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雀脑散治疗脑震荡后遗症30例 被引量:1
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作者 张振榆 张伟 《中国中医急症》 2010年第2期321-322,共2页
目的观察雀脑散治疗脑震荡后遗症的疗效。方法采用自拟雀脑散治疗脑震荡后遗症30例,40d为1疗程。结果本组病例总有效率93%。结论本方对脑震荡后遗症具有促进脑细胞恢复、消除症状的作用。
关键词 震荡 后遗症 活血开窍 雀脑
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柱前衍生化法测定雀脑中丙氨酸的含量 被引量:2
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作者 尹昭晔 王优 +1 位作者 刘湘 李艳梅 《中医药导报》 2018年第9期42-44,共3页
目的:建立雀脑药材中丙氨酸含量测定方法,并对不同采集时间的样品进行比较。方法:采用柱前衍生化HPLC法,色谱柱为Elite C_(18)(200 mm×4.6 mm,5μm),流动相A为乙腈-水(1∶1),流动相B为0.05 mol/L醋酸钠缓冲液(pH=6.4),梯度洗脱,检... 目的:建立雀脑药材中丙氨酸含量测定方法,并对不同采集时间的样品进行比较。方法:采用柱前衍生化HPLC法,色谱柱为Elite C_(18)(200 mm×4.6 mm,5μm),流动相A为乙腈-水(1∶1),流动相B为0.05 mol/L醋酸钠缓冲液(pH=6.4),梯度洗脱,检测波长为360 nm,流速为1.0 mL/min。结果:丙氨酸含量在0.04~0.2μg范围内线性关系良好,平均加样回收率为99.56%,RSD%为1.67%,不同批次雀脑药材中丙氨酸的含量为3~5 mg/g。结论:丙氨酸的柱前衍生化HPLC含量测定方法重复性好,灵敏度高,可用于雀脑的质量控制。 展开更多
关键词 雀脑 丙氨酸 柱前衍生化 高效液相色谱法
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雀脑药材的质量标准提升研究 被引量:2
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作者 段秀俊 刘培 +4 位作者 杨超 张娜 闭梅森 段青青 朴晋华 《世界科学技术-中医药现代化》 CSCD 北大核心 2020年第8期2831-2838,共8页
目的进行雀脑药材的鉴别、检查及含量测定研究,为其临床应用、生产使用与市场监督管理提供质量保证。方法鉴别研究采用显微鉴别及薄层鉴别方法;水分检查采用烘干法,总灰分及酸不溶性灰分检查采用炽灼残渣法;含量测定采用总氮量法及全自... 目的进行雀脑药材的鉴别、检查及含量测定研究,为其临床应用、生产使用与市场监督管理提供质量保证。方法鉴别研究采用显微鉴别及薄层鉴别方法;水分检查采用烘干法,总灰分及酸不溶性灰分检查采用炽灼残渣法;含量测定采用总氮量法及全自动氨基酸分析仪法。结果雀脑的显微鉴别特征为树突碎片与神经纤维;薄层鉴别以丙氨酸为对照,鉴别氨基酸类成分,随机选取20111001批雀脑药材为对照药材。水分介于5.57%-5.83%,总灰分介于4.40%-4.70%,酸不溶性总灰分介于0.28%-0.38%。总氮量介于6.49%-7.04%。17种氨基酸的线性相关系数介于0.9997-0.9999;精密度实验RSD介于0.11%-0.52%;10小时内稳定性良好,RSD介于0.02%-0.84%;重复性实验RSD介于0.17%-2.27%;回收率实验RSD介于1.24%-2.47%,平均回收率介于97.38%-102.19%;3批雀脑药材的17种氨基酸总含量介于47.61-66.37 mg·g-1。结论建立显微鉴别、薄层鉴别及含量测定方法专属性强,重现性好,具有较强创新性,对于控制雀脑药材质量具有显著意义;水分、总灰分、及酸不溶性灰分测定结果,可以为制订雀脑药材质量标准提供实验依据。 展开更多
关键词 雀脑 鉴别 检查 含量测定 氨基酸
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妙手绘仁心 精工出尚品
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《科学之友》 2014年第8期24-27,共4页
精道选材动静互涵龟龄集组方选料共28味,应28星宿,依据传统医学"天地人合一"的整体观念,采用天地人三才合一之说,精选天冬、地黄、人参,天上飞物如雀脑,陆地逐物如鹿茸、穿山甲,水中游物如海马;遍采植物根(熟地)、茎(锁阳)、... 精道选材动静互涵龟龄集组方选料共28味,应28星宿,依据传统医学"天地人合一"的整体观念,采用天地人三才合一之说,精选天冬、地黄、人参,天上飞物如雀脑,陆地逐物如鹿茸、穿山甲,水中游物如海马;遍采植物根(熟地)、茎(锁阳)、叶(淫羊藿)、花(丁香)、果(枸杞)、种子(菟丝子);更有浅表矿物(大青盐)和深层矿物(石燕)等一应自然之产。 展开更多
关键词 龟龄集 天地人 雀脑 大青盐 仁心 锁阳 三才 天冬 炮制方法 九蒸九晒
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No association between brain size and male sexual behavior in the guppy 被引量:1
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作者 Alberto CORRAL-LOPEZ Simon ECKERSTROM-LIEDHOLM Wouter VAN DER BIJL Alexander KOTRSCHAL Niclas KOLM 《Current Zoology》 SCIE CAS CSCD 2015年第2期265-273,共9页
Animal behavior is remarkably variable at all taxonomic levels. Over the last decades, research on animal behavior has focused on understanding ultimate processes. Yet, it has progressively become more evident that to... Animal behavior is remarkably variable at all taxonomic levels. Over the last decades, research on animal behavior has focused on understanding ultimate processes. Yet, it has progressively become more evident that to fully understand beha- vioral variation, ultimate explanations need to be complemented with proximate ones. In particular, the mechanisms generating variation in sexual behavior remain an open question. Variation in aspects of brain morphology has been suggested as a plausible mechanism underlying this variation. However, our knowledge of this potential association is based almost exclusively on com- parative analyses. Experimental studies are needed to establish causality and bridge the gap between micro- and macroevolutio- nary mechanisms concerning the link between brain and sexual behavior. We used male guppies that had been artificially selected for large or small relative brain size to study this association. We paired males with females and scored the full known set of male and female sexual behaviors described in guppies. We found several previously demonstrated associations between male traits, male behavior and female behavior. Females responded more strongly towards males that courted more and males with more orange coloration. Also, larger males and males with less conspicuous coloration attempted more coerced copulations. However, courting, frequency of coerced copulation attempts, total intensity of sexual behavior, and female response did not differ between large- and small-brained males. Our data suggest that relative brain size is an unlikely mechanism underlying variation in sexual behavior of the male guppy. We discuss these findings in the context of the conditions under which relative brain size might affect male sexual behavior . 展开更多
关键词 Brain size Brain morphology Sexual behavior GUPPY Artificial selection Behavioral mechanisms
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