添加剂 发表于 2025-3-21 16:25:11
书目名称Microcirculation in Fractal Branching Networks影响因子(影响力)<br> http://figure.impactfactor.cn/if/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks影响因子(影响力)学科排名<br> http://figure.impactfactor.cn/ifr/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks网络公开度<br> http://figure.impactfactor.cn/at/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks网络公开度学科排名<br> http://figure.impactfactor.cn/atr/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks被引频次<br> http://figure.impactfactor.cn/tc/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks被引频次学科排名<br> http://figure.impactfactor.cn/tcr/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks年度引用<br> http://figure.impactfactor.cn/ii/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks年度引用学科排名<br> http://figure.impactfactor.cn/iir/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks读者反馈<br> http://figure.impactfactor.cn/5y/?ISSN=BK0633142<br><br> <br><br>书目名称Microcirculation in Fractal Branching Networks读者反馈学科排名<br> http://figure.impactfactor.cn/5yr/?ISSN=BK0633142<br><br> <br><br>设想 发表于 2025-3-21 20:17:18
Tatsuhisa Takahashites of movement of a substance from one location to another or the rates of the transformation of a substance from one chemical form to another. I shall thus deal with the planning of such experiments, with the calculation procedures involved, and with the interpretation and significance of the resuTremor 发表于 2025-3-22 02:43:57
Tatsuhisa Takahashihe morphology or chemistry of these entities in brain. The unusual aspect of their occurrence in nervous tissue is their high concentration. Microtubules are seen in great numbers on electron microscopic examination of neurons. Tubulin concentrations in brain have been reported between 11% and over到婚嫁年龄 发表于 2025-3-22 06:42:35
http://reply.papertrans.cn/64/6332/633142/633142_4.pngHERE 发表于 2025-3-22 10:47:18
Tatsuhisa Takahashitudied by workers interested in brain metabolism. Despite this, almost all our knowledge of the function of structurally bound multienzyme complexes in mitochondria has come from studies of mitochondria from liver and muscle. This is because as regards their purity and functional integrity preparatiCursory 发表于 2025-3-22 14:43:50
Tatsuhisa Takahashitudied by workers interested in brain metabolism. Despite this, almost all our knowledge of the function of structurally bound multienzyme complexes in mitochondria has come from studies of mitochondria from liver and muscle. This is because as regards their purity and functional integrity preparatinovelty 发表于 2025-3-22 18:01:09
Branching Systems of Fractal Vascular Trees,ctal nature: self-similar branching patterns and recursive bifurcations. These branching networks have the increasing density of branches toward the terminals with decreases in branch radius to the –.th power: . is termed the fractal dimension. We have devised the primary expression . that providesJargon 发表于 2025-3-23 01:15:52
A Theoretical Model for the Microcirculatory Network,thod for developing individual branches consecutively. The network is characterized by fractal principles, the geometric self-similarity of the recursive bifurcations (.) and a power relation of the branch length and radius (.). In this model, hemodynamic parameters, such as blood pressure, blood flCharlatan 发表于 2025-3-23 04:43:44
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,The Fåhraeus–Lindqvist Effect on the Retinal Microcirculation,l was used to simulate the arteriovenous distributions of hemodynamic parameters within a dichotomously branching network. The distributions of vascular resistance and wall shear stress as a function of vessel diameter within the retinal microcirculatory network with the Fåhraeus–Lindqvist effect ar