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プロフィール詳細
プロジェクトを作成
★★★★★
☆☆☆☆☆
Dr. Michael James H.に依頼
Portugal

Bioimaging Expert, Specialist in Electron Microscopy

プロフィール概要
専門分野
サービス
Writing General Proofreading & Editing
Research Feasibility Study, Technology Scouting, Fact Checking, Gap Analysis, Scientific and Technical Research, Systematic Literature Review
Consulting Scientific and Technical Consulting
Data & AI Image Processing, Image Analysis, Data Visualization
Product Development Concept Development
職務経験

Bioimaging Technician (Electron Microscopy Specialist)

Universidade Nova de Lisboa Faculdade de Ciências Médicas

7月 2022 - 現在

Bioimaging Senior Technician (Electron Microscopy)

NOVA Medical School, Universiade NOVA de Lisboa

1月 2022 - 現在

Postdoctoral Researcher

Universidade Nova de Lisboa Centro de Estudos de Doenças Crónicas

10月 2020 - 3月 2022

Research Technician

UCL Institute of Ophthalmology, University College London

12月 2019 - 9月 2020

学歴

Doctor of Philosophy (Ph.D)

University College London, University of London - United Kingdom

9月 2016 - 10月 2020

BSc Biomedical Sciences (School of Biological and Chemical Sciences/School of Medicine and Dentistry)

Queen Mary University of London

8月 2013 - 8月 2016

認定資格
  • 認定資格の詳細は未入力です。
出版物
JOURNAL ARTICLE
Burrinha, T., Cunha, C., Hall, M.J., Lopes-da-Silva, M., Seabra, M.C., Guimas Almeida, C.(2023). Deacidification of endolysosomes by neuronal aging drives synapse loss . Traffic. 24. (8). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 334-354.
Cardoso, M.H., Hall, M.J., Burgoyne, T., Fale, P., Storm, T., Escrevente, C., Antas, P., Seabra, M.C., Futter, C.E.(2023). Impaired Lysosome Reformation in Chloroquine-Treated Retinal Pigment Epithelial Cells . Investigative Ophthalmology and Visual Science. 64. (11).
Barral, D.C., Staiano, L., Guimas Almeida, C., Cutler, D.F., Eden, E.R., Futter, C.E., Galione, A., Marques, A.R.A., Medina, D.L., Napolitano, G., et al.(2022). Current methods to analyze lysosome morphology, positioning, motility and function . Traffic. 23. (5). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 238-269.
Hall, M.J., Lopes-Ventura, S., Neto, M.V., Charneca, J., Zoio, P., Seabra, M.C., Oliva, A., Barral, D.C.(2022). Reconstructed human pigmented skin/epidermis models achieve epidermal pigmentation through melanocore transfer . Pigment Cell and Melanoma Research. 35. (4). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 425-435.
Moreiras, H., Bento-Lopes, L., Neto, M.V., Escrevente, C., Cabaço, L.C., Hall, M.J., Ramalho, J.S., Seabra, M.C., Barral, D.C.(2022). Melanocore uptake by keratinocytes occurs through phagocytosis and involves protease-activated receptor-2 internalization . Traffic. 23. (6). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 331-345.
Cristina Escrevente and Ana S. Falc{\~{a}}o and Michael J. Hall and Mafalda Lopes-da-Silva and Pedro Antas and Miguel M. Mesquita and In{\^{e}}s S. Ferreira and M. Helena Cardoso and Daniela Oliveira and Ana C. Fradinho and Thomas Ciossek and Paul Nicklin and Clare E. Futter and Sandra Tenreiro and Miguel C. Seabra(2021). Formation of Lipofuscin-Like Autofluorescent Granules in the Retinal Pigment Epithelium Requires Lysosome Dysfunction . Investigative Opthalmology & Visual Science. 62. (9). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 39. Association for Research in Vision and Ophthalmology ({ARVO})
Escrevente, C., Falcão, A.S., Hall, M.J., Lopes-Da-Silva, M., Antas, P., Mesquita, M.M., Ferreira, I.S., Helena Cardoso, M., Oliveira, D., Fradinho, A.C., et al.(2021). Formation of lipofuscin-like autofluorescent granules in the retinal pigment epithelium requires lysosome dysfunction . Investigative Ophthalmology and Visual Science. 62. (9).
Zhao, Z., Zhang, J., Jiang, X., Wang, L., Yin, Z., Hall, M., Wang, Y., Lai, L.(2020). Is Endovascular Treatment Still Good for Ischemic Stroke in Real World?: A Meta-Analysis of Randomized Control Trial and Observational Study in the Last Decade . Stroke. 51. (11). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 3250-3263.
OTHER
Hall, M.J., Lopes-Ventura, S., Neto, M.V., Charneca, J., Zoio, P., Seabra, M.C., Oliva, A., Barral, D.C.(2022). Reconstructed human pigmented skin/epidermis models achieve epidermal pigmentation through melanocore transfer . bioRxiv.