1.Chinese expert consensus on blood support mode and blood transfusion strategies for emergency treatment of severe trauma patients (version 2024)
Yao LU ; Yang LI ; Leiying ZHANG ; Hao TANG ; Huidan JING ; Yaoli WANG ; Xiangzhi JIA ; Li BA ; Maohong BIAN ; Dan CAI ; Hui CAI ; Xiaohong CAI ; Zhanshan ZHA ; Bingyu CHEN ; Daqing CHEN ; Feng CHEN ; Guoan CHEN ; Haiming CHEN ; Jing CHEN ; Min CHEN ; Qing CHEN ; Shu CHEN ; Xi CHEN ; Jinfeng CHENG ; Xiaoling CHU ; Hongwang CUI ; Xin CUI ; Zhen DA ; Ying DAI ; Surong DENG ; Weiqun DONG ; Weimin FAN ; Ke FENG ; Danhui FU ; Yongshui FU ; Qi FU ; Xuemei FU ; Jia GAN ; Xinyu GAN ; Wei GAO ; Huaizheng GONG ; Rong GUI ; Geng GUO ; Ning HAN ; Yiwen HAO ; Wubing HE ; Qiang HONG ; Ruiqin HOU ; Wei HOU ; Jie HU ; Peiyang HU ; Xi HU ; Xiaoyu HU ; Guangbin HUANG ; Jie HUANG ; Xiangyan HUANG ; Yuanshuai HUANG ; Shouyong HUN ; Xuebing JIANG ; Ping JIN ; Dong LAI ; Aiping LE ; Hongmei LI ; Bijuan LI ; Cuiying LI ; Daihong LI ; Haihong LI ; He LI ; Hui LI ; Jianping LI ; Ning LI ; Xiying LI ; Xiangmin LI ; Xiaofei LI ; Xiaojuan LI ; Zhiqiang LI ; Zhongjun LI ; Zunyan LI ; Huaqin LIANG ; Xiaohua LIANG ; Dongfa LIAO ; Qun LIAO ; Yan LIAO ; Jiajin LIN ; Chunxia LIU ; Fenghua LIU ; Peixian LIU ; Tiemei LIU ; Xiaoxin LIU ; Zhiwei LIU ; Zhongdi LIU ; Hua LU ; Jianfeng LUAN ; Jianjun LUO ; Qun LUO ; Dingfeng LYU ; Qi LYU ; Xianping LYU ; Aijun MA ; Liqiang MA ; Shuxuan MA ; Xainjun MA ; Xiaogang MA ; Xiaoli MA ; Guoqing MAO ; Shijie MU ; Shaolin NIE ; Shujuan OUYANG ; Xilin OUYANG ; Chunqiu PAN ; Jian PAN ; Xiaohua PAN ; Lei PENG ; Tao PENG ; Baohua QIAN ; Shu QIAO ; Li QIN ; Ying REN ; Zhaoqi REN ; Ruiming RONG ; Changshan SU ; Mingwei SUN ; Wenwu SUN ; Zhenwei SUN ; Haiping TANG ; Xiaofeng TANG ; Changjiu TANG ; Cuihua TAO ; Zhibin TIAN ; Juan WANG ; Baoyan WANG ; Chunyan WANG ; Gefei WANG ; Haiyan WANG ; Hongjie WANG ; Peng WANG ; Pengli WANG ; Qiushi WANG ; Xiaoning WANG ; Xinhua WANG ; Xuefeng WANG ; Yong WANG ; Yongjun WANG ; Yuanjie WANG ; Zhihua WANG ; Shaojun WEI ; Yaming WEI ; Jianbo WEN ; Jun WEN ; Jiang WU ; Jufeng WU ; Aijun XIA ; Fei XIA ; Rong XIA ; Jue XIE ; Yanchao XING ; Yan XIONG ; Feng XU ; Yongzhu XU ; Yongan XU ; Yonghe YAN ; Beizhan YAN ; Jiang YANG ; Jiangcun YANG ; Jun YANG ; Xinwen YANG ; Yongyi YANG ; Chunyan YAO ; Mingliang YE ; Changlin YIN ; Ming YIN ; Wen YIN ; Lianling YU ; Shuhong YU ; Zebo YU ; Yigang YU ; Anyong YU ; Hong YUAN ; Yi YUAN ; Chan ZHANG ; Jinjun ZHANG ; Jun ZHANG ; Kai ZHANG ; Leibing ZHANG ; Quan ZHANG ; Rongjiang ZHANG ; Sanming ZHANG ; Shengji ZHANG ; Shuo ZHANG ; Wei ZHANG ; Weidong ZHANG ; Xi ZHANG ; Xingwen ZHANG ; Guixi ZHANG ; Xiaojun ZHANG ; Guoqing ZHAO ; Jianpeng ZHAO ; Shuming ZHAO ; Beibei ZHENG ; Shangen ZHENG ; Huayou ZHOU ; Jicheng ZHOU ; Lihong ZHOU ; Mou ZHOU ; Xiaoyu ZHOU ; Xuelian ZHOU ; Yuan ZHOU ; Zheng ZHOU ; Zuhuang ZHOU ; Haiyan ZHU ; Peiyuan ZHU ; Changju ZHU ; Lili ZHU ; Zhengguo WANG ; Jianxin JIANG ; Deqing WANG ; Jiongcai LAN ; Quanli WANG ; Yang YU ; Lianyang ZHANG ; Aiqing WEN
Chinese Journal of Trauma 2024;40(10):865-881
Patients with severe trauma require an extremely timely treatment and transfusion plays an irreplaceable role in the emergency treatment of such patients. An increasing number of evidence-based medicinal evidences and clinical practices suggest that patients with severe traumatic bleeding benefit from early transfusion of low-titer group O whole blood or hemostatic resuscitation with red blood cells, plasma and platelet of a balanced ratio. However, the current domestic mode of blood supply cannot fully meet the requirements of timely and effective blood transfusion for emergency treatment of patients with severe trauma in clinical practice. In order to solve the key problems in blood supply and blood transfusion strategies for emergency treatment of severe trauma, Branch of Clinical Transfusion Medicine of Chinese Medical Association, Group for Trauma Emergency Care and Multiple Injuries of Trauma Branch of Chinese Medical Association, Young Scholar Group of Disaster Medicine Branch of Chinese Medical Association organized domestic experts of blood transfusion medicine and trauma treatment to jointly formulate Chinese expert consensus on blood support mode and blood transfusion strategies for emergency treatment of severe trauma patients ( version 2024). Based on the evidence-based medical evidence and Delphi method of expert consultation and voting, 10 recommendations were put forward from two aspects of blood support mode and transfusion strategies, aiming to provide a reference for transfusion resuscitation in the emergency treatment of severe trauma and further improve the success rate of treatment of patients with severe trauma.
2.The Chinese guideline for management of snakebites
Lai RONGDE ; Yan SHIJIAO ; Wang SHIJUN ; Yang SHUQING ; Yan ZHANGREN ; Lan PIN ; Wang YONGGAO ; Li QI ; Wang JINLONG ; Wang WEI ; Ma YUEFENG ; Liang ZIJING ; Zhang JIANFENG ; Zhou NING ; Han XIAOTONG ; Zhang XINCHAO ; Zhang MAO ; Zhao XIAODONG ; Zhang GUOQIANG ; Zhu HUADONG ; Yu XUEZHONG ; Lyu CHUANZHU
World Journal of Emergency Medicine 2024;15(5):333-355
In 2009,the World Health Organization included snakebite on the list of neglected tropical diseases,acknowledging it as a common occupational hazard for farmers,plantation workers,and others,causing tens of thousands of deaths and chronic physical disabilities every year.This guideline aims to provide practical information to help clinical professionals evaluate and treat snakebite victims.These recommendations are based on clinical experience and clinical research evidence.This guideline focuses on the following topics:snake venom,clinical manifestations,auxiliary examination,diagnosis,treatments,and prevention.
