1) Horizontal transmission
横向传播
1.
Comparision of pathogenicity and horizontal transmission ability between recombinant Marek's disease virus field strain with REV-LTR and a very virulent reference strain
带有REV-LTR片段的马立克氏病病毒重组野毒株与超强毒株致病性和横向传播性比较
2.
However, horizontal transmission ability of GX0101 was stronger than that of Md5.
0%),但是,利用MDV特异性核酸探针对同罩饲养的对照鸡的羽毛囊DNA检测表明,与GX0101攻毒鸡同罩饲养的未经免疫未攻毒的对照鸡,从攻毒后第28d就有6/15的比例从羽毛囊中检出MDV,而与vvMd5接种鸡同一隔离罩的对照鸡,在35d时才在2/14的个体中检出MDV,即GX0101的横向传播能力大于超强毒株。
2) Transversal propagation
横向波传播
3) Horizontal Integrating Communication
横向整合传播
4) trans-propagation least mean square algorithm
横向传播最小均方算法
5) transverse wave propagation
横波传播
1.
The influences of initial stress on the vibration and transverse wave propagation in carbon nanotubes under ultrahigh frequency (above 1THz) were investigated.
本文研究初始应力对碳纳米管在极高频率(大于1THz)下横波传播的影响。
2.
The transverse wave propagation in carbon nanotubes/polymer composites laminated structures under ultrahigh frequency(about 1THz)was studied based on the multiple-elastic-beam model.
通过多层弹性梁模型研究了碳纳米管/聚合物复合材料层合结构在高频率(1 TH z左右)下的横波传播,分析了碳纳米管的体积分数和手性对其传播的影响。
6) pass force crossly
横向传力
补充资料:横向动量
见多重产生。
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