default search action
Shogo Muramatsu
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2023
- [c68]E. Kobayashi, Hiroyasu Yasuda, Kiyoshi Hayasaka, Yu Otake, Shunsuke Ono, Shogo Muramatsu:
Multi-Resolution Convolutional Dictionary Learning for Riverbed Dynamics Modeling. ICASSP 2023: 1-5 - [c67]Jikai Li, Shogo Muramatsu:
Inter-Scale Sure-Let Denoise with Structured Deep Image Prior: Interpretable Self-Supervised Learning. ICASSP 2023: 1-5 - [c66]Hotaka Kitamura, Hiroyasu Yasuda, Yuichi Tanaka, Shogo Muramatsu:
Realization of Digraph Filters Via Augmented GFT. ICIP 2023: 2885-2889 - [c65]Jikai Li, Shogo Muramatsu:
Inter-Scale Sure-Let Image Restoration with Deep Unrolled Image Prior. ICIP 2023: 3095-3099 - [c64]Yasas Godage, Shogo Muramatsu:
Tangent Space Sampling of Video Sequence with Locally Structured Unitary Network. VCIP 2023: 1-5 - 2022
- [j31]Ruiki Kobayashi, Genki Fujii, Yuta Yoshida, Takeru Ota, Fumiaki Nin, Hiroshi Hibino, Samuel Choi, Shunsuke Ono, Shogo Muramatsu:
Sparsity-Aware OCT Volumetric Data Restoration Using Optical Synthesis Model. IEEE Trans. Computational Imaging 8: 505-520 (2022) - [c63]Yuki Takahashi, Shogo Muramatsu, Hiroyasu Yasuda, Kiyoshi Hayasaka, Yu Otake:
Flow-Path Fitting from Images with Fourier Basis for River Health Assessment. ICIP 2022: 3687-3691 - 2021
- [c62]Izbaila Imtiaz, Imran Ahmed, Gwanggil Jeon, Shogo Muramatsu:
An Efficient Image Processing and Machine Learning based Technique for Skin Lesion Segmentation and Classification. APSIPA ASC 2021: 1499-1505 - [c61]Gai Yamamoto, Yuya Kodama, Shogo Muramatsu, Samuel Choi, Gwanggil Jeon:
Acceleration of PDS-Based High-Dimensional Signal Restoration. APSIPA ASC 2021: 1528-1535 - [c60]Ruiki Kobayashi, Shogo Muramatsu, Shunsuke Ono:
Proximal Gradient-Based Loop Unrolling with Interscale Thresholding. APSIPA ASC 2021: 1687-1692 - [c59]Yusuke Arai, Shogo Muramatsu, Hiroyasu Yasuda, Kiyoshi Hayasaka, Yu Otake:
Sparse-Coded Dynamic Mode Decomposition on Graph for Prediction of River Water Level Distribution. ICASSP 2021: 3225-3229 - 2020
- [c58]Kazuki Sakashita, Shogo Muramatsu:
Image Restoration by Group Sparsity with Union of Hierarchical DirLOTs. APSIPA 2020: 1182-1187 - [c57]Yuya Kodama, Shogo Muramatsu, Hiroyoshi Yamada:
Fixed-Point Arithmetic of ℓ2-Norm Approximation for 2-Tuple Arrays with Rotated ℓ2-Norm Evaluation. APSIPA 2020: 1216-1221 - [i1]Ruiki Kobayashi, Shogo Muramatsu:
Convolutional Nonlinear Dictionary with Cascaded Structure Filter Banks. CoRR abs/2009.00831 (2020)
2010 – 2019
- 2019
- [c56]Weiwei Shan, Shogo Muramatsu, Akira Oshima, Hiroyoshi Yamada:
Successive Stripe Artifact Removal Based on Robust PCA for Millimeter Wave Automotive Radar Image. APSIPA 2019: 1391-1394 - [c55]Yu Kaneko, Shogo Muramatsu, Hiroyasu Yasuda, Kiyoshi Hayasaka, Yu Otake, Shunsuke Ono, Masahiro Yukawa:
Convolutional-sparse-coded Dynamic Mode Decomposition and Its Application to River State Estimation. ICASSP 2019: 1872-1876 - [c54]Genki Fujii, Yuta Yoshida, Shogo Muramatsu, Shunsuke Ono, Samuel Choi, Takeru Ota, Fumiaki Nin, Hiroshi Hibino:
OCT Volumetric Data Restoration with Latent Distribution of Refractive Index. ICIP 2019: 764-768 - 2018
- [c53]Satoshi Nagayama, Shogo Muramatsu, Hiroyoshi Yamada:
Single-image Super-resolution using Complex Nonseparable Oversampled Lapped Transforms. APSIPA 2018: 1309-1312 - [c52]Weihang Liao, Gene Cheung, Shogo Muramatsu, Hiroyasu Yasuda, Kiyoshi Hayasaka:
Graph Learning & Fast Transform Coding of 3D River Data. APSIPA 2018: 1313-1317 - [c51]Shogo Muramatsu, Samuel Chai, Shunsuke Ono, Takeru Ota, Fumiaki Nin, Hiroshi Hibino:
Oct Volumetric Data Restoration via Primal-Dual Plug-and-Play Method. ICASSP 2018: 801-805 - 2017
- [j30]Shogo Muramatsu, Kosuke Furuya, Naotaka Yuki:
Multidimensional Nonseparable Oversampled Lapped Transforms: Theory and Design. IEEE Trans. Signal Process. 65(5): 1251-1264 (2017) - [c50]Satoshi Nagayama, Shogo Muramatsu, Hiroyoshi Yamada, Yuuichi Sugiyama:
Millimeter wave radar image denoising with complex nonseparable oversampled lapped transform. APSIPA 2017: 1824-1829 - 2016
- [c49]Kota Horiuchi, Shogo Muramatsu:
Fast convolution technique for non-separable oversampled lapped transforms. APSIPA 2016: 1-6 - [c48]Zhiyu Chen, Shogo Muramatsu:
Multi-focus pixel-based image fusion in dual domain. ICASSP 2016: 1736-1740 - [c47]Zhiyu Chen, Shogo Muramatsu, Yoshito Abe:
Fast image super-resolution via multiple directional transforms. ICIP 2016: 1434-1438 - [c46]Shogo Muramatsu, Masaki Ishii, Zhiyu Chen:
Efficient parameter optimization for example-based design of nonseparable oversampled lapped transform. ICIP 2016: 3618-3622 - 2015
- [j29]Zhiyu Chen, Shogo Muramatsu:
SURE-LET Poisson Denoising with Multiple Directional LOTs. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 98-A(8): 1820-1828 (2015) - [j28]Zhiyu Chen, Shogo Muramatsu:
Multi-Focus Image Fusion Based on Multiple Directional LOTs. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 98-A(11): 2360-2365 (2015) - [c45]Shogo Muramatsu, Samuel Choi, Takumi Kawamura:
3-D OCT data denoising with nonseparable oversampled lapped transform. APSIPA 2015: 901-906 - 2014
- [c44]Kenta Seino, Kosuke Furuya, Shogo Muramatsu:
Transposition-based architecture of 2-D Non-separable Oversampled Lapped Transforms. APSIPA 2014: 1-6 - [c43]Zhiyu Chen, Shogo Muramatsu:
Poisson denoising with multiple directional lots. ICASSP 2014: 1225-1229 - [c42]Shogo Muramatsu:
Structured dictionary learning with 2-D non-separable oversampled lapped transform. ICASSP 2014: 2624-2628 - 2013
- [j27]Hidenori Watanabe, Shogo Muramatsu:
Look-Up-Table-Based Exponential Computation and Application to an EM Algorithm for GMM. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 96-A(5): 935-939 (2013) - [j26]Natsuki Aizawa, Shogo Muramatsu, Masahiro Yukawa:
Image Restoration with Multiple DirLOTs. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 96-A(10): 1954-1961 (2013) - [c41]Kosuke Furuya, Shintaro Hara, Shogo Muramatsu:
Boundary operation of 2-D non-separable oversampled lapped transforms. APSIPA 2013: 1-8 - [c40]Shogo Muramatsu, Natsuki Aizawa:
Lattice structures for 2-D non-separable oversampled lapped transforms. ICASSP 2013: 5632-5636 - [c39]Hisakazu Kikuchi, S. Kataoka, Shogo Muramatsu, Heikki Huttunen:
Color-tone similarity of digital images. ICIP 2013: 393-397 - [c38]Shogo Muramatsu, Natsuki Aizawa:
Image restoration with 2-D non-separable oversampled lapped transforms. ICIP 2013: 1051-1055 - 2012
- [j25]Junghyeun Hwang, Hisakazu Kikuchi, Shogo Muramatsu, Kazuma Shinoda, Jaeho Shin:
Reversible Implementations of Irreversible Component Transforms and Their Comparisons in Image Compression. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 95-A(4): 824-828 (2012) - [j24]Hisakazu Kikuchi, Ryosuke Abe, Shogo Muramatsu:
Simple Bitplane Coding and Its Application to Multi-Functional Image Compression. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 95-A(5): 938-951 (2012) - [j23]Shogo Muramatsu, Tomoya Kobayashi, Minoru Hiki, Hisakazu Kikuchi:
Boundary Operation of 2-D Nonseparable Linear-Phase Paraunitary Filter Banks. IEEE Trans. Image Process. 21(4): 2314-2318 (2012) - [j22]Shogo Muramatsu, Dandan Han, Tomoya Kobayashi, Hisakazu Kikuchi:
Directional Lapped Orthogonal Transform: Theory and Design. IEEE Trans. Image Process. 21(5): 2434-2448 (2012) - [c37]Hisakazu Kikuchi, Heikki Huttunen, Junghyeun Hwang, Masahiro Yukawa, Shogo Muramatsu, Jaeho Shin:
Color-tone similarity on digital images. APSIPA 2012: 1-4 - [c36]Shogo Muramatsu, Natsuki Aizawa, Masahiro Yukawa:
Image restoration with union of directional orthonormal DWTs. APSIPA 2012: 1-4 - [c35]Shogo Muramatsu, Dandan Han:
Image denoising with union of directional orthonormal DWTS. ICASSP 2012: 1089-1092 - [c34]Shogo Muramatsu:
SURE-LET image denoising with multiple directional LOTs. PCS 2012: 229-232 - 2011
- [j21]Hidenori Watanabe, Shogo Muramatsu:
Fast Algorithm and Efficient Implementation of GMM-Based Pattern Classifiers. J. Signal Process. Syst. 63(1): 107-116 (2011) - 2010
- [j20]Junghyeun Hwang, Hisakazu Kikuchi, Shogo Muramatsu, Jaeho Shin:
An Optimum Design of Error Diffusion Filters Using the Blue Noise in All Graylevels. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 93-A(8): 1465-1475 (2010) - [j19]Mustafa M. Sami, Masahisa Saito, Shogo Muramatsu, Hisakazu Kikuchi, Takashi Saku:
A Computer-Aided Distinction Method of Borderline Grades of Oral Cancer. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 93-A(8): 1544-1552 (2010) - [c33]Tomoya Kobayashi, Shogo Muramatsu, Hisakazu Kikuchi:
2-D non-separable GenLOT with trend vanishing moments. ICIP 2010: 385-388 - [c32]Hidenori Watanabe, Shogo Muramatsu, Hisakazu Kikuchi:
Interval calculation of EM algorithm for GMM parameter estimation. ISCAS 2010: 2686-2689 - [c31]Shogo Muramatsu, Dandan Han, Tomoya Kobayashi, Hisakazu Kikuchi:
Theoretical analysis of trend vanishing moments for directional orthogonal transforms. PCS 2010: 130-133 - [c30]Hisakazu Kikuchi, Junghyeun Hwang, Shogo Muramatsu, Jaeho Shin:
Reversible component transforms by the LU factorization. PCS 2010: 238-241
2000 – 2009
- 2009
- [j18]Atsuyuki Adachi, Shogo Muramatsu, Hisakazu Kikuchi:
Constraints of Second-Order Vanishing Moments on Lattice Structures for Non-separable Orthogonal Symmetric Wavelets. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 92-A(3): 788-797 (2009) - [c29]Shogo Muramatsu, Hidenori Watanabe:
Fast algorithm for GMM-based pattern classifier. ICASSP 2009: 633-636 - [c28]Shogo Muramatsu, Minoru Hiki:
Block-wise implementation of directional GenLOT. ICIP 2009: 3977-3980 - [c27]Hisakazu Kikuchi, Kunio Funahashi, Shogo Muramatsu:
Simple bit-plane coding for lossless image compression and extended functionalities. PCS 2009: 1-4 - 2008
- [j17]Hisakazu Kikuchi, Akira Iijima, Shogo Muramatsu, Shigenobu Sasaki:
Luma-based directional copy interpolation for color bilevel AM halftoning for printing. IEICE Electron. Express 5(5): 170-175 (2008) - [j16]Yoshihisa Takahashi, Kentaro Hiraki, Hisakazu Kikuchi, Shogo Muramatsu:
Color Demosaicing Using Asymmetric Directional Interpolation and Hue Vector Smoothing. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 91-A(4): 978-986 (2008) - [j15]Sakol Udomsiri, Masahiro Iwahashi, Shogo Muramatsu:
Functionally Layered Video Coding for Water Level Monitoring. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 91-A(4): 1006-1014 (2008) - [j14]Kazuma Shinoda, Hisakazu Kikuchi, Shogo Muramatsu:
Lossless-by-Lossy Coding for Scalable Lossless Image Compression. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 91-A(11): 3356-3364 (2008) - 2007
- [j13]Minoru Hiki, Shogo Muramatsu, Takuma Ishida, Hisakazu Kikuchi:
Equivalent Parallel Structure of Deinterlacer Banks and Its Application to Optimal Bit-Rate Allocation. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 90-A(3): 642-650 (2007) - [c26]Masahiro Iwahashi, Sakol Udomsiri, Yuji Imai, Shogo Muramatsu:
Water Level Detection for Functionally Layered Video Coding. ICIP (2) 2007: 321-324 - 2006
- [j12]Jun Uchita, Shogo Muramatsu, Takuma Ishida, Hisakazu Kikuchi:
Parameter Embedding in Motion-JPEG2000 through ROI for Variable-Coefficient Invertible Deinterlacing. IEICE Trans. Inf. Syst. 89-D(11): 2794-2801 (2006) - [c25]Yoshihisa Takahashi, Hisakazu Kikuchi, Shogo Muramatsu, Naoki Mizutani:
Iterative asymmetric average interpolation for color demosaicing of single-sensor digital camera data. Digital Photography 2006: 606907 - [c24]Minoru Hiki, Takuma Ishida, Shogo Muramatsu, Hisakazu Kikuchi:
Suppression of PSNR Fluctuation in Motion-Compensated Temporal 1/3-Transform Through Non-Separable Sub-Sampling. ICIP 2006: 2153-2156 - [c23]Kazuma Shinoda, Hisakazu Kikuchi, Shogo Muramatsu:
A Lossless-by-Lossy Approach to Lossless Image Compression. ICIP 2006: 2265-2268 - 2005
- [j11]Yoshihisa Takahashi, Hisakazu Kikuchi, Shogo Muramatsu, Yoshito Abe, Naoki Mizutani:
A New Color Demosaicing Method Using Asymmetric Average Interpolation and Its Iteration. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 88-A(8): 2108-2116 (2005) - [j10]Takuma Ishida, Shogo Muramatsu, Hisakazu Kikuchi:
Motion-JPEG2000 codec compensated for interlaced scanning videos. IEEE Trans. Image Process. 14(12): 2179-2191 (2005) - [c22]Takuma Ishida, Shogo Muramatsu, Hisakazu Kikuchi:
Lossless implementation of Motion JPEG2000 integrated with invertible deinterlacing. ISCAS (6) 2005: 6328-6331 - 2004
- [c21]Takuma Ishida, Jun Uchita, Shogo Muramatsu, Hisakazu Kikuchi, Tetsuro Kuge:
Parameter transmission via ROI in JPEG2000 for variable-coefficient invertible deinterlacing. EUSIPCO 2004: 653-656 - [c20]Satoshi Hasebe, Makoto Nagumo, Shogo Muramatsu, Hisakazu Kikuchi:
Video key frame selection by clustering wavelet coefficients. EUSIPCO 2004: 2303-2306 - [c19]Shogo Muramatsu, Takuma Ishida, Hisakazu Kikuchi:
Perfect reconstruction deinterlacer banks for field scalable video compression. ICIP 2004: 2279-2282 - 2003
- [j9]Tatsuumi Soyama, Takuma Ishida, Shogo Muramatsu, Hisakazu Kikuchi, Tetsuro Kuge:
Lifting Architecture of Invertible Deinterlacing. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 86-A(4): 779-786 (2003) - [j8]Jie Zhou, Shigenobu Sasaki, Shogo Muramatsu, Hisakazu Kikuchi, Yoshikuni Onozato:
Spatial Correlation Functions for a Circular Antenna Array and Their Applications in Wireless Communication Systems. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 86-A(7): 1716-1723 (2003) - [j7]Takuma Ishida, Tatsuumi Soyama, Shogo Muramatsu, Hisakazu Kikuchi, Tetsuro Kuge:
A Lifting Implementation of Variable-Coefficient Invertible Deinterlacer with Embedded Motion Detector. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 86-A(8): 1942-1948 (2003) - [j6]Shogo Muramatsu, Takuma Ishida, Hisakazu Kikuchi:
Invertible deinterlacing with sampling-density preservation: theory and design. IEEE Trans. Signal Process. 51(9): 2343-2356 (2003) - [c18]Jie Zhou, Shigenobu Sasaki, Shogo Muramatsu, Hisakazu Kikuchi, Yoshikuni Onozato:
Spatial correlation for a circular antenna array and its applications in wireless communication. GLOBECOM 2003: 1108-1113 - [c17]Takuma Ishida, Shogo Muramatsu, Hisakazu Kikuchi, Tetsuro Kuge:
Invertible deinterlacing with variable coefficients and its lifting implementation. ICASSP (3) 2003: 105-108 - [c16]Takuma Ishida, Shogo Muramatsu, Jie Zhou, Shigenobu Sasaki, Hisakazu Kikuchi:
DWT gain compensation of motion-JPEG2000 for invertible deinterlacer. ICIP (2) 2003: 223-226 - [c15]Takuma Ishida, Shogo Muramatsu, Hisakazu Kikuchi, Tetsuro Kuge:
Invertible deinterlacing with variable coefficients and its lifting implementation. ICME 2003: 177-180 - 2002
- [j5]Jie Zhou, Hisakazu Kikuchi, Shigenobu Sasaki, Shogo Muramatsu, Yoshikuni Onozato:
Forward Link Performance of TDMA/W-CDMA Spectrum Overlaid System with Interference Cancellation for Future Wireless Communications. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 85-A(7): 1536-1545 (2002) - [j4]Ken-ichi Takizawa, Shigenobu Sasaki, Shogo Muramatsu, Jie Zhou, Hisakazu Kikuchi:
Performance Bounds in Convolutional Coded Parallel Combinatorial SS Systems. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 85-A(7): 1696-1701 (2002) - [j3]Ken-ichi Takizawa, Shigenobu Sasaki, Jie Zhou, Shogo Muramatsu, Hisakazu Kikuchi:
