Timm Weitkamp, Alexander Rack
Feb 25, 2019

Publications related to ANKAphase

ANKAphase is a computer application program for phase retrieval in X-ray inline phase contrast. Here we keep a list of literature on work obtained with ANKAphase or making reference to it.
Using ANKAphase does not require any deep understanding of computer installations. The program is open-source and free of charge. It will run on powerful clusters but also on your office laptop. If you publish results obtained with it, it is important for us that you cite the reference paper below.

Reference paper

This article should be cited when referencing ANKAphase:
T. Weitkamp, D. Haas, D. Wegrzynek, and A. Rack, ANKAphase: software for single-distance phase-retrieval from inline x-ray phase contrast radiographs, J. Synchrot. Radiat. 18 (2011) 617-629, doi:10.1107/S0909049511002895 (PDF).
Please note that there is an Erratum to this paper: J. Synchrot. Radiat. 20 (2012) 205, doi:10.1107/S0909049512044871 (PDF).
Want to download ANKAphase? Go to http://rsb.info.nih.gov/ij/plugins/ankaphase/.

Work obtained with or making reference to ANKAphase

[1]   F. Brun, L. Brombal, V. Di Trapani, P. Delogu, S. Donato, D. Dreossi, L. Rigon, and R. Longo, Post-reconstruction 3D single-distance phase retrieval for multi-stage phase-contrast tomography with photon-counting detectors, J. Synchrot. Radiat. 26(2) (2019), in press, available online since 11 February 2019; ANKAphase only as referencea, doi:10.1107/S1600577519000237.

[2]   G. Esposito, G. Mettivier, K. Bliznakova, Z. Bliznakov, H. Bosmans, A. Bravin, I. Buliev, F. Di Lillo, D. Ivanov, M. Minutillo, A. Sarno, J. Vignero, and P. Russo, Investigation of the refractive index decrement of 3D printing materials for manufacturing breast phantoms for phase contrast imaging, Phys. Med. Biol. (2019), in press, available online since 12 February 2019, doi:10.1088/1361-6560/ab0670.

[3]   M. U. Ghani, B. Gregory, F. Omoumi, B. Zheng, A. Yan, X. Wu, and H. Liu, Impact of a single distance phase retrieval algorithm on spatial resolution in X-ray inline phase sensitive imaging, Biomed. Spectrosc. Imaging (2019), in press, available online since 22 February 2019; ANKAphase only as referencea, doi:10.3233/BSI-190186.

[4]   D. Khrapov, M. Surmeneva, A. Koptioug, S. Evsevleev, F. Léonard, G. Bruno, and R. Surmenev, X-ray computed tomography of multiple-layered scaffolds with controlled gradient cell lattice structures fabricated via additive manufacturing, J. Phys. Conf. Series 1145 (2019) 012044, doi:10.1088/1742-6596/1145/1/012044.

[5]   J. Ohser, J. Lacayo-Pineda, M. Putman, A. Rack, and D. Dobrovolskij, Estimation of filler macro-dispersion in rubber matrix by radiometric stereo microscopy, J. Microsc. (2019), in press, available online since 30 January 2019; ANKAphase only as referencea, doi:10.1111/jmi.12782.

[6]   Z. Wang, K. Ren, X. Shi, Y. Ren, K. Gao, and Z. Wu, Single-image phase retrieval for hard X-ray grating interferometry, J. Synchrot. Radiat. 26 (2019) 215-219, doi:10.1107/S1600577518016727.

[7]   J. Albers, M. A. Markus, F. Alves, and C. Dullin, X-ray based virtual histology allows guided sectioning of heavy ion stained murine lungs for histological analysis, Sci. Rep. 8 (2018) 7712, doi:10.1038/s41598-018-26086-0.