3.Sagittal splitting osteotomy of the mandibular outer cortex and autologous bone grafting for the treatment of hemifacial microsomia
Lai GUI ; Feng NIU ; Bing YU ; Jianfeng LIU ; Ying CHEN ; Xi FU ; Shixing XU ; Jia QIAO ; Qi JIN ; Yu HE ; Xuebing LIANG ; Lei CUI ; Fuhuan CHEN ; Qi CHEN
Chinese Journal of Plastic Surgery 2024;40(3):249-257
Objective:To investigate a new method for the reconstruction of hemifacial microsomia by sagittal osteotomy of the affected mandibular outer cortex combined with bone graft of mandibular outer cortex from healthy side.Methods:From March 2006 to March 2023, the clinical data of patients with hemifacial microsomia admitted to the Department of Craniomaxillofacial Surgery, Plastic Surgery Hospital, Chinese Academy of Medical Sciences were analyzed retrospectively. Preoperative diagnosis and surgical design were performed based on clinical manifestations and imaging findings. All cases were operated under general anesthesia. The affected mandibular outer cortex was previously split by an intraoral approach, and then the mandibular outer cortex of appropriate shape and size on the healthy side was harvested and grafted into the split bone space according to the preoperative design, following by internal rigid fixation. Complications, facial appearance improvement, and patient satisfaction were followed up. Photographs were taken preoperative, immediately postoperative and at the long-term(last) postoperative follow-up, and the severity of the deformity was analyzed. CT data from preoperative, immediate postoperative, and long-term follow-up visits were imported into Surgicase Proplan medical three-dimensional image workstation in Dicom format. The mandible was reconstructed using Segmentation, and the thickness of the mandible was measured during pre-operative, immediate post-operative and long-term follow-up visits. Anova with repeated measurement design was used to compare measurements and LSD test was used for multiple comparisons. The Kruskal-Wallis rank sum test were used to statistically analyze malformation severity. P< 0.05 is considered statistically significant. Results:A total of 39 patients were included in this study, including 13 females and 26 males, with an average age of (22.21±4.57) years (15-27 years). All patients were followed up for an average of (45.56±39.41) months (6-153 months) after surgery. The grafted mandibular outer cortex grows well with the adjacent bone tissue, and the mandibular angle and mandibular body are significantly wider. Of the 39 cases, 1 developed an infection 1 year after surgery, the titanium plate was exposed, and the patient healed after debridement and removal of the immobilizing splint. The facial appearance of the other patients improved significantly. Preoperative, immediate postoperative and long term follow up of mandibular thickness measurements were compared in pairs, and the differences were statistically significant (all P<0.05). The patient’s appearance satisfaction score: the preoperative score was [2.0(1.5, 2.0)] points, the immediate postoperative score was [4.0(4.0, 4.0)] points, the score of the last postoperative follow up was [4.0(4.0, 4.0)] points. There was statistical difference in satisfaction among the three groups ( P<0.01). The preoperative scores were compared with the scores of the immediate postoperative and the last postoperative follow-up respectively, and the differences were statistically significant( P<0.01). There was no statistical significance in satisfaction between the immediate postoperative score and the score of the last postoperative follow up ( P>0.05). Conclusion:The sagittal splitting osteotomy of the mandibular outer cortex is consistent with the features of mandibular anatomy, and provides a good condition for the grafting and healing of autogenous bone. Removing the outer cortex of the mandible on the healthy side not only increases the thickness of the affected side, but also decreases the width of the angle of the mandible on the healthy side, so as to effectively correct the asymmetric deformity of the mandible. The method is simple, with few complications and good results, and is one of the ideal treatments to correct hemofacial microsomia.
4.Sagittal splitting osteotomy of the mandibular outer cortex and autologous bone grafting for the treatment of hemifacial microsomia
Lai GUI ; Feng NIU ; Bing YU ; Jianfeng LIU ; Ying CHEN ; Xi FU ; Shixing XU ; Jia QIAO ; Qi JIN ; Yu HE ; Xuebing LIANG ; Lei CUI ; Fuhuan CHEN ; Qi CHEN
Chinese Journal of Plastic Surgery 2024;40(3):249-257
Objective:To investigate a new method for the reconstruction of hemifacial microsomia by sagittal osteotomy of the affected mandibular outer cortex combined with bone graft of mandibular outer cortex from healthy side.Methods:From March 2006 to March 2023, the clinical data of patients with hemifacial microsomia admitted to the Department of Craniomaxillofacial Surgery, Plastic Surgery Hospital, Chinese Academy of Medical Sciences were analyzed retrospectively. Preoperative diagnosis and surgical design were performed based on clinical manifestations and imaging findings. All cases were operated under general anesthesia. The affected mandibular outer cortex was previously split by an intraoral approach, and then the mandibular outer cortex of appropriate shape and size on the healthy side was harvested and grafted into the split bone space according to the preoperative design, following by internal rigid fixation. Complications, facial appearance improvement, and patient satisfaction were followed up. Photographs were taken preoperative, immediately postoperative and at the long-term(last) postoperative follow-up, and the severity of the deformity was analyzed. CT data from preoperative, immediate postoperative, and long-term follow-up visits were imported into Surgicase Proplan medical three-dimensional image workstation in Dicom format. The mandible was reconstructed using Segmentation, and the thickness of the mandible was measured during pre-operative, immediate post-operative and long-term follow-up visits. Anova with repeated measurement design was used to compare measurements and LSD test was used for multiple comparisons. The Kruskal-Wallis rank sum test were used to statistically analyze malformation severity. P< 0.05 is considered statistically significant. Results:A total of 39 patients were included in this study, including 13 females and 26 males, with an average age of (22.21±4.57) years (15-27 years). All patients were followed up for an average of (45.56±39.41) months (6-153 months) after surgery. The grafted mandibular outer cortex grows well with the adjacent bone tissue, and the mandibular angle and mandibular body are significantly wider. Of the 39 cases, 1 developed an infection 1 year after surgery, the titanium plate was exposed, and the patient healed after debridement and removal of the immobilizing splint. The facial appearance of the other patients improved significantly. Preoperative, immediate postoperative and long term follow up of mandibular thickness measurements were compared in pairs, and the differences were statistically significant (all P<0.05). The patient’s appearance satisfaction score: the preoperative score was [2.0(1.5, 2.0)] points, the immediate postoperative score was [4.0(4.0, 4.0)] points, the score of the last postoperative follow up was [4.0(4.0, 4.0)] points. There was statistical difference in satisfaction among the three groups ( P<0.01). The preoperative scores were compared with the scores of the immediate postoperative and the last postoperative follow-up respectively, and the differences were statistically significant( P<0.01). There was no statistical significance in satisfaction between the immediate postoperative score and the score of the last postoperative follow up ( P>0.05). Conclusion:The sagittal splitting osteotomy of the mandibular outer cortex is consistent with the features of mandibular anatomy, and provides a good condition for the grafting and healing of autogenous bone. Removing the outer cortex of the mandible on the healthy side not only increases the thickness of the affected side, but also decreases the width of the angle of the mandible on the healthy side, so as to effectively correct the asymmetric deformity of the mandible. The method is simple, with few complications and good results, and is one of the ideal treatments to correct hemofacial microsomia.
5.Disulfiram enhances the antitumor activity of cisplatin by inhibiting the Fanconi anemia repair pathway.
Meng YUAN ; Qian WU ; Mingyang ZHANG ; Minshan LAI ; Wenbo CHEN ; Jianfeng YANG ; Li JIANG ; Ji CAO
Journal of Zhejiang University. Science. B 2023;24(3):207-220
A series of chemotherapeutic drugs that induce DNA damage, such as cisplatin (DDP), are standard clinical treatments for ovarian cancer, testicular cancer, and other diseases that lack effective targeted drug therapy. Drug resistance is one of the main factors limiting their application. Sensitizers can overcome the drug resistance of tumor cells, thereby enhancing the antitumor activity of chemotherapeutic drugs. In this study, we aimed to identify marketable drugs that could be potential chemotherapy sensitizers and explore the underlying mechanisms. We found that the alcohol withdrawal drug disulfiram (DSF) could significantly enhance the antitumor activity of DDP. JC-1 staining, propidium iodide (PI) staining, and western blotting confirmed that the combination of DSF and DDP could enhance the apoptosis of tumor cells. Subsequent RNA sequencing combined with Gene Set Enrichment Analysis (GSEA) pathway enrichment analysis and cell biology studies such as immunofluorescence suggested an underlying mechanism: DSF makes cells more vulnerable to DNA damage by inhibiting the Fanconi anemia (FA) repair pathway, exerting a sensitizing effect to DNA damaging agents including platinum chemotherapy drugs. Thus, our study illustrated the potential mechanism of action of DSF in enhancing the antitumor effect of DDP. This might provide an effective and safe solution for combating DDP resistance in clinical treatment.
Female
;
Male
;
Humans
;
Cisplatin/pharmacology*
;
Disulfiram/pharmacology*
;
Testicular Neoplasms/drug therapy*
;
Fanconi Anemia/drug therapy*
;
Alcoholism/drug therapy*
;
Drug Resistance, Neoplasm
;
Cell Line, Tumor
;
Substance Withdrawal Syndrome/drug therapy*
;
Apoptosis
;
Antineoplastic Agents/therapeutic use*
;
Cell Proliferation
6.The experimental research on osteogenesis in width augmentation of the mandibles with a sandwich-osteotomy with interpositional natural coral and coralline hydroxyapatite
Wuyuan TAN ; Ying CHEN ; Meng WANG ; Jianfeng LIU ; Feng NIU ; Bing YU ; Lai GUI
Chinese Journal of Plastic Surgery 2020;36(4):447-452
Objective:To investigate the influence on osteogenesis during mandibular augmentation with a new sandwichosteotomy with interpositional natural coral and coralline hydroxyapatite (CHA).Methods:Nine goats were randomly divided into three groups and observed at 6 months, 12months and 18 months after surgery. All goats received splitting of bilateralmandibular outer cortex and interpositional grafting with natural coral and corallinehydroxyapatite respectively (sandwich osteotomy). Partial mandible in each group had been harvested to do histology examination(HE staining and Toluidine blue staining) and ultrastructure analyses (Scanning electron microscope, SEM).Results:All subjects were evaluated atdifferent time points. Both natural coral and coralline hydroxyapatite side healed at three groups. Natural coral were degraded at about 6 months postoperation, coralline hydroxyapatite at about 12 months. The results of HE staining, Toluidine blue staining and SEM revealed that natural coral side had better osteogenesis than coralline hydroxyapatite side at 6 months after operation.However, Natural coral and coralline hydroxyapatite side had no significant differences at 12 and 18months.Conclusions:This study suggests an alternative method for mandibular augmentation witha sandwich osteotomy and interpositional grafting with natural coral and CHA.Bothcoral hydroxyapatite and natural coral have good osteogenesic effect for mandibular augmentation.
