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    蔡道章院长

    Custom Mod Mega1

    主任医师、教授、博导,南方医科大学第三附属医院(广东省骨科医院)院长

    • 中德骨科伤口管理学校校长
    • 广东省骨科研究院运动医学研究所所长
    • 广东省内运动医学专业唯一的博士研究生导师
    • 美国哈弗大学医学院骨科访问学者
    • 专业特长处于省内领先、国内或国际先进水平以上
    • 2018年获得“国之名医卓越建树”荣誉称号
    • 2017年被评为全国卫生计生系统先进工作者、广东省医学领军人才
    • 中国医师协会运动医师分会副会长
    • STCOT中国部运动医学分会副主任委员
    • 广东省医学会关节外科分会主任委员
    • 广东省医学会运动医学会分会名誉主任委员
    • 独立承担过国家“863”课题,主持过10余项省、部级科研项目
    • 多份专业杂志编委
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    最新文献
    • HOCl Rapidly Kills Corona, Flu, and Herpes to Prevent Aerosol Spread 2026-09-22 00:00

      H.Guan1,M.Nuth1, S.R. Weiss2, A. Fausto2, Y. Liu3, H. Koo3, M.S. Wolff4 , and R.P. Ricciardi1,5

      Abstract

      The COVID-19 pandemic has escalated the risk of SARS-CoV-2 transmission in the dental practice, especially as droplet-aerosol particles are generated by high-speed instruments. This has heightened awareness of other orally transmitted viruses, including influenza and herpes simplex virus 1 (HSV1), which are capable of threatening life and impairing health. While current disinfection procedures commonly use surface wipe-downs to reduce viral transmission, they are not fully effective. Consequently, this provides the opportunity for a spectrum of emitted viruses to reside airborne for hours and upon surfaces for days. The objective of this study was to develop an experimental platform to identify a safe and effective virucide with the ability to rapidly destroy oral viruses transported within droplets and aerosols. Our test method employed mixing viruses and virucides in a fine-mist bottle atomizer to mimic the generation of oral droplet-aerosols. The results revealed that human betacoronavirus OC43 (related to SARS-CoV-2), human influenza virus (H1N1), and HSV1 from atomizer-produced droplet-aerosols were each fully destroyed by only 100 ppm of hypochlorous acid (HOCl) within 30 s, which was the shortest time point of exposure to the virucide. Importantly, 100 ppm HOCl introduced into the oral cavity is known to be safe for humans. In conclusion, this frontline approach establishes the potential of using 100 ppm HOCl in waterlines to continuously irrigate the oral cavity during dental procedures to expeditiously destroy harmful viruses transmitted within aerosols and droplets to protect practitioners, staff, and other patients.

      Keywords: virucide, saliva, infection, high-speed instruments, waterlines, prevention

    • In vitro evaluation of hypochlorous acid-silver nanoparticle waterline disinfectant for dental unit waterline disinfection 2026-09-21 00:00

      Tingting Yin1 , Qiaowen Li2 , Huan Sun3 , Jin Zheng4 , Yuanyuan Wang5 , Yi Luo6 and Li Wang7*

      Abstract

      Background This work intended to assess the disinfection efficacy of hypochlorous acid (HA) and silver nanoparticles (AgNP) disinfectants in disinfecting the dental unit waterlines (DUWL) during comprehensive oral treatment and explore their potential applications in the oral medical environment. Methods: Firstly, AgNP solution was prepared and evaluated through X-ray diffraction (XRD), field emission transmission electron microscope (FE-TEM), and stability tests. Subsequently, 15 dental units were selected and randomly assigned to three groups, each receiving a different disinfection method. Specifically, one group (5 units) received HA disinfectant (HA group), one group (5 units) received AgNP disinfectant (AgNP group), and another group (5 units) received a combination of HA and AgNP disinfectant (HA+AgNP group). Bacterial counts before and after disinfection were compared and analyzed at four sites on the dental units: high-speed handpiece tubing, mouthwash, ultrasonic scaler, and three-way syringe.

      Results The growth of biofilm on the waterlines was observed using scanning electron microscopy (SEM) and laser confocal microscopy (LCM). The results indicated that AgNP solution was successfully prepared and demonstrated excellent stability. There was no significant difference in the average weekly number of patients treated across the three groups (P>0.05). After disinfection, bacterial counts were significantly reduced in all groups. Compared to the HA and AgNP groups, the HA+AgNP group exhibited a markedly lower bacterial count, with statistical significance (P<0.05). The compliance rates observed during the first disinfection and two weeks post-disinfection were slightly lower in the HA and AgNP groups compared to the HA+AgNP group, although no significant statistical difference was found (P>0.05). SEM images revealed uneven biofilm plaques on the inner surface of the pipes prior to disinfection, embedded within a dense matrix, while the biofilm was visibly disrupted post-disinfection. LCM software analysis showed that, compared to the HA and AgNP groups, the HA+AgNP group had a significantly lower percentage of live bacteria on the biofilm post-disinfection (P<0.05).

      Conclusion Compared to any single disinfectant regimen, the combined use of HA and AgNPs effectively inhibited bacterial growth and exerted a significant destructive effect on biofilms. Therefore, this combination is expected to be a viable option for disinfection of DUWL in the oral healthcare setting.

      Clinical trial number Not applicable.

      Keywords Dentistry, Therapeutics, Waterline disinfectant, Hypochlorous acid, Silver nanoparticles

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伤口处理的基本原则

伤口处理的基本原则

伤口世界,
2019-11-18 00:00
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伤口处理的基本原则

崔飞飞 东阳市人民医院

引言 — 伤口是皮肤及皮肤系统正常结构和功能的破坏[1]。急性伤口有正常的伤口生理机能,预期其愈合可以通过正常的伤口愈合过程,而慢性伤口则被定义为生理机能受损[2,3]。

EMPIRICAL STUDIES A Prospective, Experimental Study to Assess the Effectiveness of Home Care Nursing on the Healing of Peristomal Skin Complications and Quality of Life

EMPIRICAL STUDIES A Prospective, Experimental Study to Assess the Effectiveness of Home Care Nursing on the Healing of Peristomal Skin Complications and Quality of Life

伤口世界,
2019-11-15 00:00
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Authors

Deniz Harputlu

Süheyla A. Özsoy

EMPIRICAL STUDIES  Sequential Organ Failure Assessment (SOFA) to Predict Pressure Ulcer Risk in Intensive Care Patients: A Retrospective Cohort Study

EMPIRICAL STUDIES Sequential Organ Failure Assessment (SOFA) to Predict Pressure Ulcer Risk in Intensive Care Patients: A Retrospective Cohort Study

伤口世界,
2019-11-15 00:00
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Authors

Maarit Ahtiala

Esa Soppi

Teijo I. Saari

Keywords

EMPIRICAL STUDIES  Effect of Music Therapy on Pain Perception, Anxiety, and Opioid Use During Dressing Change Among Patients With Burns in India: A Quasi-experimental, Cross-over Pilot Study

EMPIRICAL STUDIES Effect of Music Therapy on Pain Perception, Anxiety, and Opioid Use During Dressing Change Among Patients With Burns in India: A Quasi-experimental, Cross-over Pilot Study

伤口世界,
2019-11-15 00:00
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Authors

Latika Rohilla

Meenakshi Agnihotri

Sukhpal Kaur Trehan

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  • HOCl Rapidly Kills Corona, Flu, and Herpes to Prevent Aerosol Spread 2026-09-22 00:00

    H.Guan1,M.Nuth1, S.R. Weiss2, A. Fausto2, Y. Liu3, H. Koo3, M.S. Wolff4 , and R.P. Ricciardi1,5

    Abstract

    The COVID-19 pandemic has escalated the risk of SARS-CoV-2 transmission in the dental practice, especially as droplet-aerosol particles are generated by high-speed instruments. This has heightened awareness of other orally transmitted viruses, including influenza and herpes simplex virus 1 (HSV1), which are capable of threatening life and impairing health. While current disinfection procedures commonly use surface wipe-downs to reduce viral transmission, they are not fully effective. Consequently, this provides the opportunity for a spectrum of emitted viruses to reside airborne for hours and upon surfaces for days. The objective of this study was to develop an experimental platform to identify a safe and effective virucide with the ability to rapidly destroy oral viruses transported within droplets and aerosols. Our test method employed mixing viruses and virucides in a fine-mist bottle atomizer to mimic the generation of oral droplet-aerosols. The results revealed that human betacoronavirus OC43 (related to SARS-CoV-2), human influenza virus (H1N1), and HSV1 from atomizer-produced droplet-aerosols were each fully destroyed by only 100 ppm of hypochlorous acid (HOCl) within 30 s, which was the shortest time point of exposure to the virucide. Importantly, 100 ppm HOCl introduced into the oral cavity is known to be safe for humans. In conclusion, this frontline approach establishes the potential of using 100 ppm HOCl in waterlines to continuously irrigate the oral cavity during dental procedures to expeditiously destroy harmful viruses transmitted within aerosols and droplets to protect practitioners, staff, and other patients.

    Keywords: virucide, saliva, infection, high-speed instruments, waterlines, prevention

  • In vitro evaluation of hypochlorous acid-silver nanoparticle waterline disinfectant for dental unit waterline disinfection 2026-09-21 00:00

    Tingting Yin1 , Qiaowen Li2 , Huan Sun3 , Jin Zheng4 , Yuanyuan Wang5 , Yi Luo6 and Li Wang7*

    Abstract

    Background This work intended to assess the disinfection efficacy of hypochlorous acid (HA) and silver nanoparticles (AgNP) disinfectants in disinfecting the dental unit waterlines (DUWL) during comprehensive oral treatment and explore their potential applications in the oral medical environment. Methods: Firstly, AgNP solution was prepared and evaluated through X-ray diffraction (XRD), field emission transmission electron microscope (FE-TEM), and stability tests. Subsequently, 15 dental units were selected and randomly assigned to three groups, each receiving a different disinfection method. Specifically, one group (5 units) received HA disinfectant (HA group), one group (5 units) received AgNP disinfectant (AgNP group), and another group (5 units) received a combination of HA and AgNP disinfectant (HA+AgNP group). Bacterial counts before and after disinfection were compared and analyzed at four sites on the dental units: high-speed handpiece tubing, mouthwash, ultrasonic scaler, and three-way syringe.

