摘要:
The present invention relates to therapeutic applications of kallikreins and compositions containing them for treating, preventing and/or ameliorating cancers, especially epithelial cancers, such as ovarian, breast and cervical cancer.
摘要:
A superior braze material, along with a method of producing the braze material and a method of sealing, joining or bonding materials through brazing is disclosed. The braze material is based on a metal oxide-noble metal mixture, typically Ag—CuO, with the addition of a small amount of metal oxide and/or metal such as TiO2, Al2O3, YSZ, Al, and Pd that will further improve wettability and joint strength. Braze filer materials, typically either in the form of paste or thin foil, may be prepared by a high-energy cryogenic ball milling process. This process allows the braze material to form at a finer size, thereby allowing more evenly dispersed braze particles in the resultant braze layer between on the surface of the ceramic substrate and metallic parts.
摘要:
FIG. 1 is a dorsal plan view an insole design showing my new design; FIG. 2 is a plantar plan view thereof; FIG. 3 is a left-side medial view thereof; FIG. 4 is a right-side lateral view thereof; FIG. 5 is an upside-down front toe elevation view thereof; and, FIG. 6 is a rear heal elevation view thereof. Any shading is not a feature of the design but is utilized to illustrate the surface contours of the insole design in the drawings. The broken lines depict portions of the Insole that form no part of the claimed design.
摘要:
A superior braze material, along with a method of producing the braze material and a method of sealing, joining or bonding materials through brazing is disclosed. The braze material is based on a metal oxide-noble metal mixture, typically Ag—CuO, with the addition of a small amount of metal oxide and/or metal such as TiO2, Al2O3, YSZ, Al, and Pd that will further improve wettability and joint strength. Braze filer materials, typically either in the form of paste or thin foil, may be prepared by a high-energy cryogenic ball milling process. This process allows the braze material to form at a finer size, thereby allowing more evenly dispersed braze particles in the resultant braze layer between on the surface of the ceramic substrate and metallic parts.