13 research outputs found

    The Importance Of Monoclonal Proteins Determination For The Correct Diagnosis Of Transthyretin Cardiac Amyloidosis By [Tc-99m]Tc-diphosphonates

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    EPS-066 Aim/Introduction: To analyze the influence of the determination of free monoclonal proteins in blood and urine in the final diagnosis of Transthyretin Cardiac Amyloidosis (TTRA). Materials and Methods: We have analyzed 200 [99mTc]Tc-diphosphonates scans: 192 performed on 190 patients under suspicion of TTRA and 7 patients with grade II-III radiotracer myocardial deposit as a casual finding (November/2013 - January/2020). Likewise, clinical and laboratory characteristics (heart failure, LVEF, proBNP levels, immunofixation in serum and/or urine for the detection of monoclonal chains and chronic renal failure) have been evaluated. A positive case has been considered for TTRAwt or senile (Score Perugini II-III scan, negative immunofixation in serum and/or urine, negative genetic study), positive case for hereditary TTRA (Score Perugini II-III scan, negative immunofixation and positive genetic study), positive case for secondary amyloidosis (positive immunofixation and presence of hematologic malignancy) and undetermined amyloidosis (immunofixation not performed or positive and absence of haematologic malignancies at follow-up). Results: 59 positive scans have been detected, 47 men (79’7%) and 12 women (20’3%). The mean age of the group of positives was 82’66 years, while that of the negatives was 72’15. The mean proBNP levels in the positives are 7561, compared to 5869 in the negative group. Immunofixation (serum and/or urine for detection of kappa or lambda monoclonal chains at 30 (50.8%) has been performed on these patients. Finally, 37.2% (22/59) resulted in ATTRwt, 3.4% (2/59) hereditary ATTR (genetic study: variant E54Q and mutation c.424> A (p.Va.122Ile) in exon 4 of TTR) and 1.7% (1/59) secondary amyloidosis. The remaining 34/59 (57.7%) cases were undetermined amyloidosis (6 positive immunofixation and 27 without monoclonal proteins determination). Conclusion: Determination of monoclonal bands in blood and urine is mandatory to correctly characterize cases of cardiac amyloidosis and, in presence of monoclonal bands, to assess the existence of underlying haematological malignancies

    Impact Of Sentinel Lymph Node Biopsy In Breast Cancer Patients Treated With Neoadjuvant Chemotherapy

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    EPS 196 Aim/Introduction: To analyze how many of the patients undergoing neoadjuvant chemotherapy (NCT) may benefit from SLNB, as well as the impact on patient management, especially in those with early axillary involvement. Materials and Methods: We included patients with breast carcinoma candidates to NCT discussed at the Tumor Committee of our hospital (April/2017-August/2019). All of them were subjected to clinical assessment, ultrasound and, if appropriate, histological analysis, axillary pre and post- NCT. Sentinel lymph node detection was performed after periareolar injection of [99mTc]Tc-nanocoloid (74 MBq) the day before surgery. In some cases, blue dye was injected and/or a pre-NPC metal clip was placed in the affected node. Results: Sixty-two patients were included. NCT achieved a complete breast response in 12 patients, partial in 46 and non-response in 4. Initially, 31 patients were classified as N0 and 31 as N+ (28 N1 and 3 N2), achieving a complete axillary response in 58% of N+ (18). SLNB was performed in 49 patients (79%; 100% in N0 and 58% in N+ from baseline). The gamma detection rate of the sentinel lymph node was 91.8% (93.5% in N0 and 88.9% in N+). 28 lymphadenectomies were undergone (45.2%; 22.5% in N0 and 67.7% in N+), 11 due to positive SLNB (5 N0 and 6 N1), 13 owing to lack of axillary response and 4 caused by the non-localization of the sentinel lymph node. SLNB was performed in 58% of N+ patients, of which 44.4% were negative, avoiding lymphadenectomy. Metal clip and/or blue dye techniques were used in 31 cases (50%). Conclusion: SLNB is viable in a high percentage of patients with previous NCT, with a high detection rate, even in patients with early affected axilla, avoiding lymphadenectomy to patients who achieve a complete response of the axillary lymph node

    Correlation between the findings in the first post-transplantation Renogram and the allograft renal function twelve months after surgery

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    EP-061 Aim/Introduction: To study the correlation between findings in the first renogram post-trasplantation, and the evolution of the renal function of the graft twelve months after surgery. Materials and Methods: 20-minute duration renogram with [99mTc]Tc-MAG3, performed in the first 72 hours post-kidney transplantation, of patients attended at the Nuclear Medicine Service between January-December of 2018 are reviewed, extracting: a) the concentration angle (CA) that measures the inclination of the ascent section of the concentration phase with respect to the vertical axis (cutoff thershold <40° vs =40°); b) the time, in minutes (Tmax), at which the maximum concentration occurs (<10 vs =10min); and c) the percentage of cortical retention (CR) at the end of the study (<80% vs =80%). These 3 parameters are correlated with renal function at 12 months post-transplantation, through the need or not of dialysis. Results: A total of 62 renograms were obtained, excluding 7 due to death as a result of intercurrent diseases and 2 due to vascular complications and graft loss, before the first year after surgery. 53 patients, 15 female and 38 male, aged between 20-80 years, were included in the analysis. Functional failure (dialysis) of the graft one year after the transplantation ocurred in 15% (8/53). In patients with CA =40° the probability of failure was 28% (5/18) and in CA <40° 8.6% (3/35), with relative risk (RR) of 3.2. 7/34 (20, 6%) patients incluided in the group with Tmax =10 min were on dialysis one-year after, unlike just 1/19 (5, 3%) if Tmax<10min (RR 3, 8). Among the 37 patients with CR =80%, 8/37 (22%) were dialyzed one year after, while none of the 16 in the group of patients with CR <80% (0% probability if CR <80%). The matching of parameteres CA =40°, Tmax =10 min and CR =80% together do not improve the prediction of dialysis one year after (27%, 5/18). Conclusion: 1. Renogram parameters 72 hours post-transplantation, such as concentration phase angle =40°, time at maximun concentration =10min and percentage of cortical retention =80%, allow recognize a group of patients with greater probability of needing dialysis in the first year after surgery, but they do not are capable of indentify in which specific patients it will occur. 2. The parameter that best predicts the viability of the graft is cortical retention <80%

    Predictors Of Positivity Of [F-18]F-Choline PET-CT In Prostate Cancer Recurrence. Preliminary Results

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    EP-173 Aim/Introduction: To analyze the validity of [18F]F-Choline PET-CT results in prostate cancer recurrence in our daily practice, based on theoretical cut-off points of prostatespecific antigen (PSA), its kinetic, and PSA doubling time (PSADT), to identify predictors of positivity and modify the indication criteria. Materials and Methods: Prior to the validity analysis, a descriptive, prospective analysis of consecutive patients with prostate cancer treated with curative intent by radical prostatectomy (RP) or radiotherapy (RT), who underwent PET-CT scan with recurrence criteria: PSA =1 or PSA 0.4-1 with PSADT Nadir + 2 after RT, was performed. Results: From April to December 2019, 69 patients were included, 40 were treated with RP (58%) and 29 with RT (42%). In 45 patients (65%) PET-CT was able to identify recurrence of the disease (positive PET) and in 24 it was not (negative PET). Of patients treated with RP, 82, 5% (33/40) had PSA>1, and of those, 61% were positive PET. 17, 5% (7/40) had PSA6months (28/69), in 71% if PSADT6 months, in 61% and 92% if PSADT<6 months and in 77% and 100% if PSADT<3 months. Conclusion: Preliminarily and awaiting validation, it seems that PSA>1 after RP or Nadir +2 after RT is an indicator of PET-CT. There seems to be a tendency that shows that PSA<1 after RP is an indicator of PET-CT if PSADT<3 months. PSADT <3 or <6 months could be the best predictor of positivity of PET-CT with [18F]F-Choline in recurrent prostate cancer

    Analysis of results of effective dose estimation obtained from RADAR 2017 dose assessment model for nuclear medicine procedures

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    EP-296 Aim/Introduction: To analyze the results of effective dose (E) estimation of the most frequent procedures using photon emitters in Nuclear Medicine, obtained from RADAR 2017 dose assessment model. To compare these results with those obtained from ICRP 128 (2015) recommendations, and to assess how using each dose assessment model can change E results. Materials and Methods: E estimation data was collected from photon emitter procedures performed during the last year in our department, obtained from RADAR 2017 dose estimation model for age groups: = 1 year old; >1-5 years old ; >5- 10 years old, >10- 15 years old and adults. Injected activity was the one recommended by international guidelines and EANM Pediatric and Dosimetry Committees. Hybrid exams (SPECT / CT) and procedures for which there is no RADAR 2017 dosimetry estimation were excluded. Results for (E) were compared with those obtained by using ICRP 128 (2015) recommendations. Results: With RADAR 2017 dose evaluation model we obtained a lower mean value of E on most of the procedures that were analyzed, being significantly lower for Renogram, Renal scintigraphy on >10-15 years old, Thyroid scintigraphy, Meckel’s scan and Bone Scan (0.12 to 1.16 mSv, 25% to 67%). Brain perfusion and Renal scintigraphy on ages under 10 obtained a significantly greater difference for E (0.33 to 2.85 mSv, 26% to 29%). Conclusion: These results are an updated collection of estimated E values for photon-emitting radiopharmaceuticals commonly used in Nuclear Medicine, considering RADAR 2017 dose assessment model compared to ICRP 128) recommendations. Methodological changes on estimation lead to lower E for most of diagnostic procedures using photon emitters, this is of special interest for patients undergoing repeated ionizing radiation (dosimetry history)

    Prevalence, associated factors and outcomes of pressure injuries in adult intensive care unit patients: the DecubICUs study

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    Funder: European Society of Intensive Care Medicine; doi: http://dx.doi.org/10.13039/501100013347Funder: Flemish Society for Critical Care NursesAbstract: Purpose: Intensive care unit (ICU) patients are particularly susceptible to developing pressure injuries. Epidemiologic data is however unavailable. We aimed to provide an international picture of the extent of pressure injuries and factors associated with ICU-acquired pressure injuries in adult ICU patients. Methods: International 1-day point-prevalence study; follow-up for outcome assessment until hospital discharge (maximum 12 weeks). Factors associated with ICU-acquired pressure injury and hospital mortality were assessed by generalised linear mixed-effects regression analysis. Results: Data from 13,254 patients in 1117 ICUs (90 countries) revealed 6747 pressure injuries; 3997 (59.2%) were ICU-acquired. Overall prevalence was 26.6% (95% confidence interval [CI] 25.9–27.3). ICU-acquired prevalence was 16.2% (95% CI 15.6–16.8). Sacrum (37%) and heels (19.5%) were most affected. Factors independently associated with ICU-acquired pressure injuries were older age, male sex, being underweight, emergency surgery, higher Simplified Acute Physiology Score II, Braden score 3 days, comorbidities (chronic obstructive pulmonary disease, immunodeficiency), organ support (renal replacement, mechanical ventilation on ICU admission), and being in a low or lower-middle income-economy. Gradually increasing associations with mortality were identified for increasing severity of pressure injury: stage I (odds ratio [OR] 1.5; 95% CI 1.2–1.8), stage II (OR 1.6; 95% CI 1.4–1.9), and stage III or worse (OR 2.8; 95% CI 2.3–3.3). Conclusion: Pressure injuries are common in adult ICU patients. ICU-acquired pressure injuries are associated with mainly intrinsic factors and mortality. Optimal care standards, increased awareness, appropriate resource allocation, and further research into optimal prevention are pivotal to tackle this important patient safety threat

    Prediction of early mortality in patients with cancer-associated thrombosis in the RIETE Database

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    Correction to: Prevalence, associated factors and outcomes of pressure injuries in adult intensive care unit patients: the DecubICUs study (Intensive Care Medicine, (2021), 47, 2, (160-169), 10.1007/s00134-020-06234-9)

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    1832The original version of this article unfortunately contained a mistake. The members of the ESICM Trials Group Collaborators were not shown in the article but only in the ESM. The full list of collaborators is shown below. The original article has been corrected.openopenLabeau S.O.; Afonso E.; Benbenishty J.; Blackwood B.; Boulanger C.; Brett S.J.; Calvino-Gunther S.; Chaboyer W.; Coyer F.; Deschepper M.; Francois G.; Honore P.M.; Jankovic R.; Khanna A.K.; Llaurado-Serra M.; Lin F.; Rose L.; Rubulotta F.; Saager L.; Williams G.; Blot S.I.; Muzha D.; Ribas A.M.; Lipovesty F.; Loudet C.; Eller P.; Mostafa N.; Honore P.M.; Telleria V.M.; Smajic J.; Nogueira P.C.; Nafees K.M.K.; Hentchoya R.; Soledad J.; Cardenas Y.; Reyes A.G.; Sustic A.; Mpouzika M.; Vymazal T.; Jensen H.I.; Aguirre-Bermeo H.; Maddison L.; Valta M.; Bloos F.; Adipa F.E.; Koulouras V.; Enamorado J.; Agoston Z.; Birgisdottir H.; Gupta A.; Gurjar M.; Kilapong B.; Hashemian S.M.; Martin-Loeches I.; Cortegiani A.; Fletcher K.; Hayashi Y.; Waweru-Siika W.; Abidi K.; Lee S.-M.; Hadri B.; Dolgusevs M.; Abillama F.F.; Jovaisa T.; Thix C.; Elhadi M.; Nor B.M.; Ratnam S.; Mazlan M.Z.; Maiyalagan S.; Sanchez-Hurtado L.; Belii A.; Naranpurev M.; Gautam P.; 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Becker D.; Schmidt R.C.; Oliveira E.; Ramalho A.; Mazocoli E.; Fioretti A.; Barros E.; Serpa L.; Bianchini S.; Campanili T.; Pantaleao T.; Garcia P.C.; Ronchini A.L.V.; Santos R.; Nafees K.M.K.; Manap N.B.A.; Hentchoya R.; Bagshaw S.; Carney D.; Bagshaw S.; Davidow J.; Bagshaw S.; Rokosh E.; Bagshaw S.; Laizner A.M.; Smith S.; McQuirter M.; Kampayana B.S.; Favre R.; Sills M.; Laizner A.M.; Dallaire J.; Laizner A.M.; Becker C.; Microys S.; Bowes B.; Lajeunesse J.; Ghosh R.; Baptiste-Savoie J.; Raizman R.; Bagshaw S.; Suen G.; Taghavi N.; Smith O.; Fielding C.; Canales J.; Molina P.; Chaparro J.; Sepulveda M.I.; Zamorano M.J.F.; Rocha P.; Villanueva X.; Araya P.; Dayan M.; Avalos F.; Li X.; Liu Y.; Li X.; Chen X.; Jiang Z.; Yang J.; Chen J.; Yang L.; Wang K.; Gao J.; Fang X.; Zhao R.; Xia X.; Liu H.; Li J.; Wang H.; Meng G.; Di Y.; Wang D.; Zhao R.H.; Hu L.P.; Fang X.; Peipei X.; Jiao Q.F.; Wang H.Y.; Xia C.J.; Liu Y.; Ye M.; Wan Y.; Wang W.; Ding Y.; Ren A.; Gao Y.; Li Q.; Du G.; Yang J.; 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Zhang B.; Ma C.; Han Y.; Liu C.; Ding M.; Luan L.; Zheng J.; Lv S.; Jiang S.; Cao W.; Xue X.; Li J.; Liu G.; Wang J.; Wei X.; Zhang W.; Jiang Y.; Yao Z.; Gao L.; Li J.; Zhao W.; Jiang M.; Hao J.; Zhang J.; Song C.; Chen F.; Wang S.; Hu L.; Cao D.; Liu Y.; Wan J.; Wang X.; Shao H.; Zhang Z.; Cui X.; Liu J.; Zhao L.; Li X.; Fan L.; Zhang L.; Yu M.; Li B.; Li C.; Liu L.; Liu X.L.; Chen W.; Li Y.; Zhigang Z.; Yuchen W.; Mu C.; Zhu G.; Yang F.; Bo Q.; Li L.; Chen M.; Jiang J.H.; Yin H.; Pang X.; Gong Y.Y.; Yang S.; Yan X.; Zheng X.; Lei D.H.; Lei L.; Guo Y.; Liu L.; Yu J.; Sun W.; Bi A.P.; Li W.; Wu Y.; Li J.; Ni D.; Li X.; Liu Y.; Wu Z.; Song B.; Chen J.; Fei Q.; Xiaoyan Y.; Ran Q.; Xixi L.; Jiao X.; Ji H.; Zhiping S.; Hong M.; Jianhong M.; Hao Y.; Yin L.; Wang Y.; Hui C.; Ju W.; Xia X.; Huo Y.; Wang Y.; Chen L.; Yan Y.; Zhao Q.; Chen H.; Bao G.; Cao Y.; Hong L.; Zhang H.; Zhang Y.; Xu L.; Guixiang J.; Li Y.; Zhao H.M.; Huang X.; Dai Z.; Jian Y.; Zhang H.; Tian Z.; Cao Z.Q.; Li M.; Liu Y.; Ouyang F.; Ma F.; Jin W.; Ge L.; Wu S.F.; Li J.; Yuan W.; Chen T.; Shi G.; Chen Z.; Liu K.; Lin X.; Yuemen L.; Lijuan S.; Tian X.F.; Wang S.; Feng Z.X.; Liu X.Z.; Dong Y.; Zhang J.; Bocui N.; Jiang Z.X.; Yang J.; Wang G.X.; Zhao Y.; Wu X.; Yang Q.; Hu R.L.; Li X.Q.; Yu Z.J.; Yao Y.; Deng X.; Xiao Y.; Xie Y.; Yang Y.; Yang H.; Zhou Y.; Li Z.; Xiao M.; Yang Y.X.; Tian Y.; Gama L.M.S.; Hernandez J.S.; Cardenas Y.; Caicedo N.; Marin J.; Ochoa M.-E.; Gomez M.; Rojas-Suarez J.; Gonzalez J.; Reyes A.J.G.; Chapeta E.; Orozco E.; Filipovic-Grcic I.; Vukovic A.; Pecenkovic S.; Suput A.; Sustic A.; Zivanovic-Posilovic G.; Bozena A.; Udiljak N.; Milic M.; Radivojevic R.C.; Mihaljevic S.; Matas M.; Tonkovic D.; Culjak H.; Herceg I.; Pavlisa G.; Dobric M.; Beker T.; Adam V.N.; Goranovic T.; Markoulias C.; Mathaios M.; Mylordou M.; Achilleos E.; Kleanthous P.; Kotanidi V.; Foka M.; Charalabous I.; Alexandrou A.; Georgiou M.; Patsalos A.; Zepoy S.; Constantinou C.; Piza P.; Vymazal T.; Wiborg E.; Bruhn L.; Kaasby K.; Pedersen K.R.; Mikkelsen S.; Collet M.; Langvad A.; Andresen H.; Fischer S.; Kjaergard I.E.; Jepsen B.; Husted B.; Bestle M.; Kodal A.M.; Hansen T.C.B.; Pedersen A.S.B.; Thomsen T.D.; Hoegenhaven A.; From M.; Frandsen T.M.; Henning G.; Hansen A.; Jensen H.I.; Bliksted I.A.; Tamayo L.M.; Mogrovejo P.; Aguirre-Bermeo H.; Palaez C.; Tutillo D.R.M.; Hurtado C.V.; Garcia M.F.; Alvarez D.; Guerrero F.; Vasquez A.; Kutimets M.; Tamme K.; Maddison L.; Anvelt E.; Dlamini-Sserumaga L.; Lofqvist C.; Lusenius V.; Kauppi O.; Sakki J.-K.; Tervo-Heikkinen T.; Kesti U.; Merilainen M.; Karjula E.; Peltomaa M.; Palmu A.; Ahtiala M.; Valta M.A.; Mentec H.; Plantefeve G.; Besch G.; Pili-Floury S.; Ledochowski S.; Deserts M.D.; Giacardi C.; Daubin C.; Massard A.; Le Guen Y.; Blanc A.; Mandaroux S.; Gunther S.C.; Avogadro P.; Radavidson A.; Turc J.; Jochmans S.; Quintard H.; Boyer L.; Bruel C.; Philippart F.; Montravers P.; Atchade E.; Flessel N.; Chinardet B.; Soulisse L.; Pillard C.; Ngo D.; Bongiorno B.; Heitzler N.; Souppart V.; Gautheret N.; Timsit J.-F.; Essardy F.; Fartoukh M.; Mehay D.; Etourneau F.; Farkas J.-C.; Beuret P.; Preda G.; De Montmollin E.; Castelain V.; Jaschinski U.; Rothenfusser M.; Kindgen-Milles D.; Dimski T.; Fiedler C.; Heinicke T.; Meybohm P.; Schulze T.; Bota M.; Pelz S.; Odenthal T.; Christ M.; Bloos F.; Bosl K.; Chovas A.; Stehr S.; Simon P.; Grotheer S.; Schuppel S.; Schaller S.; Albrecht L.; Stubner A.; Graeser S.; Kolbe N.; Lausch M.; Diers A.; Guenther U.; Riessen R.; Roller M.; Osei I.P.; Kusi-Appiah A.-C.; Yakubu Y.H.; Guadi-Gosh B.; Dragoumanis C.; Christofis C.; Kazakos N.; Bastani S.; Martinos C.; Bekos V.; Papanikolaou M.; Papavasilopoulou T.; Efthymiou A.; Chantziara V.; Kyriakoudi A.; Kakaras N.; Diakaki C.; Flevari A.; Nikolaou C.; Katerina K.; Avramopoulou L.; Tsikritsaki K.; Gkiokas G.; Pantiora E.; Katsenos C.; Patsiou E.-C.; Alexandropoulou P.; Koutsodimitropoulos I.; Farmakis E.; Nestora K.; Chatzis M.; Kondili E.; Soundoulounaki S.; Mousafiri O.; Lepida D.; Liarmakopoulou A.; Koulouras V.; Papathanakos G.; Oikonomou M.; Ioannides P.; Papadopoulos D.; Staikos I.; Stafylaraki M.; Raitsiou B.; Mandis K.; Ravani I.; Kourelea S.; Efthimiou A.; Thoma G.; Bakas A.; Psarulis K.; Anisoglou S.; Papageorgiou E.; Michailidou E.; Tholioti T.; Lavrentieva A.; Sourla E.; Spyropoulou A.; Pantelas N.; Stalika K.M.M.; Georgakas I.; Karathanou A.; Tsikriki S.; Dimoula A.; Kanakaki S.; Vakalos A.; Pagioulas K.; Enamorado J.E.; Nardai G.; Hawchar F.; Blondal A.; Rygvadottir B.; Jonasdottir R.J.; Birgisdottir H.; Shah B.; Kaushik S.; Tripathy S.; Singh M.; Agarwal S.; Gupta M.; Ahmad M.; Mangal K.; Bhargava V.; Kushare V.; Jha S.; Bhakhtiani L.; Gupta A.; Kamal M.; Gurjar M.; Baronia A.; Kilapong B.; Susanti A.; Lestari M.I.; Zulkifli Z.; Baskoro W.; Zand F.; Zarei F.; Mahmoodpoor A.; Heidari F.; Jafaraghaee F.; O'Shea A.; O'Shea F.; O'Donnell C.; Craig G.; Fitzpatrick G.; Dunne L.; Hastings J.; Marsh B.; Cody C.; Campbell E.; Doyle D.; Pacturanan M.; Sheehan C.; Carey A.; Carter C.; Mulvey R.; Finn D.O.C.R.; Motherway C.; Walsh A.; Kehoe J.; Delossantos S.; Lalor J.; O'Nuallain S.; Behan H.; McPherson S.; Corcoran A.; Gordon P.; Rooney G.; Levy D.; Azencot M.; Gurevich V.; Lavy A.; Bendelari V.; Marconi R.; Barone A.; Gatti C.; Giampaoletti A.; Borgognoni C.; Ghioldi D.M.; Raimondo A.; Castiglione G.; Bruno A.V.; Rubulotta G.; Mo A.; Corso A.; Girianni S.; Bruni A.; Garofalo E.; Maggiore S.M.; Di Risio A.; Calamai I.; Spina R.; Spadaro S.; Volta C.A.; Cotoia A.; Mirabella L.; Maulicino L.; Abregal G.; Donvito M.; D'Ambrosio P.; Binda F.; Adamina I.; Galazzi A.; Negro A.; Vaschetto R.; Capuzzi F.; Boschetto M.; Stivanello L.; Bonaccorso L.; Megna C.; Cortegiani A.; Iozzo P.; Rizzo A.; Scire G.; Taibi M.R.; Tranello F.P.; Manzo A.; Traina L.; Pastore B.; Quaini A.; Giusti G.D.; Montaldi G.; Piergentili F.; Mancini F.; Casaioli S.; Uccelli F.; Guarracino F.; Onelli A.; Di Gravio V.; Cossu M.; Matrona O.; Rocco M.; Alampi D.; Dellafiore F.; Ranalli F.; Bossolasco M.; Brizio E.; Migliorino P.; Cortellazi P.; Rosati M.; D'Ambrosio F.; Quagliotto C.; Roman-Pognuz E.; Peratoner A.; De Rosa S.; Martin M.A.; De Sanctis F.; Ciorba P.; Fletcher K.; Toppin P.; Harding-Goldson H.; Taito S.; Shime N.; Yamamoto R.; Kanda F.; Hirao A.; Egi M.; Noguchi A.; Hashimoto S.; Aya U.; Sakuramoto H.; Ohuchi A.; Kataoka J.; Maruyama K.; Nakayama I.; Nishime Y.; Fujimoto K.; Takahashi K.; Tsujimoto M.; Shimizu M.; Waweru-Siika W.; Tole E.; Correia M.C.; Kim J.H.; Park S.; Kim K.C.; Baek J.; Bae J.-M.; Park S.Y.; Park T.S.; Lee H.B.; Park S.Y.; Park J.; Yeon-Joo L.; Young-Jae C.; Lee S.-M.; Jeon K.; Kim S.C.; Lee J.; Chee H.K.; Huh J.W.; Sim Y.S.; Kim J.; Chang Y.; Ahn J.-J.; Kang B.J.; Lee W.-Y.; Lee S.J.; Hadri B.; Baftiu N.; Krastins I.; Dolgusevs M.; Abillama F.F.; Stiban S.; Feghaly M.E.; Gharios E.; Merheb M.; Benlamin M.; Khaled A.; Belkhair W.A.; Tabib M.; Ashour F.; Elhadi A.; Tababa O.W.E.; Khaled T.; Alkhumsi S.I.R.; Alshrif A.I.; Aboufray A.A.; Alabuzidi A.; Triki A.R.; Elgammudi M.; Zahra H.B.; Soula E.; Al-Alawi M.M.S.; Ahmed H.; Ghula M.A.A.; Vosylius S.; Mouton L.; Rastegar T.; Sertznig C.; Martin G.; Thix C.; Theisen C.; Ferretti C.; Gils F.; Gallion M.; Zainudin A.; Bahrin L.K.K.; Deva S.R.; Rahim A.H.A.; Wahab S.; Mazlan M.Z.; Hassan W.N.W.; Ismail W.N.W.; Ali M.N.; Khoo T.M.; Samat N.M.; Tong J.M.G.; Adib N.A.N.; Nor M.B.M.; Ratnam S.; Ismail N.; Ratnam S.; Sulaiman S.R.; Foong K.W.; Alias A.; Hua N.P.; Maiyalagan S.; Maiyalagan S.; Zermeno J.M.; Blanco D.; Duran K.; Nava C.L.L.; Nandyelly S.J.R.; Sanchez-Hurtado L.A.; Tejeda-Huezo B.; Del Moral Armengol M.; Nava L.P.A.; Herrera J.G.; de Anda G.F.V.; Gallegos-Perez H.; Hernandez-Sanchez N.; Hernandez-Ponce L.; Gorordo-Delsol L.; Hernandez-Romero M.; Gomez S.; Molinar F.; Namendys-Silva S.A.; Romero-Gonzalez J.P.; Gonzalez D.; Landaverde A.; Sosa M.A.; Navarro B.; de Molina Serrano J.I.R.; Iburrigarro S.R.; Ibarra A.; Aguirre J.; Martinez-Gonzalez M.; Padilla N.R.C.; Pineda A.A.V.; Villafuerte M.V.E.; Herrera M.O.G.; Belii A.; Naranpurev M.; Baasanjav B.; Hachimi A.; Elkhayari M.; Abidi K.; Dendane T.; Subedi N.B.; Pathak S.D.; Gautam P.; Manandhar M.; Van Gulik L.; Van Den Brink M.; Van Vliet P.; Gerretsen B.; Van Den Berg L.; De Haan M.; Tuinstra B.; Kuijpers P.; Reijntjens J.; Vermeijden J.W.; Rinket M.; Vanroest M.; Reidinga A.; Loef B.; Dieperink W.; Onrust M.; Dormans T.; Bormans L.; Koopmans M.; Gerritsen R.T.; Van Den Elst A.; Evers M.; Oiting O.; Wilting R.; Ramaker B.; van der Kuil M.; Fijen J.-W.; Haas L.; De Lange D.; Haringman J.; Newby L.; Parke R.; Gilder E.; Hacking D.; Dagooc R.; Song R.; Waibel H.; Dawn F.; Rapley J.; Chadwick L.; Chapman C.; Crone P.; Albrett J.; Marko P.; Goodson J.; Browne T.; Whitticase R.; Davidson C.; Judd H.; Owens D.; Onyeka T.; Ugwu I.; Ilesanmi R.; Adejumo P.O.; Owojuyigbe A.; Adenekan A.; Uba S.; Chime C.; Jibrin D.; Sankey B.J.; Adekola O.; Olanipekun S.; Olanipekun S.; Adekola O.; Shosolcheva M.; Gievski V.; Kartalov A.; Naumovski F.; Kuzmanovska B.; Trposak A.; Bogoevska-Miteva Z.; Rosalia R.; Olsen B.F.; Sjobo B.; Jensen K.D.; Sykehus D.; Johansen B.F.; Straede E.; Johansen E.; Finnstrom I.J.; Toellefsen A.; Ostenjo H.; Bjorgen H.; Bratsberg B.; Kristoffersen E.; Skorstad E.M.; Hansen S.; Vullum S.; Lunde G.A.; Arntsen W.; Lund M.; Akselsen G.R.; Monstad K.R.; Stenset A.; Haugom H.; Monsen B.; Hogvall L.; Trudvang S.; Galaaen B.; Malmin S.K.; Andersen M.H.; Hargott R.F.; Andersen Y.; Steffenak E.; Nyhus M.; Meland B.; Hashmi M.; Rivas N.; Maidana E.; de Jesus Ortiz A.; Cabral D.M.B.; Simi M.; Aponte C.; Rivas J.C.; Gill S.; Garcia A.; Alvarenga G.; Cespedes L.; Perez H.; Moreira M.L.; Canete F.; Gonzalez R.; Monges N.; Garcia A.; Coman M.; Pederzani M.; Franco N.; Aganon F.; Martinez R.; Noblezada-Uy D.; Ellazar C.G.; Cerezo F.D.; Hernandez A.M.; Palo J.E.; Aperocho C.A.J.; Isanan M.; Tubacka M.; Jasiewicz P.; Czuczwar M.; Borys M.; Gutysz-Wojnicka A.; Glinka L.; Gawda R.; Mikaszewska-Sokolewicz M.; Bilawicz J.; Cabrita P.; Vieira J.; Figueiredo M.F.; Pinheiro C.M.; Antunes N.; Pedro L.; Ferreira F.; Parente I.; Varela M.; Fernandes F.; Martins C.; Viveiros A.; Cavaco R.; Rita C.S.; Dias S.; Feranandes A.M.; Silva P.; Nunes C.; Cabral J.; Sousa B.; Pires F.; Ferreira H.; Santos J.; Pinto V.M.V.; Bispo B.M.; Ferreira A.; Molinos E.; Lafuente E.; Gregorio R.; Costa H.; Lima A.; Ferreira S.; Seromenho V.; Luis E.; Valerio I.; Cesar H.; Tavares A.; Alsheikhly A.S.; Mahmood S.; Guran C.T.; Moise A.; Filipescu D.C.; Luchian M.; Tomescu D.; Popescu M.; Scutariu M.A.; Petrisor C.; Hagau N.; Grigoras I.; Patrichi T.; Gusarev V.; Pivkina A.; Kulakov V.; Ignatenko O.; Kovaleva J.; Zhivotneva T.; Zhedaeva M.; Matiushkov N.; Ershova O.; Egorova N.; Khoronenko V.; Baskakov D.; Sergeev D.; Piradov M.; Grishina L.; Magomedov M.; Zuev E.; Gorokhovatsky U.; Leonova A.; Fadeeva L.; Belskiy V.; Galishevskiy D.; Zubareva N.; Tribulev M.; Zueva O.; Kiselev A.; Kamenshchikov N.; Tokareva E.; Petrushin M.; Starchenko I.; Twagirumugabe T.; Nshimyumuremyi I.; Muhizi J.; Buregeya E.; Nzarora J.; Assiri A.; Ebaid M.S.; Almekhlafi G.; Mandourah Y.; Velickovic J.; Velickovic D.; Jovanovic B.; Hadzibegovic A.; Stefanovic B.; Misic V.; Bumbasirevic V.; Rajkovic M.; Stojanovic M.; Gavrilovic S.; Stanojevic M.; Martonova A.; Yaghi A.; Turcan A.; Firment P.; Slobodianiuk G.; Rabarova D.; Lancaricova D.; Vlaovic J.; Groznik M.; Lukic M.; Perme J.; Sostaric M.; Umek N.; Mirkovic T.; Dolenc S.; Knafelj R.; Fister M.; Zorko N.; Markota A.; Yeni N.P.; Jali P.; Schmollgruber S.; Syed M.R.; Parag N.; Wise R.; Galiana M.; Navarro J.A.; De Pablo A.M.; Albert P.; Martinez P.; Mendiara Y.; Garcia B.; Llinas A.A.; Riveiro M.; Gallart E.; Riera A.; Sanz M.; Salo S.; Lajara M.A.G.; Nieto M.V.; Garcia R.; Pena J.M.G.; Gorgolas M.C.; Isasi M.A.; Sierra R.; Gordo F.; Conejo I.; Salva-Costa V.; Garzon-Tovar C.; Lospitao S.; Gonzalez R.; Gutierrez P.; Girona M.; Adamuz J.; Olivares P.G.; de Ceballos J.P.G.; Tirado C.; De Wit I.; Polo A.B.C.; del Mar Diaz Salcedo M.; Ripolles-Melchor J.; Martinez-Hurtado E.; Alvarez J.D.; Arcas M.L.B.; Gonzalez J.I.T.; de la Ventana A.B.S.; Calleja P.L.-A.; Alvarez R.G.; Zamora P.S.; Guerrero A.O.; Cosano R.; Perez-Vacas J.; Campos-Perez M.; Barreiro E.M.; Sanchez L.C.; Diaz M.G.; Jimenez R.; Del Rio Cabajo L.; Muriel D.S.; Alonso H.F.; Fernandez A.W.; Pinan I.S.; Albaiceta G.M.; Fernandez M.C.I.; Abos F.J.S.; Monedero P.; Chueca R.M.; Aguirre L.G.; Manosa S.C.; Luque C.P.; Calpe N.; Losilla M.R.; Fores M.T.; Farre O.; Fernandez O.; del Rosario Villar Redondo M.; Arteta Arteta D.S.; Sanchez M.A.H.; Espinosa C.P.; Reyes L.M.; Domenech L.C.; Guillen C.V.; Alvarez J.T.; del Cotillo M.; Barrueco-Francioni J.E.; Conde B.B.; Blanco M.P.S.; Blasco M.L.; Clement A.I.; Hurtado C.; Sanz L.C.; Perez-Torres D.; Prol-Silva E.; Pereira J.; Gonzalez I.A.; Cano A.E.; Nunez C.R.; Fernadez I.L.; Fernandez A.A.M.; Del Bosque Diez R.; Hilario B.; Zalba-Etayo B.; Pascual-Bielsa A.; Panka B.; Banwarie P.; Nahar D.; van Axel A.; Boedjawan N.N.; Jansson E.B.; Malvemyr A.-S.; Johansson L.; Sandberg U.; Tingsvik C.; Mattsson G.; Lof G.; Spangfors M.; Ringdal M.; Geijer S.; Orvelius L.; Hylen M.; Lagerhall C.; Joelsson-Alm E.; Akerman E.; Hellkvist V.H.; Mickelsson U.; Akerman E.; Wahlbom E.; Larsson I.-M.; Wallin E.; Boroli F.; Ory S.; Jong M.L.; Dullenkopf A.; Lang M.; Fleury Y.; Maus M.; Ben-Hamouda N.; Fishman A.; Hsu M.Y.; Chang S.C.; Trongtratul K.; Sawawiboon C.; Morakul S.; Khwannimit B.; Merritt-Charles L.; Singh K.; Ventour D.; Figaro-Barclay D.; Sankar-Maharaj S.; Mebazaa M.S.; Kamoun S.; Elatrous S.; Besbes L.; Abroug F.; Naija W.; Elhechmi Y.Z.; Sellami W.; Hajjej Z.; Merhabene T.; Talik I.; Kuscu O.O.; Dilek O.; Zerman A.; Dal H.C.; Turan S.; Aydemir S.; Yilmaz H.; Calili D.K.; Izdes S.; Cengiz M.; Gumus A.; Tasdemir B.; Kagnici A.; Ay M.; Ay S.A.; Caliskan G.; Akbas T.; Balbay A.O.; Efe S.; Inal V.; Elay G.; Karabacak P.; Ozserezli B.; Senturk E.; Demirkiran O.; Bozbay S.; Dikmen Y.; Erdogan E.; Akker M.; Peker N.; Ozgultekin A.; Serin S.O.; Turan C.; Karaoren G.; Goksu S.; Karakurt S.; Arikan H.; Gul F.; Cinel I.; Kara I.; Undar H.N.; Bayraktar Y.S.; Celik J.B.; Tokur M.E.; Aydin D.T.; Yildiz I.; Ozcan B.; Erdivanli B.; Erdivanli B.; Ozcan B.; Eroglu A.; Akdag D.; Unlu N.; Fielding M.; Dungca A.; Ali A.; Thankamma B.; Reyes P.E.; John S.; Rajendran A.; Ahmad F.K.E.; Smiley K.A.; Hojden S.; Miller M.T.; Das Sasidharan Nair V.; Antonio M.G.S.; Qawasmeh K.A.; Shawish S.A.; Twiggs H.; Rosado I.; Babych V.; Morren F.; Young C.; Vaughan-Jones N.; Harris S.; Burns K.; Georgiev C.; Shayamano R.; Kerslake I.; Creber P.; Vochin A.; O'Brien C.; Caddell P.; Hagan S.; Hughes M.; Torlinski T.; Sherwin J.; Kannan S.; Markham A.; Lebon R.; Cupitt J.; Cranshaw J.; White N.; Marriott V.; Milner W.; Groba C.B.; Azoia J.; Polgarova P.; George S.; Kapoor R.; Lynch C.; Fox N.; Cranmer K.; Fox N.; Llewellym T.; Matthews K.; Maltby L.; Ibao J.; Boulton K.; Jarman R.; Baxter K.; Raj A.S.; Moghal A.; White J.; Barrowcliffe S.; Pulletz M.; Ganeshalingam V.; Baruah R.; Baker H.; Woods J.; Ei P.P.; Ogbeide V.; Hayden P.; Matthews K.; Hughes J.; Balasubramanian M.; Salberg A.; Saha R.; Holmquist D.; Young C.; Derbyshire C.; Smith N.; Stones E.; Ademokun J.; Popescu M.; Legorburo M.S.; North S.; Brett C.; Jaundoo H.; Craig J.; Whiteley S.; Howcroft C.; Wilby L.; Delve P.; Shaw D.; Williams K.; Welters I.D.; McMullen J.; Brett S.; Flores L.; Trueman-Dawkins T.; Templeton M.; Adams J.; Smith C.; Prowle J.; Byers H.; McDonnell A.; Rose B.O.; Reece-Anthony R.; Mendes L.; Vizcaychipi M.; Bull R.; Lacaden G.; Santiago E.; Delgado C.C.; Farnell-Ward S.; Thorpe E.; Somerville J.; Williams A.; Cummings D.; Derrick H.; Brumwell S.; Randell C.; McCann N.; Aves E.; Berry G.; Szakmany T.; Gunter U.; Pulak P.; Sarkar N.; Wright K.; Gomes V.; Jones J.; Palfrey R.; Camsooksai J.; Lewis A.; Eneas A.; Tridente A.; Barr L.; Jovaisa T.; Thomas B.; Parkin E.; Horner D.; Frey C.; Bench S.; Baumber R.; Broadhurst P.; Jackson M.; Williams L.; Clark M.; Paddle J.; Bean S.; Buckley S.; Palfreeman C.; Liu S.; Allison N.; Attwood B.; Parsons P.; Houghton V.; Turner S.J.; Higgins D.; Bielskute E.; Horrigan N.; Jacob R.; Habgood K.; Zaki A.; Collins A.; Lord J.; Ramiro C.; Kubisz-Pudelko A.; Kotze M.; Williams H.; Iovenko I.; Tsarev A.; Zgrzheblovska L.; Briva A.; Mendez G.; Napolitano L.; Teig M.; Lee J.; Rodriguez G.E.; Ben-Jacob T.; Potestio C.; Eng T.; Mahanes D.; Khanna A.; Duggal A.;
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