Literature DB >> 31616053

Risk factors for serious morbidity, prolonged length of stay and hospital readmission after laparoscopic appendectomy - results from Pol-LA (Polish Laparoscopic Appendectomy) multicenter large cohort study.

Maciej Walędziak1, Anna Lasek2, Michał Wysocki2, Michael Su2, Maciej Bobowicz3, Piotr Myśliwiec4, Kamil Astapczyk4, Mateusz Burdzel5, Karolina Chruściel6, Rafał Cygan7, Wojciech Czubek8, Natalia Dowgiałło-Wnukiewicz9, Jakub Droś2, Paula Franczak10, Wacław Hołówko11, Artur Kacprzyk2, Wojciech Konrad Karcz12, Jakub Kenig13, Paweł Konrad5, Arkadiusz Kopiejć14, Adam Kot14, Karolina Krakowska7, Maciej Kukla15, Agnieszka Leszko7, Leszek Łozowski6, Piotr Major2, Wojciech Makarewicz3,14, Paulina Malinowska-Torbicz5, Maciej Matyja2, Maciej Michalik9, Adam Niekurzak16, Damian Nowiński3, Radomir Ostaszewski17, Małgorzata Pabis7, Małgorzata Polańska-Płachta5, Mateusz Rubinkiewicz2, Tomasz Stefura2, Anna Stępień18, Paweł Szabat19, Rafał Śmiechowski3, Sebastian Tomaszewski20, Viktor von Ehrlich-Treuenstätt12, Maciej Wasilczuk8, Mateusz Wierdak2, Anna Wojdyła9, Jan Wojciech Wroński15, Leszek Zwolakiewicz21,22, Michał Pędziwiatr23.   

Abstract

Laparoscopic appendectomy (LA) for treatment of acute appendicitis has gained acceptance with its considerable benefits over open appendectomy. LA, however, can involve some adverse outcomes: morbidity, prolonged length of hospital stay (LOS) and hospital readmission. Identification of predictive factors may help to identify and tailor treatment for patients with higher risk of these adverse events. Our aim was to identify risk factors for serious morbidity, prolonged LOS and hospital readmission after LA. A database compiled information of patients admitted for acute appendicitis from eighteen Polish and German surgical centers. It included factors related to the patient characteristics, peri- and postoperative period. Univariate and multivariate logistic regression models were used to identify risk factors for serious perioperative complications, prolonged LOS, and hospital readmissions in acute appendicitis cases. 4618 laparoscopic appendectomy patients were included. First, although several risk factors for serious perioperative complications (C-D III-V) were found in the univariate analysis, in the multivariate model only the presence of intraoperative adverse events (OR 4.09, 95% CI 1.32-12.65, p = 0.014) and complicated appendicitis (OR 3.63, 95% CI 1.74-7.61, p = 0.001) was statistically significant. Second, prolonged LOS was associated with the presence of complicated appendicitis (OR 2.8, 95% CI: 1.53-5.12, p = 0.001), postoperative morbidity (OR 5.01, 95% CI: 2.33-10.75, p < 0.001), conversions (OR 6.48, 95% CI: 3.48-12.08, p < 0.001) and reinterventions after primary procedure (OR 8.79, 95% CI: 3.2-24.14, p < 0.001) in the multivariate model. Third, although several risk factors for hospital readmissions were found in univariate analysis, in the multivariate model only the presence of postoperative complications (OR 10.33, 95% CI: 4.27-25.00), reintervention after primary procedure (OR 5.62, 95% CI: 2.17-14.54), and LA performed by resident (OR 1.96, 95% CI: 1.03-3.70) remained significant. Laparoscopic appendectomy is a safe procedure associated with low rates of complications, prolonged LOS, and readmissions. Risk factors for these adverse events include complicated appendicitis, postoperative morbidity, conversion, and re-intervention after the primary procedure. Any occurrence of these factors during treatment should alert the healthcare team to identify the patients that require more customized treatment to minimize the risk for adverse outcomes.

