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J., Chi, Y., Xie, X., Hua, X.: Discriminative coronary artery tracking via 3D CNN in cardiac CT angiography. In: Shen, D., et al. (eds.) MICCAI 2019. LNCS, vol. 11765, pp. 468–476. Springer, Cham (2019). Google Scholar Kass, M., Witkin, A., Terzopoulos, D.: Snakes: active contour models. Int. J. Comput. Vis. 1(4), 321–331 (1988). MATH Google Scholar Wang, Y., Narayanaswamy, A., Roysam, B.: Novel 4-D open-curve active contour and curve completion approach for automated tree structure extraction. In: Proceedings of IEEE Computer and Social Conference on Computer and Vision Pattern Recognition, pp. 1105–1112 (Published online 2011). Q., Dou, Q., Heng, P.-A.: Shape-aware meta-learning for generalizing prostate MRI segmentation to unseen domains. In: Martel, A.L., et al. (eds.) MICCAI 2020. LNCS, vol. 12262, pp. 475–485. Springer, Cham (2020). Google Scholar Chen, L., Dager, S.R., Shaw, D.W.W., et al.: A novel algorithm for refining cerebral vascular measurements in infants and adults. J. Neurosci. Methods. 340(April), 108751 (2020). Google Scholar Zhang, T.Y., Suen, C.Y.: A fast parallel algorithm for thinning digital patterns. Commun. ACM. 27(3), 236–239 (1984). Google Scholar Kruskal, J.B.: On the shortest spanning subtree of a graph and the traveling salesman problem. Proc. Am. Math. Soc. 7(1), 48 (1956). MathSciNet MATH Google Scholar Liu, W., Chen, Z., Ortega, D., et al.: Arterial elasticity, endothelial function and intracranial vascular health: a multimodal MRI study. J. Cereb. Blood Flow Metab. 0271678X2095695 (Published online 20 October 2020). M., Metz, C.T., van Walsum, T., et al.: Standardized evaluation methodology and reference database for evaluating coronary artery centerline extraction algorithms. Med. Image Anal. 13(5), 701–714 (2009). Google Scholar Chen, L., Mossa-Basha, M., Balu, N., et al.: Development of a quantitative intracranial vascular features extraction tool on 3D MRA using semiautomated open-curve active contour vessel tracing. Magn. Reson. Med. 79(6), 3229–3238 (2018). Google Scholar Chen, L., Mossa-Basha, M., Sun, J., et al.: Quantification of morphometry and intensity features of intracranial arteries from 3D TOF MRA using the intracranial artery feature extraction (iCafe): a reproducibility study. Magn Reson Imaging. 2019(57), 293–302 (2018). Google Scholar Bernardin, K., Stiefelhagen, R.: Evaluating multiple object tracking performance: the CLEAR MOT metrics. EURASIP J.. Janu Janu Diznr International resonance dlpd study material, resonance modules Booklet PDF, resonance physics module pdf, resonance study material for class 12 free download pdf, resonance study material for iit jee free download pdf, resonance study material google drive link, resonance study material iit jee, resonance

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Christopoulos A. Fitting models to biological data using linear and nonlinear regression: a practical guide to curve fitting: Oxford University Press; 2004.Lin LI. A concordance correlation coefficient to evaluate reproducibility. Biometrics. 1989;45(1):255–68.Article CAS PubMed Google Scholar Li K-L, Wilmes LJ, Henry RG, Pallavicini MG, Park JW, Hu-Lowe DD, et al. Heterogeneity in the angiogenic response of a BT474 human breast cancer to a novel vascular endothelial growth factor-receptor tyrosine kinase inhibitor: Assessment by voxel analysis of dynamic contrast-enhanced MRI. J Magn Reson Imaging. 2005;22(4):511–9.Article CAS PubMed Google Scholar Henderson E, Rutt BK, Lee TY. Temporal sampling requirements for the tracer kinetics modeling of breast disease. Magn Reson Imaging. 1998;16(9):1057–73.Article CAS PubMed Google Scholar Larsson C, Kleppesto M, Rasmussen Jr I, Salo R, Vardal J, Brandal P, et al. Sampling requirements in DCE-MRI based analysis of high grade gliomas: simulations and clinical results. J Magn Reson Imaging. 2013;37(4):818–29.Article PubMed Google Scholar Ng TS, Wert D, Sohi H, Procissi D, Colcher D, Raubitschek AA, et al. Serial diffusion MRI to monitor and model treatment response of the targeted nanotherapy CRLX101. Clin Cancer Res. 2013;19(9):2518–27.Article CAS PubMed PubMed Central Google Scholar McGrath DM, Bradley DP, Tessier JL, Lacey T, Taylor CJ, Parker GJ. Comparison of model‐based arterial input functions for dynamic contrast‐enhanced MRI in tumor bearing rats. Magn Reson Med. 2009;61(5):1173–84.Article PubMed Google Scholar Huang W, Li X, Morris EA, Tudorica LA, Seshan VE, Rooney WD, et al. The magnetic resonance shutter speed discriminates vascular properties of malignant and benign breast tumors in vivo. Proc Natl Acad Sci U S A. 2008;105(46):17943–8.Article CAS PubMed PubMed Central Google Scholar Paudyal R, Poptani H, Cai K, Zhou R, Glickson JD. Impact of transvascular and cellular–interstitial water exchange on dynamic contrast-enhanced magnetic resonance imaging estimates of blood to tissue transfer constant and blood plasma volume. J Magn Reson Imaging. 2013;37(2):435–44.Article PubMed Google Scholar Li X, Rooney WD, Springer Jr CS. A unified magnetic resonance imaging pharmacokinetic theory: intravascular and extracellular contrast reagents. Magn Reson Med. 2005;54(6):1351–9.Article CAS PubMed Google Scholar Zhou R, Pickup S, Yankeelov TE, Springer CS, Glickson JD. Simultaneous measurement of arterial input function and tumor pharmacokinetics in mice by dynamic contrast enhanced imaging: Effects of transcytolemmal water exchange. Magn Reson Med. 2004;52(2):248–57.Article PubMed Google Scholar Download referencesAcknowledgmentsThe authors thank Drs. David Colcher and Andrew Raubitschek for providing the mouse tumor model for this study, Dr. Meng Law for providing the clinical data, Dr. Andrey Demyanenko, Hargun Sohi, Bita Alaghebandan and Sharon Lin for their technical assistance. Drs. Scott Fraser and Kazuki Sugahara provided helpful advice and support. This work was funded in part by NIBIB R01 EB000993, NIH R01 EB00194, NRSA T32GM07616, City of Hope Lymphoma SPORE Grant (P50 CA107399), the Beckman Institute, the Caltech/City of Hope Biomedical Initiative, and R37NS34467, R37AG23084, and R01AG039452.Author informationAuthor notesAuthors and AffiliationsDivision of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA, 91125, USASamuel R. Barnes, Thomas S. C. Ng, Naomi Santa-Maria & Russell E. JacobsDepartment of Medicine, University of California, Irvine Medical Center, Orange, CA,

