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    • 2. 发明申请
    • SYSTEM AND METHOD OF CONDUCTING TELEMEDICINE SESSIONS ACROSS DIFFERENT GEOPOLITICAL ZONES
    • 通过不同的地理区域进行电话会议的系统和方法
    • US20140108055A1
    • 2014-04-17
    • US14135392
    • 2013-12-19
    • INNOVATION SPECIALISTS LLC DBA 2ND.MD
    • Clinton Glen PHILLIPS
    • G06F19/00
    • G06F19/3418G06Q10/00G06Q50/22G06Q50/24
    • A system and method designed to overcome or work with the geopolitical restraints on medical practice that presently hampers the process of conducting physician patient telemedicine sessions across different geopolitical zones such as different states or different countries. The method uses at least one Internet server and database, which may optionally reside or have an IP address within in the one or more geopolitical zones where the physician is licensed to practice medicine. The database will often contain lists of physician authorizations to conduct telemedicine in various other geopolitical zones, lists of patient telemedicine waivers, as well as information pertaining to the physician's specialty, rating, fee structure, and availability. The database may additionally contain other features such as lists of translator availability and patient electronic health records. The server may additionally facilitate video conferencing by presenting a unified user interface and/or relaying video teleconferencing data packets between participants.
    • 一种系统和方法旨在克服或使用目前妨碍跨不同国家或不同国家的不同地缘政治医师进行医师病人远程医疗会议的医疗实践的地缘政治限制。 该方法使用至少一个因特网服务器和数据库,其可以可选地驻留或具有在医师被许可执行药物的一个或多个地缘政治区域内的IP地址。 数据库通常将包含在各种其他地缘政治区域进行远程医疗的医生授权清单,患者远程医疗放弃列表以及有关医师专业,评级,费用结构和可用性的信息。 数据库还可以包含诸如翻译器可用性列表和患者电子健康记录的其它特征。 服务器还可以通过在参与者之间呈现统一的用户界面和/或中继视频电话会议数据分组来促进视频会议。
    • 4. 发明申请
    • Block Modulus Coding (BMC) Systems and Methods for Block Coding with Non-Binary Modulus
    • 块模数编码(BMC)系统和非二进制模块块编码方法
    • US20090204877A1
    • 2009-08-13
    • US12030416
    • 2008-02-13
    • William Betts
    • William Betts
    • G06F11/10
    • H04L1/0057H04L1/0058H04L1/0066H04L1/0071
    • Block modulus coding (BMC) systems implement block coding on non-binary modulus m symbols, where m is greater than 2. BMC systems can be used for, among other things, forward error correction (FEC) of source data in communication systems or parity backup for error correction of source data in storage systems where the source data is represented by non-binary symbols that may be corrupted by burst errors. The block coding is preferably performed using a distributed arrangement of block encoders or decoders. A distributed block modulus encoder (DBME) encodes sequential source data symbols of modulus m with a plurality of sequential block encoders to produce interleaved parity codewords. The codewords utilize modulus m symbols where the medium can reliably resolve m symbol states. The interleaved parity codewords enable decoding of error-corrected source data symbols of modulus m with a distributed block modulus decoder (DBMD) that utilizes a plurality of sequential block decoders to produce the error-corrected source data symbols.
    • 块模数编码(BMC)系统对非二进制模数m符号执行块编码,其中m大于2.BMC系统可用于通信系统或奇偶校验中源数据的前向纠错(FEC) 用于存储系统中源数据的错误校正的备份,其中源数据由可能被突发错误破坏的非二进制符号表示。 块编码优选地使用块编码器或解码器的分布式布置来执行。 分布式块模数编码器(DBME)用多个顺序块编码器对模数m的顺序源数据符号进行编码,以产生交错奇偶校验码字。 码字使用模数m符号,其中介质可以可靠地解析m个符号状态。 交织的奇偶校验码字使得利用多个顺序块解码器产生经纠错的源数据符号的分布式块模数解码器(DBMD),解码具有模数m的纠错源数据符号。
    • 5. 发明授权
    • System and method of conducting telemedicine sessions across different geopolitical zones
    • 在不同的地缘政治区域进行远程医疗会议的制度和方法
    • US08635084B2
    • 2014-01-21
    • US12977220
    • 2010-12-23
    • Clinton Glen Phillips
    • Clinton Glen Phillips
    • G06Q10/00G06Q50/00
    • G06F19/3418G06F19/00G06Q10/00G06Q50/22G06Q50/24
    • A system and method designed to overcome or work with the geopolitical restraints on medical practice that presently hampers the process of conducting physician patient telemedicine sessions across different geopolitical zones such as different states or different countries. The method uses at least one Internet server and database, which may optionally reside or have an IP address within in the one or more geopolitical zones where the physician is licensed to practice medicine. The database will often contain lists of physician authorizations to conduct telemedicine in various other geopolitical zones, lists of patient telemedicine waivers, as well as information pertaining to the physician's specialty, rating, fee structure, and availability. The database may additionally contain other features such as lists of translator availability and patient electronic health records. The server may additionally facilitate video conferencing by presenting a unified user interface and/or relaying video teleconferencing data packets between participants.
    • 一种系统和方法旨在克服或使用目前妨碍跨不同国家或不同国家的不同地缘政治医师进行医师病人远程医疗会议的医疗实践的地缘政治限制。 该方法使用至少一个因特网服务器和数据库,其可以可选地驻留或具有在医师被许可执行药物的一个或多个地缘政治区域内的IP地址。 数据库通常将包含在各种其他地缘政治区域进行远程医疗的医生授权清单,患者远程医疗放弃列表以及有关医师专业,评级,费用结构和可用性的信息。 数据库还可以包含诸如翻译器可用性列表和患者电子健康记录的其它特征。 服务器还可以通过在参与者之间呈现统一的用户界面和/或中继视频电话会议数据分组来促进视频会议。
    • 10. 发明申请
    • Distributed block coding (DBC)
    • 分布式块编码(DBC)
    • US20080065971A1
    • 2008-03-13
    • US11510171
    • 2006-08-25
    • William Betts
    • William Betts
    • H03M13/00G06F11/00
    • H03M13/2707H03M13/05H03M13/2933H03M13/6502H04L1/0057H04L1/0071
    • Various embodiments implement distributed block coding (DBC). DBC can be used for, among other things, distributed forward error correction (DFEC) of source data in communication systems or parity backup for error correction of source data in storage systems where the source data may be corrupted by burst errors. A distributed block encoder (DBE) encodes sequential source data symbols with a plurality of sequential block encoders to produce interleaved parity codewords. The interleaved parity codewords enable decoding of error-corrected source data symbols with a distributed block decoder (DBD) that utilizes a plurality of sequential block decoders to produce the error-corrected source data symbols. A distributed register block encoder (DRBE) and a distributed register block decoder (DRBD) can each be implemented in a single block encoder and a single block decoder, respectively, by using a distributed register arrangement.
    • 各种实施例实现分布式块编码(DBC)。 DBC可以用于通信系统中的源数据的分布式前向纠错(DFEC)或用于存储系统中源数据的错误校正的奇偶校验,其中源数据可能被突发错误破坏。 分布式块编码器(DBE)用多个顺序块编码器对顺序源数据符号进行编码,以产生交错奇偶码字。 交错奇偶校验码字使得利用多个顺序块解码器产生经纠错的源数据符号的分布式块解码器(DBD)对纠错源数据符号进行解码。 分布式寄存器块编码器(DRBE)和分布式寄存器块解码器(DRBD)可以分别通过使用分布式寄存器布置在单个块编码器和单个块解码器中实现。