登革热
计算机科学
神经科学
中枢神经系统
钙显像
人工智能
生物
医学
病毒学
钙
内科学
作者
Zhilei Zhao,Lukas Weiß,Carolyn S. McBride
出处
期刊:CSH Protocols
[Cold Spring Harbor Laboratory Press]
日期:2022-11-29
卷期号:2023 (3): pdb.top107682-pdb.top107682
标识
DOI:10.1101/pdb.top107682
摘要
Mosquitoes spread dengue, Zika, malaria, and other pathogens to hundreds of millions of people every year. A better understanding of mosquito behavior and its underlying neural mechanisms may lead to new control strategies, but such an understanding requires the development of tools and approaches for exploring the nervous system of key vector species. For example, we can now image neural activity in mosquito brains using genetically encoded calcium sensors like GCaMP. Compared with other types of neural recording, GCaMP imaging has the advantage of allowing one to record from many neurons simultaneously and/or to record from specific neuronal types. Successful implementation requires careful consideration of many factors, including the choice of microscope and how to make the brains of experimental animals visible and stable while minimizing damage. Here, we elaborate on these points and provide a concise introduction to GCaMP imaging in the mosquito central nervous system.
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