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在安全和健康角度看,对麻醉废气的处理,非常重要。
麻醉气体清除器(麻醉废气处理器)能有效过滤和清除掉异氟烷、七氟烷等麻醉废气。可与麻醉机同步工作,有效减少麻醉废气的排放,消除麻醉废气污染。双罐设计,吸附效率高,为实验人员的健康护航。
主要特点
· 可持续清除七氟醚、异氟醚等麻醉废气;
· 麻醉废气的吸附通过活性炭粉进行吸附和清除;
· 多层保险:双罐体设计,处理效率高,有效率98%以上;
· 活性炭粉容易更换,日常使用成本很低;
· 带时间提示功能,使用更省心;
型号:SL-150
多种应用
· 双层废气管路:可以在手术操作中,对麻醉面罩溢出的废气进行回收;
· 脑定位仪配套的气体管路:连接脑立体定位仪的麻醉面罩,清除麻醉废气;
· 诱导箱适配管路:与麻醉诱导箱连接,对诱导箱溢出的麻醉废气进行清除;
双层麻醉管路
型号:20610
· 可配合大鼠双层面罩面罩、小鼠双层麻醉面罩使用;
· 维持麻醉的同时进行废气处理;
· 采用双层麻醉管路,内层通入麻醉气体,外层回抽多余的麻醉废气;
· 配合专用的双层麻醉面罩,在保障动物维持麻醉的同时,处理95%以上的麻醉废气;
型号:30152,带大小鼠麻醉面罩的手术板
活性炭罐
型号:20650
· 配合麻醉诱导箱使用;
· 内含活性炭650g左右,自重800g;
· 可吸附麻醉废气150g左右的废气;
部分参考文献:
1. Lu, Zhenyao, et al. "Quantitative analysis of 20 purine and pyrimidine metabolites by HILIC-MS/MS in the serum and hippocampus of depressed mice." Journal of Pharmaceutical and Biomedical Analysis 219 (2022): 114886. doi: 10.1016/j.jpba.2022.114886
2. Ma, Peipei, et al. "Wound healing of laser injured skin with glycerol monooleicate cubic liquid crystal." Burns 46.6 (2020): 1381-1388. doi: 10.1016/j.burns.2020.03.016
3. Sun, Xian, et al. "Yishen Qingli Heluo granule in the treatment of chronic kidney disease: network pharmacology analysis and experimental validation." Drug Design, Development and Therapy (2022): 769-787. doi: 10.2147/dddt.s348335
4. Sun, Xian, et al. "Yishen Qingli Heluo granule ameliorates renal dysfunction in 5/6 nephrectomized rats by targeting gut microbiota and intestinal barrier integrity." Frontiers in Pharmacology 13 (2022). doi: 10.3389/fphar.2022.858881
5. Zhao, Xiaoye, et al. "An injectable and antifouling self-fused supramolecular hydrogel for preventing postoperative and recurrent adhesions." Chemical Engineering Journal 404 (2021): 127096. doi: 10.1016/j.cej.2020.127096
6. Liu, Bin, et al. "JS-K, a nitric oxide donor, induces autophagy as a complementary mechanism inhibiting ovarian cancer." BMC cancer 19.1 (2019): 1-15. doi: 10.1186/s12885-019-5619-z
7. Li, Xiaozhou, et al. "Antibacterial, antioxidant and biocompatible nanosized quercetin-PVA xerogel films for wound dressing." Colloids and Surfaces B: Biointerfaces 209 (2022): 112175. doi: 10.1016/j.colsurfb.2021.112175
8. Kan, Mo, et al. "Investigating the mechanism of ShengmaiYin (codonopsis pilosula) in the treatment of heart failure based on network pharmacology." Combinatorial Chemistry & High Throughput Screening 25.13 (2022): 2191-2202. doi: 10.2174/66220221093415
9. Chen, Yongli, et al. "Microfluidic chip interfacing microdialysis and mass spectrometry for in vivo monitoring of nanomedicine pharmacokinetics in real time." Journal of Chromatography A 1683 (2022): 463520. doi: 10.2139/ssrn.4053570
10. Jia, HuiJie, et al. "Anti-inflammation and anti-aging mechanisms of mercaptopurine in vivo and in vitro." Biochemical and Biophysical Research Communications 638 (2023): 103-111. doi: 10.1016/j.bbrc.2022.11.035
11.苏鹏亮,沈明勤,许尤琪.健脾活血方对肝癌原位移植瘤的抑制作用及机制探讨.现代中西医结合杂志, 2021 年11月,30( 33).
12.张娇娇,谢晨龙,雍玥等.电针对心肌梗死后小鼠长期生存率的影响及其机制研究.针刺研究,2022年3月第47卷第3期.
13.汤倩倩,卢山,蒋敏海.SCID小鼠永久性左侧大脑中动脉阻塞模型的制备及评价. 浙江医学,2017 年第39 卷第6 期.
14.张芯,杨宁,蔡伟等.丙氨酰谷氨酰胺对脑缺血再灌注损伤小鼠肠道通透性改变的影响.中华老年心脑血管病杂志,2019年2月第2l卷第2期.
15.王晓冬,王莹,王彩霞等,5-HT1A和5-HT3受体在七氟烷诱发老龄大鼠脑神经毒性中的作用.中华麻醉学杂志,2021年5月第41卷第5期.
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