Takano-Lee M, Velten R K, Edman J D, Mullens B A, Clark J M
Center for Vector-Borne Diseases, University of California, Davis, CA 95616, USA.
J Med Entomol. 2003 Nov;40(6):795-9. doi: 10.1603/0022-2585-40.6.795.
An automated feeding apparatus was developed to maintain the human head louse (Pediculus capitis DeGeer) in vitro. With the use of valves and timers, banked human blood and saline from refrigerated reservoirs were pumped into and flushed out of the system every 7 d. During this rotational interval, bloodmeals were provided to head lice continuously and ad libitum through a stretched Nescofilm-silicone sandwich membrane. Compared with our previous in vitro human head louse-rearing apparatus, greater numbers of lice could be fed simultaneously with minimal human monitoring. Development of second to third instars and third instars to adults was significantly faster when lice were reared in vivo than on either of the in vitro rearing systems; there was no significant difference in the duration of the first instar. Although fecundity and hatch rates were significantly higher for female lice reared in vivo, similar trends have been observed for other membrane-fed arthropods. Body lice (Pediculus humanus L.) and bed bugs (Cimex lectularius [L.]) also completed most of their life cycle on this apparatus. Our automated mass-rearing system has broad applications for maintaining fluid-sucking ectoparasites and will facilitate various toxicological, behavioral, and disease-transmission investigations.
开发了一种自动喂食装置,用于在体外饲养人头虱(头虱DeGeer)。通过使用阀门和定时器,每隔7天就将冷藏储存库中的库存人血和盐水泵入系统并冲洗出来。在这个循环间隔期间,通过拉伸的雀巢薄膜-硅胶夹层膜持续且随意地向头虱提供血餐。与我们之前的体外人头虱饲养装置相比,在最少人工监测的情况下可以同时喂养更多数量的虱子。当虱子在体内饲养时,从二龄到三龄以及从三龄到成虫的发育明显比在任何一种体外饲养系统中都要快;一龄期的持续时间没有显著差异。虽然在体内饲养的雌虱的繁殖力和孵化率明显更高,但在其他通过膜喂食的节肢动物中也观察到了类似趋势。体虱(人体虱L.)和臭虫(温带臭虫[L.])也在这个装置上完成了它们大部分的生命周期。我们的自动大规模饲养系统在维持吸食液体的体外寄生虫方面有广泛应用,并将促进各种毒理学、行为学和疾病传播研究。