default search action
Ming-Chang Yang
Person information
Other persons with a similar name
SPARQL queries
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j30]Tsun-Yu Yang, Xiangjun Peng, Wang Kang, Ming-Chang Yang:
Toward Write Optimization for Skyrmion Racetrack Memory by Skyrmion Repermutation. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 43(6): 1769-1780 (2024) - [c46]Tsun-Yu Yang, Cale England, Yi Li, Bingzhe Li, Ming-Chang Yang:
Grafu: Unleashing the Full Potential of Future Value Computation for Out-of-core Synchronous Graph Processing. ASPLOS (2) 2024: 467-481 - [c45]Tsun-Yu Yang, Yizou Chen, Yuhong Liang, Ming-Chang Yang:
Seraph: Towards Scalable and Efficient Fully-external Graph Computation via On-demand Processing. FAST 2024: 373-387 - [c44]Yi Li, Tsun-Yu Yang, Ming-Chang Yang, Zhaoyan Shen, Bingzhe Li:
Celeritas: Out-of-Core Based Unsupervised Graph Neural Network via Cross-Layer Computing 2024. HPCA 2024: 91-107 - [c43]Shih-Hung Tseng, Tseng-Yi Chen, Ming-Chang Yang:
Are Superpages Super-fast? Distilling Flash Blocks to Unify Flash Pages of a Superpage in an SSD. HPCA 2024: 630-642 - [c42]Bohao Peng, Zhuotao Tian, Shu Liu, Ming-Chang Yang, Jiaya Jia:
Scalable Language Model with Generalized Continual Learning. ICLR 2024 - [c41]Tsun-Yu Yang, Ming-Chang Yang, Yuan-Hao Chang:
LeapGraph: A Fully External Graph Processing System on High-Speed SSD. NVMSA 2024: 1-2 - [i6]Bohao Peng, Jian Wang, Yuechen Zhang, Wenbo Li, Ming-Chang Yang, Jiaya Jia:
ControlNeXt: Powerful and Efficient Control for Image and Video Generation. CoRR abs/2408.06070 (2024) - 2023
- [j29]Zhuotao Tian, Pengguang Chen, Xin Lai, Li Jiang, Shu Liu, Hengshuang Zhao, Bei Yu, Ming-Chang Yang, Jiaya Jia:
Adaptive Perspective Distillation for Semantic Segmentation. IEEE Trans. Pattern Anal. Mach. Intell. 45(2): 1372-1387 (2023) - [c40]Xiangjun Peng, Zheng Huang, Alex Cantrell, Bihua Shu, Ke Ke Xie, Yi Li, Yu Li, Li Jiang, Qiang Xu, Ming-Chang Yang:
EXPERT: EXPloiting DRAM ERror Types to Improve the Effective Forecasting Coverage in the Field. DSN-S 2023: 35-41 - [c39]Xiangjun Peng, Yaohua Wang, Ming-Chang Yang:
CHOPPER: A Compiler Infrastructure for Programmable Bit-serial SIMD Processing Using Memory in DRAM. HPCA 2023: 1275-1288 - [c38]Shih-Chun Chou, Yi-Shen Chen, Ping-Xiang Chen, Yuan-Hao Chang, Ming-Chang Yang, Tei-Wei Kuo, Yu-Fang Chen, Yu-Ming Chang:
FSD: File-related Secure Deletion to Prolong the Lifetime of Solid-State Drives. NVMSA 2023: 19-24 - [c37]Chao Wang, Junliang Hu, Tsun-Yu Yang, Yuhong Liang, Ming-Chang Yang:
SEPH: Scalable, Efficient, and Predictable Hashing on Persistent Memory. OSDI 2023: 479-495 - 2022
- [j28]Yuhong Liang, Ming-Chang Yang, Shuo-Han Chen:
MAGIC: Making IMR-Based HDD Perform Like CMR-Based HDD. IEEE Trans. Computers 71(3): 643-657 (2022) - [j27]Shuo-Han Chen, Yuhong Liang, Ming-Chang Yang:
KVSTL: An Application Support to LSM-Tree Based Key-Value Store via Shingled Translation Layer Data Management. IEEE Trans. Computers 71(7): 1598-1611 (2022) - [j26]Tseng-Yi Chen, Shao-Hung Chi, Ming-Chang Yang, Ting-Ying Chien:
Enabling the Duo-Phase Data Management to Realize Longevity Bit-Alterable Flash Memory. IEEE Trans. Computers 71(8): 1982-1997 (2022) - [j25]Che-Wei Chang, Chun-Feng Wu, Yuan-Hao Chang, Ming-Chang Yang, Chieh-Fu Chang:
Leveraging Write Heterogeneity of Phase Change Memory on Supporting Self-Balancing Binary Tree. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 41(6): 1757-1770 (2022) - [j24]Shuo-Han Chen, Chun-Feng Wu, Ming-Chang Yang, Yuan-Hao Chang:
A File-Oriented Fast Secure Deletion Strategy for Shingled Magnetic Recording Drives. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 41(8): 2463-2476 (2022) - [j23]Chun-Feng Wu, Martin Kuo, Ming-Chang Yang, Yuan-Hao Chang:
Performance Enhancement of SMR-Based Deduplication Systems. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 41(9): 2835-2848 (2022) - [c36]Xiangjun Peng, Ming-Chang Yang, Ho Ming Tsui, Chi Ngai Leung, Wang Kang:
SMART: on simultaneously marching racetracks to improve the performance of racetrack-based main memory. DAC 2022: 829-834 - [c35]Tsun-Yu Yang, Yuhong Liang, Ming-Chang Yang:
Practicably Boosting the Processing Performance of BFS-like Algorithms on Semi-External Graph System via I/O-Efficient Graph Ordering. FAST 2022: 381-396 - [i5]Chenhan Jin, Kaiwen Zhou, Bo Han, James Cheng, Ming-Chang Yang:
Efficient Private SCO for Heavy-Tailed Data via Clipping. CoRR abs/2206.13011 (2022) - [i4]Yifan Hou, Jie Zhang, James Cheng, Kaili Ma, Richard T. B. Ma, Hongzhi Chen, Ming-Chang Yang:
Measuring and Improving the Use of Graph Information in Graph Neural Networks. CoRR abs/2206.13170 (2022) - [i3]Yifan Hou, Hongzhi Chen, Changji Li, James Cheng, Ming-Chang Yang:
A Representation Learning Framework for Property Graphs. CoRR abs/2206.13176 (2022) - 2021
- [j22]Ming-Chang Yang, Chun-Feng Wu, Shuo-Han Chen, Yi-Ling Lin, Che-Wei Chang, Yuan-Hao Chang:
On Minimizing Internal Data Migrations of Flash Devices via Lifetime-Retention Harmonization. IEEE Trans. Computers 70(3): 428-439 (2021) - [j21]Shuo-Han Chen, Ming-Chang Yang, Yuan-Hao Chang:
Optimizing Lifetime Capacity and Read Performance of Bit-Alterable 3-D NAND Flash. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 40(2): 218-231 (2021) - [c34]Yuhong Liang, Ming-Chang Yang:
Move-On-Modify: An Efficient yet Crash-Consistent Update Strategy for Interlaced Magnetic Recording. DAC 2021: 97-102 - [c33]Yuhong Liang, Tsun-Yu Yang, Ming-Chang Yang:
KVIMR: Key-Value Store Aware Data Management Middleware for Interlaced Magnetic Recording Based Hard Disk Drive. USENIX ATC 2021: 657-671 - [i2]Pengguang Chen, Yixin Chen, Shu Liu, Ming-Chang Yang, Jiaya Jia:
Exploring and Improving Mobile Level Vision Transformers. CoRR abs/2108.13015 (2021) - 2020
- [j20]Chun-Feng Wu, Yuan-Hao Chang, Ming-Chang Yang, Tei-Wei Kuo:
Joint Management of CPU and NVDIMM for Breaking Down the Great Memory Wall. IEEE Trans. Computers 69(5): 722-733 (2020) - [j19]Ming-Chang Yang, Yuan-Hao Chang, Tei-Wei Kuo, Chun-Feng Wu:
Request Flow Coordination for Growing-Scale Solid-State Drives. IEEE Trans. Computers 69(6): 832-843 (2020) - [j18]Yun-Shan Hsieh, Po-Chun Huang, Ping-Xiang Chen, Yuan-Hao Chang, Wang Kang, Ming-Chang Yang, Wei-Kuan Shih:
Shift-Limited Sort: Optimizing Sorting Performance on Skyrmion Memory-Based Systems. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 39(11): 4115-4128 (2020) - [j17]Chun-Feng Wu, Yuan-Hao Chang, Ming-Chang Yang, Tei-Wei Kuo:
