Abstract:
A computer-implemented method for real-time coding of medical group codes such as diagnosis and procedure related groups is described. In one embodiment, one or more initial medical group codes may be assigned to a patient record based on a first set of inputs. Upon assigning the one or more initial medical group codes, a coding summary of the one or more assigned medical group codes may be displayed. While displaying the coding summary, at least one input from a subsequent set of inputs may be received and updating one or more medical group codes in the patient record.
Abstract:
Kits of parts comprising a coloring solution, a porous zirconia article, optionally application equipment, the solution comprising cation(s) of coloring agent(s) in an amount above about 0.05 mol/l, solvent(s) for the ion(s), optionally complexing agent(s), optionally thickening agent(s), optionally organic marker substance(s), optionally additive(s), the porous zirconia article showing a N2 adsorption and desorption of isotherm type IV according to IUPAC classification. Methods for coloring a zirconia article comprising the steps of providing a porous zirconia article and a coloring solution, applying the coloring solution to at least a part of the outer surface of the porous zirconia article, optionally drying the porous zirconia article of the preceding step, sintering the porous zirconia article to obtain a colored zirconia ceramic article.
Abstract:
A conductive resilient hollow microsphere comprises a conductive layer enclosing a resilient polymeric hollow microsphere. An adhesive composition includes an insulating adhesive component and a plurality of the conductive resilient hollow microspheres. Adhesive articles including the adhesive composition are also disclosed. Methods of making the same are also disclosed.
Abstract:
The disclosure generally relates to sets of optical waveguides such as optical fiber ribbons and embedded optical waveguides (132a-d), and optical interconnects useful for connecting multiple optical waveguides such as in optical fiber ribbon cables and printed circuit boards having optoelectronic capabilities. In particular, the disclosure provides an efficient, compact, and reliable optical waveguide connector (100) that incorporates microlenses and re-directing elements (136a-d) which combine the features of optical waveguide alignment, along with redirecting and shaping of the optical beam.
Abstract:
A surface light source device capable of obtaining uniform and high brightness emitted light is disclosed. The surface light source device can include a light source (11) that emits light; a light guiding plate (12) that guides light from the light source that is incident on a rear surface side thereof or a side surface side thereof and emits the light from a front surface side thereof; and a diffusion plate (14) disposed on the front surface side of the light guiding plate that diffuses the incident light from the light guiding plate to a front surface side thereof. The diffusion plate can be made from nonwoven fabric with an areal weight of not less than 0 g/m2 and not more than 40 g/m2.
Abstract translation:公开了能够获得均匀高亮度发光的面光源装置。 表面光源装置可以包括发光的光源(11) 导光板(12),其引导来自入射在其后表面侧的光源的光或其侧表面侧,并从其前表面侧发射光; 以及扩散板(14),其设置在导光板的前表面侧,将来自导光板的入射光扩散到其前表面侧。 扩散板可以由面积重量不小于0g / m 2且不大于40g / m 2的无纺织物制成。
Abstract:
A device for detecting an electrostatic discharge event by an object, the device comprising: a receiver for forming a first capacitive coupling with the object and a second capacitive coupling with a ground; and a first discharge path for discharging the second capacitive coupling to the ground, such that an electrostatic discharge event by the object charges the second capacitive coupling by an amount in a first time interval Δt1 that is substantially less than a second time interval Δt2 that it takes for the second capacitive coupling to discharge by the same amount through the first discharge path.
Abstract:
An illumination assembly that includes a light guide and a plurality of light sources operable to direct light into the light guide is disclosed. The light sources have a center-to-center spacing of at least 15 mm, and a distance between a primary emitting surface of at least one light source of the plurality of light sources and the input surface is no greater than 1 mm. The assembly further includes a structured surface layer positioned between the plurality of light sources and the input surface. The structured surface layer includes a substrate and a plurality of structures on a first surface of the substrate facing the plurality of light sources. The assembly further includes a plurality of extraction features operable to direct light from the light guide through an output surface of the light guide.
Abstract:
An optical film structure for backlit displays having two films, both in prisms up configuration. The first film, closer to the light guide, has an array of generally symmetric 90-degree prisms facing the viewer. The second film, farther from the light guide, has an array of generally asymmetric prisms facing the viewer, with one face of the prisms inclined at about 45 degrees and the other face generally perpendicular to the plane of the backlight. The prisms of the first and second films may have an azimuthal angle between them, and may have different pitches from each other. The film structure recycles a portion of the light from the light guide, thereby helping to increase uniformity over the area of the display. The film structure also compresses the light emerging from the light guide, thereby providing a more sharply peaked brightness distribution for the viewer.
Abstract:
A system and method are disclosed for sequential insertion processing of speech recognition results and, more particularly, server-based automated processing of speech recognition results. In addition, the use of formed document templates to facilitate the server-based automated sequential insertion of speech recognition results is disclosed. The formed document templates can include embedded dictionaries with related processing rules, including processing rules including positioning information.
Abstract:
Polymerizable compositions that include: (a) a cationically active functional group; (b) an initiation system capable of initiating cationic polymerization of the cationically active functional group; and (c) a filler composition that includes various radiopacifying fillers in an amount sufficient to render the polymerizable composition radiopaque. Components (a), (b), and (c) are selected such that the polymerizable composition polymerizes to form a polymerized composition having a Barcol hardness, measured using a GYZJ-935 meter, of at least 10 within 30 minutes following initiation of the cationically active functional group at a reaction temperature of 25° C.