1.Evaluation index system of life support equipment of hospital based on fuzzy comprehensive evaluation model
Liangjun NI ; Weijian CHEN ; Weijie HUANG ; Xia ZHANG
China Medical Equipment 2025;22(6):113-118
Objective:To construct a fuzzy comprehensive evaluation model for life support equipment of hospital,so as to improve quality of management for equipment.Methods:Based on the operating status of life support equipment in Jiangmen Maternal and Child Health Care Hospital of Guangdong Province,a fuzzy comprehensive evaluation model was constructed,and the indicators of different levels were set.The index weights were calculated according to the Analytic Hierarchy Process(AHP),and the equipment management strategy was formulated based on the evaluated results.A total of 98 life support equipment in clinical use in our hospital from January 2023 to July 2024 were selected.In them,49 equipment were managed under the conventional management mode,and the other 49 equipment were managed under the assessment system management mode of the kind of life support equipment based on fuzzy comprehensive evaluation model(model management mode)according to the random number table method.The timeliness,management effect and management efficiency of the two management modes for equipment were compared.A self-made satisfaction questionnaire was used to investigate the satisfaction scores of equipment engineers,clinicians and managers of relevant departments in usage management for equipment in the equipment usage of the two management modes.Results:The timeliness of equipment early warning,the timeliness of maintenance personnel's arrival,and the timeliness of proposing maintenance opinions were respectively(0.78±0.14)min,(5.14±2.11)min,and(10.69±3.11)min in the model management mode,all which were shorter than those in the conventional management mode,and the differences were statistically significant(t=16.697,11.857,16.117,P<0.05).The regular maintenance rate of equipment adopting the model management mode was higher than that adopting the conventional management mode,and the failure rate was lower than that adopting the conventional management mode,and the differences were statistically significant(x2=12.274,12.261,P<0.05),respectively.The maintenance time of the model management mode was shorter than that of the conventional management mode,and the operation and maintenance cost of the model management mode was lower than that of the conventional management mode,and the differences were statistically significant(t=17.451,12.707,P<0.05).The scores of management efficiencies of resource allocation,technical support,environmental guarantee and information infrastructure of the model management mode were all higher than those of the conventional management mode,and the differences were statistically significant(t=12.268,14.908,16.128,13.920,P<0.05).In usage management for equipment,the satisfaction scores of equipment engineers,clinicians and managers of relevant departments for equipment management adopting the model management mode were higher than those adopting the conventional management mode,and the differences were statistically significant(t=13.118,16.209,12.557,P<0.05).Conclusion:The assessment system of hospital for life support equipment based on the fuzzy comprehensive evaluation model can enhance the quality of management and operation for equipment,and improve the service level of equipment,and increase the operational efficiency of equipment.
2.Evaluation index system of life support equipment of hospital based on fuzzy comprehensive evaluation model
Liangjun NI ; Weijian CHEN ; Weijie HUANG ; Xia ZHANG
China Medical Equipment 2025;22(6):113-118
Objective:To construct a fuzzy comprehensive evaluation model for life support equipment of hospital,so as to improve quality of management for equipment.Methods:Based on the operating status of life support equipment in Jiangmen Maternal and Child Health Care Hospital of Guangdong Province,a fuzzy comprehensive evaluation model was constructed,and the indicators of different levels were set.The index weights were calculated according to the Analytic Hierarchy Process(AHP),and the equipment management strategy was formulated based on the evaluated results.A total of 98 life support equipment in clinical use in our hospital from January 2023 to July 2024 were selected.In them,49 equipment were managed under the conventional management mode,and the other 49 equipment were managed under the assessment system management mode of the kind of life support equipment based on fuzzy comprehensive evaluation model(model management mode)according to the random number table method.The timeliness,management effect and management efficiency of the two management modes for equipment were compared.A self-made satisfaction questionnaire was used to investigate the satisfaction scores of equipment engineers,clinicians and managers of relevant departments in usage management for equipment in the equipment usage of the two management modes.Results:The timeliness of equipment early warning,the timeliness of maintenance personnel's arrival,and the timeliness of proposing maintenance opinions were respectively(0.78±0.14)min,(5.14±2.11)min,and(10.69±3.11)min in the model management mode,all which were shorter than those in the conventional management mode,and the differences were statistically significant(t=16.697,11.857,16.117,P<0.05).The regular maintenance rate of equipment adopting the model management mode was higher than that adopting the conventional management mode,and the failure rate was lower than that adopting the conventional management mode,and the differences were statistically significant(x2=12.274,12.261,P<0.05),respectively.The maintenance time of the model management mode was shorter than that of the conventional management mode,and the operation and maintenance cost of the model management mode was lower than that of the conventional management mode,and the differences were statistically significant(t=17.451,12.707,P<0.05).The scores of management efficiencies of resource allocation,technical support,environmental guarantee and information infrastructure of the model management mode were all higher than those of the conventional management mode,and the differences were statistically significant(t=12.268,14.908,16.128,13.920,P<0.05).In usage management for equipment,the satisfaction scores of equipment engineers,clinicians and managers of relevant departments for equipment management adopting the model management mode were higher than those adopting the conventional management mode,and the differences were statistically significant(t=13.118,16.209,12.557,P<0.05).Conclusion:The assessment system of hospital for life support equipment based on the fuzzy comprehensive evaluation model can enhance the quality of management and operation for equipment,and improve the service level of equipment,and increase the operational efficiency of equipment.
3.Effect of ship-shaped expanded polytetrafluoroethylene nasal prosthesis in rhinoplasty
Sha ZHU ; Liangjun DU ; Yun LANG ; Xiaoqian FU ; Na YAN ; Datai WANG ; Yunzhi NI
Chinese Journal of Medical Aesthetics and Cosmetology 2023;29(4):257-260
Objective:To investigate the effect of ship-shaped expanded polytetrafluoroethylene (e-PTFE) nasal prosthesis in rhinoplasty.Methods:From February 2016 to June 2021, 86 patients, including 9 males and 77 females, aged 18-47 (24±5) years old, were admitted to Chengdu High-tech Zone Xinyuerong Medical Aesthetic Clinic for cosmetic treatment of rhinoplasty. All patients underwent rhinoplasty with the application of ship-shaped e-PTFE and autologous cartilage. The postoperative complications, glabellar fullness, inverted brow triangle, nasal polygon aesthetic shape and patient satisfaction were evaluated. These data were measured and analyzed, including the nasal length, nasal tip height, nasal frontal angle and nasal facial angle before and after the operation.Results:In 86 patients, the incision healed in one stage after surgery, and 8 cases had nasal vestibular scar hyperplasia. All patients were followed up for 1-5 years: 84 cases obtained satisfactory nasal morphology, and 2 cases recovered naturally after adjusting and lowering the prosthesis height half a year after surgery because the interbrow area was too full. 74 patients (86%) were very satisfied, 10 cases (11.6%) were satisfied. The nasal length was (4.07±0.20) cm, the nasal tip height was (2.66±0.36) cm, the nasal frontal angle was (106.42±8.04)°, and the nasal face angle was (15.90±0.85)°before operation. The nasal length was (4.23±0.20) cm, the nasal tip height was (2.59±0.26) cm, the naso-frontal angle was (113.69±6.34)°, and the naso-facial angle was (21.57±0.78)° at eighteen months after operation. There were statistically significant differences in nasal length, naso-frontal angle and naso-facial angle ( t=-5.51, -5.96, -52.31, P<0.01), but no statistically significant differences in nasal tip height ( t=1.47, P=0.146). Conclusions:The ship-shaped e-PTFE can be shaped to reflect the aesthetic of the nose dorsum, which is similar to the anatomical structure of the nose dorsum, increase the stability and authenticity of the prosthesis, and is worthy of clinical application.
4.One step assay of the four plant ingredients in Yangxue Anshen syrup by HPLC method
Ping LU ; Dongjie NI ; Wei ZHENG ; Liangjun GUO ; Xiang WANG
Journal of Pharmaceutical Practice 2021;39(3):270-273
Objective To establish a HPLC method for simultaneous determination of quercitrin, luteoloside, rutin and 2,3,5,4'-tetrahydroxystilbene-2-O-β-D-glucoside in Yangxue Anshen syrup. Methods Waters symmetry C18 column (250 mm×4.6 mm, 5 μm) was used with 0.1% acetic acid (A) and methanol (B) as the mobile phase. Gradient elution was performed at a flow rate of 1.0 ml/min, 0-15 min, 95%-90%A; 15-35 min, 90%-70%A; 35-55 min, 70%-60%A; 55-85 min, 60%-50%A; 85-95 min, 10%A. The detection wavelengths were 256 nm and 320 nm. Column temperature was 30 ℃ and the injection volume was 10 μl. Results Quercitrin, luteoloside, rutin and 2,3,5,4'-tetrahydroxystilbene-2-O-β-D-glucoside showed good linear relationship within the range of 10-300, 5.0-150.0, 5.0-150.0, 20.0-600.0 µg/ml(r≥0.9989), respectively. The average recovery was (96.75±1.41)%, (99.61±1.01)%, (97.18±1.96)% and(99.12±0.97)% (n=6), respectively. Conclusion The established method is simple, accurate and stable, which can be used for the simultaneous determination of 4 components in Yangxue Anshen syrup.
5.Detection of CRP in rat chronic periodontitis and atherosclerosis compound model
Jia NI ; Yuanming ZHANG ; Jun XU ; Liangjun ZHONG ; Fangchuan SHI ; Xiaohuan ZHOU
Basic & Clinical Medicine 2006;0(02):-
Objective To detect and analyse CRP level in rat chronic periodontitis and atherosclerosis compound model.Methods Sixty rats were randomly divided into four groups,15 in each group: Group A:control group;Group B:periodontitis group;Group C:atherosclerosis group;Group D:periodontitis and atherosclerosis group.Every group accepted the corresponding treatment.Pathological changes in periodontal tissue of experimental teeth and arterial vessels were observed.CRP level in serum was assayed by ELISA.Results Histopathological observation of periodontal tissue revealed: Obvious inflammation of periodontal tissue was observed in group B,D.Attachment loss levels in group B and D were higher than that of A,C groups(P

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