Dolan Marc C, Schulze Terry L, Jordan Robert A, Schulze Christopher J, Ullmann Amy J, Hojgaard Andrias, Williams Martin A, Piesman Joseph
Division of Vector-Borne Diseases, National Center for Enteric and Zoonotic Infectious Diseases, Centers for Disease Control and Prevention, 3156 Rampart Rd., Fort Collins, CO 80521 (
(Terry L. Schulze) - Terry L. Schulze, Ph.D., Inc., 9 Evergreen Court, Perrineville, NJ 08535 (
J Med Entomol. 2017 Mar 1;54(2):403-410. doi: 10.1093/jme/tjw194.
A field trial was conducted on residential properties in a Lyme disease endemic area of New Jersey to determine the efficacy of Maxforce Tick Management System (TMS) bait boxes modified with doxycycline hyclate-laden bait to reduce the acarological risk of Lyme disease and the utility of galvanized steel shrouds to protect the bait boxes from squirrel depredation and ability to routinely service these devices. The strategy began with a 9-wk deployment against larvae followed by a 17-wk deployment against nymphs and larvae the second year. Passive application of fipronil reduced nymphal and larval tick burdens on small mammals by 76 and 77%, respectively, and nymphal tick abundance by 81% on treated properties. In addition, the percentage of infected small mammals recovered from intervention areas following treatment was reduced by 96% for Borrelia burgdorferi and 93% for Anaplasma phagocytophilum. Infection prevalence in host-seeking nymphal ticks for both B. burgdorferi and A. phagocytophilum were reduced by 93 and 61%, respectively. Results indicate that Maxforce TMS bait boxes fitted with doxycycline-impregnated bait is an effective means of reducing ticks and infection prevalence for B. burgdorferi and A. phagocytophilum in both rodent reservoirs and questing Ixodes scapularis Say ticks. The protective shroud allows the device to be routinely serviced and protect against squirrel depredation.
在新泽西州莱姆病流行地区的住宅物业上进行了一项田间试验,以确定用含盐酸多西环素的诱饵改良的Maxforce蜱虫管理系统(TMS)诱饵盒降低莱姆病蜱媒风险的效果,以及镀锌钢护罩保护诱饵盒免受松鼠破坏的效用和对这些装置进行常规维护的能力。该策略首先针对幼虫进行了9周的部署,然后在第二年针对若虫和幼虫进行了17周的部署。被动施用氟虫腈可使小型哺乳动物身上的若虫和幼虫蜱虫负担分别减少76%和77%,并使处理过的物业上的若虫蜱虫数量减少81%。此外,处理后从干预区域回收的受感染小型哺乳动物中,伯氏疏螺旋体减少了96%,嗜吞噬细胞无形体减少了93%。在寻找宿主的若虫蜱中,伯氏疏螺旋体和嗜吞噬细胞无形体的感染率分别降低了93%和61%。结果表明,装有多西环素浸渍诱饵的Maxforce TMS诱饵盒是减少啮齿动物宿主和肩胛硬蜱蜱虫数量以及伯氏疏螺旋体和嗜吞噬细胞无形体感染率的有效手段。保护罩使该装置能够进行常规维护并防止松鼠破坏。