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    • 7. 发明授权
    • Hollow microcapsules for methods of ultrasound imaging
    • 用于超声成像方法的空心微胶囊
    • US06264918B1
    • 2001-07-24
    • US09194050
    • 1999-08-16
    • Richard Alan JohnsonPaulus Antonius Van Der Wouw
    • Richard Alan JohnsonPaulus Antonius Van Der Wouw
    • A61B800
    • A61K49/223
    • A method of obtaining an image of a part of a patient, comprising: (a) providing microcapsules which have been formed by (i) providing a solution of a material in an aqueous solvent containing water and a liquid of greater volatility than water and (ii) spraying the said solution into a gas such that the aqueous solvent evaporates, thereby forming hollow microcapsules suitable for use as an echogenic contrast agent, (b) injecting the microcapsules into a patient, and (c) subjecting the patient to ultrasonic energy to obtain an image based on the ultrasound reflectivity transmissibility or resonance of the microcapsules, characterized in that at least 5 minutes elapse between steps (b) and (c). The patient can be exercised between administration and imaging without having to be reinjected.
    • 一种获得患者部分图像的方法,包括:(a)提供微胶囊,其通过以下方式形成:(i)提供材料在含水溶剂和比水挥发性高的液体中的溶液, ii)将所述溶液喷射到气体中,使得水性溶剂蒸发,从而形成适合用作回声造影剂的中空微胶囊,(b)将微胶囊注射到患者体内,和(c)使患者接受超声能量 基于微胶囊的超声反射率传递性或共振获得图像,其特征在于步骤(b)和(c)之间经过至少5分钟。 患者可以在行政和成像之间行使,而不必重新注入。
    • 10. 发明授权
    • Algorithm for selecting audio content
    • US07003530B2
    • 2006-02-21
    • US10104137
    • 2002-03-22
    • Richard Alan Johnson
    • Richard Alan Johnson
    • G06F12/00
    • G06F17/30017Y10S707/916Y10S707/99935Y10S707/99945
    • An algorithm for selecting audio content including an audio database, a user preference learning routine, and an audio selection routine. The user preference learning routine is capable of explicitly learning by a manual entry made by the user concerning his/her favorite audio selections. The user preference learning routine is capable of implicitly learning by recording the selections made by the user through a preference input. The preference input queries the user whether he/she liked or disliked a particular audio selection. Initially, random selections are provided to the user. If the user does not like the audio selection it is skipped. If the user liked the selection it is recorded. As the user listens or doesn't listen to audio selections, a profile is developed that identifies the user's preferences. The audio selection routine chooses the next audio selection to be played for the user. There are at least two methods of making the audio selection. In the first method, a user sends his/her listening history to a central location. In the second method, a table of at least four items is used to determine the user listening preferences.