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2026-02-17 Final-signed

MultiPark Board meeting 2026-02-17, 15:00-16:10 Minutes Participating Board members: Angela Cenci Nilsson (Coordinator and Chair) Maria H Nilsson Kajsa M Paulsson (-15:55) Melvyn B Davies Madeleine Durbeej Hjalt Anna Orduna Dolado Absent Board members: Roger Olsson Martin Hallbeck Lena Uller Jesper Petersson Others present: Per Odin (adjunct Board member, 15:15-) Diana Jerman (meeting secretary) §

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-03/2026-02-17%20Final-signed.pdf - 2026-08-28

Acknowledgement Slide MultiPark

PowerPoint Presentation Name of research group, Lund University Name 1 Name 2 Name 3 Name 4 Name 5 Name 6 Name 7 Name 8 Name 9 Name 10 Name 11 Name 12 Name 13 Name 14 Name 15 Place holder for group photo Name of collaborating group 1 Group leader Person 1 Person 2 Person 3 Name of funding agencies Swedish Research Council EU Grant Foundation 1 Foundation 2 Foundation 3 MultiPark Name of collaborat

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-03/Acknowledgement%20slide_MultiPark.pptx - 2026-08-28

MultiPark Strategic Plan 2026-2030 final Proofread

MultiPark Strategic Plan 2026-2030 1 MultiPark Multidisciplinary research on neurodegenerative diseases I: RESEARCH - Vision, Mission and Goals. Building on a long tradition of excellence in neuroscience, MultiPark aims to be an internationally leading environment for multi- and interdisciplinary research on the common age-related neurodegenerative disorders, in particular, Parkinson’s disease (PD

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-04/MultiPark%20Strategic%20plan%202026-2030_final%20proofread.pdf - 2026-08-28

MPIG Application Form Final

APPLICATION FORM MULTIPARK INNOVATION GRANT Multipark (MP) announces the Multipark Innovation Grant (MPIG) of up to SEK 300,000 per project. The purpose of the grant is to bridge the gap between research and the innovation/utilization of research within Multipark’s research area. Eligible projects must aim to validate a novel hypothesis grounded in existing research data, with the objective of dev

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-05/MPIG%20application%20form%20final.docx - 2026-08-28

Report On The MP Innovation Grants 2011-2025[1]

Report on the MP innovation grants 2011-2025 .. 1 Multipark Innovation grants 2011-2025 Background To stimulate translation of research discoveries into commercial products the Swedish Government (proposition 2009/09:50) established Innovations as the third pilar of the Universities, in addition to Research and Education. Prior to Multipark (MP) neuroscientists did commercialize their discoveries

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-05/Report%20on%20the%20MP%20innovation%20grants%202011-2025%5B1%5D.pdf - 2026-08-28

Table 1 MPIG Report[1]

Table 1 MPIG report PI grant title year results Interaction with comapnies article 1 Tomas Björklund 200 Generation of a novel strategy for selective infectivity of neurons 2013 WO2019158619A1 Dyno Therapeutics, Brave Bioscience DOI: 10.1101/2025.07.07.663544 2 Angela Cenci 200 A method to verify the brain activity of drugs that stimulate the Sigma-1 receptor 2022 MP report coll: ANAVEX LIFE SCIEN

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-05/Table%201%20MPIG%20report%5B1%5D.pdf - 2026-08-28

Call For Collaborative Projects 2026 Final

Announcement and application template MULTIPARK SUPPORT TO COLLABORATIVE PROJECTS · CALL FOR APPLICATIONS BACKGROUND We are announcing a call for proposals focused on supporting excellent collaborative projects. The call serves the following strategic goals: (i) to foster a synergistic exchange of scientific concepts and/or technical approaches between MultiPark group leaders working in different

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-06/Call%20for%20collaborative%20projects%202026%20final.docx - 2026-08-28

RBP steering Document June 2026

Rat behavioural platform 1 Steering document Name: In Vivo Behavioural Node: Rat behavioural platform. Location: BMC Rooms A0931 Equipment and services included in the platform: Pre Room A0931: -Cilinder test, mirrors and video camera (GoPro) -Flexible space for accommodating the staircase test (n=20 cages). Room A0931: - Flexible space with 3 ceiling mounted cameras for video tracking (with the A

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-06/RBP_steering%20document%20%20June%202026.pdf - 2026-08-28

Surgery Steering Doc Final June 2026

Rodent Stereotactic Surgery 1 Steering document Name: Rodent stereotactic surgery Location: BMC A0937 Equipment and services included in the platform There are 3 stereotactic surgery stations that can be used for both rats and mice. Each station is equipped with the following: stereotactic frame (Kopf 940), rat and mouse head adapters, coordinate display connected to the frame, surgical microscope

https://www.multipark.lu.se/sites/multipark.lu.se/files/2026-06/Surgery_Steering%20Doc%20Final%20June%202026.pdf - 2026-08-28

Julkort med text 2020

julkort_med_text Warmest wishes for a happy holiday season and a wonderful and safe new year 2021 from Nanoscience at Lund University Collage from a study on the spreading of respiratory droplets during singing. This study is one of many where NanoLund researchers contribute to the understanding and reduce of the spreading of Covid-19 By: Malin Alsved & Alexios Matamis; see also: Alsved, M., et al

https://www.nano.lu.se/sites/nano.lu.se/files/2020-12/julkort_med_text_2020.pdf - 2026-08-28

Introduction event 2021 february

Introduction to NanoLund event 18 February 2021 What is NanoLund? Which are the scientific possibilities? What does it mean to be involved in NanoLund? How is it organised? Which are the benefits? How can I find collaborators? How can I use equipment in other labs? Tips and tricks for PhD students and postdocs? To answer these and many other questions, we would like to welcome you to an in- troduc

https://www.nano.lu.se/sites/nano.lu.se/files/2021-01/introduction_event_2021_february.pdf - 2026-08-28

Introduction Event 2021 September

Introduction to NanoLund event 20 September 2021 What is NanoLund? Which are the scientific possibilities? What does it mean to be involved in NanoLund? How is it organised? Which are the benefits? How can I find collaborators? How can I use equipment in other labs? In need of tips and tricks for PhD students and postdocs? To answer these and many other questions, we would like to welcome you to a

https://www.nano.lu.se/sites/nano.lu.se/files/2021-08/Introduction%20event%202021_September.pdf - 2026-08-28

Call For NanoLund Projects For 2022

Postal address Box 118, 221 00 Lund, (internal HS14) Visiting address Professorsgatan 1, Lund Telephone +46 222 33 88, +46 46 222 00 00 (switch board) E-mail info@nano.lu.se Website https://www.nano.lu.se Call for NanoLund project proposals for funding start in 2022 Faculty members and affiliated faculty members of NanoLund are invited to propose projects for financial contributions by NanoLund. I

https://www.nano.lu.se/sites/nano.lu.se/files/2021-09/Call%20for%20NanoLund%20projects%20for%202022.pdf - 2026-08-28

NanoLund Distinction

Microsoft Word - NanoLund Distinction lansering final.docx NanoLund Distinction for PhD students The NanoLund Distinction will be awarded to PhD students within the NanoLund environment who have shown particular dedication to research, education and outreach activities, have acquired broad knowledge within nanoscience research and its societal relevance and impact, and have demonstrated research i

https://www.nano.lu.se/sites/nano.lu.se/files/2021-09/NanoLund%20Distinction.pdf - 2026-08-28

Program NanoLund Annual Meeting 2021

NanoLund Annual Meeting 2021 Light for Nano – Nano for Light 12 October 2021, Scandic Star Hotel, Glimmervägen 5, Lund More information: www.nano.lu.se/annualmeeting2021 Program chairs: Ivan Scheblykin and Jesper Wallentin 08:30 – 08:55 Coffee and registration Opening session Chairs: Ivan Scheblykin, Jesper Wallentin 08:55 Welcome and opening by Heiner Linke, Deputy Dean, LTH and Chair of NanoLund

https://www.nano.lu.se/sites/nano.lu.se/files/2021-09/Program%20NanoLund%20Annual%20Meeting%202021.pdf - 2026-08-28

Önder Spectral Analysis And The Formation Of The Electric Field Domains In The THz Quantum Cascade L

NanoLund_Poster_Denizhan_Ekin_Onder Parallel Capacitance and Boundary current Conclusion Spectral Analysis and the Formation of the E-Field Domains in the THz Quantum Cascade Lasers In the case of extended devices such as Quantum Cascade Lasers, the formation of the electric field domains occur in the negative differential conductivity region [1]. For the device studied here, the relation between

https://www.nano.lu.se/sites/nano.lu.se/files/2021-10/%C3%96nder_Spectral%20Analysis%20and%20the%20Formation%20of%20the%20Electric%20Field%20Domains%20in%20the%20THz%20Quantum%20Cascade%20Lasers.pdf - 2026-08-28

Adham Kristi Adham Poster

c) d) e) Branch growth in the (110) direction b)a) c) d) e) f) Conventional LEDs consist of heterojunction structures in which the active region (AR) is embedded in-between the layers in a p-n junction. Recent developments have made it possible to decouple the AR from the p-n junction and demonstrate a working LED where electron and holes are injec- ted by carrier diffusion into the AR. [1] In ord

https://www.nano.lu.se/sites/nano.lu.se/files/2021-10/Adham_Kristi%20Adham%20Poster.pdf - 2026-08-28

Alcer NanoLund Annual Meeting Poster David Alcer

NanoLundPoster NanoLundAnnualMeeting 2021 • The TRPL decay is faster with increasing Ga content, indicating Ga related trap states, possibly Ga vacancies at the NW surface • Comparing samples with a similar Ga content, the lifetimes for the samples grown using TEGa are somewhat longer. Compare for example the TEGa sample with x = 0.52 with the faster decay in the TMGa samples at x = 0.43 and x = 0

https://www.nano.lu.se/sites/nano.lu.se/files/2021-10/Alcer_NanoLund%20Annual%20Meeting%20Poster%20David%20Alcer.pdf - 2026-08-28

Benter 20210914 NanoLund poster SandraBenter Optimized

e- e- e- e- hv The incorporation of Bi atoms into III-V semiconductors is of large interest due to the potential formation of topological insulator states (1), band gap tuning (2) and increased spin-orbit coupling (3). Common techniques focus on bulk growth of Bi-III-V compounds imposing a limitation on the available crystal structure. Our approach enables the homogenous incorporation of single Bi

https://www.nano.lu.se/sites/nano.lu.se/files/2021-10/Benter_20210914_NanoLund_poster_SandraBenter_Optimized.pdf - 2026-08-28