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simple and effective aerosol pathogen disinfection test for a flowing air disinfector
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作者 xuling liu Zhiran Qin +14 位作者 Linqing Wang Xiaoting Xie Yifang Fu Jianhai Yu Zuxin Liang Xiaoen He Jingshu Li Hong Dai Jinxiu Yao Qinghua Wu Weiwei Xiao Li Zhu Chengsong Wan Bao Zhang Wei Zhao 《Journal of Biosafety and Biosecurity》 2023年第1期32-38,共7页
Aerosol transmission is an important disease transmission route and has been especially pertinent to hospital and biosafety laboratories during the SARS-CoV-2 pandemic.The thermal resistance of airborne SARS-CoV-2 is ... Aerosol transmission is an important disease transmission route and has been especially pertinent to hospital and biosafety laboratories during the SARS-CoV-2 pandemic.The thermal resistance of airborne SARS-CoV-2 is lower than that of Bacillus subtilis spores,which are often used to test the effectiveness of SARS-CoV-2 and other pathogen disinfection methods.Herein,we propose a new method to test the disinfection ability of a flowing air disinfector(a digital electromagnetic induction air heater)using B.subtilis spores.The study provides an alternative air disinfection test method.The new test system combined an aerosol generator and a respiratory filter designed in-house and could effectively recover spores on the filter membrane at the air outlet after passing through the flowing air disinfector.The total number of bacterial spores used in the test was within the range of 5×10^(5)–5×10^(6)colony-forming units(CFUs)specified in the technical standard for disinfection.The calculation was based on the calculation method in Air Disinfection Effect Appraisal Test in Technical Standard for Disinfection(2002 Edition).At an air speed of 3.5 m/s,we used a digital electromagnetic induction air heater to disinfect flowing air containing 4.100×10^(6)CFUs of B.subtilis spores and determined that the minimum disinfection temperature was 350℃for a killing rate of 99.99%.At 400℃,additional experiments using higher spore concentrations(4.700×10^(6)±1.871×10^(5)CFU)and a higher airspeed(4 m/s)showed that the killing rate remained>99.99%.B.subtilis spores,as a biological indicator for testing the efficiency of dry-heat sterilization,were killed by the high temperatures used in this system.The proposed method used to test the flowing air disinfector is simple,stable,and effective.This study provides a reference for the development of test systems that can assess the disinfection ability of flowing air disinfectors. 展开更多
关键词 Air disinfection Bacillus subtilis Test method
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原发性眼部淋巴瘤研究进展 被引量:5
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作者 刘旭玲 马骏 +2 位作者 孙文文 李鹏 杨开颜 《中华眼视光学与视觉科学杂志》 CAS CSCD 2020年第2期87-93,共7页
原发性眼部淋巴瘤根据累及部位分为原发性眼内淋巴瘤(PIOL)和眼附属器淋巴瘤(POAL)。原发性玻璃体视网膜淋巴瘤(PVRL)是PIOL最常见的形式,是一种侵袭性B细胞恶性肿瘤,被认为是原发性中枢神经系统淋巴瘤(PCNSL)的一种亚型。因其眼部症状... 原发性眼部淋巴瘤根据累及部位分为原发性眼内淋巴瘤(PIOL)和眼附属器淋巴瘤(POAL)。原发性玻璃体视网膜淋巴瘤(PVRL)是PIOL最常见的形式,是一种侵袭性B细胞恶性肿瘤,被认为是原发性中枢神经系统淋巴瘤(PCNSL)的一种亚型。因其眼部症状的非特异性而经常导致误诊。恶性细胞的细胞病理学/组织病理学鉴定是诊断PVRL的金标准。其他辅助检查,如光学相干断层扫描和眼底自发荧光已被应用于PVRL的诊断。细胞因子测量和B细胞克隆性以及突变分子的测定进一步提高了诊断的准确性。目前PVRL的治疗包括局部放疗,玻璃体内化疗(甲氨蝶呤和利妥昔单抗),根据是否累及非眼部组织选择是否进行全身化疗。眼眶淋巴瘤是POAL的主要形式,绝大多数起源于B细胞。组织病理学亚型和疾病的临床分期是预测预后及选择治疗的最佳指标。在治疗孤立性低级别淋巴瘤时,放射治疗是首选治疗方法。对于播散性和高度恶性淋巴瘤,应选择化疗或放疗联合化疗。 展开更多
关键词 眼部淋巴瘤 原发性眼内淋巴瘤 原发性眼附属器淋巴瘤
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