Hamilton Emma M, Anderson Karly N, Kirk Ashlynn A, Bishop Katherine D, Shakal Joseph S, Vogel Kurt D
Department of Animal and Food Science, University of Wisconsin - River Falls, River Falls, WI 54022, USA.
Department of Animal Science, University of Nebraska - Lincoln, Lincoln, NE 68583, USA.
Transl Anim Sci. 2023 Aug 28;7(1):txad103. doi: 10.1093/tas/txad103. eCollection 2023.
The main objective of this study was to describe tissue thicknesses of cadaver heads from physically castrated market barrows (PC MARKET BARROWS) and immunocastrated boars (IC BOARS) at the frontal penetrating captive bolt (PCB) placement. Other objectives were to describe differences in bolt force and energy requirements to penetrate and describe potential for bolt-thalamus contact. Forty-four heads were obtained from PC MARKET BARROWS ( = 22) and IC BOARS ( = 22) of similar age and size that were rendered insensible with CO. Mean HCW was 117.32 ± 3.52 kg. Snout to poll distance (cm) and maximum deflection distance (cm) were collected in duplicate. Heads were split at midline with a bandsaw and soft tissue and cranial thicknesses were measured with a digital caliper. Images of each cut surface were collected to evaluate the potential for thalamic damage. Tissue samples were retained from each half of each head and a universal tester was used to determine maximum force and energy of bolt penetration. There was no evidence to support a significant difference ( > 0.05) in tissue thicknesses between PC MARKET BARROWS and IC BOARS. Maximum deflection distance (maximum distance from a straight edge that was placed from the tip of the snout to the poll of the head) was not different ( = 0.10) between PC MARKET BARROWS (3.31 ± 0.10 cm) and IC BOARS (3.08 ± 0.10 cm). There was no evidence to support a difference (0.77) in maximum force between PC MARKET BARROWS (7130.32 ± 483.23 N) and IC BOARS (6974.60 ± 463.70 N). There was also no evidence to support a difference ( 0.62) in maximum energy between PC MARKET BARROWS (33.37 ± 2.77 J) and IC BOARS (32.04 ± 2.50 J). For PC MARKET BARROWS, there was a difference ( = 0.05) between the number of heads where the thalamus was located within the theoretical plane of bolt travel for market placement (21/21) versus mature placement (16/21). For IC BOARS, the number of heads where the thalamus was located within the plane of theoretical bolt path was not different between the two PCB placements (19/21 each). Overall, the data suggest that tissue profiles of PC MARKET BARROWS and IC BOARS do not differ at the frontal PCB placement site and the mechanical tools that are effective for PC MARKET BARROWS should also be effective for IC BOARS.
本研究的主要目的是描述来自物理阉割的商品育肥猪(PC商品育肥猪)和免疫阉割公猪(IC公猪)的尸体头部在额部穿透式致昏枪(PCB)放置处的组织厚度。其他目的是描述穿透所需的枪击力和能量差异,并描述枪击与丘脑接触的可能性。从年龄和大小相似的PC商品育肥猪(n = 22)和IC公猪(n = 22)获取了44个头部,这些猪用一氧化碳使其失去知觉。平均胴体重为117.32±3.52千克。鼻端到头顶距离(厘米)和最大偏转距离(厘米)进行了两次测量。用带锯将头部沿中线劈开,用数字卡尺测量软组织和颅骨厚度。收集每个切面的图像以评估丘脑损伤的可能性。从每个头部的每一半保留组织样本,并用万能试验机确定枪击穿透的最大力和能量。没有证据支持PC商品育肥猪和IC公猪之间组织厚度存在显著差异(P>0.05)。PC商品育肥猪(3.31±0.10厘米)和IC公猪(3.08±0.10厘米)之间的最大偏转距离(从鼻端到头顶放置的直尺的最大距离)没有差异(P = 0.10)。没有证据支持PC商品育肥猪(7130.32±483.23牛)和IC公猪(6974.60±463.70牛)之间最大力存在差异(P = 0.77)。也没有证据支持PC商品育肥猪(33.37±2.77焦耳)和IC公猪(32.04±2.50焦耳)之间最大能量存在差异(P = 0.62)。对于PC商品育肥猪,丘脑位于市场放置理论枪击行程平面内的头部数量(21/21)与成熟放置(16/21)之间存在差异(P = 0.05)。对于IC公猪,在两种PCB放置方式下,丘脑位于理论枪路径平面内的头部数量没有差异(每种均为19/21)。总体而言,数据表明PC商品育肥猪和IC公猪在额部PCB放置部位的组织特征没有差异,对PC商品育肥猪有效的机械工具对IC公猪也应该有效。