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:

Electrically Conductive and 3D‐Printable Oxidized Alginate‐Gelatin Polypyrrole:PSS Hydrogels for Tissue Engineering
Thomas Distler, Christian Polley, Fukun Shi, et al.
Advanced Healthcare Materials (2021) Vol. 10, Iss. 9
Open Access | Times Cited: 96

Showing 1-25 of 96 citing articles:

Modification, 3D printing process and application of sodium alginate based hydrogels in soft tissue engineering: A review
Qinghua Wei, Jiayi Zhou, Yalong An, et al.
International Journal of Biological Macromolecules (2023) Vol. 232, pp. 123450-123450
Closed Access | Times Cited: 110

Recent advances in various stimuli-responsive hydrogels: from synthetic designs to emerging healthcare applications
Arpita Roy, Kalipada Manna, Sagar Pal
Materials Chemistry Frontiers (2022) Vol. 6, Iss. 17, pp. 2338-2385
Closed Access | Times Cited: 75

Carboxymethyl cellulose assisted polyaniline in conductive hydrogels for high-performance self-powered strain sensors
Yueqin Li, Qiang Gong, Han Lin, et al.
Carbohydrate Polymers (2022) Vol. 298, pp. 120060-120060
Closed Access | Times Cited: 72

Tough Gelatin Hydrogel for Tissue Engineering
Ximin Yuan, Zhou Zhu, Pengcheng Xia, et al.
Advanced Science (2023) Vol. 10, Iss. 24
Open Access | Times Cited: 68

Gelatin as It Is: History and Modernity
О. В. Михайлов
International Journal of Molecular Sciences (2023) Vol. 24, Iss. 4, pp. 3583-3583
Open Access | Times Cited: 60

Electrically stimulated 3D bioprinting of gelatin-polypyrrole hydrogel with dynamic semi-IPN network induces osteogenesis via collective signaling and immunopolarization
Sayan Deb Dutta, Keya Ganguly, Aayushi Randhawa, et al.
Biomaterials (2023) Vol. 294, pp. 121999-121999
Closed Access | Times Cited: 44

A review of advanced hydrogels for cartilage tissue engineering
Mojtaba Ansari, Ahmad Darvishi, Alireza Sabzevari
Frontiers in Bioengineering and Biotechnology (2024) Vol. 12
Open Access | Times Cited: 24

Electroactive Biomaterials Regulate the Electrophysiological Microenvironment to Promote Bone and Cartilage Tissue Regeneration
Li Chen, Jianye Yang, Zhengwei Cai, et al.
Advanced Functional Materials (2024) Vol. 34, Iss. 23
Closed Access | Times Cited: 23

Seamless Integration of Conducting Hydrogels in Daily Life: From Preparation to Wearable Application
Kusuma Betha Cahaya Imani, Jagan Mohan Dodda, Jinhwan Yoon, et al.
Advanced Science (2024) Vol. 11, Iss. 13
Open Access | Times Cited: 22

Additive Manufacturing of Conducting Polymers: Recent Advances, Challenges, and Opportunities
Miryam Criado‐Gonzalez, Antonio Dominguez‐Alfaro, Naroa Lopez‐Larrea, et al.
ACS Applied Polymer Materials (2021) Vol. 3, Iss. 6, pp. 2865-2883
Open Access | Times Cited: 96

Organic Bioelectronics for In Vitro Systems
Charalampos Pitsalidis, Anna‐Maria Pappa, Alexander J. Boys, et al.
Chemical Reviews (2021) Vol. 122, Iss. 4, pp. 4700-4790
Open Access | Times Cited: 83

Smart and Biomimetic 3D and 4D Printed Composite Hydrogels: Opportunities for Different Biomedical Applications
Samira Malekmohammadi, Negar Sedghi Aminabad, Amin Sabzi, et al.
Biomedicines (2021) Vol. 9, Iss. 11, pp. 1537-1537
Open Access | Times Cited: 80

Wound Healing with Electrical Stimulation Technologies: A Review
Yt Jun Cheah, Muhamad Ramdzan Buyong, Mohd Heikal Mohd Yunus
Polymers (2021) Vol. 13, Iss. 21, pp. 3790-3790
Open Access | Times Cited: 57

Natural Biopolymers for Bone Tissue Engineering: A Brief Review
Sheersha Pramanik, Shubham Kharche, Namdev More, et al.
Engineered Regeneration (2022) Vol. 4, Iss. 2, pp. 193-204
Open Access | Times Cited: 47

Multifunctionally wearable monitoring with gelatin hydrogel electronics of liquid metals
Ximin Yuan, Pengcheng Wu, Qing Gao, et al.
Materials Horizons (2022) Vol. 9, Iss. 3, pp. 961-972
Closed Access | Times Cited: 46

Rational design of electrically conductive biomaterials toward excitable tissues regeneration
Guoxu Zhao, Hongwei Zhou, Guorui Jin, et al.
Progress in Polymer Science (2022) Vol. 131, pp. 101573-101573
Closed Access | Times Cited: 42

Degradation-Kinetics-Controllable and Tissue-Regeneration-Matchable Photocross-linked Alginate Hydrogels for Bone Repair
Delu Zhao, Xin Wang, Bo Cheng, et al.
ACS Applied Materials & Interfaces (2022) Vol. 14, Iss. 19, pp. 21886-21905
Closed Access | Times Cited: 40

Additive manufacturing solidification methodologies for ink formulation
Xi Xu, Jiayu Yang, Win Jonhson, et al.
Additive manufacturing (2022) Vol. 56, pp. 102939-102939
Closed Access | Times Cited: 40

3D printed gelatin/decellularized bone composite scaffolds for bone tissue engineering: Fabrication, characterization and cytocompatibility study
Aylin Kara, Thomas Distler, Christian Polley, et al.
Materials Today Bio (2022) Vol. 15, pp. 100309-100309
Open Access | Times Cited: 40

3D Bioprinting of Novel κ-Carrageenan Bioinks: An Algae-Derived Polysaccharide
Diana M. C. Marques, João C. Silva, Ana Paula Serro, et al.
Bioengineering (2022) Vol. 9, Iss. 3, pp. 109-109
Open Access | Times Cited: 39

Multifunctional conductive hyaluronic acid hydrogels for wound care and skin regeneration
Víctor Castrejón-Comas, Carlos Alemán, Maria M. Pérez‐Madrigal
Biomaterials Science (2023) Vol. 11, Iss. 7, pp. 2266-2276
Open Access | Times Cited: 39

A Critical Review on Classified Excipient Sodium-Alginate-Based Hydrogels: Modification, Characterization, and Application in Soft Tissue Engineering
Rishav Sharma, Rishabha Malviya, Sudarshan Singh, et al.
Gels (2023) Vol. 9, Iss. 5, pp. 430-430
Open Access | Times Cited: 37

3D printing of piezoelectric and bioactive barium titanate-bioactive glass scaffolds for bone tissue engineering
Christian Polley, Thomas Distler, Caroline Scheufler, et al.
Materials Today Bio (2023) Vol. 21, pp. 100719-100719
Open Access | Times Cited: 34

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