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Daniel Díaz-Pernil
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2010 – 2019
- 2019
- [j19]Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo, Hong Peng:
Membrane computing and image processing: a short survey. J. Membr. Comput. 1(1): 58-73 (2019) - 2018
- [j18]Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo:
Semantics of deductive databases with spiking neural P systems. Neurocomputing 272: 365-373 (2018) - [j17]Daniel Díaz-Pernil, Hepzibah A. Christinal, Miguel Angel Gutiérrez-Naranjo:
Solving the 3-COL problem by using tissue P systems without environment and proteins on cells. Inf. Sci. 430: 240-246 (2018) - [j16]Hepzibah A. Christinal, Daniel Díaz-Pernil, T. Mathu:
A uniform family of tissue P systems with protein on cells solving 3-coloring in linear time. Nat. Comput. 17(2): 311-319 (2018) - 2017
- [j15]Daniel Díaz-Pernil, Ainhoa Berciano, Francisco Peña-Cantillana, Miguel Angel Gutiérrez-Naranjo:
Bio-inspired parallel computing of representative geometrical objects of holes of binary 2D-images. Int. J. Bio Inspired Comput. 9(2): 77-92 (2017) - 2016
- [j14]Raúl Reina-Molina, Daniel Díaz-Pernil, Pedro Real, Ainhoa Berciano:
Effective homology of k-D digital objects (partially) calculated in parallel. Pattern Recognit. Lett. 83: 59-66 (2016) - [j13]Daniel Díaz-Pernil, Irene Fondón, Francisco Peña-Cantillana, Miguel Angel Gutiérrez-Naranjo:
Fully automatized parallel segmentation of the optic disc in retinal fundus images. Pattern Recognit. Lett. 83: 99-107 (2016) - 2015
- [j12]Raúl Reina-Molina, Daniel Díaz-Pernil, Pedro Real, Ainhoa Berciano:
Membrane parallelism for discrete Morse theory applied to digital images. Appl. Algebra Eng. Commun. Comput. 26(1-2): 49-71 (2015) - [c15]T. Mathu, Hepzibah A. Christinal, Daniel Díaz-Pernil:
A Uniform Family of Tissue P Systems with Protein on Cells Solving 3-Coloring in Linear Time. UCNC 2015: 239-249 - 2014
- [j11]Daniel Díaz-Pernil, Francisco Peña-Cantillana, Artiom Alhazov, Rudolf Freund, Miguel Angel Gutiérrez-Naranjo:
Antimatter as a Frontier of Tractability in Membrane Computing. Fundam. Informaticae 134(1-2): 83-96 (2014) - 2013
- [j10]Daniel Díaz-Pernil, Francisco Peña-Cantillana, Miguel Angel Gutiérrez-Naranjo:
A parallel algorithm for skeletonizing images by using spiking neural P systems. Neurocomputing 115: 81-91 (2013) - [j9]Daniel Díaz-Pernil, Ainhoa Berciano, Francisco Peña-Cantillana, Miguel Angel Gutiérrez-Naranjo:
Segmenting images with gradient-based edge detection using Membrane Computing. Pattern Recognit. Lett. 34(8): 846-855 (2013) - [c14]Hepzibah A. Christinal, Ainhoa Berciano, Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo:
Searching Partially Bounded Regions with P Systems. SocProS (1) 2013: 45-54 - 2012
- [j8]Daniel Díaz-Pernil, Hepzibah A. Christinal, Miguel Angel Gutiérrez-Naranjo, Pedro Real:
Using Membrane Computing for Effective Homology. Appl. Algebra Eng. Commun. Comput. 23(5-6): 233-249 (2012) - [j7]Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo, Helena Molina-Abril, Pedro Real:
Designing a new software tool for Digital Imagery based on P systems. Nat. Comput. 11(3): 381-386 (2012) - [c13]Francisco Peña-Cantillana, Ainhoa Berciano, Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo:
Parallel Skeletonizing of Digital Images by Using Cellular Automata. CTIC 2012: 39-48 - [c12]Javier Carnero, Hepzibah A. Christinal, Daniel Díaz-Pernil, Raúl Reina-Molina, M. S. P. Subathra:
Improved Parallelization of an Image Segmentation Bio-Inspired Algorithm. SocProS 2012: 75-82 - 2011
- [j6]Linqiang Pan, Daniel Díaz-Pernil, Mario J. Pérez-Jiménez:
Computation of Ramsey Numbers by P Systems with Active Membranes. Int. J. Found. Comput. Sci. 22(1): 29-38 (2011) - [j5]Francisco Peña-Cantillana, Daniel Díaz-Pernil, Hepzibah A. Christinal, Miguel Angel Gutiérrez-Naranjo:
