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Multi-point analysis of airborne Japanese cedar (Cryptomeria japonica D. Don) pollen by Pollen Robo and the relationship between pollen count and the severity of symptoms

机译:花粉机器人对日本雪松花粉的多点分析及花粉数量与症状严重程度的关系

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An important theme related to aerobiology is the spatial distribution of airborne pollen, which is a final goal of our research efforts. In relation to this, pursuing the severity of pollinosis symptoms and problems with airborne pollen and allergens is required. In the past, we simulated the distribution of airborne Japanese cedar (Cryptomeria japonica D. Don) pollen (Kawashima and Takahashi in Grana 34:142-150, 1995, Grana 38:316-324, 1999). The simulation results of recent years will be published in the near future. At the time, it was not possible to compare the results of actual airborne pollen data observed from multiple points at the same time. However, now we can achieve this objective if using C. japonica pollen characteristics. The pollen is dispersed in large quantities over a long distance, remains in the air for a long time, and most airborne pollen at this time is C. japonica pollen. Recently, several automatic C. japonica pollen monitoring systems have been developed and deployed nationwide. Pollen Robo is one and is the most widely installed nationwide. In this study, we addressed Pollen Robo. First, we examined whether Pollen Robo can accurately count C. japonica pollen and found that Pollen Robo was useful during the major pollen season. However, it sometimes counts non-pollen particles and other pollen rather than C. japonica pollen. Therefore, it is not useful when a small amount of pollen is dispersed such as the start day of the pollen season. Next, we examined the daily dispersion of C. japonica pollen and it was shown that it is related to the distance between sampling locations. However, factors other than distance may be involved. Another matter of concern is the relationship between the number of airborne pollen and pollinosis symptoms. Symptoms began to appear from approximately the start day of the pollen season in moderate and light cases. The most serious symptoms occurred when the pollen count was the highest. Meanwhile, in severe cases, symptoms were observed at the time the pollen was scarcely detected and plateaued when the pollen count reached 100 counts/m(3) on average over 6 days. Thus, Pollen Robo was not useful when symptoms began in severe cases. This problem was solved using pollen antigen measurement. The time for the symptoms to begin in severe cases is between 2 and 4 weeks before the start day of the pollen season. The amount of Cry j 1 on the start day during some years was considerably larger than that calculated from the number of pollen. The results obtained in this study will be the basic data used for achieving our final goal.
机译:与空气生物学有关的一个重要主题是空气中花粉的空间分布,这是我们研究工作的最终目标。与此相关,需要解决花粉症症状的严重性以及空气中花粉和过敏原的问题。过去,我们模拟了空降的日本雪松(Cryptomeria japonica D. Don)花粉的分布情况(Kranshima和Takahashi in Grana 34:142-150,1995,Grana 38:316-324,1999)。近年来的仿真结果将在不久的将来发布。当时,无法比较从多​​个点同时观察到的实际空中花粉数据的结果。但是,现在,如果使用日本粳稻花粉特性,就可以实现这一目标。花粉大量散布在很长的距离,在空气中保持很长一段时间,此时大多数空气传播的花粉是日本花粉。最近,已经开发了几种自动的日本粳稻花粉监测系统,并在全国范围内部署。 Pollen Robo是其中之一,在全国安装最广泛。在这项研究中,我们谈到了Pollen Robo。首先,我们检查了花粉机器人是否可以准确地计算日本粳稻花粉,并发现在主要花粉季节花粉机器人是有用的。但是,有时它会计算非花粉颗粒和其他花粉,而不是日本粳稻花粉。因此,当诸如花粉季节的开始日之类的少量花粉分散时是没有用的。接下来,我们研究了日本粳稻花粉的每日分散度,结果表明它与采样位置之间的距离有关。但是,可能会涉及距离以外的因素。另一个值得关注的问题是空中花粉数量与花粉症症状之间的关系。在中度和轻度病例中,症状始于花粉季节的大约开始。当花粉计数最高时,出现最严重的症状。同时,在严重的情况下,当花粉计数在6天内平均达到100计数/ m(3)时,几乎没有发现花粉并出现停滞的症状。因此,在严重情况下开始出现症状时,Pollen Robo无效。使用花粉抗原测量解决了这个问题。在严重情况下,症状开始的时间是在花粉季节开始前的2至4周之间。在某些年份的开始日期,Cry j 1的数量大大大于从花粉数量计算的数量。这项研究中获得的结果将成为实现我们最终目标的基本数据。

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