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Mesh:

Year:  2019        PMID: 31616053      PMCID: PMC6794313          DOI: 10.1038/s41598-019-51172-2

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.379


Introduction

One of the most common intraabdominal conditions requiring surgical intervention is acute appendicitis (AA). According to the Global Burden of Disease Study (2016), 114.44 to 481.60 surgeries were required per 100 000 incidences of AA, depending on the socio-economic level of countries[1]. The incidence of appendicitis in newly industrialized countries is rising rapidly[2]. Appendectomy is the standard treatment of choice for acute appendicitis[3,4]. Although open appendectomy (OA) performed through the right lower quadrant incision remained nearly unchanged for over a century because of its safety and efficacy, laparoscopic appendectomy (LA) has gradually gained acceptance. Recent studies show that laparoscopic appendectomy provides considerable benefits over open appendectomy, including a lower complication rate, a shorter length of hospital stay (LOS), less postoperative pain and earlier postoperative recovery[5,6]. Laparoscopy also was associated with lower surgical site infection (SSI) rates[7,8]. As with any surgical procedure, however, LA is associated with some risk of unfavorable outcomes. In general, the rate of perioperative complications and the length of hospital stay are universal measures of quality of treatment. Special attention was also paid to the readmission rates. Despite the constant improvements in perioperative care and increasing popularity of laparoscopy, certain patients still develop complications after LA. Although these unfavorable postoperative courses occur rather rarely in appendectomy comparison to other abdominal procedures, patients with these outcomes suffer delayed recovery. Although laparoscopic appendectomy is slowly becoming the gold standard in acute appendicitis treatment thanks to growing evidence from the results of randomized controlled trials comparing LA with open surgery, data from large cohorts is still lacking. Such analyses may reflect more realistic populations without the restrictions commonly present in clinical trials. Therefore, we designed a multicenter cohort study to analyze the risk factors for unfavorable postoperative outcomes: morbidity, prolonged length of stay and readmissions after LA.

Methods

Study design

A study was performed over a 6-month period involving 18 Polish and German surgical centers. A database compiled the data of patients admitted for acute appendicitis[9]. The local team of nurses, anesthesiologists, and assistants along with the coordinating surgeon acquired data in each participating surgical unit. The database included following patient characteristics: sex, age, and body mass index (BMI). It also followed many operative metrics: type of acute appendicitis (uncomplicated or complicated as determined by the presence of gangrenous appendicitis or perforated appendix with or without abscess)[10], intraoperative adverse events (IAE), and postoperative outcomes (postoperative morbidity, need for surgical reintervention, LOS, and need for readmission to the original surgical department for whatever reason). It was built along several parameters: ASA score, history of smoking, diabetes mellitus (DM), timing from onset of symptoms to surgery, operative parameters. The study adhered to the guidelines of The Strengthening the Reporting of Observational Studies in Epidemiology (STROBE) statement[11]. Complicated AA was diagnosed relying imaging diagnostics and/or visualization during relaparoscopy/relaparotomy performed due to patient’s condition. The Videosurgery Chapter of the Association of Polish Surgeons supported this project. No changes in treatment strategy were included in the study protocol. A chief investigator had the responsibility of monitoring this study, by verifying missing or unclear data entered into the database. The database was anonymous as any information that could possibly identify the patients was excluded. Due to the observational nature and lack of patient personal data the study did not need informed consent. Approval by the ethics committee has been obtained from each of the participating centers for conducting this study. The presence of major complications (Clavien-Dindo III-V)[12] in the postoperative period, prolonged LOS (LOS equal or longer than 2*upper quartile was recognized as prolonged LOS) and the need for readmission within 30 days were analyzed in order to identify potential risk factors.

