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Rotem Industries rotem intem
Graphical representation of <t>ROTEM</t> assay (EXTEM, <t>INTEM,</t> FIBTEM). ROTEM = <t>Rotational</t> <t>thromboelastometry</t>
Rotem Intem, supplied by Rotem Industries, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/rotem intem/product/Rotem Industries
Average 86 stars, based on 1 article reviews
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1) Product Images from "Rotational thromboelastometry (ROTEM) based comparison of coagulation parameters in transurethral resection of the prostate surgery using saline versus glycine as an irrigant fluid – A prospective observational comparative study"

Article Title: Rotational thromboelastometry (ROTEM) based comparison of coagulation parameters in transurethral resection of the prostate surgery using saline versus glycine as an irrigant fluid – A prospective observational comparative study

Journal: Indian Journal of Anaesthesia

doi: 10.4103/ija.ija_553_25

Graphical representation of ROTEM assay (EXTEM, INTEM, FIBTEM). ROTEM = Rotational thromboelastometry
Figure Legend Snippet: Graphical representation of ROTEM assay (EXTEM, INTEM, FIBTEM). ROTEM = Rotational thromboelastometry

Techniques Used: FIBTEM Assay



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Rotem Industries rotem intem
Graphical representation of <t>ROTEM</t> assay (EXTEM, <t>INTEM,</t> FIBTEM). ROTEM = <t>Rotational</t> <t>thromboelastometry</t>
Rotem Intem, supplied by Rotem Industries, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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CT <t>INTEM</t> (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered
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CT <t>INTEM</t> (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered
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CT <t>INTEM</t> (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered
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CT <t>INTEM</t> (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered
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CT <t>INTEM</t> (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered
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CT <t>INTEM</t> (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered
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CT <t>INTEM</t> (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered
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Image Search Results


Graphical representation of ROTEM assay (EXTEM, INTEM, FIBTEM). ROTEM = Rotational thromboelastometry

Journal: Indian Journal of Anaesthesia

Article Title: Rotational thromboelastometry (ROTEM) based comparison of coagulation parameters in transurethral resection of the prostate surgery using saline versus glycine as an irrigant fluid – A prospective observational comparative study

doi: 10.4103/ija.ija_553_25

Figure Lengend Snippet: Graphical representation of ROTEM assay (EXTEM, INTEM, FIBTEM). ROTEM = Rotational thromboelastometry

Article Snippet: ROTEM – INTEM , Clotting time (CT, s) , 176.05 (52.97) , 152.58 (SD: 25.23) , 0.013 , — , —.

Techniques: FIBTEM Assay

CT INTEM (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered

Journal: Die Anaesthesiologie

Article Title: A clotting time longer than 226 s in the INTEM channel of the thromboelastometer is an independent risk factor for mortality during bleeding

doi: 10.1007/s00101-025-01602-w

Figure Lengend Snippet: CT INTEM (clotting time) and ROC analysis for mortality ( left graph ). Box and whisker plot with the 10th and 90th percentiles ( right graph ). Solid line in the box: median values of CT INTEM . The plus symbol in the box: mean values of CT INTEM . Blue line : optimal threshold for CT INTEM in prediction of 30-day mortality. Receiver operating characteristic curves (ROC) were constructed (C-statistic) to evaluate the predictive power of CT INTEM for 30-day mortality. AUC area-under-the-curve. The Youden Index was used to calculate optimal threshold for CT INTEM in prediction of 30-day mortality. Data were collected in real-time by the attending physician or nurse in parallel to the patient treatment. Each patient was considered only once. If more than one Rotem (rotational thromboelastometry) analysis was done in one patient, only the first Rotem analysis was considered

Article Snippet: Die C‐Statistik zeigte, dass CT INTEM (C-Statistik = 0,62, optimaler Schwellenwert > 226 s) prädiktiv für die 30-Tage-Sterblichkeit war.

Techniques: Coagulation, Whisker Assay, Construct

All patients ( n = 2197) and subgroups analyses in patients with ( n = 823) or without ( n = 1374) cardiopulmonary bypass. Kaplan-Meier survival plots for terciles of clotting time (CT INTEM ), CT INTEM > 226 s versus CT INTEM ≤ 226s for 30 days follow-up. ROTEM rotational thromboelastometry, CPB cardiopulmonary bypass

Journal: Die Anaesthesiologie

Article Title: A clotting time longer than 226 s in the INTEM channel of the thromboelastometer is an independent risk factor for mortality during bleeding

doi: 10.1007/s00101-025-01602-w

Figure Lengend Snippet: All patients ( n = 2197) and subgroups analyses in patients with ( n = 823) or without ( n = 1374) cardiopulmonary bypass. Kaplan-Meier survival plots for terciles of clotting time (CT INTEM ), CT INTEM > 226 s versus CT INTEM ≤ 226s for 30 days follow-up. ROTEM rotational thromboelastometry, CPB cardiopulmonary bypass

Article Snippet: Die C‐Statistik zeigte, dass CT INTEM (C-Statistik = 0,62, optimaler Schwellenwert > 226 s) prädiktiv für die 30-Tage-Sterblichkeit war.

Techniques: Coagulation