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Computational and Structural Biotechnology Journal|October 6, 2025
Identifying Alzheimer's disease-related pathways based on whole-genome sequencing dataYongheng Wang, Taihang Liu, Yijie He, et al.Computational and Structural Biotechnology Journal|October 2, 2025
Conscious active inference I: A quantum model naturally implements the path integral needed for real-time planning and controlMichael C Wiest, Arjan Singh PunianiComputational and Structural Biotechnology Journal|October 20, 2025
Poloxamer-based thermosensitive injectable hydrogels containing a self-assembling peptide for In situ gelationS Sana Sayedipour, Timo Schomann, Sanne M van de Looij, et al.Computational and Structural Biotechnology Journal|October 27, 2025
A method for analyzing the ERP associated with high frequency ANT DBS offsetHerkko Mattila, Anna-Liisa Satomaa, Kai Lehtimäki, et al.Computational and Structural Biotechnology Journal|October 6, 2025
ASOG: AntiSense Oligonucleotide GeneratorJonah Kimi, Patricia Korczak, Brune Vialet, et al.Computational and Structural Biotechnology Journal|October 2, 2025
Corrigendum to "Digital twins in nuclear medicine: A proposition of a modular pipeline for dosimetry protocol optimisation in molecular radiotherapy" [Comput Struct Biotechnol J (2025) 28 3287]N Sinsoilliez, B Magnier, B Piron, et al.Computational and Structural Biotechnology Journal|September 29, 2025
A heuristics matrix for evaluating the learnability of safety critical medical systemsJessica Turner, Judy Bowen, Veela Moxham-BettridgeComputational and Structural Biotechnology Journal|September 29, 2025
Epigenetic memory: The role of the crosstalk between histone modifications and DNA methylationDomitilla Del VecchioComputational and Structural Biotechnology Journal|September 29, 2025
Beyond sequence: A physics-informed machine learning framework for predicting DNA mutationsM Suárez-Villagrán, N Mitsakos, J H MillerComputational and Structural Biotechnology Journal|September 25, 2025
Genomic, structural, and molecular analysis of calmodulin-binding transcriptional activators (CAMTAs) suggests their role in plant development and abiotic stress tolerance in chickpeaKamankshi Sonkar, Saravanappriyan Kamali, Atul Kumar, et al.Pageof 381