Estimating the welfare impacts of differing projectile types utilised for stranded cetacean euthanasia
Оценка последствий для благополучия при использовании различных типов снарядов для эвтаназии выброшенных на берег китообразных
2026-05-06
SCID: 54.1/n7k6n96m
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.308 calibre riflePMCTbrainstem fracturescalvarium damagecaudoventral fracturescetacean euthanasiacranial traumadeforming projectilefragmentationfull metal jacketgeneralized linear mixed modelshydrostatic projectilemonolithic projectilenon-deforming projectileodontocete speciespost-mortem computed tomographyprojectile types
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Abstract (AI)
Euthanasia may be necessary for stranded cetaceans to alleviate suffering, achievable through properly applied ballistics causing rapid insensibility and death. Despite widespread use, understanding of appropriate equipment relative to anatomical variation remains limited. We conducted experimental ballistics trials using cetacean cadavers to examine cranial trauma from five projectile types. A .308 calibre rifle with two deforming and three non-deforming projectiles was tested on 30 cadavers across four odontocete species (six per projectile type). Post-mortem computed tomography (PMCT) and dissection evaluated ballistics trauma. PMCT analysis assessed calvarium damage across 8 quadrants, summarized into four sectors. Marked caudoventral (brainstem) fractures were used as a conservative proxy indicator for likely instant insensibility. Generalized linear mixed models evaluated projectile type, brain sector, and species effects on fracture severity and fragmentation. Only 17 (56.7%) cadavers exhibited marked brainstem fractures. Non-deforming full metal jacket and hydrostatic projectiles caused significantly less severe fractures than other projectiles. Deforming and non-deforming monolithic projectiles produced brainstem-disrupting fractures in common, striped, and dusky dolphins. Monolithic projectiles appear more effective for bottlenose dolphins. Preliminary findings indicate deforming or monolithic projectiles were associated with a higher frequency of brainstem-associated osseous fractures in the cadavers studied. However, increased sample sizes with the addition of soft tissue damage quantification, are required to better elucidate species-specific equipment selection.
Key Findings
1
Authors conclude deforming or monolithic projectiles were associated with higher frequency of brainstem-associated osseous fractures, but larger samples and soft-tissue damage data are needed for species-specific guidance.
2
Deforming and non-deforming monolithic projectiles commonly produced brainstem-disrupting fractures in common, striped, and dusky dolphins.
3
Experimental ballistics trials on 30 odontocete cadavers assessed cranial trauma from five projectile types using a .308 calibre rifle.
4
Monolithic projectiles appeared more effective for producing brainstem-disrupting fractures in bottlenose dolphins.
5
Non-deforming full metal jacket and hydrostatic projectiles caused significantly less severe fractures than other tested projectiles.
6
Only 17 of 30 cadavers (56.7%) exhibited marked caudoventral (brainstem) fractures used as a proxy for instant insensibility.
Research Object
Stranded cetacean carcasses (odontocete cadavers) subjected to ballistic euthanasia trials
Research Subject
Effects of different projectile types on cranial/brainstem trauma severity and fragmentation (as welfare indicators for rapid insensibility and death) across odontocete species
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2026-05-06
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