Institut für Biomedizinische Technik, Universität Stuttgart, Stuttgart, Germany.
Klinik Schillerhöhe, Zentrum für Pneumologie und Thoraxchirurgie, Robert-Bosch-Hospital, Gerlingen, Germany.
Med Biol Eng Comput. 2017 Nov;55(11):1975-1987. doi: 10.1007/s11517-017-1633-y. Epub 2017 Mar 29.
For the assessment of small airway diseases, a noninvasive double-tracer gas single-breath washout (DTG-SBW) with sulfur hexafluoride (SF) and helium (He) as tracer components has been proposed. It is assumed that small airway diseases may produce typical ventilation inhomogeneities which can be detected within one single tidal breath, when using two tracer components. Characteristic parameters calculated from a relative molar mass (MM) signal of the airflow during the washout expiration phase are analyzed. The DTG-SBW signal is acquired by subtracting a reconstructed MM signal without tracer gas from the signal measured with an ultrasonic sensor during in- and exhalation of the double-tracer gas for one tidal breath. In this paper, a simple method to determine the reconstructed MM signal is presented. Measurements on subjects with and without obstructive lung diseases including the small airways have shown high reliability and reproducibility of this method.
对于小气道疾病的评估,已经提出了一种使用六氟化硫(SF)和氦(He)作为示踪剂成分的无创双示踪气体单次呼吸洗脱(DTG-SBW)方法。假设当使用两种示踪剂成分时,小气道疾病可能会产生典型的通气不均匀性,这些不均匀性可以在一次潮汐呼吸中检测到。从洗脱呼气阶段气流的相对分子量(MM)信号中计算出特征参数。DTG-SBW 信号通过从双示踪气体吸气和呼气过程中用超声传感器测量的信号中减去没有示踪气体的重建 MM 信号来获得。本文提出了一种确定重建 MM 信号的简单方法。对包括小气道在内的有和无阻塞性肺疾病的受试者的测量表明,该方法具有很高的可靠性和可重复性。