[8]   M. A. Beltran, D. M. Paganin, and D. Pelliccia, Phase-and-amplitude recovery from a single phase-contrast image using partially spatially coherent x-ray radiation, J. Opt. 20 (2018) 055605, ANKAphase only as referencea, arXiv:1711.04227, doi:10.1088/2040-8986/aabbdd.

[9]   K. Bugelnig, P. Barriobero-Vila, and G. Requena, Synchrotron computer tomography as a characterization method for engineering materials, Pract. Metallogr. 55 (2018) 556-568, ANKAphase only as referencea, doi:10.3139/147.110534.

[10]   H. Deyhle, C. Bikis, A. Khimchenko, G. Schweighauser, J. Hench, G. Schulz, B. Müller, and S. E. Hieber, Visualization and segmentation of cells in unstained paraffin-embedded cerebral tissue, Microsc. Microanal. 24(S2) (2018) 408-409, doi:10.1017/S1431927618014320.

[11]   S. Evsevleev, T. Mishurova, S. Cabeza, R. Koos, I. Sevostianov, G. Garcés, G. Requena, R. Fernández, and G. Bruno, The role of intermetallics in stress partitioning and damage evolution of AlSi12CuMgNi alloy, Mater. Sci. Eng. A 736 (2018) 453-464, doi:10.1016/j.msea.2018.08.070.

[12]   G. Garcés, K. Máthis, J. Medina, K. Horváth, D. Drozdenko, E. Oñorbe, P. Dobron, P. Pérez, M. Klaus, and P. Adeva, Combination of in-situ diffraction experiments and acoustic emission testing to understand the compression behavior of Mg-Y-Zn alloys containing LPSO phase under different loading conditions, Int. J. Plast. 106 (2018) 107-128, ANKAphase used though not citedb, doi:10.1016/j.ijplas.2018.03.004.

[13]   A. Giuliani, M. Mencarelli, C. Frati, M. Savi, C. Lagrasta, G. Pompilio, A. Rossini, and F. Quaini, Phase-contrast microtomography: are the tracers necessary for stem cell tracking in infarcted hearts?, Biomed. Phys. Eng. Express 4 (2018) 055008, doi:10.1088/2057-1976/aad570.

[14]   C. Jailin, M. Poncelet, and S. Roux, Separation of superimposed images with subpixel shift, J. Synchrot. Radiat. 25 (2018) 272-281, ANKAphase only as referencea, doi:10.1107/S1600577517015892.

[15]   A. Lavrov, E. A. Chavez Panduro, K. Gawel, and M. Torsæter, Electrophoresis-induced structural changes at cement-steel interface, AIMS Mater. Sci. 5 (2018) 414-421, doi:10.3934/matersci.2018.3.414.

[16]   A. Le Cabec, N. K. Tang, V. Ruano Rubio, and S. Hillson, Nondestructive adult age at death estimation: Visualizing cementum annulations in a known age historical human assemblage using synchrotron X-ray microtomography, Am. J. Phys. Anthropol. 168 (2018) 25-44, ANKAphase only as referencea, doi:10.1002/ajpa.23702.

[17]   E. Longo, A. Bravin, F. Brun, I. Bukreeva, A. Cedola, M. Fratini, X. Le Guevel, L. Massimi, L. Sancey, O. Tillement, P. Zeitoun, and O. de La Rochefoucauld, 3D map of theranostic nanoparticles distribution in mice brain and liver by means of X-ray phase contrast tomography, J. Instrum. 13 (2018) C01049, ANKAphase only as referencea, doi:10.1088/1748-0221/13/01/C01049.

[18]   E. Longo, A. Bravin, F. Brun, I. Bukreeva, A. Cedola, O. de La Rochefoucauld, M. Fratini, X. Le Guevel, L. Massimi, L. Sancey, O. Tillement, and P. Zeitoun, 3D imaging of theranostic nanoparticles in mice organs by means of x-ray phase contrast tomography, Proc. SPIE 10573 (2018) 105734I, ANKAphase only as referencea, doi:10.1117/12.2293090.