Statistical analysis

Statistical analyses were done using Statsoft STATISTICA 13.0 PL (Statsoft Inc., Tulsa, Oklahoma, USA). Continuous variables were presented using means with standard deviations (SD) or medians with inter-quartile ranges (IQR) for skewed variables. Groups were compared using Kruskal-Wallis’ ANOVA test with multiple comparison of ranges. Then, comparisons between groups were done using t-student tests for normally distributed variables and Mann-Whitney’s tests for skewed variables. Dichotomous variables were included in chi-squared Pearson’s, Yates’, and Fisher’s exact tests, depending on the quantities in the subgroups. Finally, univariate and multivariate logistic regression models were built to determine odds ratios for risk factors depending on postoperative complications, prolonged LOS and need for readmission. Results were considered statistically significant when p-values were <0.05. In the case of missing data, pairwise deletion was used.

Ethics approval and consent to participate in the study

Ethics approval of the ethics committee of Jagiellonian University Medical College was obtained (nr 1072.6120.204.2018 20.09.2018). The data was completely anonymized, and no patient or hospital information was collected in the database. The study protocol was approved by the board of the Videosurgery Chapter of the Association of Polish Surgeons, and the study was conducted under its supervision. All procedures have been performed in accordance with the ethical standards laid down in the 1964 Declaration of Helsinki and its later amendments (Fortaleza).

Results

4618 patients qualified for laparoscopic appendectomy. Table 1 presents the demographic data for these patients.
Table 1

General group characteristics.

No (%)4618 (100%)
Males/Females, n (%)2409/2209 (52%/48%)
Median age, years (IQR)33 (24–47)
Median BMI, kg/m2 (IQR)24.8 (22.03–28.5)
ASA class13214 (69.6%)
21213 (26.27%)
3184 (3.98%)
47 (0.15%)
Smoking, n (%)794 (17.19%)
Diabetes mellitus, n (%)147 (3.18%)
Symptoms <48 h vs. >48 h, n (%)3152/1466 (68.25%/31.75%)
Median Alvarado score (IQR)6 (5–8)
Median leukocytosis, *1000 per mm3 (IQR)13.1 (10.04–16.1)
Median CRP, mg/l (IQR)27.33 (6.2–72)
No. of laparoscopic appendectomies/year in department, n (%)>501349 (29.21%)
<503269 (70.79%)
First operator, n (%)Specialist2589 (56.06%)
Resident2029 (43.94%)
Median operative time, min (IQR)55 (40–70)
Technique, n (%)Clipping2841 (61.64%)
Suturing/ligature453 (9.79%)
Stapler313 (6.75%)
Endoloop606 (13.11%)
Röder loop403 (8.71%)
Complicated appendicitis, n (%)1269 (27.48%)
Uncomplicated appendicitis, n (%)3349 (72.52%)
Intraoperative adverse events, n (%)104 (2.25%)
Drainage, n (%)3493 (75.64%)
Postoperative morbidity, n (%)310 (6.71%)
Clavien-Dindo classification of surgical complications, n (%)I146 (3.16%)
II80 (1.73%)
III77 (1.67%)
IV4 (0.09%)
V3 (0.06%)
Conversions, n (%)294 (6.37%)
Reinterventions after primary procedure, n (%)98 (2.12%)
LOS3 (2–4)
Readmissions, n (%)118 (2.56%)
General group characteristics. In terms of gender differences, the number of males, 2409 (52.2%), exceeded that of females, 2209 (47.8%). The median age of patients was 33 years (IQR 24–47). Median BMI was 24.8 (IQR 22.03–28.5). 794 (19.19%) were active smokers and 147 (3.18%) had diabetes mellitus. The majority of patients, 3214 (69.60%), were classified as ASA I patients. The remainder were sorted as such: 1213 (26.27%) patients as ASA II, 184 (3.98%) patients as ASA III, and 7 (0.15%) patients as ASA IV. In 1463 (31.68%) patients, symptoms of AA were present 48 hours before surgery. The number of patients with postoperative morbidity were 310 (6.71%); according to the Clavien-Dindo (C-D) classification of surgical complications there were 3 (0.06%) patients with class V complications, 4 (0.09%) class IV, 77 (1.67%) class III, 80 (1.73%) class II, and 146 (3.16%) class I. As for complications; there were surgical site infection (1.97%,), intraabdominal abscess (1.3%), ileus (0.54%), intraabdominal bleeding (0.41%), pneumonia (0.39%), urinary tract infection (0.39%), diffuse peritonitis (0.17%), deep vein thrombosis (0.06%), bowel perforation (0.04%), pulmonary embolism (0.02%) and other (1.41%). Median length of stay (LOS) in the entire cohort was 3[2-4] days. Prolonged LOS (LOS ≥8 days) was necessary in 227 (4.92%) of them, whereas readmission was recorded in 110 (2.56%) cases. In univariate regression models, factors were identified that increase the risk of perioperative serious complications (C-D III-V) whose parameters are presented in Table 2. When a multivariate model was built taking into consideration parameters significant in univariate calculations, only intraoperative adverse events (OR 4.09, 95% CI 1.32–12.65, p = 0.014) and complicated appendicitis (OR 3.63, 95% CI 1.74–7.61, p = 0.001) remained significant (Table 2).
Table 2

