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有角和无角绵羊穿透式致昏螺栓击晕的病理生理学及决定不完全脑震荡的因素

Pathophysiology of Penetrating Captive Bolt Stunning in Horned and Polled Sheep and Factors Determining Incomplete Concussion.

作者信息

Gibson Troy John, Ridler Anne Lisa, Limon Georgina, Lamb Christopher, Williams Alun, Gregory Neville George

机构信息

Animal Welfare Science and Ethics Group, Department of Pathobiology and Population Sciences, Royal Veterinary College, Hawkshead Lane, Hatfield AL9 7TA, UK.

School of Veterinary Science, Massey University, 4410 Palmerston North, New Zealand.

出版信息

Vet Sci. 2025 Jan 13;12(1):53. doi: 10.3390/vetsci12010053.

Abstract

Penetrating captive bolt (PCB) is widely used for stunning and on-farm dispatch of livestock, yet its efficacy can vary, with the potential for animal welfare compromise. This study investigated the pathophysiology of PCB-induced trauma in horned and polled sheep (), focusing on factors contributing to incomplete concussion. Thirty-seven ( = 18 horned Scottish blackface and = 19 polled North Country mule) mature ewes (aged 4-10 years) were shot with PCB with varying cartridge power and PCB modifications, followed by clinical assessment and post-mortem analysis using magnetic resonance imagining (MRI) and gross pathology. The results indicated that damage to the reticular activating system, bolt velocity and penetration depth are crucial for inducing irreversible unconsciousness, with depths less than 37 mm often resulting in incomplete concussion. MRI provided detailed insights into brain injuries, aligning well with gross pathological findings. This study highlights the importance of precise bolt placement and appropriate PCB configurations in ensuring humane outcomes, with MRI proving to be a valuable tool for assessing brain trauma in stunned animals. These findings enhance the understanding of effective stunning techniques and support improved welfare practices in livestock management.

摘要

穿透式致昏螺栓(PCB)被广泛用于牲畜的致昏和农场宰杀,但它的效果可能会有所不同,存在损害动物福利的可能性。本研究调查了带角和无角绵羊中PCB所致创伤的病理生理学,重点关注导致脑震荡不完全的因素。用不同弹药筒功率和经过改进的PCB对37只(其中18只为带角的苏格兰黑脸羊,19只为无角的北郡骡羊)成年母羊(年龄4至10岁)进行射击,随后进行临床评估,并使用磁共振成像(MRI)和大体病理学进行死后分析。结果表明,网状激活系统的损伤、螺栓速度和穿透深度对于诱导不可逆昏迷至关重要,深度小于37毫米通常会导致脑震荡不完全。MRI提供了对脑损伤的详细见解,与大体病理学发现高度吻合。本研究强调了精确的螺栓放置和合适的PCB配置在确保人道结果方面的重要性,MRI被证明是评估致昏动物脑创伤的有价值工具。这些发现增进了对有效致昏技术的理解,并支持改进牲畜管理中的福利实践。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbaf/11769382/aab4a35043e8/vetsci-12-00053-g001.jpg

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