iWorx多道电生理记录仪,多导生理信号采集分析系统
产品名称: iWorx多道电生理记录仪,多导生理信号采集分析系统
英文名称: 多道电生理记录仪,多导生理信号采集分析系统
产品编号: 多道电生理记录仪,多导生理信号
产品价格: 0
产品产地: USA动物多导生理记录
品牌商标: 玉研科学仪器有限公司
更新时间: 2023-08-17T15:24:17
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1.血流动力学
2.ECG/EMG Systems:ECG、EMG等电生理信号测量系统
3.离体器官(Langendorff和工作心脏)灌流
4.小动物遥测系统
5.微循环血流测定(激光多普勒)
6.新陈代谢研究(运动生理学、心肺功能测定)
7.Intracardiac Electrophysiology:心内电生理系统
8.Blood Flow Systems 血流测量系统
9.心理学
10.清醒动物血氧饱和度测定文献参考:
「1」 Fang, Yin et al. “Micelle-enabled self-assembly of porous and monolithic carbon membranes for bioelectronic interfaces.” Nature nanotechnology vol. 16,2 (2021): 206-213. doi:10.1038/s41565-020-00805-z
「2」 Usseglio, Giovanni et al. “Control of Orienting Movements and Locomotion by Projection-Defined Subsets of Brainstem V2a Neurons.” Current biology : CB vol. 30,23 (2020): 4665-4681.e6. doi:10.1016/j.cub.2020.09.014
「3」 Marshall, Michael S et al. “Long-Term Improvement of Neurological Signs and Metabolic Dysfunction in a Mouse Model of Krabbe's Disease after Global Gene Therapy.” Molecular therapy : the journal of the American Society of Gene Therapy vol. 26,3 (2018): 874-889. doi:10.1016/j.ymthe.2018.01.009
「4」Moyano, Ana Lis et al. “microRNA-219 Reduces Viral Load and Pathologic Changes in Theiler's Virus-Induced Demyelinating Disease.” Molecular therapy : the journal of the American Society of Gene Therapy vol. 26,3 (2018): 730-743. doi:10.1016/j.ymthe.2018.01.008
「5」Chen, Shih-Heng et al. “An electrospun nerve wrap comprising Bletilla striata polysaccharide with dual function for nerve regeneration and scar prevention.” Carbohydrate polymers vol. 250 (2020): 116981. doi:10.1016/j.carbpol.2020.116981
「6」 Hérent, Coralie et al. “Absent phasing of respiratory and locomotor rhythms in running mice.” eLife vol. 9 e61919. 1 Dec. 2020, doi:10.7554/eLife.61919
「7」Tsai, Pei-Jiun et al. “Xenografting of human umbilical mesenchymal stem cells from Wharton's jelly ameliorates mouse spinocerebellar ataxia type 1.” Translational neurodegeneration vol. 8 29. 5 Sep. 2019, doi:10.1186/s40035-019-0166-8
「8」 Lienemann, Samuel et al. “Stretchable gold nanowire-based cuff electrodes for low-voltage peripheral nerve stimulation.” Journal of neural engineering vol. 18,4 10.1088/1741-2552/abfebb. 25 May. 2021, doi:10.1088/1741-2552/abfebb
「9」 Gregory, Nicholas S et al. “ASIC3 Is Required for Development of Fatigue-Induced Hyperalgesia.” Molecular neurobiology vol. 53,2 (2016): 1020-1030. doi:10.1007/s12035-014-9055-4
「10」 Bowtell, Joanna L et al. “Acute physiological and performance responses to repeated sprints in varying degrees of hypoxia.” Journal of science and medicine in sport vol. 17,4 (2014): 399-403. doi:10.1016/j.jsams.2013.05.016
「11」Gou, Dongzhi et al. “Mog1 knockout causes cardiac hypertrophy and heart failure by downregulating tbx5-cryab-hspb2 signalling in zebrafish.” Acta physiologica (Oxford,England) vol. 231,3 (2021): e13567. doi:10.1111/apha.13567
「12」Tanajak, P et al. “Fibroblast growth factor 21 (FGF21) therapy attenuates left ventricular dysfunction and metabolic disturbance by improving FGF21 sensitivity, cardiac mitochondrial redox homoeostasis and structural changes in pre-diabetic rats.” Acta physiologica (Oxford,England) vol. 217,4 (2016): 287-99. doi:10.1111/apha.12698
「13」Jhuo, Shih-Jie et al. “Characteristics of Ventricular Electrophysiological Substrates in Metabolic Mice Treated with Empagliflozin.” International journal of molecular sciences vol. 22,11 6105. 5 Jun. 2021, doi:10.3390/ijms22116105
「14」 Lim, Kenji Rowel Q et al. “Natural History of a Mouse Model Overexpressing the Dp71 Dystrophin Isoform.” International journal of molecular sciences vol. 22,23 12617. 23 Nov. 2021,doi:10.3390/ijms222312617
「15」 Chang, Wei-Ting et al. “Differential Inhibitory Actions of Multitargeted Tyrosine Kinase Inhibitors on Different Ionic Current Types in Cardiomyocytes.” International journal of molecular sciences vol. 21,5 1672. 29 Feb. 2020, doi:10.3390/ijms21051672
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