Risk factors for perioperative serious complications (C-D III-V).

OR95%CIp-value
Univariate
Males/Females0.630.40–0.990.045
Age >502.081.32–3.260.002
Obesity0.980.45–2.150.962
ASA with every grade higher1.711.17–2.480.005
Smoking1.280.69–2.390.428
Diabetes3.241.46–7.200.004
Symptoms >48 h vs. <48 h2.441.55–3.85<0.001
Alvarado1.131.01–1.260.035
Leukocytosis1.021.00–1.040.021
Leukocytosis >20,000/mm32.481.42–4.330.001
CRP >1003.872.39–6.27<0.001
No of appendectomies/year in department1.420.85–2.390.185
Specialist vs. resident0.860.56–1.320.492
Operative time1.011.01–1.02<0.001
Operative time/10 min1.121.06–1.19<0.001
Clipping0.680.44–1.050.086
Suturing/ligature2.781.65–4.67<0.001
Stapler0.870.35–2.180.774
Endoloop1.220.67–2.210.510
Röder loop0.380.12–1.220.106
Complicated vs. uncomplicated appendicitis3.802.45–5.90<0.001
Intraoperative adverse events4.201.89–9.336<0.001
Conversions4.032.33–6.98<0.001
Multivariate
Males/Females0.660.35–1.260.208
Age >500.680.29–1.590.376
ASA with every grade higher1.260.70–2.260.448
Diabetes1.670.51–5.500.397
Symptoms >48 h vs. <48 h1.610.84–3.090.153
Alvarado1.100.95–1.270.223
Leukocytosis >20,000/mm32.020.88–4.630.098
CRP >1001.830.93–3.610.081
Complicated vs. uncomplicated appendicitis3.631.74–7.610.001
Intraoperative adverse events4.091.32–12.650.014
Conversions1.480.67–3.240.328
Risk factors for perioperative serious complications (C-D III-V). Table 3 shows the details of univariate logistic regression models for increases in the risk of prolonged LOS. In the later multivariate model, only complicated appendicitis (OR 2.8, 95% CI: 1.53–5.12, p = 0.001), postoperative morbidity (OR 5.01, 95% CI: 2.33–10.75, p < 0.001), conversions (OR 6.48, 95% CI: 3.48–12.08, p < 0.001) and reinterventions after primary procedure (OR 8.79, 95% CI: 3.2–24.14, p < 0.001) were statistically significant.
Table 3

Risk factors for prolonged LOS.

