Seawater carbonate chemistry and neuromolecular mechanisms related to reflex behaviour in Aplysia@en
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Using a simple model, we exposed Aplysia to ambient or elevated CO2 conditions (approx. 1500 μatm) and tested how OA affected the neuromolecular response of the pleural–pedal ganglia and caused tail withdrawal reflex (TWR) impairment. This dataset is included in the OA-ICC data compilation maintained in the framework of the IAEA Ocean Acidification International Coordination Centre (see https://oa-icc.ipsl.fr). Original data were downloaded from figshare (see Source) by the OA-ICC data curator. In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Gattuso et al, 2024) was used to compute a complete and consistent set of carbonate system variables, as described by Nisumaa et al. (2010). In this dataset the original values were archived in addition with the recalculated parameters (see related PI). The date of carbonate chemistry calculation by seacarb is 2024-07-03.
我们采用简易模型,将海兔暴露于环境二氧化碳浓度与升高的二氧化碳浓度(约1500微大气压)条件下,探究海洋酸化(Ocean Acidification,OA)如何影响侧足神经节的神经分子响应,并引发缩尾反射(Tail Withdrawal Reflex, TWR)损伤。 本数据集收录于由国际原子能机构(International Atomic Energy Agency, IAEA)下属海洋酸化国际协调中心(Ocean Acidification International Coordination Centre, OA-ICC)维护的OA-ICC数据汇编集(详见https://oa-icc.ipsl.fr)。原始数据由OA-ICC数据管理员从Figshare平台(详见“来源”)下载获取。 为实现与其他海洋酸化数据集的完全可比性,本数据集参照Nisumaa等(2010)所述方法,使用R语言包seacarb(Gattuso等,2024)计算得到一套完整且一致的碳酸盐系统变量。 本数据集同时归档了原始数值与重新计算得到的参数(详见相关项目负责人信息)。使用seacarb进行碳酸盐化学计算的日期为2024年7月3日。