    Results The growth of biofilm on the waterlines was observed using scanning electron microscopy (SEM) and laser confocal microscopy (LCM). The results indicated that AgNP solution was successfully prepared and demonstrated excellent stability. There was no significant difference in the average weekly number of patients treated across the three groups (P>0.05). After disinfection, bacterial counts were significantly reduced in all groups. Compared to the HA and AgNP groups, the HA+AgNP group exhibited a markedly lower bacterial count, with statistical significance (P<0.05). The compliance rates observed during the first disinfection and two weeks post-disinfection were slightly lower in the HA and AgNP groups compared to the HA+AgNP group, although no significant statistical difference was found (P>0.05). SEM images revealed uneven biofilm plaques on the inner surface of the pipes prior to disinfection, embedded within a dense matrix, while the biofilm was visibly disrupted post-disinfection. LCM software analysis showed that, compared to the HA and AgNP groups, the HA+AgNP group had a significantly lower percentage of live bacteria on the biofilm post-disinfection (P<0.05).

    Conclusion Compared to any single disinfectant regimen, the combined use of HA and AgNPs effectively inhibited bacterial growth and exerted a significant destructive effect on biofilms. Therefore, this combination is expected to be a viable option for disinfection of DUWL in the oral healthcare setting.

    Clinical trial number Not applicable.

    Keywords Dentistry, Therapeutics, Waterline disinfectant, Hypochlorous acid, Silver nanoparticles

  • Effectiveness of Hypochlorous Acid to Reduce the Biofilms on Titanium Alloy Surfaces in Vitro 2026-09-19 00:00

    Chun-Ju Chen 1 , Chun-Cheng Chen 2,3,* and Shinn-Jyh Ding 1,2,3,*

    1Institute of Oral Science, Chung Shan Medical University, Taichung City 402, Taiwan; 该Email地址已收到反垃圾邮件插件保护。要显示它您需要在浏览器中启用JavaScript。

    2School of Dentistry, Chung Shan Medical University, Taichung City 402, Taiwan

    3Department of Dentistry, Chung Shan Medical University Hospital, Taichung City 402, Taiwan

    *Correspondence: 该Email地址已收到反垃圾邮件插件保护。要显示它您需要在浏览器中启用JavaScript。 (C.-C.C.); 该Email地址已收到反垃圾邮件插件保护。要显示它您需要在浏览器中启用JavaScript。 (S.-J.D.); Tel.: +886-6-2471-8668 (ext. 55255) (C.-C.C.); +886-6-2471-8668 (ext. 55529) (S.-J.D.)

    Academic Editor: Ihtesham ur Rehman

    Received: 13 April 2016; Accepted: 15 July 2016; Published: 19 July 2016

    Abstract: Chemotherapeutic agents have been used as an adjunct to mechanical debridement for peri-implantitis treatment. The present in vitro study evaluated and compared the effectiveness of hypochlorous acid (HOCl), sodium hypochlorite (NaOCl), and chlorhexidine (CHX) at eliminating Gram-negative (E. coli and P. gingivalis) and Gram-positive (E. faecalis and S. sanguinis) bacteria. The effect of irrigating volume and exposure time on the antimicrobial efficacy of HOCl was evaluated, and a durability analysis was completed. Live/dead staining, morphology observation, alamarBlue assay, and lipopolysaccharide (LPS) detection were examined on grit-blasted and biofilm-contaminated titanium alloy discs after treatment with the three chemotherapeutic agents. The results indicated that HOCl exhibited better antibacterial efficacy with increasing irrigating volumes. HOCl achieved greater antibacterial efficacy as treatment time was increased. A decrease in antimicrobial effectiveness was observed when HOCl was unsealed and left in contact with the air. All the irrigants showed antibacterial activity and killed the majority of bacteria on the titanium alloy surfaces of biofilm-contaminated implants. Moreover, HOCl significantly lowered the LPS concentration of P. gingivalis when compared with NaOCl and CHX. Thus, a HOCl antiseptic may be effective for cleaning biofilm-contaminated implant surfaces.

    Keywords: dental implant; hypochlorite acid; antiseptics; antimicrobial activity

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伤口世界平台生态圈,以“关爱人间所有伤口患者”为愿景,连接、整合和拓展线上和线下的管理慢性伤口的资源,倡导远程、就近和居家管理慢性伤口,解决伤口专家的碎片化时间的价值创造、诊疗经验的裂变复制、和患者的就近、居家和低成本管理慢性伤口的问题。

 

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2019广东省医疗行业协会伤口管理分会年会

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  • 2019年6月15日 中国广州
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