OR95%CIp-value
Univariate
Males/Females0.750.57–0.980.035
Age1.031.02–1.04<0.001
Age >502.782.10–3.64<0.001
BMI with every kg/m20.990.98–1.010.286
Obesity0.980.67–1.440.928
ASA with every grade higher1.671.33–2.10<0.001
Smoking1.290.89–1.880.179
Diabetes3.962.45–6.40<0.001
Symptoms <48 h vs. >48 h1.721.29–2.29<0.001
Alvarado1.101.03–1.190.008
Leukocytosis1.021.00–1.030.020
Leukocytosis >20,000/mm31.571.06–2.350.026
CRP1.011.00–1.030.002
CRP >1005.383.88–7.44<0.001
No of appendectomies/year in department0.730.55–0.970.029
Specialist vs. resident1.471.11–1.940.007
Operative time1.021.01–1.02<0.001
Operative time/10 min1.171.13–1.22<0.001
Clipping0.560.43–0.73<0.001
Suturing/ligature3.402.48–4.67<0.001
Stapler0.430.20–0.920.029
Endoloop1.220.84–1.780.286
Röder loop0.960.60–1.520.858
Complicated vs. uncomplicated6.074.56–8.07<0.001
Intraoperative adverse events2.621.41–4.860.002
Postoperative morbidity35.9826.05–49.71<0.001
Conversions6.504.69–8.99<0.001
Reinterventions after primary procedure26.7817.52–40.92<0.001
Readmissions3.522.06–6.02<0.001
Multivariate
Males/Females1.720.99–2.960.053
Age >501.740.90–3.380.099
ASA with every grade higher1.110.66–1.860.688
Diabetes1.060.37–3.000.918
Symptoms <48 h vs. >48 h1.120.64–1.990.686
Alvarado1.060.93–1.210.389
Leukocytosis >20,000/mm31.020.45–2.280.964
CRP >1001.410.77–2.570.263
No of appendectomies/year in department1.330.63–2.820.454
Complicated vs. uncomplicated2.801.53–5.120.001
Intraoperative adverse events2.490.85–7.310.096
Postoperative morbidity5.012.33–10.75<0.001
Conversions6.483.48–12.08<0.001
Reinterventions after primary procedure8.793.20–24.14<0.001
Risk factors for prolonged LOS. In univariate logistic regression analysis following risk factors for hospital readmissions were identified and presented in Table 4. However, in multivariate regression, only postoperative complications (OR 10.33, 95% CI: 4.27–25.00), reintervention after primary procedure (OR 5.62, 95% CI: 2.17–14.54), and LA performed by resident (OR 1.96, 95% CI: 1.03–3.70) remained significant.
Table 4

Risk factors for hospital readmissions.

OR95%CIp-value
Univariate
Males/Females1.080.74–1.580.694
Age1.000.99–1.010.371
BMI with every kg/m21.011.00–1.020.008
Obesity1.380.72–2.650.331
ASA with every grade higher1.441.00–2.070.049
Smoking1.100.65–1.840.732
Diabetes1.920.83–4.470.129
Symptoms <48 h vs. >48 h1.010.95–1.070.838
Alvarado1.070.96–1.190.215
Leukocytosis1.010.99–1.030.379
CRP >1001.921.20–3.090.007
No of appendectomies/year in department1.841.15–2.950.011
Specialist vs. resident0.500.34–0.73<0.001
Operative time1.000.99–1.010.139
Clipping0.920.63–1.350.680
Suturing/ligature1.741.04–2.910.035
Stapler0.330.05–2.420.278
Endoloop0.970.64–1.480.896
Röder loop0.660.30–1.430.290
Complicated vs. uncomplicated1.811.22–2.660.003
Intraoperative adverse events0.430.06–3.130.405
Postoperative morbidity19.2712.81–28.99<0.001
Conversions2.031.12–3.680.019
Reinterventions after primary procedure43.0026.85–68.87<0.001
LOS1.051.02–1.090.003
Multivariate
ASA0.990.55–1.780.964
CRP >1001.130.52–2.430.759
>50 appendectomies/year in department1.170.55–2.510.680
Specialist vs. resident0.510.27–0.970.039
Complicated vs. uncomplicated0.630.28–1.410.260
Perioperative morbidity10.334.27–25.00<0.001
Conversions0.880.40–2.960.876
Reintervention5.622.17–14.54<0.001
Risk factors for hospital readmissions.

