科内分泌电子杂志》 2023年第15期9-12,共4页
目的探讨无会阴侧切低位产钳术在产妇分娩中的应用效果。方法选取100例行无会阴侧切低位产钳术产妇为研究组,另选取同期100例行会阴侧切低位产钳术产妇为对照组。比较两组产后2h、24h出血量、伤口裂伤程度、伤口愈合情况、伤口疼痛感、... 目的探讨无会阴侧切低位产钳术在产妇分娩中的应用效果。方法选取100例行无会阴侧切低位产钳术产妇为研究组,另选取同期100例行会阴侧切低位产钳术产妇为对照组。比较两组产后2h、24h出血量、伤口裂伤程度、伤口愈合情况、伤口疼痛感、产后住院时间及费用、新生儿产伤、新生儿窒息的差异。结果研究组产后2h出血量少于对照组(P<0.05),产后24h出血量比较,差异无统计学意义(P>0.05);研究组伤口疼痛评分低于对照组(P<0.05);研究组住院费用少于对照组(P<0.05);两组产后住院时间比较,差异无统计学意义(P>0.05);研究组伤口裂伤程度优于对照组(P<0.05);两组新生儿窒息率比较,差异无统计学意义(P>0.05);两组均为甲级愈合,均无新生儿产伤情况发生。结论无会阴侧切低位产钳术在产妇分娩中的应用效果较好,不会增加母婴并发症发生,能降低产后出血量、会阴伤口愈合不良及新生儿窒息率,同时还可以缩短住院时间,减轻患者疼痛、经济及心理负担,促进母婴康复,值得临床推广与应用。 展开更多
关键词 产妇 分娩 无会阴侧切低位产钳术 产后出血 伤口愈合 住院时间 新生儿窒息
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Effect of annealing on superconductivity in Fe_(1+y)(Te_(1-x)S_x) system
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作者 DONG ChiHeng WANG HangDong +5 位作者 YANG JinHu QIAN Bin CHEN Jian li zujuan YUAN HuiQiu FANG MingHu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2010年第7期1216-1220,共5页
We have synthesized polycrystalline samples of Fe1.11(Te1-xSx) and single crystals of Fe1+y(Te0.88S0.12),and characterized their properties.Our results show that the solid solution of S in the Fe1.11Te tetragonal latt... We have synthesized polycrystalline samples of Fe1.11(Te1-xSx) and single crystals of Fe1+y(Te0.88S0.12),and characterized their properties.Our results show that the solid solution of S in the Fe1.11Te tetragonal lattice is limited,~10%.We observed superconductivity at ~8 K in both polycrystalline samples and single crystals.Magnetization measurements reveal that the volume fraction is small for this superconducting phase in both polycrystalline samples as-synthesized and single crystals as-grown.It is found that annealing in air enhances the superconducting fraction;the maximum fraction is almost 100% in the single crystals annealed in air at 300°C.We discuss the effect of annealing on superconductivity and transport properties at the normal state in the Fe1+y(Te1-xSx) system in terms of decrease of the excess Fe. 展开更多
关键词 Fe-Based superconductors Fe1+y(Te1-xSx)single crystal annealing effect
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