7.The experimental research on osteogenesis in width augmentation of the mandibles with a sandwich-osteotomy with interpositional natural coral and coralline hydroxyapatite
Wuyuan TAN ; Ying CHEN ; Meng WANG ; Jianfeng LIU ; Feng NIU ; Bing YU ; Lai GUI
Chinese Journal of Plastic Surgery 2020;36(4):447-452
Objective:To investigate the influence on osteogenesis during mandibular augmentation with a new sandwichosteotomy with interpositional natural coral and coralline hydroxyapatite (CHA).Methods:Nine goats were randomly divided into three groups and observed at 6 months, 12months and 18 months after surgery. All goats received splitting of bilateralmandibular outer cortex and interpositional grafting with natural coral and corallinehydroxyapatite respectively (sandwich osteotomy). Partial mandible in each group had been harvested to do histology examination(HE staining and Toluidine blue staining) and ultrastructure analyses (Scanning electron microscope, SEM).Results:All subjects were evaluated atdifferent time points. Both natural coral and coralline hydroxyapatite side healed at three groups. Natural coral were degraded at about 6 months postoperation, coralline hydroxyapatite at about 12 months. The results of HE staining, Toluidine blue staining and SEM revealed that natural coral side had better osteogenesis than coralline hydroxyapatite side at 6 months after operation.However, Natural coral and coralline hydroxyapatite side had no significant differences at 12 and 18months.Conclusions:This study suggests an alternative method for mandibular augmentation witha sandwich osteotomy and interpositional grafting with natural coral and CHA.Bothcoral hydroxyapatite and natural coral have good osteogenesic effect for mandibular augmentation.
8. A method of mandibular dividing
Meng WANG ; Lai GUI ; Feng NIU ; Bing YU ; Jianfeng LIU ; Xiaoyan MAO
Chinese Journal of Plastic Surgery 2018;34(4):283-285
Objective:
To design a method of mandibular division for plastic surgery.
Methods:
From January 2009 to June 2017, 118 patients who underwent mandibular plastic surgery were observed, measured and analyzed. Combined with clinical experience, a new method of mandibular division was designed. The mandible was divided into right and left sides and each side was subdivided into five subunits (A, B, C, D, E). Area A is mandibular ramus upper 1/2 and mandibular coracoid area; Area B is mandibular lower 1/2 area; Area C is mandibular body area; Area D is chin area; Area E is mandibular angle.
Results:
The mandibles of 118 patients were divided according to the new method to obtain the characteristics of mandibular deformities and guide the design of the surgical plan.
Conclusions
The new method of mandibular division is concise and scientific, which is in favor of the diagnosis and surgical design of plastic surgery.
9.Establishment of electron beam computed tomography and rapid prototyping techniques for a cranial bone defect model in goat
Jianfeng LIU ; Lai GUI ; Zhiyong ZHANG ; Feng NIU ; Bing YU ; Xiaojun TANG
Chinese Journal of Medical Aesthetics and Cosmetology 2018;24(5):372-374
Objective To establish a cranial bone defect model of goat and to study application in craniomaxillo-facial surgery.Methods Electron beam computed tomography (EBCT) scanner was used to scan goat'heads and faces in series and thin layers.Data of EBCT were input in workstation from digital inlet,and then to three-dimensional reconstruction with method of surface shadow.After final data were transformed to the files,the rapid prototyping machine was able to identify and establish the 3D model.Results The EBCT continuous thin-layer (1 mm) scanning data were passed to wave filter,falling coarse,distinguishing and collecting the outline,3D-reconstruction,curved surface reconstruction with CAD and the substance reconstruction.The final data were input into the laser rapid prototyping machine.Three-dimensional bionic cranium models were fabricated by machine in layer by layer manufacturing principle.Conclusions Establishment of the cranial bone defect model in the goat is very useful to the three-dimensional measurement,individualized reconstruction and basic and clinical research for the cranial bone defect.
10. Establishment of three-dimensional mirror image plane of hemifacial microsomia: a new method
Meng WANG ; Lai GUI ; Feng NIU ; Bing YU ; Jianfeng LIU
Chinese Journal of Plastic Surgery 2018;34(6):445-448
Objective:
To discuss the establishment of three-dimensional mirror image plane ofhemifacial microsomia.
Methods:
32 cases of hemifacial microsomia from Jan. 2006 to Jan. 2017 were collected in our hospital. CT scanning was performed for all patients. Then, the deformity characteristics were summarized through three steps: 3D reconstruction, mirror and discrepancy analysis.
Results:
After statistical analysis, the stability of these three points was good. Clinical result showed that the patient′s appearance was greatly improved.
Conclusions
Using these three points to determine the mirror image plane is helpful to analyze the patient's facial features and facilitate the surgical design.

Result Analysis
Print
Save
E-mail