Abstract:
An internet based interface program for differential counting and medical reporting includes an internet enabled cell counter, client logic, server logic, and automated report generation. Browser deployed client software interfaces with the user employing a standard keyboard to input data automatically to the cell counting application. Software tallies the data and tracks it for the user to see. Server software, accessed via the internet through the users browser, automatically processes medical counting information data input and reporting parameters, performs counting operations, and generates automated medical reports based on the reporting parameters.
Abstract:
An internet based interface program for differential counting and medical reporting includes an internet enabled cell counter, client logic, server logic, and automated report generation. Browser deployed client software interfaces with the user employing a standard keyboard to input data automatically to the cell counting application. Software tallies the data and tracks it for the user to see. Server software, accessed via the internet through the users browser, automatically processes medical counting information data input and reporting parameters, performs counting operations, and generates automated medical reports based on the reporting parameters.
Abstract:
An apparatus 200 for simulating physical movement of a digital image 400. The apparatus 200 includes an input receiving module 202, a calculation module 204, and a output module 206. The input receiving module 202 is configured to receive a position input 212 identifying a physical unit of measure. The calculation module 204 is configured to correlate the physical unit of measurement to a position of a image positioning coordinate 212. The output module 206 is configured to output the position of the image positioning coordinate 212.
Abstract:
An apparatus 200 for simulating physical movement of a digital image 400. The apparatus 200 includes an input receiving module 202, a calculation module 204, and a output module 206. The input receiving module 202 is configured to receive a position input 212 identifying a physical unit of measure. The calculation module 204 is configured to correlate the physical unit of measurement to a position of a image positioning coordinate 212. The output module 206 is configured to output the position of the image positioning coordinate 212.