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- PVA/Starch共混體系的形態(tài)、結構和性能STUDY ON THE MORPHOLOGY, STRUCTURE AND PROPERTIES IN PVA/STARCH BLEND SYSTEM (SP STARCH-PLASTICS)
- cystathionine β-synthase胱硫醚β-合成酶
- 很多淀粉酶中都具有淀粉結合區域(starch-bindingdomain,SBD),如!Starch-binding domains(SBD)are present in lots of amylases,e.
- Uroporphyrinogen-Ⅰ-Synthase尿卟啉原-Ⅰ-合酶
- GENE-8310GENE8310
- Uroporphyrinogen-Ⅲ synthase尿卟啉原-Ⅲ合酶
- V-gene方法V-gene method
- 目的:研究羥乙基淀粉200/0.5注射液(Hydroxyethyl Starch,HES)對失血性休克大鼠腦的保護作用。AIM: To investigate the protective effect of 6%25 Hydroxyethyl Starch(HES,200/(0.5)) on the brain of hemorrhagic-shocked rats.
- pseudo β-gene假β基因
- HLA-class Ⅲ geneHLA-Ⅲ類(lèi)基因
- 查爾酮合酶(Chalcone synthase,CHS)是類(lèi)黃酮合成途徑中的一個(gè)關(guān)鍵酶。Chalcone Synthase (CHS) is a key enzyme in the biosynthesis of all classes of flavonoids.
- hexokinase Ⅱ gene己糖激酶Ⅱ基因
- AOS(Allene oxide synthase)是茉莉酸合成的脂氧合酶途徑中的第一個(gè)關(guān)鍵酶。Allene oxide synthase (AOS) is the first enzyme in the lipoxygenase pathway which leads to the formation of JA.
- α-heavy chain geneα-重鏈基因
- 目的用6%羥乙基淀粉(hydroxyethyl starch,HES)溶液行急性高容血液稀釋(acute hypervolemic hemodilution,AHHD),觀(guān)察其對肺癌患者圍手術(shù)期凝血功能的影響。Objective To observe the effect of preoperative acute hypervolemic hemodilution(AHHD) with 6%25 Hydroxyethyl Starch(HES) on coagulation of patients with lung cancer during periopartive period.
- 查爾酮合成酶基因(Chalcone synthase;CHS)是植物體類(lèi)黃酮合成的關(guān)鍵基因。Chalcone synthase(CHS)gene is the key gene during the pathway of synthesizing anthocyanidin .
- α-like globin geneα-類(lèi)球蛋白基因
- α-globin gene clusterα-珠蛋白基因簇
- 丙二烯氧化合酶(allene oxide synthase, AOS)是茉莉酸脂加氧酶合成途徑過(guò)程中的第一個(gè)酶。Allene oxide synthase (AOS) is the first enzyme in the lipoxygenase pathway which leads to the formation of jasmonic acid (JA).
- 采用SAC(starch-assisted combustion)法和高溫固相法分別合成鋰離子電池正極材料LiNi0.01Co0.01Mn1.98O4,使用X射線(xiàn)衍射儀、BET法、粒度分析儀及掃描電子顯微鏡對合成材料的結構及物理性能進(jìn)行了表征.LiNi0.01Co0.01Mn1.98O4 materials were prepared by two different methods: starch-assisted combustion (SAC), and traditional solid-state reaction. The product characteristics such as phase composition, particle morphology, and size of as-prepared materials were examined with powder X-ray diffraction (XRD), the Brunauer-Emmett-Teller (BET) surface area method, particle size analysis, and analytical scanning electron microscope (SEM), respectively.