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JR Pallett E Sutherland E Glucksman M Tunnicliff JW Keep 《Annals of the Royal College of Surgeons of England》2014,96(1):23-26
INTRODUCTION
No national recording systems for knife injuries exist in the UK. Understanding the true size and nature of the problem of knife injuries is the first stage in reducing the burden of this injury. The aim of this study was to survey every knife injury seen in a single inner city emergency department (ED) over a one-year period.METHODS
A cross-sectional observational study was performed of all patients attending with a knife injury to the ED of a London major trauma centre in 2011. Demographic characteristics, patterns of injury, morbidity and mortality data were collected.RESULTS
A total of 938 knife injuries were identified from 127,191 attendances (0.77% of all visits) with a case fatality rate of 0.53%. A quarter (24%) of the major trauma team’s caseload was for knife injuries. Overall, 44% of injuries were selfreported as assaults, 49% as accidents and 8% as deliberate self-harm. The highest age specific incident rate occurred in the 16–24 year age category (263/100,000). Multiple injuries were seen in 19% of cases, of which only 81% were recorded as assaults. The mean length of stay for those admitted to hospital was 3.04 days. Intrathoracic injury was seen in 26% of cases of chest trauma and 24% of abdominal injuries had a second additional chest injury.CONCLUSIONS
Violent intentional injuries are a significant contributory factor to the workload of the major trauma team at this centre. This paper contributes to a more comprehensive understanding of the nature of these injuries seen in the ED. 相似文献3.
Benjamin K. Poulose Melina C. Vassiliou Brian J. Dunkin John D. Mellinger Robert D. Fanelli Jose M. Martinez Jeffrey W. Hazey Lelan F. Sillin Conor P. Delaney Vic Velanovich Gerald M. Fried James R. Korndorffer Jr. Jeffrey M. Marks 《Surgical endoscopy》2014,28(2):631-638
Background
Flexible endoscopy is an integral part of surgical care. Exposure to endoscopic procedures varies greatly in surgical training. The Society of American Gastrointestinal and Endoscopic Surgeons has developed the Fundamentals of Endoscopic Surgery (FES), which serves to teach and assess the fundamental knowledge and skills required to practice flexible endoscopy of the gastrointestinal tract. This report describes the validity evidence in the development of the FES cognitive examination.Methods
Core areas in the practice of gastrointestinal endoscopy were identified through facilitated expert focus groups to establish validity evidence for the test content. Test items then were developed based on the content areas. Prospective enrollment of participants at various levels of training and experience was used for beta testing. Two FES cognitive test versions then were developed based on beta testing data. The Angoff and contrasting group methods were used to determine the passing score. Validity evidence was established through correlation of experience level with examination score.Results
A total of 220 test items were developed in accordance with the defined test blueprint and formulated into two versions of 120 questions each. The versions were administered randomly to 363 participants. The correlation between test scores and training level was high (r = 0.69), with similar results noted for contrasting groups based on endoscopic rotation and endoscopic procedural experience. Items then were selected for two test forms of 75 items each, and a passing score was established.Conclusions
The FES cognitive examination is the first test with validity evidence to assess the basic knowledge needed to perform flexible endoscopy. Combined with the hands-on skills examination, this assessment tool is a key component for FES certification. 相似文献4.
