Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy
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Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy
Summary
Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy is a doctoral thesis[1].
Key Facts
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy authored Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy — author (P50): Frank Horrigan[2].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's instance of is recorded as Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy — instance of (P31): doctoral thesis[3].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's language of work or name is recorded as Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy — language of work or name (P407): English[4].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's country of origin is recorded as Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy — country of origin (P495): United States[5].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's publication date is recorded as +1991-00-00T00:00:00Z[6].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's work available at URL is recorded as https://www.proquest.com/pqdtlocal1005756/docview/303941248/7BDFEF2732574B39PQ/1?accountid=14026[7].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's work available at URL is recorded as https://stanford.idm.oclc.org/login?url=https://search.proquest.com/pqdtlocal1005756?accountid=14026[8].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's described at URL is recorded as https://searchworks.stanford.edu/view/2028513[9].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's title is recorded as Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy[10].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's title is recorded as Methadone block of potassium current in squid neurons : coupling of drug-channel interaction with channel gating and ion occupancy[11].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's thesis submitted to is recorded as Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy — thesis submitted to (P4101): Stanford University[12].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's on focus list of Wikimedia project is recorded as Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy — on focus list of Wikimedia project (P5008): StanfordThesisProject[13].
- Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's research site is recorded as Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy — research site (P6153): Hopkins Marine Station[14].
Body
Designation and Status
Methadone Block Of Potassium Current In Squid Neurons : Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy's instance of is recorded as Coupling Of Drug-channel Interaction With Channel Gating And Ion Occupancy — instance of (P31): doctoral thesis[3].