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Dynamic 3D Print of the Breathing Function

机译:动态3D打印呼吸功能

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摘要

Waveforms extracted via nasal thermistors are the most common signals used to study breathing function in sleep studies. In recent years, unobtrusive alternatives have been developed based on thermal imaging. Initially, the research aimed to produce a measurement on par with the clinical standard (the thermistor), but at a distance. Lately, there has been recognition that imaging is inherently multidimensional and can produce spatiotemporal and not just temporal signals - a development with significant diagnostic value. The extraction of 3D breathing information, however, has been based on inaccurate assumptions regarding the formation of the nasal thermal patterns sensed by the camera. The present paper corrects these assumptions, enabling the production of more accurate and complete multidimensional breathing signals.
机译:通过鼻腔热敏电阻提取的波形是用于研究睡眠研究中呼吸功能的最常见的信号。近年来,基于热成像开发了不显眼的替代品。最初,研究旨在产生与临床标准(热敏电阻)的测量的测量,但在远处。最近,已经认识到成像本质上是多维的并且可以产生时尚的,不仅仅是时间信号 - 具有显着诊断价值的发展。然而,3D呼吸信息的提取基于关于相机感测的鼻热图案的形成不准确的假设。本文纠正了这些假设,使生产更准确和完整的多维呼吸信号。

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