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1.7.4 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░█░█ ▄█ ░ ▀▀█ ░ █░█▀▄▀ ░█ ▄ ░░█ ▄ ▀▀█Fixed FFMPEG crash when Single file is not checked.Code Changed: If Not My.Computer.FileSystem.DirectoryExists(FolderBrowserDialog1.SelectedPath & "\mp4toamv_output") Then System.IO.Directory.CreateDirectory(FolderBrowserDialog1.SelectedPath & "\mp4toamv_output") End If 1.7.3 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░█░█ ▄█ ░ ▀▀█ ░ ▀█ █▀█▀▄▀ ░█ ▄ ░░█ ▄ █▄ ▀▀█(1.7.3 fsymbols did not want to show the 3)------------changelog 1.7.3------------Fixed FFMPEG Crash when using the defalt FFMPEG path------------changelog 1.7.3 ------------If the FFMPEG downloader does not work for some reson you can download FFMPEG here: v1.7.1 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░█░█ ▄█ ░ ▀▀█ ░ ▄█▀▄▀ ░█ ▄ ░░█ ▄ ░█------------changelog 1.7.1 ------------Added all video formats for Single file setting------------changelog 1.7.1 ------------------------changelog 1.7 ------------Added settings tab.Added Make log file setting.Added log file path Setting.Added setting to open log file when done.Added setting to shutdown, logout, restart when done.Added Setting to reinstall FFMPEG.Added Run in the backgound Setting.Added log tab.Finished Help tab.Fixed github button.FIxed Help button.Bug fixes.------------changelog ------------If the FFMPEG downloader does not work for some reson you can download FFMPEG here: v1.7.2 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░█░█ ▄█ ░ ▀▀█ ░ ▀█▀▄▀ ░█ ▄ ░░█ ▄ █▄------------changelog 1.7.1 ------------Added all video formats for Single file setting------------changelog 1.7.2 ------------bug fixesadded Save & Clear buttons to the log tabadded My.Application.DoEvents() to the main for loop.added Return 0 to for loops to fix the warnings: Doesn't return a value on all code paths.fixed MsgBox("error 48 (try again) or turn off your VPN if you have one", 16 + 0)Made the code more readable------------changelog 1.7 ------------Added settings tab.Added Make log file setting.Added log file path Setting.Added setting to open log

Resonance of the Ocean - Download

Toolkit for dynamic contrast enhanced MRI analysis. PeerJ Pre Prints. 2014;2:e670v671. Google Scholar Cetin O. An analysis tool to calculate permeability based on the Patlak method. J Med Syst. 2012;36(3):1317–26.Article PubMed Google Scholar Barboriak DP, MacFall JR, Padua AO, York GE, Viglianti BL, Dewhirst MW. Standardized software for calculation of Ktrans and vp from dynamic T1-weighted MR images. In: International Society for Magnetic Resonance in Medicine Workshop on MR in Drug Development: From Discovery to Clinical Therapeutic Trials: 2004; McLean, VA; 2004.Whitcher B, Schmid VJ. Quantitative analysis of dynamic contrast-enhanced and diffusion-weighted magnetic resonance imaging for oncology in R. J Stat Softw. 2011;44(5):1–29.Article Google Scholar Ferl GZ. DATforDCEMRI: an R package for deconvolution analysis and visualization of DCE-MRI data. J Stat Softw. 2011;44(3):1–18.Article Google Scholar Ortuno JE, Ledesma-Carbayo MJ, Simoes RV, Candiota AP, Arus C, Santos A. DCE@urLAB: a dynamic contrast-enhanced MRI pharmacokinetic analysis tool for preclinical data. BMC Bioinformatics. 2013;14:316.Article PubMed PubMed Central Google Scholar Zollner FG, Weisser G, Reich M, Kaiser S, Schoenberg SO, Sourbron SP, et al. UMMPerfusion: an open source software tool towards quantitative MRI perfusion analysis in clinical routine. J Digit Imaging. 2013;26(2):344–52.Article PubMed Google Scholar Balvay D, Frouin F, Calmon G, Bessoud B, Kahn E, Siauve N, et al. New criteria for assessing fit quality in dynamic contrast-enhanced T1-weighted MRI for perfusion and permeability imaging. Magn Reson Med. 2005;54(4):868–77.Article PubMed Google Scholar Khalifa F, Soliman A, El-Baz A, El-Ghar MA, El-Diasty T, Gimel’farb G, et al. Models and methods for analyzing DCE-MRI: A review. Med Phys. 2014;41(12):124301.Article PubMed Google Scholar Bagher-Ebadian H, Jain R, Nejad-Davarani SP, Mikkelsen T, Lu M, Jiang Q, et al. Model Selection for DCE-T1 Studies in Glioblastoma. Magn Reson Med. 2012;68(1):241–51.Article PubMed Google Scholar Huang W, Li X, Chen Y, Li X, Chang MC, Oborski MJ, et al. Variations of dynamic contrast-enhanced magnetic resonance imaging in evaluation of breast cancer therapy response: a multicenter data analysis challenge. Transl Oncol. 2014;7(1):153–66.Article PubMed PubMed Central Google Scholar Kim H, Folks KD, Guo L, Stockard CR, Fineberg NS, Grizzle WE, et al. DCE-MRI detects early vascular response in breast tumor xenografts following anti-DR5 therapy. Mol Imaging Biol. 2011;13(1):94–103.Article PubMed PubMed Central Google Scholar Yankeelov TE, DeBusk LM, Billheimer DD, Luci JJ, Lin PC, Price RR, et al. Repeatability of a reference region model for analysis of murine DCE-MRI data at 7T. J Magn Reson Imaging. 2006;24(5):1140–7.Article PubMed Google Scholar Loveless ME, Lawson D, Collins M, Nadella MV, Reimer C, Huszar D, et al. Comparisons of the efficacy of a Jak1/2 inhibitor (AZD1480) with a VEGF signaling inhibitor (cediranib) and sham treatments in mouse tumors using DCE-MRI, DW-MRI, and histology. Neoplasia. 2012;14(1):54–64.Article CAS PubMed PubMed Central Google Scholar Anderson KB, Conder JA. Discussion of Multicyclic Hubbert Modeling as a Method for Forecasting Future Petroleum Production. Energy Fuels. 2011;25(4):1578–84.Article CAS Google Scholar Glatting G, Kletting P, Reske SN, Hohl K, Ring C. Choosing the optimal fit function: comparison of the Akaike information criterion and the F-test. Med Phys. 2007;34(11):4285–92.Article CAS PubMed Google Scholar Motulsky H,. Janu Janu Diznr International resonance dlpd study material, resonance modules Booklet PDF, resonance physics module pdf, resonance study material for class 12 free download pdf, resonance study material for iit jee free download pdf, resonance study material google drive link, resonance study material iit jee, resonance quantum resonance magnetic analyzer download,quantum resonance magnetic analyzer download free,quantum resonance magnetic analyser download .We use

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File when done.Added setting to shutdown, logout, restart when done.Added Setting to reinstall FFMPEG.Added Run in the backgound Setting.Added log tab.Finished Help tab.Fixed github button.FIxed Help button.Bug fixes.------------changelog ------------If the FFMPEG downloader does not work for some reson you can download FFMPEG here: v1.7 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░█░█ ▄█ ░ ▀▀█ ░ █▀█▀▄▀ ░█ ▄ ░░█ ▄ █▄█------------changelog ------------Added settings tab.Added Make log file setting.Added log file path Setting.Added setting to open log file when done.Added setting to shutdown, logout, restart when done.Added Setting to reinstall FFMPEG.Added Run in the backgound Setting.Added log tab.Finished Help tab.Fixed github button.FIxed Help button.Bug fixes.------------changelog ------------If the FFMPEG downloader does not work for some reson you can download FFMPEG here: V1.6.1 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░▄█ ░ █▄▄ ░ ▄█░█ ▄ █▄█ ▄ ░█v1.6 patchAdded full gui & Fixed bugsBug fixes & added MIT LicenseIf the FFMPEG downloader does not work for some reson you can download FFMPEG here: V1.6 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░█░█ ▄█ ░ █▄▄ ░ █▀█▀▄▀ ░█ ▄ █▄█ ▄ █▄█Added full gui & Fixed bugsBug fixes & added MIT LicenseIf the FFMPEG downloader does not work for some reson you can download FFMPEG here: 1.5 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░█░█ ▄█ ░ █▀ ░ █▀█▀▄▀ ░█ ▄ ▄█ ▄ █▄█Added full gui & Fixed bugsIf the FFMPEG downloader does not work for some reson you can download FFMPEG here: 1.4 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░ ╚═╝░░╚═╝╚═╝░░░░░╚═╝░░░╚═╝░░░█░█ ▄█ ░ █░█ ░ █▀█▀▄▀ ░█ ▄ ▀▀█ ▄ █▄█ 1.2 ███╗░░░███╗██████╗░░░██╗██╗ ████████╗░█████╗░ ░█████╗░███╗░░░███╗██╗░░░██╗████╗░████║██╔══██╗░██╔╝██║ ╚══██╔══╝██╔══██╗ ██╔══██╗████╗░████║██║░░░██║██╔████╔██║██████╔╝██╔╝░██║ ░░░██║░░░██║░░██║ ███████║██╔████╔██║╚██╗░██╔╝██║╚██╔╝██║██╔═══╝░███████║ ░░░██║░░░██║░░██║ ██╔══██║██║╚██╔╝██║░╚████╔╝░██║░╚═╝░██║██║░░░░░╚════██║ ░░░██║░░░╚█████╔╝ ██║░░██║██║░╚═╝░██║░░╚██╔╝░░╚═╝░░░░░╚═╝╚═╝░░░░░░░░░░╚═╝ ░░░╚═╝░░░░╚════╝░

2025-04-22
User6940

For general information about the E.G.O, see Electric Screaming.“This electricity is all I have left… I can't…!”–Meursault, Electric ScreamingElectric Screaming MeursaultSwitch to CorrosionInfoAffinityRisk LevelSeasonSeason 4 -Clear All CathyRelease2024.04.11ObtainedBattle Pass - Level 70 (Paid)AbnormalityDreaming Electric SheepCostSanity25 Affinity x1 x4ResistancesNormal[x1]Normal[x1]Fatal[x2]Normal[x1]Fatal[x2]Normal[x1]Ineff.[x0.5]Combat Start: At 4+ Reson., gain 2 Offense Level Up and 2 Defense Level Up. If the Reson. was an Envy Reson., apply the the above effects to the 2 units adjacent to this unit on the Dashboard as well“This electricity is all I have left… I can't…!”–Meursault, Electric ScreamingElectric Screaming MeursaultSwitch to AwakeningInfoAffinityRisk LevelSeasonSeason 4 -Clear All CathyRelease2024.04.11ObtainedBattle Pass - Level 70 (Paid)AbnormalityDreaming Electric SheepCostSanity25 Affinity x1 x4ResistancesNormal[x1]Normal[x1]Fatal[x2]Normal[x1]Fatal[x2]Normal[x1]Ineff.[x0.5]Combat Start: At 4+ Reson., gain 2 Offense Level Up and 2 Defense Level Up. If the Reson. was an Envy Reson., apply the the above effects to the 2 units adjacent to this unit on the Dashboard as wellThreadspin[]Threadspin InfoE.G.O Awakening UpgradedSkill Effects: [After Attack] Apply +8 Charge Count to 1 other ally with the least Charge Count - Number of affected allies grows by (highest Envy Reson.-2) (max 3 > 4) - At 4+ (highest Envy Reson.), apply 1 Envy DMG Up to self and all affected alliesSkill Effects: [After Attack] Apply +8 Charge Count to 1 other ally with the least Charge Count - Number of affected allies grows by (highest Envy Reson.-2) (max 4 > 5) - At 4+ (highest Envy Reson.), apply 1 Envy DMG Up to self and all affected allies - At 6+ (highest Envy Reson.), apply 1

2025-04-01
User1783

Christopoulos A. Fitting models to biological data using linear and nonlinear regression: a practical guide to curve fitting: Oxford University Press; 2004.Lin LI. A concordance correlation coefficient to evaluate reproducibility. Biometrics. 1989;45(1):255–68.Article CAS PubMed Google Scholar Li K-L, Wilmes LJ, Henry RG, Pallavicini MG, Park JW, Hu-Lowe DD, et al. Heterogeneity in the angiogenic response of a BT474 human breast cancer to a novel vascular endothelial growth factor-receptor tyrosine kinase inhibitor: Assessment by voxel analysis of dynamic contrast-enhanced MRI. J Magn Reson Imaging. 2005;22(4):511–9.Article CAS PubMed Google Scholar Henderson E, Rutt BK, Lee TY. Temporal sampling requirements for the tracer kinetics modeling of breast disease. Magn Reson Imaging. 1998;16(9):1057–73.Article CAS PubMed Google Scholar Larsson C, Kleppesto M, Rasmussen Jr I, Salo R, Vardal J, Brandal P, et al. Sampling requirements in DCE-MRI based analysis of high grade gliomas: simulations and clinical results. J Magn Reson Imaging. 2013;37(4):818–29.Article PubMed Google Scholar Ng TS, Wert D, Sohi H, Procissi D, Colcher D, Raubitschek AA, et al. Serial diffusion MRI to monitor and model treatment response of the targeted nanotherapy CRLX101. Clin Cancer Res. 2013;19(9):2518–27.Article CAS PubMed PubMed Central Google Scholar McGrath DM, Bradley DP, Tessier JL, Lacey T, Taylor CJ, Parker GJ. Comparison of model‐based arterial input functions for dynamic contrast‐enhanced MRI in tumor bearing rats. Magn Reson Med. 2009;61(5):1173–84.Article PubMed Google Scholar Huang W, Li X, Morris EA, Tudorica LA, Seshan VE, Rooney WD, et al. The magnetic resonance shutter speed discriminates vascular properties of malignant and benign breast tumors in vivo. Proc Natl Acad Sci U S A. 2008;105(46):17943–8.Article CAS PubMed PubMed Central Google Scholar Paudyal R, Poptani H, Cai K, Zhou R, Glickson JD. Impact of transvascular and cellular–interstitial water exchange on dynamic contrast-enhanced magnetic resonance imaging estimates of blood to tissue transfer constant and blood plasma volume. J Magn Reson Imaging. 2013;37(2):435–44.Article PubMed Google Scholar Li X, Rooney WD, Springer Jr CS. A unified magnetic resonance imaging pharmacokinetic theory: intravascular and extracellular contrast reagents. Magn Reson Med. 2005;54(6):1351–9.Article CAS PubMed Google Scholar Zhou R, Pickup S, Yankeelov TE, Springer CS, Glickson JD. Simultaneous measurement of arterial input function and tumor pharmacokinetics in mice by dynamic contrast enhanced imaging: Effects of transcytolemmal water exchange. Magn Reson Med. 2004;52(2):248–57.Article PubMed Google Scholar Download referencesAcknowledgmentsThe authors thank Drs. David Colcher and Andrew Raubitschek for providing the mouse tumor model for this study, Dr. Meng Law for providing the clinical data, Dr. Andrey Demyanenko, Hargun Sohi, Bita Alaghebandan and Sharon Lin for their technical assistance. Drs. Scott Fraser and Kazuki Sugahara provided helpful advice and support. This work was funded in part by NIBIB R01 EB000993, NIH R01 EB00194, NRSA T32GM07616, City of Hope Lymphoma SPORE Grant (P50 CA107399), the Beckman Institute, the Caltech/City of Hope Biomedical Initiative, and R37NS34467, R37AG23084, and R01AG039452.Author informationAuthor notesAuthors and AffiliationsDivision of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA, 91125, USASamuel R. Barnes, Thomas S. C. Ng, Naomi Santa-Maria & Russell E. JacobsDepartment of Medicine, University of California, Irvine Medical Center, Orange, CA,

2025-03-28

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