Van den Broeck W, Mortier P, Simoens P
Department of Morphology, Faculty of Veterinary Medicine, Ghent University, Salisburylaan 133, 9820 Merelbeke, Belgium.
Folia Morphol (Warsz). 2001;60(1):33-40.
The microarchitecture of the cover hairs, wool hairs and tactile (sinus) hairs of feral, New Zealand White and Angora rabbits was studied by means of scanning electron microscopy. The morphology and variability of the cuticular scale patterns, hair cortex, medullary arrangement and profile of the hairs are described, illustrated and compared with findings resulting from conventional light microscopy, cuticular casting and medullary impregnation. All parameters examined in cover hairs presented a considerable variation along the length of the hair shaft. In wool hairs, in contrast, only the cuticular scale pattern was subject to manifest segmental variation, whereas the shaft diameter, cortical profile and medullar composition changed little over the entire length of the hair. The tactile hairs of the head were characterised by a round profile of the hair shaft, a cylindrical central medullar canal, and a thick cortex covered by cuticular scales that were arranged in a waved pattern and oriented transversally in relation to the longitudinal axis of the hair. It was concluded that the scanning electron microscopic observation of hair samples is a fast and valuable method for identifying hair types with useful applications in different disciplines such as mammalian biology, the textile industry and forensic medicine.
利用扫描电子显微镜对野生兔、新西兰白兔和安哥拉兔的被毛、绒毛和触毛(窦毛)的微观结构进行了研究。描述、展示了毛表皮鳞片模式、毛皮质、髓质排列和毛发轮廓的形态及变异性,并与传统光学显微镜、表皮铸型和髓质浸染的结果进行了比较。在被毛中检测的所有参数沿毛干长度呈现出相当大的变化。相比之下,在绒毛中,只有表皮鳞片模式表现出明显的节段性变化,而毛干直径、皮质轮廓和髓质组成在毛发的整个长度上变化很小。头部的触毛的特征是毛干呈圆形轮廓,有一个圆柱形的中央髓质管,以及一层厚厚的皮质,上面覆盖着呈波浪状排列且相对于毛发纵轴横向定向的表皮鳞片。得出的结论是,对毛发样本进行扫描电子显微镜观察是一种快速且有价值的方法,可用于识别毛发类型,在哺乳动物生物学、纺织工业和法医学等不同学科中具有实用价值。