[19]   L. Massimi, F. Brun, M. Fratini, I. Bukreeva, and A. Cedola, An improved ring removal procedure for in-line x-ray phase contrast tomography, Phys. Med. Biol. 63 (2018) 045007, ANKAphase only as referencea, doi:10.1088/1361-6560/aaa706.

[20]   R. M. Natoli, H. Yu, M. C.-M. Meislin, P. Abbasnia, P. Roper, A. Vuchkovska, X. Xiao, S. R. Stock, and J. J. Callaci, Alcohol exposure decreases osteopontin expression during fracture healing and osteopontin-mediated mesenchymal stem cell migration in vitro, J. Orthop. Surg. Res. 13 (2018) 101, ANKAphase only as referencea, doi:10.1186/s13018-018-0800-7.

[21]   M. Parisatto, A. Turina, G. Cruciani, L. Mancini, L. Peruzzo, and B. Cesare, 3D distribution of primary melt inclusions in garnets by X-ray microtomography, Am. Mineral. 103 (2018) 911-926, ANKAphase only as referencea, doi:10.2138/am-2018-6216CCBYNCND.

[22]   C.-P. Richter, H. Young, S. V. Richter, V. Smith-Bronstein, S. R. Stock, X. Xiao, C. Soriano, and D. S. Whitlon, Fluvastatin protects cochleae from damage by high-level noise, Sci. Rep. 8 (2018) 3033, doi:10.1038/s41598-018-21336-7.

[23]   P. Russo, Phase contrast radiography, Med. Phys. Int. 6(1) (2018) 169-175, ANKAphase only as referencea, full text online (PDF) from mpijournal.org.

[24]   G. Schulz, E. Cörek, S. Siegrist, P. Thalmann, H. Deyhle, A. Rack, J. Huwyler, and B. Müller, Propagation-based x-ray phase contrast microtomography of zebrafish embryos to understand drug delivery, Microsc. Microanal. 24(S2) (2018) 406-407, doi:10.1017/S1431927618014319.

[25]   K. R. B. Tekseth, Quantitative Polychromatic X-Ray Computed Tomography - Experiments and Simulations, Master's thesis, Department of Physics, Norwegian University of Science and Technology (NTNU), Trondheim, Norway, 2018, ANKAphase only as referencea, full text available online (PDF) from bibsys.no, handle:11250/2557940.

[26]   L. Vojtová, T. Zikmund, V. Pavlináková, J. Salplachta, D. Kalasová, E. Prosecká, J. Brtníková, J. Zídek, D. Pavlinák, and J. Kaiser, The 3D imaging of mesenchymal stem cells on porous scaffolds using high-contrasted x-ray computed nanotomography, J. Microsc. 273 (2019), doi:10.1111/jmi.12771.

[27]   L. E. Beckingham, C. I. Steefel, A. M. Swift, M. Voltolini, L. Yang, L. Anovitz, J. M. Sheets, D. R. Cole, T. J. Kneafsey, E. H. Mitnick, S. Zhang, G. Landrot, J. Ajo-Franklin, D. DePaolo, S. Mito, and Z. Xue, Evaluation of accessible mineral surface areas for improved prediction of mineral reaction rates in porous media, Geochim. Cosmochim. Acta 215 (2017) 31-49, doi:10.1016/j.gca.2017.02.006.

[28]   A. Bergamaschi, Développements méthodologiques et logiciels pour l'imagerie X multimodale par balayage sur la ligne de lumière Nanoscopium. Traitement du signal et de l'image, PhD thesis, Université Paris-Saclay, Orsay, France, 2017, in French, ANKAphase only as referencea, full text available online (PDF) from archives-ouvertes.fr, HAL ID: tel-01534173, NNT: 2017SACLS054.

[29]   C. Blankenburg, A. Rack, C. Daul, and J. Ohser, Torsion estimation of particle paths through porous media observed by in-situ time-resolved microtomography, J. Microsc. 266 (2017) 141-152, doi:10.1111/jmi.12524.