Discussion

In our study we identified risk factors for serious morbidity, prolonged length of hospital stay and hospital readmission after LA. The risk factors for serious morbidity were complicated appendicitis and IAE; for prolonged hospital stay, they were complicated appendicitis, postoperative morbidity, conversion, and reintervention after primary surgery; and for hospital readmission: operation performed by surgical resident, perioperative morbidity and reintervention were risk factors. Interestingly, complicated appendicitis was an independent risk factor for complications and prolonged hospital stay as well, but it was not associated with a higher hospital readmission rate. Our study reported an overall complications rate of about 6%. It is comparable with data reported in large cohorts that allows objective analysis of our results[13-16]. Importantly, LA in our cohort is characterized by low mortality (0.06%) and by a very low percentage (1.82%) of severe morbidity expressed as Clavien Dindo III-V, which proves the safety of the procedure. Andert et al. reported similar data. In this study, 1.7% of patients presented with major complications[17]. In an Australian study, 2.7% presented with an intra-abdominal abscess and 1.5% patients needed further intervention[15]. Large cohorts showed higher mortality up to 0.6%[18-20]. Although univariate logistic regression models showed several risk factors for severe postoperative complications, in the multivariate model only the presence of complicated appendicitis (OR 3.63) and intraoperative adverse events (OR 4.09) proved to be an independent risk factors associated with postoperative morbidity. Tiwari et al. observed that the severity of appendicitis correlated with higher morbidity and mortality independent of whether OA or LA was performed[21]. What has to be emphasized is that some clinical conditions have been previously identified as related to complicated AA, such as the co-existence of diabetes mellitus, elevated CRP, and leukocytosis[22,23]. Moreover, complicated appendicitis is often the reason to conversion and longer operative time[24,25]. It seems, therefore, that complicated AA may be simply considered a different condition that has the most significant impact on outcomes. This observation regarding complicated AA has also been confirmed when prolonged LOS was analyzed. This condition remained the only independent factor for delayed recovery, apart from factors that are inevitably associated with longer hospital stay such as conversion or complications. LOS frequently depends on the traditional attitude and model of perioperative care[26]. Median LOS in the entire cohort in our study was 3 days, similar to previous reports[19,26]. On the other hand, there are studies reporting LA in uncomplicated acute appendicitis in an ambulatory setting[27-30]. Therefore, to confirm the real prolonged LOS we used 2*75 IQR of the entire cohort (8 days). Only less than 5% had prolonged LOS. In our opinion, this period was associated with either postoperative complications or delayed recovery. In addition, we confirmed that conversion might contribute to prolonged LOS. This obvious fact has been extensively studied before in comparative studies and randomized controlled trials including LA and open procedure[31]. The reason for conversion was often severe inflammatory process, periappendiceal abscess or intraoperative adverse events. These may be the real cause of longer hospital stay, not the conversion itself. In the majority of cases such patients required longer antibiotic treatment or developed postoperative complications. So prolonged LOS was a consequence of these circumstances. Patients who developed complications or required reintervention had higher rates of readmission. This fact should be taken under consideration when discharging such patients even if in good condition. On the contrary, complicated appendicitis was not a risk factor for readmission. Interestingly, patients operated by residents had a higher risk of readmission. In all centers participating in the study, hospital discharge is based on the decision of the attending surgeon, not the resident. We can exclude any erroneous assessment of the patient’s condition by residents before discharge. On the basis of our study we could not clearly identify any causal explanation for that finding. Nevertheless, Jolley et al. also concluded that the involvement of resident in operation was associated with higher risk of readmission (OR 1.54 (1.23–1.94)[32]. They were, however, not able to explain this phenomenon. On the other hand, Advani et al. reported lower risk of hospital readmission when the resident was involved in operation[33]. Other studies show that appendectomy performed by residents is not associated with more complications[34,35]. Even though whether residents performed LA is linked with readmission rates, it is still considered a perfect model for training in laparoscopic surgery[35]. Those contradictory results suggest that the evidence on the impact of residents in performing LA is rather weak and requires further investigation. Our study does have certain limitations as in other observational multicenter reports. First, most of the patients were included retrospectively, rendering it impossible to analyze accurately each participating center’s perioperative protocol, such as antibiotic regimens or discharge criteria. As shown in other large observational studies, management of AA among surgical centers significantly varied[19]. The design of the study did not introduce any changes in the perioperative protocols in each participating centers. It is likely the surgical care, antibiotic regimens and perhaps even the technique differed in each center. We, however, believe it has little impact on final outcomes and allowed us to draw more universal conclusions. Second, the readmission rate in our data only represents readmissions to the original surgical department due to complications, instead of the overall rate that included readmissions to other departments or hospitals, which could underestimate the true readmission rate. The readmission statistics, however, are combined from all study groups, reducing bias. Third, the surgical procedures were performed by surgeons with different surgical skills. Subsequently, we did not differentiate between types of diabetes and we did not take into account complications related to diabetes. Although type 1 diabetes mellitus (T1DM) and type 2 diabetes mellitus (T2DM) have different backgrounds, the mechanism leading to complications (e.g. infectious) is relatively similar. Therefore, we have decided not to differentiate between types of DM. Lastly, in our study the diagnosis of complicated AA was based on intraoperative and pathological visualization of the appendix[36]. Imran et al. reported that even 40% of patients were incorrectly classified when comparing intraoperative image of the appendix to results of pathological examination[37].

