Abstract:
A Lactobacillus paracasei-containing product used for inhibiting dental diseases caused by bacteria is provided, which comprises a plurality of Lactobacillus paracasei for inhibiting the growth of bacteria of dental diseases. Particularly, foods, oral hygiene products or oral treatment medicine containing the Lactobacillus paracasei when being administered or applied to a user can inhibit or reduce the number of pathogens of dental caries and periodontal diseases in oral cavity of the user, thereby achieving the efficacy of preventing dental diseases, such as dental caries and periodontal diseases.
Abstract:
A Lactobacillus paracasei-containing product used for inhibiting dental diseases caused by bacteria is provided, which comprises a plurality of Lactobacillus paracasei for inhibiting the growth of bacteria of dental diseases. Particularly, foods, oral hygiene products or oral treatment medicine containing the Lactobacillus paracasei when being administered or applied to a user can inhibit or reduce the number of pathogens of dental caries and periodontal diseases in oral cavity of the user, thereby achieving the efficacy of preventing dental diseases, such as dental caries and periodontal diseases.
Abstract:
A liquid crystal panel and a cross-shaped spacer structure. The liquid crystal panel includes an array substrate, a color filter substrate, and a cross-shaped spacer structures sandwiched between the array substrate and the color filter substrate. The cross-shaped spacer structures includes strip-like first spacers disposed on the upper surface of the array substrate, and strip-like second spacers disposed on the lower surface of the color filter substrate. The end surfaces of each three of the strip-like first spacers and the end surface of each one of the strip-like second spacers are abutted against each other in a cross manner. Thus, when the liquid crystal panel is impacted by external force, the strip-like first spacers and the strip-like second spacers can keep a tight abutment therebetween, so as to ensure the display quality of the liquid crystal panel.
Abstract:
A flat display panel and a method of repairing the same are proposed. The flat display panel includes a plurality of repairing lines parallel to data lines. The plurality of repairing lines are disposed at one side of a plurality of pixel electrodes one on one. When one of the plurality of data lines is broken, repairing lines form an electrical bypass route for circumventing a gap in the broken data line. Thus, a signal can be normally transmitted to the pixel electrode through the electrical bypass route.
Abstract:
A power supply cord set includes a power connector and a power cord. The power connector includes an insulating body, a first conducting element and a second conducting element. The second conducting element includes a first conducting part having a first connecting segment and a second connecting segment. The power cord includes a first multi-core wire and a second multi-core wire, which are covered by the external insulating cover layer. The internal insulating cover layer is partially extended out of a distal aperture of the external insulating cover layer. The bare wire portion of the first multi-core wire is fixed on the first conducting element of the power connector. The bare wire portion of the second multi-core wire is fixed on the first connecting segment of the second conducting element. A terminal part of the internal insulating cover layer is fixed by the second connecting segment.
Abstract:
A power supply apparatus includes a main body, a first power connecting part and a foldable electrical connector. The main body includes a power converting circuit therein and has a first socket at a first side thereof. The first power connecting part has an end connected to the main body. The foldable electrical connector includes a housing and at least a conductive pin. The housing includes a connecting member and a receiving portion. The connecting member is electrically connected to the first socket of the main body. The conductive pin is disposed in the receiving portion and multi-angularly rotatable with respect to the housing so as to be selectively stored in the receiving portion or protruded from the housing.
Abstract:
A power supply apparatus includes a main body, a first power connecting part and a foldable electrical connector. The main body includes a power converting circuit therein and has a first socket at a first side thereof. The first power connecting part has an end connected to the main body. The foldable electrical connector includes a housing and at least a conductive pin. The housing includes a connecting member and a receiving portion. The connecting member is electrically connected to the first socket of the main body. The conductive pin is disposed in the receiving portion and multi-angularly rotatable with respect to the housing so as to be selectively stored in the receiving portion or protruded from the housing.
Abstract:
The present invention discloses a liquid crystal panel and a spacer structure thereof. The liquid crystal panel has: an array substrate, a color filter substrate, and a plurality of spacer structures sandwiched between the array substrate and the color filter substrate. Each of the spacer structures has: a first spacer disposed on an upper surface of the array substrate; and a second spacer disposed on a lower surface of the color filter substrate. The second spacer is correspondingly abutted against the first spacer. Thus, when the liquid crystal panel is impacted by external force, the first spacer and the second spacer can keep a tight abutment therebetween, so as to ensure the display quality of the liquid crystal panel.
Abstract:
A power supply cord set includes a power connector and a power cord. The power connector includes an insulating body, a first conducting element and a second conducting element. The second conducting element includes a first conducting part having a first connecting segment and a second connecting segment. The power cord includes a first multi-core wire and a second multi-core wire, which are covered by the external insulating cover layer. The internal insulating cover layer is partially extended out of a distal aperture of the external insulating cover layer. The bare wire portion of the first multi-core wire is fixed on the first conducting element of the power connector. The bare wire portion of the second multi-core wire is fixed on the first connecting segment of the second conducting element. A terminal part of the internal insulating cover layer is fixed by the second connecting segment.