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    • 7. 发明授权
    • Pathogen-resistant grape plants
    • 病原菌抗性葡萄植物
    • US06995015B1
    • 2006-02-07
    • US09570217
    • 2000-05-12
    • Jayasankar SubramanianZhijian LiDennis J. Gray
    • Jayasankar SubramanianZhijian LiDennis J. Gray
    • A01H1/04
    • C07K14/415C12N15/8282
    • The invention features a method of producing a grape somatic embryo having resistance to a plant pathogen, the method including the steps of (a) culturing a grape somatic embryo in a first liquid culture medium that includes a plant growth regulator and a phytotoxin from a plant pathogen; (b) exchanging the first liquid culture medium for a second liquid culture medium not including the phytotoxin; (c) recovering a living grape cell or grape cell cluster from the second liquid culture, the living cell or cell cluster being resistant to the pathogen; and (d) culturing the grape cell or grape cell cluster in a third culture medium to produce a grape somatic embryo.
    • 本发明的特征在于一种生产对植物病原体具有抗性的葡萄体细胞胚的方法,该方法包括以下步骤:(a)在包含植物生长调节剂和来自植物的植物毒素的第一液体培养基中培养葡萄体细胞胚 病原; (b)将不含植物毒素的第二液体培养基的第一液体培养基更换; (c)从第二液体培养物中回收活的葡萄细胞或葡萄细胞簇,活细胞或细胞簇对病原体具有抗性; 和(d)在第三培养基中培养葡萄细胞或葡萄细胞簇以产生葡萄体细胞胚。
    • 9. 发明授权
    • Surface feed-in electrodes for deposition of thin film solar cell and signal feed-in method thereof
    • 用于沉积薄膜太阳能电池的表面馈入电极及其信号馈入方法
    • US08438989B2
    • 2013-05-14
    • US13698864
    • 2010-10-21
    • Shengming HuYi LiZhubing HeZhijian LiJianhua ZhouChunzhu Wang
    • Shengming HuYi LiZhubing HeZhijian LiJianhua ZhouChunzhu Wang
    • H01J1/00H05H1/24
    • C23C16/505C23C16/24H01J37/32091H01J37/32577H01L31/1804H01L31/1824Y02E10/545Y02E10/547Y02P70/521
    • The present invention discloses a surface feed-in electrode structure for thin film solar cell deposition, relating to solar cell technologies. The surface feed-in electrode structure uses a signal feed-in component with a flat waist and a semicircular feed-in end to connect the signal feed-in port by surface contact. The signal feed-in port is located in a hallowed circular area of a center of the backside of a cathode plate, and feeds in an RF/VHF power supply signal. An anode plate is grounded. The cathode plate is insulated with a shielding cover, and a through-hole is configured on the shielding cover. The effects include that, by using the surface feed-in at the center of the electrode plate, the feeding line loss of single-point or multi-point feed-in configurations can be overcome. Uniform large area and stable discharge driven by the RF/VHF power supply signal can be achieved, and the standing wave and the skin effect can be effectively removed. The production efficiency can be improved and the cost can be reduced.
    • 本发明公开了一种与太阳能电池技术相关的用于薄膜太阳能电池沉积的表面馈入电极结构。 表面馈入电极结构使用具有平腰和半圆形馈入端的信号馈入部件,以通过表面接触连接信号馈入端口。 信号馈入端口位于阴极板背面中心的圆形圆形区域中,并馈入RF / VHF电源信号。 阳极板接地。 阴极板与屏蔽盖绝缘,屏蔽罩上设有通孔。 其效果包括通过使用电极板中心的表面馈入,可以克服单点或多点馈入配置的馈线损耗。 可以实现由RF / VHF电源信号驱动的均匀的大面积和稳定的放电,并且可以有效地消除驻波和皮肤效应。 可以提高生产效率,降低成本。