Department of Medical Physics, School of Medicine, Iran University of Medical Sciences (IUMS), Tehran, Iran.
ENT Research Center, Institute of Five Senses, Hazrat Rasoul Hospital, Iran University of Medical Sciences, Tehran, Iran.
J Med Eng Technol. 2020 Aug;44(6):317-323. doi: 10.1080/03091902.2020.1791987. Epub 2020 Jul 23.
Design of an MR-compatible and computer-controlled odour stimuli system is essential in the studies of human olfactory function. Olfactometers are used to deliver odours to the subjects in an objective manner. We present a portable, computer-controlled eight channels olfactometer able to stimulate olfaction by employing liquid odorant stimuli. We used a high-pressure pump to generate medical grade airflow. After passing through solenoid valve-controlled odour reservoirs, odorant stimulus is conveyed to the nasal mask. The odour delivery delay of the device was measured using photo-ionisation detectors. To assess the application of the designed olfactometer, an fMRI experiment was done with 9 healthy subjects. Two odour stimuli (Vanillin and Rose) were presented to each subject in an alternating block design task of odour and non-odour conditions. The response time of each subject was gathered using the response box. Group analysis revealed a significant BOLD signal change in some regions of olfactory and trigeminal networks including the orbitofrontal cortex, insula, inferior frontal gyrus, hippocampus, cingulate gyrus and piriform cortex. The odour delivery delay measured by photo-ionisation detector was 190 ms, and the subjects' response showed 205 ms for the Vanillin and 243 ms for the Rose odour stimuli. Our portable MR-compatible olfactometer as a stimulation device is capable of creating adequate stimulation suitable for olfactory fMRI experiments.
在人类嗅觉功能研究中,设计一种兼容磁共振成像(MRI)且可由计算机控制的气味刺激系统至关重要。嗅探仪用于以客观的方式向受试者提供气味。我们提出了一种便携式、计算机控制的八路嗅探仪,能够通过使用液体气味刺激来刺激嗅觉。我们使用高压气泵产生医疗级气流。经过电磁阀控制的气味储存器后,气味刺激被输送到鼻罩。使用光离子化探测器测量设备的气味传递延迟。为了评估所设计的嗅探仪的应用,我们对 9 名健康受试者进行了 fMRI 实验。在嗅觉和非嗅觉条件的交替块设计任务中,每个受试者都接受了两种气味刺激(香草醛和玫瑰)的刺激。使用响应盒收集每个受试者的响应时间。组分析显示,在嗅觉和三叉神经网络的一些区域,包括眶额皮质、脑岛、额下回、海马体、扣带回和梨状皮质,出现了显著的大脑血氧水平依赖信号变化。光离子化探测器测量的气味传递延迟为 190ms,受试者对香草醛的反应时间为 205ms,对玫瑰气味的反应时间为 243ms。我们的便携式、兼容 MRI 的嗅探仪作为刺激设备,能够产生足够的刺激,适用于嗅觉 fMRI 实验。