Online SNR Estimation for Parallel Combinatorial SS Systems in Nakagami Fading Channels. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 85-A(12): 2847-2858 (2002) - [c14]Hisakazu Kikuchi, Shogo Muramatsu, Takuma Ishida, Tetsuro Kuge:
Reversible conversion between interlaced and progressive scan formats and its efficient implementation. EUSIPCO 2002: 1-4 - [c13]Ken-ichi Takizawa, Shigenobu Sasaki, Jie Zhou, Shogo Muramatsu, Hisakazu Kikuchi:
Online SNR estimation for parallel combinatorial SS systems in Nakagami fading channels. GLOBECOM 2002: 1239-1243 - [c12]Shogo Muramatsu, Takuma Ishida, Hisakazu Kikuchi:
A design method of invertible de-interlacer with sampling density preservation. ICASSP 2002: 3277-3280 - [c11]Shigenobu Sasaki, Ken-ichi Takizawa, Shogo Muramatsu, Hisakazu Kikuchi:
Separate FEC coding for parallel combinatorial spread spectrum communication systems. PIMRC 2002: F11-F15 - [c10]Jie Zhou, Jinu Chen, Hisakazu Kikuchi, Shigenobu Sasaki, Shogo Muramatsu:
Convergence rate evaluation of a DS-CDMA cellular system with centralized power control by genetic algorithms. WCNC 2002: 177-182 - 2001
- [c9]Ken-ichi Takizawa, Shigenobu Sasaki, Jie Zhou, Shogo Muramatsu, Hisakazu Kikuchi:
Iterative demodulation and decoding for parallel combinatorial SS systems. GLOBECOM 2001: 811-815 - [c8]Jie Zhou, Yoshikuni Onozato, Shigenobu Sasaki, Shogo Muramatsu, Hisakazu Kikuchi:
Forward link power control strategy and its optimum issue on CDMA cellular network. ICON 2001: 498-503 - 2000
- [c7]Ayuko Takagi, Shogo Muramatsu, Hitoshi Kiya:
Motion Estimation With Power Scalability and its VHDL Model. ICIP 2000: 118-121
1990 – 1999
- 1999
- [j2]Shogo Muramatsu, Akihiko Yamada, Hitoshi Kiya:
A design method of multidimensional linear-phase paraunitary filter banks with a lattice structure. IEEE Trans. Signal Process. 47(3): 690-700 (1999) - 1998
- [c6]Yasuhiro Harada, Shogo Muramatsu, Hitoshi Kiya:
Multidimensional multirate filter without checkerboard effects. EUSIPCO 1998: 1-4 - [c5]Shogo Muramatsu, Akihiko Yamada, Hitoshi Kiya:
A design method OF 2-D axial-symmetric paraunitary filter banks with a lattice structure. EUSIPCO 1998: 1-4 - 1997
- [j1]Shogo Muramatsu, Hitoshi Kiya:
Extended overlap-add and -save methods for multirate signal processing. IEEE Trans. Signal Process. 45(9): 2376-2380 (1997) - 1996
- [c4]K. Kajita, Hiroyuki Kobayashi, Shogo Muramatsu, Akihiko Yamada, Hitoshi Kiya:
A design method for oversampled paraunitary DFT filter banks using householder factorization. EUSIPCO 1996: 1-4 - [c3]Shogo Muramatsu, Hitoshi Kiya:
A new design method of linear-phase paraunitary filter banks with an odd number of channels. EUSIPCO 1996: 1-4 - 1995
- [c2]Shogo Muramatsu, Hitoshi Kiya:
Multidimensional Parallel Processing Methods for Rational Sampling Lattice Alteration. ISCAS 1995: 756-759 - 1994
- [c1]Shogo Muramatsu, Hitoshi Kiya:
An Extended Overlap-Add Method and -Save Method for Sampling Rate Conversion. ISCAS 1994: 313-316
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-04-24 22:51 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint