ScholarIQanswers from OpenAlex & ORCID
Anthony Barnett
ResearcherPublications, citations & collaboration network
Anthony Barnett is a researcher indexed in ScholarIQ from OpenAlex & ORCID.
How many works does Anthony Barnett have?
ScholarIQindexed works
Anthony Barnett has 626 works in the ScholarIQ index. The count is the OpenAlex total, not the number of papers listed on this page.
How many citations does Anthony Barnett have?
ScholarIQcitation count
Anthony Barnett has 39,441 citations in the OpenAlex counts ScholarIQ stores.
What is the h-index of Anthony Barnett?
ScholarIQh-index
Anthony Barnett has an h-index of 89 in OpenAlex.
What is the i10-index of Anthony Barnett?
ScholarIQi10-index
Anthony Barnett has an i10-index of 335 in OpenAlex.
What is the ORCID of Anthony Barnett?
ScholarIQorcid
The ORCID for Anthony Barnett is on the source record.
What is the OpenAlex record for Anthony Barnett?
ScholarIQopenalex
The OpenAlex for Anthony Barnett is on the source record.
What are the most-cited papers on Anthony Barnett?
ScholarIQmost cited works
Estimation of the global prevalence of dementia in 2019 and forecasted prevalence in 2050: an analysis for the Global Burden of Disease Study 2019
Emma Nichols, Jaimie D Steinmetz, Stein Emil Vollset, Kai Fukutaki, Julian Chalek, Foad Abd-Allah, Amir Abdoli, Ahmed Abualhasan, Eman Abu‐Gharbieh, Tayyaba Akram, Hanadi Al Hamad, Fares Alahdab, Fahad Alanezi, Vahid Alipour, Sami Almustanyir, Hubert Amu, Iman Ansari, Jalal Arabloo, Tahira Ashraf, Thomas Astell‐Burt, Getinet Ayano, José Luís Ayuso‐Mateos, Atif Amin Baig, Anthony Barnett, Amadou Barrow, Bernhard T. Baune, Yannick Béjot, Woldesellassie Bezabhe, Yihienew Mequanint Bezabih, Akshaya Srikanth Bhagavathula, Sonu Bhaskar, Krittika Bhattacharyya, Ali Bijani, Atanu Biswas, Srinivasa Rao Bolla, Archith Boloor, Carol Brayne, Hermann Brenner, Katrin Burkart, Richard A. Burns, Luis Alberto Cámera, Chao Cao, Félix Carvalho, Luís Fernando Silva Castro-de-Araujo, Ferrán Catalá-López, Ester Cerin, Prachi P. Chavan, Nicolas Cherbuin, Dinh‐Toi Chu, Vera Marisa Costa, Rosa A S Couto, Omid Dadras, Xiaochen Dai, Lalit Dandona, Rakhi Dandona, Vanessa De la Cruz‐Góngora, Deepak Dhamnetiya, Diana Dias da Silva, Daniel Díaz, Abdel Douiri, David Edvardsson, Michael Ekholuenetale, Iman El Sayed, Shaimaa I El-Jaafary, Khalil Eskandari, Sharareh Eskandarieh, Saman Esmaeilnejad, Jawad Fares, André Faro, Umar Farooque, Valery L. Feigin, Xiaoqi Feng, Seyed‐Mohammad Fereshtehnejad, Eduarda Fernandes, Pietro Ferrara, Irina Filip, Howard Fillit, Florian Fischer, Shilpa Gaidhane, Lucia Galluzzo, Ahmad Ghashghaee, Nermin Ghith, Alessandro Gialluisi, Syed Amir Gilani, Ionela-Roxana Glăvan, E. V. Gnedovskaya, Mahaveer Golechha, Rajeev Gupta, Veer Bala Gupta, Vivek Gupta, Mohammad Rifat Haider, Brian J. Hall, Samer Hamidi, Asif Hanif, Graeme J. Hankey, Shafiul Haque, Risky Kusuma Hartono, Ahmed I Hasaballah, M. Tasdik Hasan, Amr Hassan
A genome-wide search for human type 1 diabetes susceptibility genes
June Davies, Yoshihiko Kawaguchi, Simon T. Bennett, James Copeman, Heather J. Cordell, Lynn E. Pritchard, Peter Reed, Stephen Gough, Suzanne Jenkins, Sheila Palmer, Karen M. Balfour, Beth R. Rowe, Martin Farrall, Anthony Barnett, Stephen C. Bain, John A. Todd
Genome-wide trans-ancestry meta-analysis provides insight into the genetic architecture of type 2 diabetes susceptibility
Anubha Mahajan, Min Jin Go, Weihua Zhang, Jennifer E. Below, Kyle J. Gaulton, Teresa Ferreira, Momoko Horikoshi, Andrew D. Johnson, Maggie C. Y. Ng, Inga Prokopenko, Danish Saleheen, Xu Wang, Eleftheria Zeggini, Gonçalo R. Abecasis, Linda S. Adair, Peter Almgren, Mustafa Atalay, Tin Aung, Damiano Baldassarre, Beverley Balkau, Yuqian Bao, Anthony Barnett, Inês Barroso, Abdul Basit, Latonya Been, John Beilby, Graeme I. Bell, Rafn Benediktsson, Richard N. Bergman, Bernhard O. Boehm, Eric Boerwinkle, Lori L. Bonnycastle, Noël P. Burtt, Qiuyin Cai, Harry Campbell, Jason Carey, Stéphane Cauchi, Mark J. Caulfield, Juliana C.N. Chan, Li-Ching Chang, Tien‐Jyun Chang, Yi‐Cheng Chang, G. Charpentier, Chien-Hsiun Chen, Han Chen, Yuan-Tsong Chen, Kee‐Seng Chia, Manickam Chidambaram, Peter S. Chines, Nam H. Cho, Young Min Cho, Lee‐Ming Chuang, Francis S. Collins, Marilyn C. Cornelis, David Couper, Andrew Crenshaw, Rob M. van Dam, John Danesh, Debashish Das, Ulf dé Fairé, George Dedoussis, Panos Deloukas, Antigone S. Dimas, Christian Dina, Alex S. F. Doney, Peter Donnelly, Mozhgan Dorkhan, Cornelia M. van Duijn, Josée Dupuis, Sarah Edkins, Paul Elliott, Valur Emilsson, Raimund Erbel, Johan G. Eriksson, Jorge Escobedo, Tõnu Esko, Elodie Eury, José C. Florez, Pierre Fontanillas, Nita G. Forouhi, Tom Forsén, Caroline S. Fox, Ross M. Fraser, Timothy M. Frayling, Philippe Froguel, Philippe Frossard, Yu‐Tang Gao, Karl Gertow, Christian Gieger, Bruna Gigante, Harald Grallert, George Grant, Leif Groop, Christopher J. Groves, Elin Grundberg, Candace Guiducci, Anders Hamsten, Bok‐Ghee Han, Kazuo Hara, Neelam Hassanali
Angiotensin-Receptor Blockade versus Converting–Enzyme Inhibition in Type 2 Diabetes and Nephropathy
Anthony Barnett, Stephen C. Bain, Paul Bouter, Bengt E. Karlberg, Sten Madsbad, J Jervell, Jukka Mustonen
Susceptibility to human type 1 diabetes at IDDM2 is determined by tandem repeat variation at the insulin gene minisatellite locus
S. T. Bennett, Anneke Lucassen, Stephen Gough, Elizabeth E. Powell, Dag E. Undlien, L E Pritchard, Marilyn E. Merriman, Yasushi Kawaguchi, M. J. Dronsfield, Flemming Pociot, Jørn Nerup, Nourdine Bouzekri, Anne Cambon‐Thomsen, Kjersti S. Rønningen, Anthony Barnett, Stephen C. Bain, John A. Todd