Veröffentlichungen der Mitglieder und ihren Arbeitsgruppen

Publikationen mit dem Department als zweite Affiliation

Auf dieser Seite sind auszugsweise einige Publikationen der Mitglieder des Departments Life, Light & Matter ab dem Jahr 2012 aufgelistet, welche als zweite Heimatadresse das Department LL&M angegeben haben. Die Publikationen sind mit einem Link zum Web of Science versehen worden. Bei Ergänzungen schreiben Sie gerne an llmuni-rostockde.

Stand: Sept. 2021 (287 Publikationen)

Stand: März 2024 (498 Publikationen)

Stand: November 2024 (570 Publikationen)

Stand Juni 2026 (746 Publikationen)

Affiliation

Affiliation

Jedes LLM-Mitglied gibt in allen Publikationen das Department als zweite Affiliation an: Department Life, Light & Matter University of Rostock, 18051 Rostock, Germany

Highly Cited Papers

Record 1 of 2

Title: Advancements in hydrogel design for articular cartilage regeneration: A comprehensive review

Author(s): Hashemi-Afzal, F (Hashemi-Afzal, Fariba); Fallahi, H (Fallahi, Hooman); Bagheri, F (Bagheri, Fatemeh); Collins, MN (Collins, Maurice N.); Eslaminejad, MB (Eslaminejad, Mohamadreza Baghaban); Seitz, H (Seitz, Hermann)

Source: BIOACTIVE MATERIALS  Volume: 43  Pages: 1-31  DOI: 10.1016/j.bioactmat.2024.09.005  Published Date: 2025 JAN  

Abstract: This review paper explores the cutting-edge advancements in hydrogel design for articular cartilage regeneration (CR). Articular cartilage (AC) defects are a common occurrence worldwide that can lead to joint breakdown at a later stage of the disease, necessitating immediate intervention to prevent progressive degeneration of cartilage. Decades of research into the biomedical applications of hydrogels have revealed their tremendous potential, particularly in soft tissue engineering, including CR. Hydrogels are highly tunable and can be designed to meet the key criteria needed for a template in CR. This paper aims to identify those criteria, including the hydrogel components, mechanical properties, biodegradability, structural design, and integration capability with the adjacent native tissue and delves into the benefits that CR can obtain through appropriate design. Stratified-structural hydrogels that emulate the native cartilage structure, as well as the impact of environmental stimuli on the regeneration outcome, have also been discussed. By examining recent advances and emerging techniques, this paper offers valuable insights into developing effective hydrogel-based therapies for AC repair.Accession Number: WOS:001318290100001PubMed ID: 39318636Author Identifiers:AuthorWeb of Science ResearcherIDORCID NumberFallahi, Hooman  0000-0002-6676-2919 Seitz, Hermann G-1657-2015 0000-0003-3401-0090 Bagheri, Fatemeh JUU-6250-2023  Bagheri, Fatemeh  0000-0002-9920-338X Baghaban Eslaminejad, Mohamadreza S-3645-2017 0000-0002-1036-0072 Collins, Maurice H-2170-2011  eISSN: 2452-199X

Record 2 of 2

Title: Lead-DBS v3.0: Mapping deep brain stimulation effects to local anatomy and global networks

Author(s): Neudorfer, C (Neudorfer, Clemens); Butenko, K (Butenko, Konstantin); Oxenford, S (Oxenford, Simon); Rajamani, N (Rajamani, Nanditha); Achtzehn, J (Achtzehn, Johannes); Goede, L (Goede, Lukas); Hollunder, B (Hollunder, Barbara); Ríos, AS (Rios, Ana Sofia); Hart, L (Hart, Lauren); Tasserie, J (Tasserie, Jordy); Fernando, KB (Fernando, Kavisha B.); Nguyen, TAK (Nguyen, T. A. Khoa); Al-Fatly, B (Al-Fatly, Bassam); Vissani, M (Vissani, Matteo); Fox, M (Fox, Michael); Richardson, RM (Richardson, R. Mark); van Rienen, U (van Rienen, Ursula); Kühn, AA (Kuehn, Andrea A.); Husch, AD (Husch, Andreas D.); Opri, E (Opri, Enrico); Dembek, T (Dembek, Till); Li, NF (Li, Ningfei); Horn, A (Horn, Andreas)

Source: NEUROIMAGE  Volume: 268  Article Number: 119862  DOI: 10.1016/j.neuroimage.2023.119862  Early Access Date: JAN 2023  Published Date: 2023 MAR  

Abstract: Following its introduction in 2014 and with support of a broad international community, the open-source tool-box Lead-DBS has evolved into a comprehensive neuroimaging platform dedicated to localizing, reconstructing, and visualizing electrodes implanted in the human brain, in the context of deep brain stimulation (DBS) and epilepsy monitoring. Expanding clinical indications for DBS, increasing availability of related research tools, and a growing community of clinician-scientist researchers, however, have led to an ongoing need to maintain, up-date, and standardize the codebase of Lead-DBS. Major development efforts of the platform in recent years have now yielded an end-to-end solution for DBS-based neuroimaging analysis allowing comprehensive image prepro-cessing, lead localization, stimulation volume modeling, and statistical analysis within a single tool. The aim of the present manuscript is to introduce fundamental additions to the Lead-DBS pipeline including a deformation warpfield editor and novel algorithms for electrode localization. Furthermore, we introduce a total of three com-prehensive tools to map DBS effects to local, tract-and brain network-levels. These updates are demonstrated using a single patient example (for subject-level analysis), as well as a retrospective cohort of 51 Parkinson's disease patients who underwent DBS of the subthalamic nucleus (for group-level analysis). Their applicability is further demonstrated by comparing the various methodological choices and the amount of explained variance in clinical outcomes across analysis streams. Finally, based on an increasing need to standardize folder and file nam-ing specifications across research groups in neuroscience, we introduce the brain imaging data structure (BIDS) derivative standard for Lead-DBS. Thus, this multi-institutional collaborative effort represents an important stage in the evolution of a comprehensive, open-source pipeline for DBS imaging and connectomics.

Accession Number: WOS:000940426600001PubMed ID: 36610682 Author Identifiers:AuthorWeb of Science ResearcherIDORCID NumberHollunder, Barbara  0000-0003-0104-6927 Horn, Andreas R-6528-2017 0000-0002-0695-6025 Dembek, Till Anselm J-4160-2019 0000-0001-7023-146X Fox, Michael AAZ-3928-2020 0000-0001-8848-6399 Li, Ningfei DUZ-2031-2022 0000-0003-3315-3591 Goede, Lukas Laurids  0000-0001-6026-185X Achtzehn, Johannes AAU-2846-2021  Kühn, Andrea A  0000-0002-4134-9060 Al-Fatly, Bassam AAH-7004-2019 0000-0003-0067-6177 Neudorfer, Clemens  0000-0002-3153-1045 Hart, Lauren KYO-7806-2024  Richardson, Robert AAY-4969-2021  TASSERIE, Jordy HQY-2603-2023 0000-0001-9626-7823 Nguyen, T A Khoa  0000-0003-0577-5035 Oxenford, Simón  0000-0003-2989-3861 Opri, Enrico AEH-6653-2022  ISSN: 1053-8119eISSN: 1095-9572