When Storage Response Time Catches Up With Overall Context Switch Overhead, What Is Next? IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 39(11): 4266-4277 (2020) - [c32]Jie Liu, Xiao Yan, Xinyan Dai, Zhirong Li, James Cheng, Ming-Chang Yang:
Understanding and Improving Proximity Graph Based Maximum Inner Product Search. AAAI 2020: 139-146 - [c31]Yen-Ting Chen, Ming-Chang Yang, Yuan-Hao Chang, Wei-Kuan Shih:
Parallel-Log-Single-Compaction-Tree: Flash-Friendly Two-Level Key-Value Management in KVSSDs. ASP-DAC 2020: 277-282 - [c30]Tsun-Yu Yang, Ming-Chang Yang, Jiawei Li, Wang Kang:
Permutation-Write: Optimizing Write Performance and Energy for Skyrmion Racetrack Memory. DAC 2020: 1-6 - [c29]Yifan Hou, Jie Zhang, James Cheng, Kaili Ma, Richard T. B. Ma, Hongzhi Chen, Ming-Chang Yang:
Measuring and Improving the Use of Graph Information in Graph Neural Networks. ICLR 2020 - [c28]Tseng-Yi Chen, Yuan-Hao Chang, Ming-Chang Yang, Huang-Wei Chen:
How to cultivate a green decision tree without loss of accuracy? ISLPED 2020: 1-6 - [c27]Wei-Chun Cheng, Shuo-Han Chen, Yuan-Hao Chang, Kuan-Hsun Chen, Jian-Jia Chen, Tseng-Yi Chen, Ming-Chang Yang, Wei-Kuan Shih:
NS-FTL: Alleviating the Uneven Bit-Level Wearing of NVRAM-based FTL via NAND-SPIN. NVMSA 2020: 1-6
2010 – 2019
- 2019
- [j16]Ming-Chang Yang, Yuan-Hao Chang, Fenggang Wu, Tei-Wei Kuo, David H. C. Du:
On Improving the Write Responsiveness for Host-Aware SMR Drives. IEEE Trans. Computers 68(1): 111-124 (2019) - [j15]Yen-Ting Chen, Ming-Chang Yang, Yuan-Hao Chang, Tseng-Yi Chen, Hsin-Wen Wei, Wei-Kuan Shih:
Co-Optimizing Storage Space Utilization and Performance for Key-Value Solid State Drives. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 38(1): 29-42 (2019) - [c26]Shuo-Han Chen, Ming-Chang Yang, Yuan-Hao Chang, Chun-Feng Wu:
Enabling File-Oriented Fast Secure Deletion on Shingled Magnetic Recording Drives. DAC 2019: 103 - [c25]Shuo-Han Chen, Ming-Chang Yang, Yuan-Hao Chang:
The Best of Both Worlds: On Exploiting Bit-Alterable NAND Flash for Lifetime and Read Performance Optimization. DAC 2019: 212 - [c24]Yifan Hou, Hongzhi Chen, Changji Li, James Cheng, Ming-Chang Yang:
A Representation Learning Framework for Property Graphs. KDD 2019: 65-73 - [c23]Yu Ting Ho, Chun-Feng Wu, Ming-Chang Yang, Tseng-Yi Chen, Yuan-Hao Chang:
Replanting Your Forest: NVM-friendly Bagging Strategy for Random Forest. NVMSA 2019: 1-6 - [c22]Shuo-Han Chen, Yong-Ching Lin, Yuan-Hao Chang, Ming-Chang Yang, Tseng-Yi Chen, Hsin-Wen Wei, Wei-Kuan Shih:
A new sequential-write-constrained cache management to mitigate write amplification for SMR drives. SAC 2019: 599-606 - [i1]Jie Liu, Xiao Yan, Xinyan Dai, Zhirong Li, James Cheng, Ming-Chang Yang:
Understanding and Improving Proximity Graph based Maximum Inner Product Search. CoRR abs/1909.13459 (2019) - 2018
- [j14]Tseng-Yi Chen, Yuan-Hao Chang, Shuo-Han Chen, Chih-Ching Kuo, Ming-Chang Yang, Hsin-Wen Wei, Wei-Kuan Shih:
wrJFS: A Write-Reduction Journaling File System for Byte-addressable NVRAM. IEEE Trans. Computers 67(7): 1023-1038 (2018) - [j13]Chun-Feng Wu, Ming-Chang Yang, Yuan-Hao Chang, Tei-Wei Kuo:
Hot-Spot Suppression for Resource-Constrained Image Recognition Devices With Nonvolatile Memory. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 37(11): 2567-2577 (2018) - [j12]Tseng-Yi Chen, Yuan-Hao Chang, Yuan-Hung Kuan, Ming-Chang Yang, Yu-Ming Chang, Pi-Cheng Hsiu:
Enhancing Flash Memory Reliability by Jointly Considering Write-back Pattern and Block Endurance. ACM Trans. Design Autom. Electr. Syst. 23(5): 64:1-64:24 (2018) - [c21]Chieh-Fu Chang, Che-Wei Chang, Yuan-Hao Chang, Ming-Chang Yang:
Rethinking self-balancing binary search tree over phase change memory with write asymmetry. ASP-DAC 2018: 548-553 - [c20]Chun-Feng Wu, Ming-Chang Yang, Yuan-Hao Chang:
Improving runtime performance of deduplication system with host-managed SMR storage drives. DAC 2018: 57:1-57:6 - [c19]Yi-Ling Lin, Ming-Chang Yang, Yuan-Hao Chang, Che-Wei Chang, Shuo-Han Chen:
On Harmonizing Data Lifetime and Block Retention Time for Flash Devices. NVMSA 2018: 73-78 - [c18]Chin-Chiang Pan, Chien-Chung Ho, Yuan-Hao Chang, Tei-Wei Kuo, Yu-Ming Chang, Ming-Chang Yang:
Boosting the performance with a data-backup-free programming scheme for TLC-based SSDs. SAC 2018: 351-358 - 2017
- [j11]Fenggang Wu, Ziqi Fan, Ming-Chang Yang, Baoquan Zhang, Xiongzi Ge, David H. C. Du:
Performance Evaluation of Host Aware Shingled Magnetic Recording (HA-SMR) Drives. IEEE Trans. Computers 66(11): 1932-1945 (2017) - [c17]Yen-Ting Chen, Ming-Chang Yang, Yuan-Hao Chang, Tseng-Yi Chen, Hsin-Wen Wei, Wei-Kuan Shih:
KVFTL: Optimization of storage space utilization for key-value-specific flash storage devices. ASP-DAC 2017: 584-590 - [c16]Li-Zheng Liang, Ming-Chang Yang, Yuan-Hao Chang, Tseng-Yi Chen, Shuo-Han Chen, Hsin-Wen Wei, Wei-Kuan Shih:
xB+-Tree: Access-Pattern-Aware Cache-Line-Based Tree for Non-volatile Main Memory Architecture. COMPSAC (1) 2017: 483-491 - [c15]Tseng-Yi Chen, Yuan-Hao Chang, Shuo-Han Chen, Chih-Ching Kuo, Ming-Chang Yang, Hsin-Wen Wei, Wei-Kuan Shih:
Enabling Write-Reduction Strategy for Journaling File Systems over Byte-addressable NVRAM. DAC 2017: 44:1-44:6 - [c14]Ming-Chang Yang, Yuan-Hao Chang, Fenggang Wu, Tei-Wei Kuo, David H. C. Du:
Virtual persistent cache: Remedy the long latency behavior of host-aware shingled magnetic recording drives. ICCAD 2017: 17-24 - [c13]Tseng-Yi Chen, Yuan-Hao Chang, Yuan-Hung Kuan, Ming-Chang Yang, Yu-Ming Chang, Pi-Cheng Hsiu:
A pattern-aware write strategy to enhance the reliability of flash-memory storage systems. SAC 2017: 1460-1466 - 2016
- [j10]Jen-Ming Hsu, Yao-Chang Yu, Ting-Wei Hou, Wei-Guang Teng, Tzu-Chiang Chiang, Ming-Chang Yang:
A Multi-Constraint Scheme with Authorized Mechanism for the Patient Safety. J. Medical Syst. 40(5): 123:1-123:10 (2016) - [j9]Ming-Chang Yang, Yuan-Hao Chang, Tei-Wei Kuo, Po-Chun Huang:
Capacity-Independent Address Mapping for Flash Storage Devices with Explosively Growing Capacity. IEEE Trans. Computers 65(2): 448-465 (2016) - [j8]Tseng-Yi Chen, Yuan-Hao Chang, Ming-Chang Yang, Yun-Jhu Chen, Hsin-Wen Wei, Wei-Kuan Shih:
Multi-Grained Block Management to Enhance the Space Utilization of File Systems on PCM Storages. IEEE Trans. Computers 65(6): 1831-1845 (2016) - [j7]Ming-Chang Yang, Yuan-Hao Chang, Tei-Wei Kuo:
Virtual Flash Chips: Reinforcing the Hardware Abstraction Layer to Improve Data Recoverability of Flash Devices. IEEE Trans. Computers 65(9): 2872-2883 (2016) - [j6]Ming-Chang Yang, Yuan-Hao Chang, Yuan-Hung Kuan, Che-Wei Tsao:
Graceful Space Degradation: An Uneven Space Management for Flash Storage Devices. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 35(9): 1425-1434 (2016) - [j5]Ming-Chang Yang, Yuan-Hao Chang, Che-Wei Tsao:
Byte-Addressable Update Scheme to Minimize the Energy Consumption of PCM-Based Storage Systems. ACM Trans. Embed. Comput. Syst. 15(3): 55:1-55:20 (2016) - [j4]Ming-Chang Yang, Yuan-Hao Chang, Tei-Wei Kuo, Fu-Hsin Chen:
Reducing Data Migration Overheads of Flash Wear Leveling in a Progressive Way. IEEE Trans. Very Large Scale Integr. Syst. 24(5): 1808-1820 (2016) - [j3]Ming-Chang Yang, Yuan-Hao Chang, Chei-Wei Tsao, Chung-Yu Liu:
Utilization-Aware Self-Tuning Design for TLC Flash Storage Devices. IEEE Trans. Very Large Scale Integr. Syst. 24(10): 3132-3144 (2016) - [c12]Fenggang Wu, Ming-Chang Yang, Ziqi Fan, Baoquan Zhang, Xiongzi Ge, David H. C. Du:
Evaluating Host Aware SMR Drives. HotStorage 2016 - 2015
- [j2]Che-Wei Tsao, Yuan-Hao Chang, Ming-Chang Yang, Po-Chun Huang:
Efficient Victim Block Selection for Flash Storage Devices. IEEE Trans. Computers 64(12): 3444-3460 (2015) - [c11]Ming-Chang Yang, Yuan-Hao Chang, Tei-Wei Kuo:
Virtual flash chips: rethinking the layer design of flash devices to improve data recoverability. DAC 2015: 193:1-193:6 - [c10]Fu-Hsin Chen, Ming-Chang Yang, Yuan-Hao Chang, Tei-Wei Kuo:
PWL: a progressive wear leveling to minimize data migration overheads for nand flash devices. DATE 2015: 1209-1212 - [c9]Ming-Chang Yang, Yuan-Hao Chang, Yu-Cheng Chang, Po-Chun Huang:
Logical data packing for multi-chip flash-memory storage systems. NVMSA 2015: 1-6 - [c8]Ming-Chang Yang, Yu-Ming Chang, Po-Chun Huang, Yuan-Hao Chang, Lue-Jane Lee, Tei-Wei Kuo:
Reliability-aware striping with minimized performance overheads for flash-based storage devices. SAC 2015: 1906-1912 - 2014
- [c7]Ming-Chang Yang, Yuan-Hung Kuan, Yuan-Hao Chang, Pei-Lun Suei, Chia-Heng Tu, Norman Chang:
Bad page relaxation to prolong the lifetime of flash devices. GCCE 2014: 715-716 - [c6]Ming-Chang Yang, Cheng-Chin Tu, Yuan-Hao Chang, Pei-Lun Suei, Tei-Wei Kuo:
Endurance-aware clustering-based mining algorithm for non-volatile phase-change memory. GCCE 2014: 719-720 - [c5]Ming-Chang Yang, Yu-Ming Chang, Che-Wei Tsao, Po-Chun Huang, Yuan-Hao Chang, Tei-Wei Kuo:
Garbage collection and wear leveling for flash memory: Past and future. SMARTCOMP 2014: 66-73 - 2013
- [j1]Yuan-Hao Chang, Ming-Chang Yang, Tei-Wei Kuo, Ren-Hung Hwang:
A reliability enhancement design under the flash translation layer for MLC-based flash-memory storage systems. ACM Trans. Embed. Comput. Syst. 13(1): 10:1-10:28 (2013) - [c4]Ming-Chang Yang, Yuan-Hao Chang, Che-Wei Tsao, Po-Chun Huang:
New ERA: new efficient reliability-aware wear leveling for endurance enhancement of flash storage devices. DAC 2013: 163:1-163:6 - [c3]Che-Wei Tsao, Yuan-Hao Chang, Ming-Chang Yang:
Performance enhancement of garbage collection for flash storage devices: an efficient victim block selection design. DAC 2013: 165:1-165:6 - [c2]Ming-Chang Yang, Martin Kuo, Che-Wei Tsao, Yuan-Hao Chang:
A fifty-percent rule to minimize the energy consumption of PCM-based storage systems. RTCSA 2013: 139-144 - 2012
- [c1]Ming-Chang Yang, Yuan-Hao Chang, Po-Chun Huang, Tei-Wei Kuo:
Working-set-based address mapping for ultra-large-scaled flash devices. CODES+ISSS 2012: 493-502
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 2024-10-17 21:32 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint