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    • 3. 发明申请
    • Method and system for using a database containing rehabilitation plans indexed across multiple dimensions
    • 使用数据库的方法和系统,该数据库包含多个维度索引的修复计划
    • US20050090372A1
    • 2005-04-28
    • US10876172
    • 2004-06-24
    • Mark BurrowsJohn CroninTushar NarsanaJohn Singarayar
    • Mark BurrowsJohn CroninTushar NarsanaJohn Singarayar
    • A61B5/00A61B5/12A63B71/00
    • A61B5/12A61B5/00G06F19/325
    • A searchable database contains rehabilitation plans for individuals having the same medical condition. The rehabilitation plans are indexed by scores corresponding to physical dimensions and personal environment dimensions characteristics of the respective individuals having the same medical condition and also by scores representative of actual success results associated with prescribing the respective rehabilitation plans. The database can be queried to identify rehabilitation plans for a dimension whose assessment information matches individual assessment information for the same dimension of an individual requiring rehabilitation for the same medical condition. In addition, the actual success scores can be used to identify rehabilitation plans in the database likely to be successful when prescribed to an individual. The individual assessment information and the identified rehabilitation plan prescribed to the individual, and also feedback obtained from the individual to which an identified plan is prescribed and also success results for the prescribed plan, can be used to update the database.
    • 可搜索的数据库包含具有相同医疗条件的个人的康复计划。 康复计划由相应于具有相同医疗状况的个体的身体尺寸和个人环境维度特征的分数进行索引,以及代表与规定相应康复计划相关的实际成功结果的分数。 可以查询数据库,以确定其评估信息与需要相同医疗状况康复的个体相同维度的个人评估信息的维度的康复计划。 此外,实际的成功分数可用于确定数据库中的恢复计划,这些计划在规定给个人时可能是成功的。 可以使用个人评估信息和为个人规定的确定的康复计划,以及从规定了确定的计划的个人获得的反馈以及规定的计划的成功结果,以更新数据库。
    • 4. 发明申请
    • Method and system for rehabilitating a medical condition across multiple dimensions
    • 在多个维度上恢复医疗状况的方法和系统
    • US20050085343A1
    • 2005-04-21
    • US10876173
    • 2004-06-24
    • Mark BurrowsJohn CroninTushar NarsanaJohn Singarayar
    • Mark BurrowsJohn CroninTushar NarsanaJohn Singarayar
    • A61B5/00G06F19/00A63B15/02A63B71/00A63B21/002
    • G06F19/3481A61B5/00G16H50/70
    • A rehabilitation plan for an individual with a medical condition is selected in view of physical dimensions and personal environment dimensions of the individual that can impact successful use of an instrument for treating the medical condition. Measurement results obtained from assessments of respective physical dimensions and personal environment dimensions of the individual are used to define respective diagnostics metrics, and also to generate diagnostic and goal scores for the respective metrics. A rehabilitation plan for the individual is selected in view of the diagnostic and goal scores with the intention of increasing an individual's compatibility with the plan and the likelihood of success for rehabilitation. The selection of a rehabilitation plan can include querying a database including previously prescribed rehabilitation plans indexed by physical and personal environment dimensions characteristics of respective patients that were prescribed the rehabilitation plans.
    • 考虑到可能影响用于治疗医疗状况的器械的成功使用的个人的身体尺寸和个人环境尺寸,选择具有医疗状况的个体的康复计划。 用于评估各个物理尺寸和个人环境维度的测量结果用于定义各自的诊断度量,并且还为各个度量产生诊断和目标得分。 考虑到诊断和目标得分,选择个人的康复计划,旨在增加个人与计划的兼容性以及康复成功的可能性。 选择康复计划可以包括查询数据库,包括以前规定的康复计划规定的各个患者的身体和个人环境维度特征索引的康复计划。
    • 7. 发明申请
    • System for and Method of Optimizing an Individual's Hearing Aid
    • 个人助听器优化制度及方法
    • US20080056518A1
    • 2008-03-06
    • US11570472
    • 2005-06-13
    • Mark BurrowsJohn CroninNancy EdwardsTushar NarsanaSteven Shaya
    • Mark BurrowsJohn CroninNancy EdwardsTushar NarsanaSteven Shaya
    • H04R25/00
    • H04R25/70
    • The present invention is a system for and method of adjusting hearing aids (130) by discrete frequency ranges (FIG. 3a); continual tuning and reprogramming of the hearing aid is accomplished in real time via iterations between a patient (with hearing aid in ear, 120) and an audiologist (131). A test tone or other sound is played and the patient gives feedback on the test tone's suitability (such as loudness). The hearing aid (130) is further tuned and reprogrammed accordingly as the sound is replayed and the patient (120) gives additional feedback. These steps continue until the patient (120) considers the hearing optimized, compensating for both the patient's hearing loss and individual preferences in the discrete frequency ranges. The following are twelve commonly tested frequency ranges: 125 Hz, 250 Hz, 750 Hz, 1000 Hz, 1500 Hz, 2000 Hz, 3000 Hz, 4000 Hz, 5000 Hz, 6000 Hz, 8000 Hz, and 10,000 Hz.
    • 本发明是一种通过离散频率范围调整助听器(130)的系统和方法(图3)。 助听器的持续调谐和重新编程通过患者(使用耳朵助听器,120)和听力学家(131)之间的迭代实时完成。 播放测试音或其他声音,患者对测试音的适应性(如响度)给出反馈。 当声音被重放时,助听器(130)被进一步调谐和重新编程,并且患者(120)给出额外的反馈。 这些步骤继续进行,直到患者(120)认为听力被优化,补偿了患者的听力损失和离散频率范围内的个人偏好。 以下是十二个通常测试的频率范围:125 Hz,250 Hz,750 Hz,1000 Hz,1500 Hz,2000 Hz,3000 Hz,4000 Hz,5000 Hz,6000 Hz,8000 Hz和10,000 Hz。