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The Adaptive Aerosol Delivery (AAD) Technology: Past Present and Future

机译:自适应气溶胶输送(AAD)技术:过去现在和未来

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摘要

Conventional aerosol delivery systems and the availability of new technologies have led to the development of “intelligent” nebulizers such as the I-neb Adaptive Aerosol Delivery (AAD) System. Based on the AAD technology, the I-neb AAD System has been designed to continuously adapt to changes in the patient's breathing pattern, and to pulse aerosol only during the inspiratory part of the breathing cycle. This eliminates waste of aerosol during exhalation, and creates a foundation for precise aerosol (dose) delivery. To facilitate the delivery of precise metered doses of aerosol to the patient, a unique metering chamber design has been developed. Through the vibrating mesh technology, the metering chamber design, and the AAD Disc function, the aerosol output rate and metered (delivered) dose can be tailored to the demands of the specific drug to be delivered. In the I-neb AAD System, aerosol delivery is guided through two algorithms, one for the Tidal Breathing Mode (TBM), and one for slow and deep inhalations, the Target Inhalation Mode (TIM). The aim of TIM is to reduce the treatment time by increasing the total inhalation time per minute, and to increase lung deposition by reducing impaction in the upper airways through slow and deep inhalations. A key feature of the AAD technology is the patient feedback mechanisms that are provided to guide the patient on delivery performance. These feedback signals, which include visual, audible, and tactile forms, are configured in a feedback cascade that leads to a high level of compliance with the use of the I-neb AAD System. The I-neb Insight and the Patient Logging System facilitate a further degree of sophistication to the feedback mechanisms, by providing information on long term adherence and compliance data. These can be assessed by patients and clinicians via a Web-based delivery of information in the form of customized graphical analyses.
机译:常规气雾剂输送系统和新技术的可用性导致了“智能”雾化器的发展,例如I-neb自适应气雾剂输送(AAD)系统。基于AAD技术,I-neb AAD系统经过专门设计,可以持续适应患者呼吸模式的变化,并且仅在呼吸周期的吸气部分才对气溶胶进行脉动。这消除了呼气期间气溶胶的浪费,并为精确的气溶胶(剂量)输送奠定了基础。为了促进向患者输送精确计量的气雾剂,已开发出独特的计量室设计。通过振动筛技术,计量室设计和AAD圆盘功能,可以根据要输送的特定药物的需求量身定制气雾输出速率和计量(输送)剂量。在I-neb AAD系统中,通过两种算法指导气雾剂的输送,一种用于潮气呼吸模式(TBM),另一种用于慢速和深度吸入,即目标吸入模式(TIM)。 TIM的目的是通过增加每分钟的总吸入时间来减少治疗时间,并通过减少缓慢和深层吸入而减少上呼吸道的撞击来增加肺部沉积。 AAD技术的关键功能是提供患者反馈机制,以指导患者分娩性能。这些反馈信号(包括视觉,听觉和触觉形式)以反馈级联方式进行配置,从而导致对I-neb AAD系统的使用具有高度的依从性。通过提供有关长期依从性和依从性数据的信息,I-neb Insight和患者日志记录系统有助于进一步完善反馈机制。患者和临床医生可以通过基于Web的信息以定制的图形分析形式进行传递来评估这些信息。

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