Correlation Engine 2.0
Clear Search sequence regions


  • adult (1)
  • drug combinations (1)
  • heart rate (3)
  • hypnotics (2)
  • oxygen (2)
  • procyon (2)
  • raccoons (6)
  • sedatives (2)
  • weight (1)
  • Sizes of these terms reflect their relevance to your search.

    Chemical immobilization is widely used by wildlife and veterinary professionals for the safe handling of animals. A combination of nalbuphine (40 mg/mL), azaperone (10 mg/mL), and medetomidine (10 mg/mL), known as NAM, is a low-volume combination with field immobilization practicality and fewer regulations restricting its use in the US than some other drug combinations. We evaluated the safety and effectiveness of NAM as an immobilizing agent for raccoons (Procyon lotor). From May 2021 to February 2022, 16 adult raccoons were captured in cage traps and immobilized with 0.3 mL NAM intramuscularly (12 mg nalbuphine, 3 mg medetomidine, and 3 mg azaperone, regardless of body weight). After administration, time to sedation was measured; body temperature, heart rate, respiratory rate, and oxygen saturation were monitored and recorded every 5 min for 20 min. Each raccoon was weighed; the dose administered was calculated (range 2.2-4.1 mg/kg, mean 3 mg/kg). Mean induction time was 6 min (4-17 min); time to recovery following administration of 15 mg atipamezole, 7.5 mg naltrexone for reversal, was 10 min (6-18 min). Heart rate, oxygen saturation, and respiration rate remained steady during immobilization. Rectal temperature steadily declined. Overall, NAM appeared to be a practical option for raccoon immobilization, providing rapid induction and reversal as well as adequate sedation for short-term handling and minimally invasive sampling. © Wildlife Disease Association 2023.

    Citation

    Emily E Doub, Alec T Thompson, Avery L Korns, Christopher A Cleveland, Michael J Yabsley, Mark G Ruder. Immobilization of Raccoons (Procyon lotor) with Nalbuphine, Medetomidine, and Azaperone. Journal of wildlife diseases. 2023 Jul 01;59(3):520-523

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 37151190

    View Full Text