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2. Development and demonstration of cannabis DNA detection kit using DNA chromatography chip

4. Human and rat microsomal metabolites of N-tert-butoxycarbonylmethamphetamine and its urinary metabolites in rat

5. Incorporation of Methoxyphenamine into Hair in Early Stage after Intake

6. Dehydration-fragmentation mechanism of cathinones and their metabolites in ESI-CID

7. A new method for detection of nitrous oxide using azo coupling reaction

8. Effects of lipophilicity and functional groups of synthetic cannabinoids on their blood concentrations and urinary excretion

9. Incorporation of zolpidem and methoxyphenamine into white hair strands after single administrations: Influence of hair pigmentation on drug incorporation

10. Identification and characterization of α-PVT, α-PBT, and their bromothienyl analogs found in illicit drug products

11. Urinary excretion and metabolism of the α-pyrrolidinophenone designer drug 1-phenyl-2-(pyrrolidin-1-yl)octan-1-one (PV9) in humans

12. Positional isomer differentiation of synthetic cannabinoid JWH-081 by GC-MS/MS

13. Single-hair analysis of zolpidem on the supposition of its single administration in drug-facilitated crimes

14. Structural characterization of cathinone-type designer drugs by EI mass spectrometry

15. Metabolism of the newly encountered designer drug α-pyrrolidinovalerophenone in humans: identification and quantitation of urinary metabolites

16. Mass spectrometric differentiation of the isomers of mono-methoxyethylamphetamines and mono-methoxydimethylamphetamines by GC–EI–MS–MS

17. Urinary excretion and metabolism of the newly encountered designer drug 3,4-dimethylmethcathinone in humans

18. Time-course mass spectrometry imaging for depicting drug incorporation into hair

19. Metabolism of the designer drug α-pyrrolidinobutiophenone (α-PBP) in humans: identification and quantification of the phase I metabolites in urine

20. Development of a simple one-pot extraction method for various drugs and metabolites of forensic interest in blood by modifying the QuEChERS method

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