Conclusions

Our study confirmed that laparoscopic appendectomy is a safe procedure associated with low rates of complications, prolonged LOS, and readmissions. We identified risk factors for those events such as complicated appendicitis, postoperative morbidity, conversion and reintervention after primary procedure. Occurrence of these events during treatment should alert the surgeons and help select patients that might require customized treatment to minimize the risk of these adverse events.
  37 in total

1.  The Strengthening the Reporting of Observational Studies in Epidemiology (STROBE) statement: guidelines for reporting observational studies.

Authors:  Erik von Elm; Douglas G Altman; Matthias Egger; Stuart J Pocock; Peter C Gøtzsche; Jan P Vandenbroucke
Journal:  Lancet       Date:  2007-10-20       Impact factor: 79.321

2.  Predictors of a histopathologic diagnosis of complicated appendicitis.

Authors:  Jonathan B Imran; Tarik D Madni; Christian T Minshall; Ali A Mokdad; Madhu Subramanian; Audra T Clark; Herb A Phelan; Michael W Cripps
Journal:  J Surg Res       Date:  2017-03-06       Impact factor: 2.192

Review 3.  The Global Incidence of Appendicitis: A Systematic Review of Population-based Studies.

Authors:  Mollie Ferris; Samuel Quan; Belle S Kaplan; Natalie Molodecky; Chad G Ball; Greg W Chernoff; Nij Bhala; Subrata Ghosh; Elijah Dixon; Siew Ng; Gilaad G Kaplan
Journal:  Ann Surg       Date:  2017-08       Impact factor: 12.969

4.  Laparoscopic appendectomy as an initial step in independent laparoscopic surgery by surgical residents.

Authors:  Zvi H Perry; Uri Netz; Solly Mizrahi; Leonid Lantsberg; Boris Kirshtein
Journal:  J Laparoendosc Adv Surg Tech A       Date:  2010-06       Impact factor: 1.878

5.  Does Conversion Adversely Impact the Clinical Outcomes for Patients with Complicated Appendicitis?

Authors:  Jin Kyong Kim; Jeonghyun Kang; Woo Ram Kim; Eun Jung Park; Seung Hyuk Baik; Kang Young Lee
Journal:  J Laparoendosc Adv Surg Tech A       Date:  2016-06-03       Impact factor: 1.878

