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MULTISPECTRAL THERAPEUTIC ENDOSCOPY IMAGING AND INTERVENTION

机译:多光谱治疗内窥镜成像和干预

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With the debut of antibiotic drug therapy, and as a result of its ease of use and general success in treating infection, drugs have become the treatment of choice for most bacterial infections. However, the advent of multiple, very aggressive drug-resistant bacteria, an increasing population which cannot tolerate drugs, and the high cost of drug therapy suggest that a new modality for treating infections is needed. The complex interplay of clonal spread, persistence, transfer of resistance elements and cell-to-cell interaction all contribute to the difficulty in developing drugs to treat new antibiotic-resistant bacterial strains. A dynamic non-drug system, using extant pulsed ultraviolet lightwave technology to kill infection, is being developed to destroy pathogens. This paper theorizes that the shock effect of pulsed xenon's high energy ultraviolet pulses at wavelengths between 250-270nm separates the bacteria's DNA bands, and, subsequently, destroys them. Preliminary laboratory tests have demonstrated the ability of the technology to destroy Staphylococcus aureus, Pseudomonas aeruginosa Escherichia coli, Helicobacter pylori, Acinetobacter baumannii, Klebsiella punemonia, Bacillus subtillis, and Aspergillus fumigates at penetration depths of greater than 3mm in fluids with 100% effectiveness in less than five seconds of exposure to pulsed xenon lightwaves. Micro Invasive Technology, Inc is developing .pulsed xenon therapeutic catheters and endoscopic instruments for internal antimicrobial eradication and topographical devices for prophylactic wound, burn and surgical entrance/exit site sterilization. Pulsed Xenon light sources have a broad optical spectrum (190-1200nm), and can generate light pulses with sufficient energy for combined imaging and therapeutic intervention by multiplexing a fiber optic pathway into the body. In addition, Pulsed Xenon has proven ability to activate photo reactive dyes; share endoscopic lightguides with lasers while, simultaneously, capturing high quality visual and activated video images.
机译:随着抗生素药物疗法的首次出现,并且由于其易用性和在治疗感染方面的普遍成功,药物已成为大多数细菌感染的首选治疗方法。然而,多重,非常具有侵略性的耐药细菌的出现,不能耐受药物的人群的增加以及药物治疗的高成本表明,需要一种新的方式来治疗感染。克隆传播,持久性,抗性元素的转移以及细胞间相互作用的复杂相互作用,都导致开发用于治疗新的抗药性细菌菌株的药物的困难。正在开发一种动态的非药物系统,该系统使用现有的脉冲紫外光波技术杀死感染,以消灭病原体。本文从理论上讲,脉冲氙气的高能紫外线脉冲在250-270nm之间的波长具有震荡作用,可以分离细菌的DNA带,并随后破坏它们。初步的实验室测试表明,该技术能够破坏金黄色葡萄球菌,铜绿假单胞菌,幽门螺杆菌,鲍曼不动杆菌,克雷伯菌,枯草芽孢杆菌和熏蒸曲霉,其渗透深度小于100%时,其穿透深度大于3mm暴露于脉冲氙气波的时间不到五秒钟。 Micro Invasive Technology,Inc正在开发用于内部抗菌消灭的脉冲氙气治疗导管和内窥镜器械,以及用于预防性伤口,烧伤和外科手术进/出部位消毒的地形设备。氙气脉冲光源具有宽广的光谱范围(190-1200nm),并且可以通过将光纤路径复用到体内来生成具有足够能量的光脉冲,以进行组合的成像和治疗干预。另外,脉冲氙具有激活光敏染料的能力。与激光共享内窥镜光导,同时捕获高质量的可视和激活视频图像。

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