O'Steen W K, Kraeer S L, Shear C R
Invest Ophthalmol Vis Sci. 1978 Sep;17(9):847-56.
Exposure of adult albino rats to continuous cool-white fluorescent illumination caused extensive destruction to the extraocular skeletal muscles (EOM's) and Harderian glands. After 1 day of exposure, leukocytes and macrophages invaded the damaged area and were found among and within the myofibers. After 48 hr of exposure, myoblasts and short myotubes extending from the damaged fibers indicated that regeneration had begun. In spite of constant illumination of the animals, the EOM's continued to reconstitute, and by the seventh day of exposure, regeneration was almost complete. At this time, small loci of degeneration and leucocytic infiltration resembling those seen in the 1-day stage again occurred. Results supported the speculation that differentiated myofibers were susceptible to the damaging effects of continuous fluorescent illumination, but that myoblasts myotubes, and early undifferentiated myofibers were not. Although the tubular epithelium proliferated in damaged Harderian glands, very few other regenerative changes were observed during the 7-day exposure period. When animals with one eye occluded with a plastic contact lens and the other unoccluded were exposed to continuous illumination, the pattern of tissue destruction in unoccluded eyes was identical to that described in the above series. However, EOM's in occluded eyes were unaffected, and Harderian glands had minimal damage limited to unshielded areas at the conjunctival fornix. Glands apparently were more susceptible to injury than EOM's. Orbital tissue destruction in these animals seemingly was due directly to a radiant energy-dependent mechanism.
成年白化大鼠持续暴露于冷白色荧光灯下会导致眼外骨骼肌(EOM)和哈德氏腺广泛受损。暴露1天后,白细胞和巨噬细胞侵入受损区域,在肌纤维之间和内部均可发现。暴露48小时后,成肌细胞和从受损纤维延伸出的短肌管表明再生已经开始。尽管动物持续处于光照下,EOM仍继续进行重构,到暴露第7天时,再生几乎完成。此时,再次出现了类似于1天阶段所见的小范围变性和白细胞浸润区域。结果支持了这样的推测,即分化的肌纤维易受持续荧光照射的损伤影响,而成肌细胞、肌管和早期未分化的肌纤维则不然。尽管受损哈德氏腺的管状上皮细胞会增殖,但在7天的暴露期内几乎未观察到其他再生变化。当用塑料隐形眼镜遮盖一只眼睛而另一只眼睛未遮盖的动物暴露于持续光照下时,未遮盖眼睛的组织破坏模式与上述系列中描述的相同。然而,遮盖眼睛的EOM未受影响,哈德氏腺的损伤最小,仅限于结膜穹窿未遮盖区域。腺体显然比EOM更容易受到损伤。这些动物的眼眶组织破坏似乎直接归因于一种依赖辐射能的机制。