6.  The contemporary appendectomy for acute uncomplicated appendicitis in adults.

Authors:  Christopher P Childers; Jill Q Dworsky; Melinda Maggard-Gibbons; Marcia M Russell
Journal:  Surgery       Date:  2018-10-29       Impact factor: 3.982

7.  Diagnostic Value of C-reactive Protein in Complicated Appendicitis.

Authors:  Hyoung-Min Moon; Beom-Seok Park; Duk-Jin Moon
Journal:  J Korean Soc Coloproctol       Date:  2011-06-30

8.  Risk factors for intraabdominal abscess formation after laparoscopic appendectomy - results from the Pol-LA (Polish Laparoscopic Appendectomy) multicenter large cohort study.

Authors:  Anna Lasek; Michał Pędziwiatr; Michał Wysocki; Judene Mavrikis; Piotr Myśliwiec; Tomasz Stefura; Maciej Bobowicz; Piotr Major; Mateusz Rubinkiewicz
Journal:  Wideochir Inne Tech Maloinwazyjne       Date:  2018-07-24       Impact factor: 1.195

9.  Evidence of surgical outcomes fluctuates over time: results from a cumulative meta-analysis of laparoscopic versus open appendectomy for acute appendicitis.

Authors:  Tomohiko Ukai; Satoru Shikata; Hiromu Takeda; Lauren Dawes; Yoshinori Noguchi; Takeo Nakayama; Yousuke C Takemura
Journal:  BMC Gastroenterol       Date:  2016-03-15       Impact factor: 3.067

Review 10.  The current management of acute uncomplicated appendicitis: should there be a change in paradigm? A systematic review of the literatures and analysis of treatment performance.

Authors:  Samuel Ho Ting Poon; Jennifer Wah Yan Lee; Ka Man Ng; Gloria Wing Yan Chiu; Brian Yung Kong Wong; Chi Chung Foo; Wai Lun Law
Journal:  World J Emerg Surg       Date:  2017-10-16       Impact factor: 5.469

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  5 in total

1.  Risk of emergency surgery for complicated appendicitis: Japanese nationwide study.

Authors:  Takeshi Yamada; Hideki Endo; Hiroshi Hasegawa; Toshimoto Kimura; Yoshihiro Kakeji; Keiji Koda; Hideyuki Ishida; Kazuhiro Sakamoto; Keiji Hirata; Hiroyuki Yamamoto; Hiroaki Miyata; Akihisa Matsuda; Hiroshi Yoshida; Yuko Kitagawa
Journal:  Ann Gastroenterol Surg       Date:  2020-11-09

2.  Pre-Coronavirus Disease 2019 Pediatric Acute Appendicitis: Risk Factors Model and Diagnosis Modality in a Developing Low-Income Country.

Authors:  Jonathan Salim; Flora Agustina; Julian Johozua Roberth Maker
Journal:  Pediatr Gastroenterol Hepatol Nutr       Date:  2022-01-07

3.  Patient backgrounds and short-term outcomes of complicated appendicitis differ from those of uncomplicated appendicitis.

Authors:  Takuya Oba; Takeshi Yamada; Akihisa Matsuda; Makoto Otani; Shinya Matsuda; Ryo Ohta; Hiroshi Yoshida; Norihiro Sato; Keiji Hirata
Journal:  Ann Gastroenterol Surg       Date:  2021-11-09

4.  Development and clinical implementation of a structured, simulation-based training programme in laparoscopic appendectomy: description, validation and evaluation.

Authors:  Benedicte Skjold-Odegaard; Hege Langli Ersdal; Jörg Assmus; Bjorn Steinar Olden Nedrebo; Ole Sjo; Kjetil Soreide
Journal:  BMJ Simul Technol Enhanc Learn       Date:  2021-06-02

5.  What happens after the kidney biopsy? The findings nephrologists should know.

Authors:  Daniel Montes; Claire Beamish; Sana Waheed; Fauzia Osman; Laura Maursetter
Journal:  BMC Nephrol       Date:  2022-07-25       Impact factor: 2.585

  5 in total

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