Simplified Detection System for Neuroreceptor Studies in the Human Brain
A simple, inexpensive dual-detector system has been developed for measurement of positronemitting receptor-binding drugs in the human brain. This high efficiency coincidence counting system requires that only a few hundred microcuries of labeled drug be administered to the subject, thereby allowing...
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          | Published in | The Journal of nuclear medicine (1978) Vol. 27; no. 2; p. 184 | 
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| Main Authors | , , , , , , , , , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
        United States
          Soc Nuclear Med
    
        01.02.1986
     | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 0161-5505 1535-5667  | 
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| Abstract | A simple, inexpensive dual-detector system has been developed for measurement of positronemitting receptor-binding drugs in the human brain. This high efficiency coincidence counting system requires that only a few hundred microcuries of labeled drug be administered to the subject, thereby allowing for multiple studies without an excessive radiation dose. Measurement of the binding of [11C]carfentanil, a high affinity synthetic opiate, to opiate receptors in the presence and in the absence of a competitive opiate antagonist indicates the potential utility of this system for estimating different degrees of receptor occupation in the human brain. | 
    
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| AbstractList | A simple, inexpensive dual-detector system has been developed for measurement of positronemitting receptor-binding drugs in the human brain. This high efficiency coincidence counting system requires that only a few hundred microcuries of labeled drug be administered to the subject, thereby allowing for multiple studies without an excessive radiation dose. Measurement of the binding of [11C]carfentanil, a high affinity synthetic opiate, to opiate receptors in the presence and in the absence of a competitive opiate antagonist indicates the potential utility of this system for estimating different degrees of receptor occupation in the human brain.A simple, inexpensive dual-detector system has been developed for measurement of positronemitting receptor-binding drugs in the human brain. This high efficiency coincidence counting system requires that only a few hundred microcuries of labeled drug be administered to the subject, thereby allowing for multiple studies without an excessive radiation dose. Measurement of the binding of [11C]carfentanil, a high affinity synthetic opiate, to opiate receptors in the presence and in the absence of a competitive opiate antagonist indicates the potential utility of this system for estimating different degrees of receptor occupation in the human brain. A simple, inexpensive dual-detector system has been developed for measurement of positronemitting receptor-binding drugs in the human brain. This high efficiency coincidence counting system requires that only a few hundred microcuries of labeled drug be administered to the subject, thereby allowing for multiple studies without an excessive radiation dose. Measurement of the binding of [11C]carfentanil, a high affinity synthetic opiate, to opiate receptors in the presence and in the absence of a competitive opiate antagonist indicates the potential utility of this system for estimating different degrees of receptor occupation in the human brain.  | 
    
| Author | Wagner, Henry N., Jr Natarajan, T. K Wilson, Alan A Links, Jonathan M Wong, Dean F Bice, Alden N Dannals, Robert F Ravert, Hayden T Lee, Myung C Frost, J. James  | 
    
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| Snippet | A simple, inexpensive dual-detector system has been developed for measurement of positronemitting receptor-binding drugs in the human brain. This high... | 
    
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| SubjectTerms | Binding, Competitive Brain - metabolism Calibration Carbon Radioisotopes Electrons Equipment Design Fentanyl - analogs & derivatives Humans Naloxone - pharmacology Radioligand Assay - instrumentation Receptors, Opioid - analysis Receptors, Opioid - drug effects Scintillation Counting - instrumentation  | 
    
| Title | Simplified Detection System for Neuroreceptor Studies in the Human Brain | 
    
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