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:

Current Concepts and Methods in Tissue Interface Scaffold Fabrication
Oraya Vesvoranan, Amritha Anup, Katherine R. Hixon
Biomimetics (2022) Vol. 7, Iss. 4, pp. 151-151
Open Access | Times Cited: 22

Showing 22 citing articles:

Biomimetic Bilayered Scaffolds for Tissue Engineering: From Current Design Strategies to Medical Applications
Christelle Bertsch, Hélène Maréchal, Varvara Gribova, et al.
Advanced Healthcare Materials (2023) Vol. 12, Iss. 17
Open Access | Times Cited: 51

Cross Talk Between Cells and the Current Bioceramics in Bone Regeneration: A Comprehensive Review
Danial Khayatan, Asal Bagherzadeh Oskouei, Mostafa Alam, et al.
Cell Transplantation (2024) Vol. 33
Open Access | Times Cited: 14

Additively-manufactured gradient porous bio-scaffolds: Permeability, cytocompatibility and mechanical properties
Yong Xu, Shuangjun Zhang, Wenhao Ding, et al.
Composite Structures (2024) Vol. 336, pp. 118021-118021
Closed Access | Times Cited: 11

Effect of Elementary Unit Configurations on the Mechanical Performance of Periodic Lattice Structures to Architect Porous Scaffolds by FEM-Driven Additive Manufacturing
Alexei V. Kapustin, Marina M. Abramova, N. Yu. Anisimova, et al.
Metals and Materials International (2025)
Closed Access

Hydroxyapatite Chitosan Gradient Pore Scaffold Activates Oxidative Phosphorylation Pathway to Induce Bone Formation
Zeliang Zhang, Wei Shang, Lisong Lin
Frontiers in Bioscience-Landmark (2025) Vol. 30, Iss. 1
Open Access

Additive manufacturing of peripheral nerve conduits – Fabrication methods, design considerations and clinical challenges
Allen Zennifer, Madhumithra Thangadurai, Dhakshinamoorthy Sundaramurthi, et al.
SLAS TECHNOLOGY (2023) Vol. 28, Iss. 3, pp. 102-126
Open Access | Times Cited: 17

Recent advances and future directions of 3D to 6D printing in brain cancer treatment and neural tissue engineering
Elahe Amiri, Pegah Sanjarnia, Bahareh Sadri, et al.
Biomedical Materials (2023) Vol. 18, Iss. 5, pp. 052005-052005
Open Access | Times Cited: 13

3D Inkjet Printing of Biomaterials with Solvent‐Free, Thiol‐Yne‐Based Photocurable Inks
Michael Kainz, Stephan Haudum, Elena Guillén, et al.
Macromolecular Materials and Engineering (2024) Vol. 309, Iss. 5
Open Access | Times Cited: 4

S-Protected Thiolated Chitosan versus Thiolated Chitosan as Cell Adhesive Biomaterials for Tissue Engineering
Bao Le‐Vinh, Christian Steinbring, Nguyet‐Minh Nguyen Le, et al.
ACS Applied Materials & Interfaces (2023) Vol. 15, Iss. 34, pp. 40304-40316
Open Access | Times Cited: 10

Development of Bioactive Scaffolds for Orthopedic Applications by Designing Additively Manufactured Titanium Porous Structures: A Critical Review
Mikhail Kiselevskiy, N. Yu. Anisimova, Alexei V. Kapustin, et al.
Biomimetics (2023) Vol. 8, Iss. 7, pp. 546-546
Open Access | Times Cited: 10

Development of an in-situ forming collagen-based hydrogel as a regenerative bioadhesive for corneal perforations
Hannaneh Kabir, S. Sharareh Mahdavi, Mohammad J. Abdekhodaie, et al.
International Journal of Biological Macromolecules (2024) Vol. 278, pp. 134761-134761
Closed Access | Times Cited: 2

Natural Polymer-Based Thin Film Strategies for Skin Regeneration in Lieu of Regenerative Dentistry
Parth Narayan Singh, Prasanna Kumar Byram, Lopamudra Das, et al.
Tissue Engineering Part C Methods (2023) Vol. 29, Iss. 6, pp. 242-256
Closed Access | Times Cited: 6

Adjustment of Micro- and Macroporosity of ß-TCP Scaffolds Using Solid-Stabilized Foams as Bone Replacement
Lukas Dufner, Bettina Oßwald, Jan Eberspaecher, et al.
Bioengineering (2023) Vol. 10, Iss. 2, pp. 256-256
Open Access | Times Cited: 5

DIFFERENT APPROACHES IN BONE TISSUE ENGINEERING: ADVANTAGES AND DISADVANTAGES
Sarita, Ambak Kumar, Ravi Prakash Tewari
Biomedical Engineering Applications Basis and Communications (2024) Vol. 36, Iss. 02
Closed Access | Times Cited: 1

Innovative Polymer Modifications: Unlocking New Horizons in Drug Delivery Applications
M. Jyothika, Sanketh R. Gowda, G. B. Kiran Kumar, et al.
Deleted Journal (2024)
Closed Access | Times Cited: 1

Engineering Shape to Overcome Contraction: The Role of Polymer–Collagen Hybrids in Advanced Dermal Substitutes
Christopher Y. Leon‐Valdivieso, Audrey Béthry, Coline Pinese, et al.
Journal of Biomedical Materials Research Part A (2024) Vol. 113, Iss. 1
Open Access

Additive and Lithographic Manufacturing of Biomedical Scaffold Structures Using a Versatile Thiol-Ene Photocurable Resin
Michael Kainz, Stjepan Perak, Gerald Stubauer, et al.
Polymers (2024) Vol. 16, Iss. 5, pp. 655-655
Open Access

Quercetin-Based Biomaterials for Enhanced Bone Regeneration and Tissue Engineering
Mohammad-Sadegh Lotfi, Mohammad Sheibani, Majid Jafari‐Sabet
Tissue and Cell (2024) Vol. 91, pp. 102626-102626
Closed Access

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