Implementation on CUDA of the Smoothing Problem with Tissue-Like P Systems. Int. J. Nat. Comput. Res. 2(3): 25-34 (2011) - [j4]Hepzibah A. Christinal, Daniel Díaz-Pernil, Pedro Real:
Region-based segmentation of 2D and 3D images with tissue-like P systems. Pattern Recognit. Lett. 32(16): 2206-2212 (2011) - [c11]Francisco Peña-Cantillana, Daniel Díaz-Pernil, Ainhoa Berciano, Miguel Angel Gutiérrez-Naranjo:
A Parallel Implementation of the Thresholding Problem by Using Tissue-Like P Systems. CAIP (2) 2011: 277-284 - [e2]Pedro Real, Daniel Díaz-Pernil, Helena Molina-Abril, Ainhoa Berciano, Walter G. Kropatsch:
Computer Analysis of Images and Patterns - 14th International Conference, CAIP 2011, Seville, Spain, August 29-31, 2011, Proceedings, Part I. Lecture Notes in Computer Science 6854, Springer 2011, ISBN 978-3-642-23671-6 [contents] - [e1]Pedro Real, Daniel Díaz-Pernil, Helena Molina-Abril, Ainhoa Berciano, Walter G. Kropatsch:
Computer Analysis of Images and Patterns - 14th International Conference, CAIP 2011, Seville, Spain, August 29-31, 2011, Proceedings, Part II. Lecture Notes in Computer Science 6855, Springer 2011, ISBN 978-3-642-23677-8 [contents] - 2010
- [j3]Hepzibah A. Christinal, Daniel Díaz-Pernil, Pedro Real:
P systems and computational algebraic topology. Math. Comput. Model. 52(11-12): 1982-1996 (2010) - [c10]Daniel Díaz-Pernil, Carlos M. Fernández-Márquez, Manuel García-Quismondo, Miguel Angel Gutiérrez-Naranjo, Miguel A. Martínez-del-Amor:
Solving sudoku with Membrane Computing. BIC-TA 2010: 610-615 - [c9]Daniel Díaz-Pernil, Helena Molina-Abril, Pedro Real, Miguel Angel Gutiérrez-Naranjo:
A bio-inspired software for segmenting digital images. BIC-TA 2010: 1377-1381
2000 – 2009
- 2009
- [j2]Daniel Díaz-Pernil, Mario J. Pérez-Jiménez, Álvaro Romero Jiménez:
Efficient simulation of tissue-like P systems by transition cell-like P systems. Nat. Comput. 8(4): 797-806 (2009) - [c8]Hepzibah A. Christinal, Daniel Díaz-Pernil, Pedro Real Jurado:
Segmentation in 2D and 3D Image Using Tissue-Like P System. CIARP 2009: 169-176 - [c7]Hepzibah A. Christinal, Daniel Díaz-Pernil, Pedro Real Jurado:
Using Membrane Computing for Obtaining Homology Groups of Binary 2D Digital Images. IWCIA 2009: 383-396 - [c6]Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo, Mario J. Pérez-Jiménez, Agustin Riscos-Núñez:
Solving the Independent Set Problem by Using Tissue-Like P Systems with Cell Division. IWINAC (1) 2009: 213-222 - [c5]Daniel Díaz-Pernil, Pilar Gallego-Ortiz, Miguel Angel Gutiérrez-Naranjo, Mario J. Pérez-Jiménez, Agustin Riscos-Núñez:
Descriptional Complexity of Tissue-Like P Systems with Cell Division. UC 2009: 168-178 - 2008
- [j1]Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo, Mario J. Pérez-Jiménez, Agustin Riscos-Núñez:
A uniform family of tissue P systems with cell division solving 3-COL in a linear time. Theor. Comput. Sci. 404(1-2): 76-87 (2008) - [c4]Daniel Díaz-Pernil, Ignacio Pérez-Hurtado, Mario J. Pérez-Jiménez, Agustin Riscos-Núñez:
A P-Lingua Programming Environment for Membrane Computing. Workshop on Membrane Computing 2008: 187-203 - 2007
- [c3]Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo, Mario J. Pérez-Jiménez, Agustin Riscos-Núñez:
Solving Subset Sum in Linear Time by Using Tissue P Systems with Cell Division. IWINAC (1) 2007: 170-179 - [c2]Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo, Mario J. Pérez-Jiménez, Agustin Riscos-Núñez:
A Logarithmic Bound for Solving Subset Sum with P Systems. Workshop on Membrane Computing 2007: 257-270 - 2006
- [c1]Daniel Díaz-Pernil, Miguel Angel Gutiérrez-Naranjo, Mario J. Pérez-Jiménez, Agustin Riscos-Núñez:
A Linear-time Tissue P System Based Solution for the 3-coloring Problem. MeCBIC@ICALP 2006: 81-93
Coauthor Index
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