OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

3D bioprinted microparticles: Optimizing loading efficiency using advanced DoE technique and machine learning modeling
Jiawei Wang, Niloofar Heshmati Aghda, Junhuang Jiang, et al.
International Journal of Pharmaceutics (2022) Vol. 628, pp. 122302-122302
Open Access | Times Cited: 23

Showing 23 citing articles:

Progress and Opportunities for Machine Learning in Materials and Processes of Additive Manufacturing
Wei Long Ng, Guo Liang Goh, Guo Dong Goh, et al.
Advanced Materials (2024) Vol. 36, Iss. 34
Open Access | Times Cited: 49

Revolutionizing drug formulation development: The increasing impact of machine learning
Zeqing Bao, Jack Bufton, Riley J. Hickman, et al.
Advanced Drug Delivery Reviews (2023) Vol. 202, pp. 115108-115108
Closed Access | Times Cited: 43

Bioprinting: A focus on improving bioink printability and cell performance based on different process parameters
Jiawei Wang, Zhengrong Cui, Mohammed Maniruzzaman
International Journal of Pharmaceutics (2023) Vol. 640, pp. 123020-123020
Closed Access | Times Cited: 15

Enhancing quality control in bioprinting through machine learning
Amedeo Franco Bonatti, Giovanni Vozzi, Carmelo De Maria
Biofabrication (2024) Vol. 16, Iss. 2, pp. 022001-022001
Closed Access | Times Cited: 5

The Artificial Intelligence-Powered New Era in Pharmaceutical Research and Development: A Review
Phuvamin Suriyaamporn, Boonnada Pamornpathomkul, Prasopchai Patrojanasophon, et al.
AAPS PharmSciTech (2024) Vol. 25, Iss. 6
Closed Access | Times Cited: 4

Using bugs as drugs: Administration of bacteria-related microbes to fight cancer
Jiawei Wang, Debadyuti Ghosh, Mohammed Maniruzzaman
Advanced Drug Delivery Reviews (2023) Vol. 197, pp. 114825-114825
Closed Access | Times Cited: 12

The Dawn of a New Pharmaceutical Epoch: Can AI and Robotics Reshape Drug Formulation?
Pauric Bannigan, Riley J. Hickman, Alán Aspuru‐Guzik, et al.
Advanced Healthcare Materials (2024) Vol. 13, Iss. 29
Open Access | Times Cited: 3

Four-Dimensional Printed Construct from Temperature-Responsive Self-Folding Feedstock for Pharmaceutical Applications with Machine Learning Modeling
Purushottam Suryavanshi, Jiawei Wang, Ishaan Duggal, et al.
Pharmaceutics (2023) Vol. 15, Iss. 4, pp. 1266-1266
Open Access | Times Cited: 10

Machine learning-assisted extrusion-based 3D bioprinting for tissue regeneration applications
Devara Venkata Krishna, Mamilla Ravi Sankar
Annals of 3D Printed Medicine (2023) Vol. 12, pp. 100132-100132
Open Access | Times Cited: 8

Therapeutic Precision: Unveiling the Potential of 3D Printing in Drug Delivery, Tissue Engineering, and Regenerative Medicine
Shubham Singh, Mohit Kumar, Devesh Kumar, et al.
3D Printing and Additive Manufacturing (2024)
Closed Access | Times Cited: 1

Pioneering the future of dentistry: AI-Driven 3D bioprinting for next-generation clinical applications
Zihui Liang, Xiaohong Liao, Huiyi Zong, et al.
Translational dental research. (2024), pp. 100005-100005
Open Access | Times Cited: 1

Material Extrusion Filament Width and Height Prediction via Design of Experiment and Machine Learning
Xiaoquan Shi, Yazhou Sun, Tian Haiying, et al.
Micromachines (2023) Vol. 14, Iss. 11, pp. 2091-2091
Open Access | Times Cited: 4

Biodegradable Long-Acting Injectables: Platform Technology and Industrial Challenges
Marieta Duvnjak, Alessia Villois, Farshad Ramazani
Handbook of experimental pharmacology (2023), pp. 133-150
Closed Access | Times Cited: 3

3D printing of biologics—what has been accomplished to date?
Anqi Lu, Robert O. Williams, Mohammed Maniruzzaman
Drug Discovery Today (2023) Vol. 29, Iss. 1, pp. 103823-103823
Closed Access | Times Cited: 3

3D printing injectable microbeads using a composite liposomal ink for local treatment of peritoneal diseases
Remo Eugster, Aymar Abel Ganguin, Amirmohammad Seidi, et al.
Drug Delivery and Translational Research (2023) Vol. 14, Iss. 6, pp. 1567-1581
Open Access | Times Cited: 3

A Proof-of-Concept Preparation of Lipid–Plasmid DNA Particles Using Novel Extrusion-Based 3D-Printing Technology, SMART
Jaidev L. Chakka, Mohammed Maniruzzaman
Molecular Pharmaceutics (2023) Vol. 20, Iss. 12, pp. 6504-6508
Open Access | Times Cited: 2

Fabrication of mRNA encapsulated Lipid nanoparticles usingState-of-the-artSMART-MaGIC Technology and transfectionin vitro
Niloofar Heshmati, Jaidev L. Chakka, Yu Zhang, et al.
bioRxiv (Cold Spring Harbor Laboratory) (2024)
Open Access

A bibliometric review on application of machine learning in additive manufacturing and practical justification
Quoc-Phu Ma, Hoang-Sy Nguyen, Jiří Hajnyš, et al.
Applied Materials Today (2024) Vol. 40, pp. 102371-102371
Closed Access

Fabrication of mRNA encapsulated lipid nanoparticles using state of the art SMART-MaGIC technology and transfection in vitro
Niloofar Heshmati, Jaidev L. Chakka, Yu Zhang, et al.
Scientific Reports (2024) Vol. 14, Iss. 1
Open Access

Evaluation and Prediction of Encapsulation of Bioactives in Cell-Based Microcarriers Using Machine Learning Approaches
Yixing Lu, Christopher Kusnadi, Nitin Nitin
Food and Bioprocess Technology (2024)
Closed Access

A Proof-of-Concept Preparation of Lipid-Plasmid DNA Particles Using Novel Extrusion Based 3D Printing Technology, SMART
Jaidev L. Chakka, Mohammed Maniruzzaman
bioRxiv (Cold Spring Harbor Laboratory) (2023)
Open Access | Times Cited: 1

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