Jasper G Gerbers Martin Stevens Joris JW Ploegmakers Sjoerd K Bulstra Paul C Jutte 《Acta orthopaedica》2014,85(6):663-669
Background and purpose —
In orthopedic oncology, computer-assisted surgery (CAS) can be considered an alternative to fluoroscopy and direct measurement for orientation, planning, and margin control. However, only small case series reporting specific applications have been published. We therefore describe possible applications of CAS and report preliminary results in 130 procedures.Patients and methods —
We conducted a retrospective cohort study of all oncological CAS procedures in a single institution from November 2006 to March 2013. Mean follow-up time was 32 months. We categorized and analyzed 130 procedures for clinical parameters. The categories were image-based intralesional treatment, image-based resection, image-based resection and reconstruction, and imageless resection and reconstruction.Results —
Application to intralesional treatment showed 1 inadequate curettage and 1 (other) recurrence in 63 cases. Image-based resections in 42 cases showed 40 R0 margins; 16 in 17 pelvic resections. Image-based reconstruction facilitated graft creation with a mean reconstruction accuracy of 0.9 mm in one case. Imageless CAS was helpful in resection planning and length- and joint line reconstruction for tumor prostheses.Interpretation —
CAS is a promising new development. Preliminary results show a high number of R0 resections and low short-term recurrence rates for curettage.Oncological surgical treatment can be considered to be a trade-off between margins and function, with margins being the most important factor to consider. Accuracy is needed to achieve an efficient but oncologically safe result. To assist in this, most procedures in bone tumor surgery require intraoperative imaging with fluoroscopy and/or measurements with rulers for anatomical orientation and margin control. The best examples of this are pelvic resections. Cartiaux et al. (2008) demonstrated that 4 experienced surgeons could achieve a 10-mm resection margin, with 5-mm tolerance, on pelvic sawbones in only half of the resections. The supportive imaging and measuring modalities have, however, remained more or less unchanged for many years. In a 2-dimensional (2D) workflow such as fluoroscopy, there is still the requirement for an accurate frame of reference based on anatomical landmarks for adequate 3-dimensional (3D) margin control.In recent years, the use of computer-assisted surgery (CAS) in orthopedic surgery has become more common as an alternative for intraoperative imaging and measurements, providing the necessary precision in bone tumor surgery. The technique that is mostly used in orthopedic oncology is image-based navigation. The patient’s own anatomy (MRI and/or CT) is entered into the system and used during surgery. This provides real-time, continuous, 3D imaging feedback and may lead to more precise margin control, better tissue preservation, and new approaches to reconstruction while remaining oncologically safe. Several publications have supported CAS as being a safe navigation platform for planning and performing resections (Wong et al. 2007, So et al. 2010, Cho et al. 2012). A recent publication describes lessons in the technological approach and offers comments on CAS workflow (Wong 2010). However, to date the largest case series have involved only 20 and 31 cases (Cheong and Letson 2011, Jeys et al. 2013). The reported use has mostly been limited to complex tumor resections (e.g. pelvic), and due to the novelty of the technique, applications, approaches, and set-up times differ greatly (Saidi 2012). Here we describe possible applications of CAS in bone tumor surgery (also outside of complex resections), consider their usefulness, and report preliminary results from 130 CAS procedures performed at a single institution. 相似文献5.
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PJ Smith ; TE Miller ; J Fraser ; JW Smith ; JR Svirbely ; S Rudmann ; PL Strohm ; M Kennedy 《Transfusion》1991,31(4):313-317
Four empirical studies were conducted for better understanding of the nature of problem-solving activities by medical technologists and medical technology students when performing antibody identification tasks. The results indicated the importance of strategies that ensure the collection of converging evidence, as these strategies protect against the fallibility of commonly used heuristics and against errors due to simple slips. The results also indicate that not only do students make significant numbers of errors, but so do practicing technologists. In one of the studies covering a 1-year period, for instance, a group of 16 technologists made a total of 41 errors in 1057 cases. On the basis of these findings, several alternatives are proposed to reduce errors. 相似文献
7.
人羊膜间充质细胞具有分化成软骨及成骨细胞的潜能 总被引:1,自引:0,他引:1
目的:人羊膜间充质细胞具有比骨髓间充质干细胞更强的扩增能力和免疫原性低等优势。建立体外适宜的诱导培养条件,观察人羊膜间充质细胞定向分化为软骨细胞和成骨细胞的能力。方法:实验于2005-09/2006-12在贵州省细胞工程重点实验室完成。①材料来源:经产妇知情同意,无菌采集健康足月分娩新生儿胎盘6份,实验经医院医学伦理委员会批准。②实验方法:采用机械法剥离羊膜组织,二步酶消化法分离收获人羊膜间充质细胞,按2.2×10~8L~(-1)密度接种,传至第1~2代用于诱导分化实验。向软骨细胞诱导分化时,人羊膜间充质细胞按3×10~8L~(-1)密度接种,诱导培养液为含体积分数0.01的胎牛血清、10 mg/L转化生长因β1、100 nmol/L地塞米松、50 mg/L抗坏血酸、1%培养基添加物。向成骨细胞诱导分化时,人羊膜间充质细胞按6×10~7L~(-1)密度接种,诱导培养液为含体积分数0.1的胎牛血清、100 nmol/L地塞米松、50 mg/L抗坏血酸、5 mmol/Lβ-甘油磷酸。③实验评估:原代细胞用流式细胞仪分析表型,免疫细胞化学染色进行波形蛋白表达鉴定。分别于体外诱导第7,14,21,28天采用免疫细胞化学法检测软骨特异性Ⅱ型胶原的表达,细胞化学法检测蛋白聚糖的表达,钙-钴法检测成骨细胞特异性碱性磷酸酶的表达,茜素红S检测钙盐沉积情况。结果:①免疫组化与表型特征:人羊膜间充质细胞高表达间充质干细胞表面标志CD29、CD44和间充质细胞标志波形蛋白。②向软骨细胞诱导分化:诱导14 d后,人羊膜间充质细胞由长梭型逐渐变为多角形,可检测到Ⅱ型胶原蛋白表达及软骨细胞特异性细胞外基质蛋白聚糖。③向成骨细胞诱导分化:诱导21 d后,可观察到人羊膜间充质细胞的胞浆内有碱性磷酸酶表达,且可见钙盐沉积。结论:人羊膜间充质细胞具有分化成软骨细胞和成骨细胞的特性,可作为骨及软骨组织工程种子细胞的新来源。 相似文献
8.
RJ Livingston JW Butterworth P Belt 《Annals of the Royal College of Surgeons of England》2013,95(1):e20-e21
Chloramphenicol is a topical treatment that is used widely, especially in wounds around the eyes. In our practice there have been a number of cases of delayed hypersensitivity to chloramphenicol that has been mismanaged initially as an infective cellulitis. We hope to share some of our experience of this uncommon reaction to highlight the delayed reaction that can occur with topical application of this drug. 相似文献
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目的:分析壳聚糖-DNA超微颗粒在关节内的转基因效应。方法:实验于2005-09/2006-06在上海交通大学医学院健康科学研究所骨科细胞与分子生物学实验室完成。实验材料:①模型制备:采用切断内侧副韧带,切除内侧半月板的方法制备骨关节炎兔模型。②基因产品:白细胞介素(interleukin,IL)1Ra基因、IL-10基因。实验分组:15只新西兰兔按随机数字表法分为3组:①空载体对照组(n=3),造模后5d两侧膝关节关节腔注射400μL壳聚糖-PcDNA3.1溶液,共3次,每48h1次。②IL-1Ra基因治疗组和IL-10基因治疗组,每组6只,造模后5d对照侧膝关节关节腔分别注射20μg裸DNA(PcDNA3.1-IL-1Ra或PcDNA3.1-IL-10),实验侧膝关节关节腔注射400μL壳聚糖-DNA超微颗粒(含20μgIL-1Ra或IL-10),注射次数及间隔时间同空载体对照组。实验评估:①采用酶联免疫吸附分析及免疫组织化学检测IL-1Ra和IL-10基因的表达和分布。②苏木精-伊红染色和甲苯胺蓝染色观察骨关节炎软骨组织学变化。结果:纳入新西兰兔15只,均进入结果分析。①IL-1Ra和IL-10基因在关节滑液中的表达:空载体对照组及IL-1Ra基因治疗组对照侧膝关节滑液中未检测到IL-1Ra表达,实验侧于第1次基因注射后7,14d检测到IL-1Ra表达。IL-10基因治疗组对照侧和实验侧均未检测到IL-10表达。②IL-1Ra基因在兔膝关节的分布:IL-1Ra基因治疗组兔软骨表层和中间层部分细胞内表达IL-1Ra,至少持续到第1次基因注射后14d。在滑膜组织中未观察到明显的IL-1Ra表达。③兔骨关节炎软骨组织学变化:空载体对照组呈早期骨性关节炎的典型性改变。苏木精-伊红染色显示软骨细胞坏死,蛋白多糖甲苯胺蓝染色不均一,软骨表层和中间层大部分区域失染,软骨细胞簇聚区域其周围深染。IL-1Ra基因治疗组在软骨损坏方面明显减轻,甲苯胺蓝部分失染。结论:①壳聚糖-DNA超微颗粒的转染效率与基因产品有关。②将IL-1Ra用关节腔直接注射壳聚糖-DNA超微颗粒的方法直接转移入关节腔能一定程度上减轻骨性关节炎的进程。 相似文献