Gegenereerd door All in One SEO v4.9.2, dit is een llms.txt bestand, gebruikt door LLMs om de site te indexeren. # molecularphysiology Molecularphysiology ## Sitemaps - [XML Sitemap](https://www.molecularphysiology.org/sitemap.xml): Contains all public & indexable URLs for this website. ## Pagina's - [Home](https://www.molecularphysiology.org/) - Molecular physiology and neurophysics group Research in the molecular physiology and neurophysics group (MPNG) led by Prof. Dr. Frank Bosmans and Prof. Dr. Alain Labro focuses on the role of ion channels in various disorders with an emphasis on voltage-gated sodium (Nav) channels (Team Bosmans) and voltage-gated potassium (Kv) channels (Team Labro). Follow us Linkedin - [Infrastructure](https://www.molecularphysiology.org/infrastructure/) - Infrastructure Electrophysiological equipment Whole-cell patch clamp The patch-clamp technique involves a glass micropipette forming a tight gigaohm seal with the cell membrane. The Patch-clamp technique is a versatile electrophysiological tool for understanding ion channel behavior. Every cell expresses ion channels, but the most common cells to study with patch-clamp techniques include neurons, muscle fibers, cardiomyocytes, and - [Publications](https://www.molecularphysiology.org/publications/) - Publications N-type inactivation variances in honeybee and Asian giant hornet Kv channels Shahid Hussain (UGent) , Jolien De Waele (UGent) , Maxime Lammens and Frank Bosmans (UGent)(2022) BIOELECTRICITY. Abstract Background: With the emergence of the Asian giant hornet as a threat to honeybee survival, knowledge of potential ion channel targets expressed in the nervous system can propel the development of new insecticides that are safe - [News](https://www.molecularphysiology.org/news/) - News Honorary doctorate Prof. David Julius On March 18, 2022, Prof David Julius, Nobel Laureate in Medicine & Physiology 2021, received an honorary doctorate from Ghent University. Prof. Frank Bosmans of the department of Basic and Applied Medical Sciences (BAMS) at UGent was his supervisor. ” Our ability to sense heat and cold through touch - [Team Labro](https://www.molecularphysiology.org/team-labro/) - Team Labro Prof. Dr. Alain Labro ” Excitable cells such as cardio myocytes and neurons have the ability to change in a controlled manner their membrane potential eliciting an action potential. Voltage-dependent and -independent ionchannels are the molecular regulators underlying this cellular excitability. My research is specialized in structure-function analysis and pharmacology of ion channels - [Team Bosmans](https://www.molecularphysiology.org/team-bosmans/) - Team Bosmans Prof. Dr. Frank Bosmans Ever since graduate school, I’ve been studying proteins called sodium channels in nerve cells. They are specialized pores that regulate sodium ion entry into the cells, creating an electrical signal that is sent to other nerve cells. They’re found all over the body, and their opening and closing is - [Funding](https://www.molecularphysiology.org/funding/) - Funding - [Teams](https://www.molecularphysiology.org/team/) - Teams Molecular physiology and neurophysics group The Molecular physiology and neurophysics group exists of 2 teams. Discover them now! - [Contact](https://www.molecularphysiology.org/contact/) - Contact Get in touch Ingang 36 – 1e verdieping Corneel Heymanslaan 10 9000 Gent +32 9 332 21 11 frank.bosmans@ugent.be Send a message Schakel JavaScript in je browser in om dit formulier in te vullen.Name *Email *Message *Submit - [Research](https://www.molecularphysiology.org/research/) - Research aims Major research aims Within every phylum of the animal kingdom, voltage-gated sodium (NaV) channels are nature’s answer to the need for fast intra-organism communication and coordination. Utilizing the Na+ gradient across the cell membrane, they generate electrical signals that telegraph messages to and from a central hub. Not surprisingly, Nav channels support many - [Privacy Policy](https://www.molecularphysiology.org/privacy-policy/) - Who we areSuggested text: Our website address is: https://www.molecularphysiology.org.CommentsSuggested text: When visitors leave comments on the site we collect the data shown in the comments form, and also the visitor’s IP address and browser user agent string to help spam detection.An anonymized string created from your email address (also called a hash) may be provided - [Cookiebeleid (EU)](https://www.molecularphysiology.org/cookiebeleid-eu/) - Dit cookiebeleid is voor het laatst geüpdatet op 01/06/2022 en is van toepassing op burgers en wettelijke permanente inwoners van de Europese Economische Ruimte en Zwitserland.1. IntroductieOp onze site, https://www.molecularphysiology.org (hierna: “de site”) wordt gebruikgemaakt van cookies en andere aanverwante technieken. (Hierna geldt dat alle technieken voor het gemak “cookies” worden genoemd). 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