[30]   C. Blankenburg, Estimation of Curvature and Torsion of Discrete Mammalian Cell Paths through Porous Media, PhD thesis, Université de Lorraine, Nancy, France, 2017, full text available online (PDF, 31 MByte) from archives-ouvertes.fr, HAL ID: tel-01519881.

[31]   F. Brun, L. Massimi, M. Fratini, D. Dreossi, F. Billé, A. Accardo, R. Pugliese, and A. Cedola, SYRMEP Tomo Project: a graphical user interface for customizing CT reconstruction workflows, Adv. Struct. Chem. Imaging 3 (2017) 4, ANKAphase only as referencea, doi:10.1186/s40679-016-0036-8.

[32]   I. Bukreeva, G. Campi, M. Fratini, R. Spanò, D. Bucci, G. Battaglia, F. Giove, A. Bravin, A. Uccelli, C. Venturi, M. Mastrogiacomo, and A. Cedola, Quantitative 3D investigation of neuronal network in mouse spinal cord model, Sci. Rep. 7 (2017) 41054, doi:10.1038/srep41054.

[33]   S. Cabeza, T. Mishurova, G. Garcés, I. Sevostianov, G. Requena, and G. Bruno, Stress-induced damage evolution in cast AlSi12CuMgNi alloy with one- and two-ceramic reinforcements, J. Mater. Sci. 52 (2017) 10198-10216, doi:10.1007/s10853-017-1182-7.

[34]   A. Cecilia, A. Baecker, E. Hamann, A. Rack, T. van de Kamp, F. J. Gruhl, R. Hofmann, J. Moosmann, S. Hahn, J. Kashef, S. Bauer, T. Farago, L. Helfen, and T. Baumbach, Optimizing structural and mechanical properties of cryogel scaffolds for use in prostate cancer cell culturing, Mater. Sci. Eng. C 71 (2017) 465-472, doi:10.1016/j.msec.2016.10.038.

[35]   A. Cedola, A. Bravin, I. Bukreeva, M. Fratini, A. Pacureanu, A. Mittone, L. Massimi, P. Cloetens, P. Coan, G. Campi, R. Spanò, F. Brun, V. Grigoryev, V. Petrosino, C. Venturi, M. Mastrogiacomo, N. Kerlero de Rosbo, and A. Uccelli, X-ray phase contrast tomography reveals early vascular alterations and neuronal loss in a multiple sclerosis model, Sci. Rep. 7 (2017) 5890, doi:10.1038/s41598-017-06251-7.

[36]   A. Fatima, S. Kataria, L. Baghel, K. N. Guruprasad, A. K. Agrawal, B. Singh, P. S. Sarkar, T. Shripathi, and Y. Kashyap, Synchrotron-based phase-sensitive imaging of leaves grown from magneto-primed seeds of soybean, J. Synchrot. Radiat. 24 (2017) 232-239, doi:10.1107/S1600577516015745.

[37]   C. Garing, J. A. de Chalendar, M. Voltolini, J. B. Ajo-Franklin, and S. M. Benson, Pore-scale capillary pressure analysis using multi-scale X-ray micromotography, Adv. Water Resour. 104 (2017) 223-241, doi:10.1016/j.advwatres.2017.04.006.

[38]   M. Göbel, M. Godehardt, and K. Schladitz, Multi-scale structural analysis of gas diffusion layers, J. Power Sources 355 (2017) 8-17, doi:10.1016/j.jpowsour.2017.03.086.

[39]   H. Greven, T. van de Kamp, T. dos Santos Rolo, T. Baumbach, and G. Clemen, Vomeropterygopalatina in larval Ichthyosaura alpestris apuanus (Amphibia: Urodela) and comments on the formation of the definite vomer in the Salamandridae, Vertebr. Zool. 67 (2017) 179-196, full text available online (PDF) from senckenberg.de.

[40]   E. Guo, G. Zeng, D. Kazantsev, P. Rockett, J. Bent, M. Kirkland, G. Van Dalen, D. S. Eastwood, D. StJohn, and P. D. Lee, Synchrotron X-ray tomographic quantification of microstructural evolution in ice cream - a multi-phase soft solid, RSC Adv. 7 (2017) 15561-15573, ANKAphase only as referencea, doi:10.1039/C7RA00642J.

[41]   C. Jailin, J. Buffière, F. Hild, M. Poncelet, and S. Roux, On the use of flat-fields for tomographic reconstruction, J. Synchrot. Radiat. 24 (2017) 220-231, ANKAphase only as referencea, doi:10.1107/S1600577516015812.

[42]   J. Jian, W. Zhang, H. Yang, X. Zhao, R. Xuan, D. Li, and C. Hu, Phase-contrast CT: Qualitative and quantitative evaluation of capillarized sinusoids and trabecular structure in human hepatocellular carcinoma tissues, Acad. Radiol. 24 (2017) 67-75, URL: http://www.sciencedirect.com/science/article/pii/S1076633216302434, doi:10.1016/j.acra.2016.08.028.

[43]   A. Khimchenko, C. Bikis, G. Schulz, M.-C. Zdora, I. Zanette, J. Vila-Comamala, G. Schweighauser, J. Hench, S. E. Hieber, H. Deyhle, P. Thalmann, and B. Müller, Hard X-ray submicrometer tomography of human brain tissue at Diamond Light Source, J. Phys. Conf. Series 849 (2017) 012030, doi:10.1088/1742-6596/849/1/012030.

[44]   J. C. Kieffer, S. Fourmaux, E. Hallin, P. Arnison, N. Brereton, F. Pitre, M. Dixon, and N. Tran, Application of laser-wakefield-based x-ray source to global food security issues, Proc. SPIE 10239 (2017) 1023906, doi:10.1117/12.2263951.

[45]   A. Lavrov, E. A. Chavez Panduro, and M. Torsæter, Synchrotron study of cement hydration: Towards computed tomography analysis of interfacial transition zone, Energy Procedia 114 (2017) 5109-5117, doi:10.1016/j.egypro.2017.03.1666.

[46]   H. Liu, T. Xiao, H. Xie, Y. Fu, X. Zhang, and X. Fan, Nondestructive material characterization of meteorites with synchrotron-based high energy x-ray phase micro-computed tomography, 50 (2017) 055301, ANKAphase only as referencea, doi:10.1088/1361-6463/aa4f31.

[47]   F. Marone, A. Studer, H. Billich, L. Sala, and M. Stampanoni, Towards on-the-fly data post-processing for real-time tomographic imaging at TOMCAT, Adv. Struct. Chem. Imaging 3 (2017) 1, ANKAphase only as referencea, doi:10.1186/s40679-016-0035-9.

[48]   E. X. Miqueles, N. L. Archilha, M. R. Dos Anjos, H. Westfahl Jr., and E. S. Helou, Phase-retrieval as a regularization problem, 2017, ANKAphase only as referencea, arXiv:1702.05092.

[49]   J. A. Núñez, A. Goring, E. Hesse, P. J. Thurner, P. Schneider, and C. Clarkin, Simultaneous visualisation of calcified bone microstructure and intracortical vasculature using synchrotron X-ray phase contrast-enhanced tomography, Sci. Rep. 7 (2017) 13289, doi:10.1038/s41598-017-13632-5.

[50]   P. Pietsch and V. Wood, X-ray tomography for lithium ion battery research: A practical guide, Ann. Rev. Mater. Res. 47 (2017) 451-479, ANKAphase only as referencea, doi:10.1146/annurev-matsci-070616-123957.

[51]   P. K. Poola and R. John, Label-free nanoscale characterization of red blood cell structure and dynamics using single-shot transport of intensity equation, J. Biomed. Opt. 22 (2017) 106001, ANKAphase only as referencea, doi:10.1117/1.JBO.22.10.106001.

[52]   M. Pouryazdan, B. J. P. Kaus, A. Rack, A. Ershov, and H. Hahn, Mixing instabilities during shearing of metals, Nat. Commun. 8 (2017) 1611, doi:10.1038/s41467-017-01879-5.

[53]   M. E. Rutherford, D. J. Chapman, J. G. Derrick, J. R. W. Patten, P. A. Bland, A. Rack, G. S. Collins, and D. E. Eakins, Probing the early stages of shock-induced chondritic meteorite formation at the mesoscale, Sci. Rep. 7 (2017) 45206, ANKAphase only as referencea, see Supplement (PDF), doi:10.1038/srep45206.

[54]   P. Staron, A. Schreyer, H. Clements, and S. Mayer, editors, Neutrons and Synchrotron Radiation in Engineering Materials Science: From Fundamentals to Applications, John Wiley & Sons, second edition, 2017, URL: http://wiley.com/WileyCDA/WileyTitle/productCd-3527335927.html.

[55]   P. Thalmann, C. Bikis, G. Schulz, P. Paleo, A. Mirone, A. Rack, S. Siegrist, E. Cörek, J. Huwyler, and B. Müller, Removing ring artefacts from synchrotron radiation-based hard X-ray tomography data, Proc. SPIE 10391 (2017) 1039114, doi:10.1117/12.2274236.

[56]   M. Voltolini, N. Ta s, S. Wang, E. L. Brodie, and J. B. Ajo-Franklin, Quantitative characterization of soil micro-aggregates: New opportunities from sub-micron resolution synchrotron X-ray microtomography, Geoderma 305 (2017) 382-393, doi:10.1016/j.geoderma.2017.06.005.

[57]   M. Voltolini, T.-H. Kwon, and J. Ajo-Franklin, Visualization and prediction of supercritical CO2 distribution in sandstones during drainage: An in situ synchrotron X-ray micro-computed tomography study, Int. J. Greenh. Gas Control 66 (2017) 230-245, doi:10.1016/j.ijggc.2017.10.002.

[58]   B. Wang, Y. Jiang, P. Hutchins, T. Badawy, H. Xu, X. Zhang, A. Rack, and P. Tafforeau, Numerical analysis of deposit effect on nozzle flow and spray characteristics of GDI injectors, Appl. Energy 204 (2017) 1215-1224, ANKAphase only as referencea, doi:10.1016/j.apenergy.2017.03.094.

[59]   T. Weitkamp, M. Scheel, J.-L. Giorgetta, V. Joyet, V. Le Roux, G. Cauchon, T. Moreno, F. Polack, A. Thompson, and J.-P. Samama, The tomography beamline ANATOMIX at Synchrotron SOLEIL, J. Phys. Conf. Series 849 (2017) 012037, ANKAphase only as referencea, doi:10.1088/1742-6596/849/1/012037.

[60]   F. Yang, Multi-contrast X-ray imaging of water transport in cement-based materials, PhD thesis, ETH Zürich, Zürich, Switzerland, 2017, ANKAphase only as referencea, full text available online (PDF) from ethz.ch, doi:10.3929/ethz-b-000000268.

[61]   L. Zuo, J. B. Ajo-Franklin, M. Voltolini, J. T. Geller, and S. M. Benson, Pore-scale multiphase flow modeling and imaging of CO2 exsolution in sandstone, J. Pet. Sci. Eng. 155 (2017) 63-77, doi:10.1016/j.petrol.2016.10.011.

[62]   F. Arzilli, M. Polacci, P. Landi, D. Giordano, D. R. Baker, and L. Mancini, A novel protocol for resolving feldspar crystals in synchrotron X-ray microtomographic images of crystallized natural magmas and synthetic analogs, Am. Mineral. 101 (2016) 2301-2311, ANKAphase only as referencea, doi:10.2138/am-2016-5788.

[63]   A. Balles, S. Zabler, T. Ebensperger, C. Fella, and R. Hanke, Propagator based formalism for optimizing in-line phase contrast imaging in laboratory X-ray setups, Rev. Sci. Instrum. 87 (2016) 093707, ANKAphase only as referencea, doi:10.1063/1.4962713.

[64]   A. Bergamaschi, K. Medjoubi, C. Messaoudi, S. Marco, and A. Somogyi, MMX-I: data-processing software for multimodal X-ray imaging and tomography, J. Synchrot. Radiat. 23 (2016) 783-794, ANKAphase only as referencea, doi:10.1107/S1600577516003052.

[65]   I. Bukreeva, A. Mittone, A. Bravin, G. Festa, M. Alessandrelli, P. Coan, V. Formoso, R. G. Agostino, M. Giocondo, F. Ciuchi, M. Fratini, L. Massimi, A. Lamarra, C. Andreani, R. Bartolino, G. Gigli, G. Ranocchia, and A. Cedola, Virtual unrolling and deciphering of Herculaneum papyri by X-ray phase-contrast tomography, Sci. Rep. 6 (2016) 27227, arXiv:1602.08071, doi:10.1038/srep27227.

[66]   S. Cabeza, T. Mishurova, G. Bruno, G. Garcés, and G. Requena, The role of reinforcement orientation on the damage evolution of AlSi12CuMgNi + 15% Al2O3 under compression, Scripta Mater. 122 (2016) 115-118, doi:10.1016/j.scriptamat.2016.05.023.

[67]   S. Cabeza, T. Mishurova, and G. Bruno, Characterization of multiphase metal matrix composites by means of CT and neutron diffraction, in 19th World Conference on Non-Destructive Testing (WCNDT 2016): Proceedings, 2016, conference venue and date: 13-17 June 2016, Munich, Germany, full text available online (PDF) from ndt.net.

[68]   R. Castriconi, G. Mettivier, and P. Russo, Image quality and radiation dose in propagation based phase contrast mammography with a microfocus x-ray tube: A phantom study, in Breast Imaging: 13th International Workshop, IWDM 2016, Malmö, Sweden, June 19-22, 2016, Proceedings, edited by A. Tingberg, K. Lång, and P. Timberg, volume 9699 of Lecture Notes in Computer Science, pages 618-624, Cham ZG, Switzerland, 2016, Springer International Publishing, doi:10.1007/978-3-319-41546-8_77.

[69]   N. Chicherova, S. E. Hieber, G. Schulz, A. Khimchenko, C. Bikis, P. C. Cattin, and B. Müller, Automatic histology registration in application to x-ray modalities, Proc. SPIE 9967 (2016) 996708, doi:10.1117/12.2237322.

[70]   J. Dittmann, A. Eggert, M. Lambertus, J. Dombrowski, A. Rack, and S. Zabler, Finding robust descriptive features for the characterization of the coarsening dynamics of three dimensional whey protein foams, J. Colloid Interface Sci. 467 (2016) 148-157, doi:10.1016/j.jcis.2015.12.055.

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[191]   S. E. Heizenreder, Analyse und Modellierung biologischer Mikrostrukturen mittels 3D-Mikrotomographie, Diplomarbeit (Master's thesis), Technische Universität Kaiserslautern, 2011.

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[197]   T. van de Kamp, P. Vagovic, T. Baumbach, and A. Riedel, A biological screw in a beetle's leg, Science 333 (2011) 52, and supporting online material, ANKAphase used though not citedb, doi:10.1126/science.1204245.

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Remarks

aPaper cites the ANKAphase article reference paper (or references ANKAphase otherwise) although it does not report results obtained with ANKAphase.
bPaper reports results obtained with ANKAphase but does not cite the reference paper.



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