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Answer ALS, a large-scale resource for sporadic and familial ALS combining clinical and multi-omics data from induced pluripotent cell lines.
Baxi EG, Thompson T, Li J, Kaye JA, Lim RG, Wu J, Ramamoorthy D, Lima L, Vaibhav V, Matlock A, Frank A, Coyne AN, Landin B, Ornelas L, Mosmiller E, Thrower S, Farr SM, Panther L, Gomez E, Galvez E, Perez D, Meepe I, Lei S, Mandefro B, Trost H, Pinedo L, Banuelos MG, Liu C, Moran R, Garcia V, Workman M, Ho R, Wyman S, Roggenbuck J, Harms MB, Stocksdale J, Miramontes R, Wang K, Venkatraman V, Holewenski R, Sundararaman N, Pandey R, Manalo DM, Donde A, Huynh N, Adam M, Wassie BT, Vertudes E, Amirani N, Raja K, Thomas R, Hayes L, Lenail A, Cerezo A, Luppino S, Farrar A, Pothier L, Prina C, Morgan T, Jamil A, Heintzman S, Jockel-Balsarotti J, Karanja E, Markway J, McCallum M, Joslin B, Alibazoglu D, Kolb S, Ajroud-Driss S, Baloh R, Heitzman D, Miller T, Glass JD, Patel-Murray NL, Yu H, Sinani E, Vigneswaran P, Sherman AV, Ahmad O, Roy P, Beavers JC, Zeiler S, Krakauer JW, Agurto C, Cecchi G, Bellard M, Raghav Y, Sachs K, Ehrenberger T, Bruce E, Cudkowicz ME, Maragakis N, Norel R, Van Eyk JE, Finkbeiner S, Berry J, Sareen D, Thompson LM, Fraenkel E, Svendsen CN, Rothstein JD. Baxi EG, et al. Among authors: thrower s. Nat Neurosci. 2022 Feb;25(2):226-237. doi: 10.1038/s41593-021-01006-0. Epub 2022 Feb 3. Nat Neurosci. 2022. PMID: 35115730 Free PMC article.
Identifying patterns in amyotrophic lateral sclerosis progression from sparse longitudinal data.
Ramamoorthy D, Severson K, Ghosh S, Sachs K; Answer ALS; Glass JD, Fournier CN; Pooled Resource Open-Access ALS Clinical Trials Consortium; ALS/MND Natural History Consortium; Herrington TM, Berry JD, Ng K, Fraenkel E. Ramamoorthy D, et al. Nat Comput Sci. 2022 Sep;2(9):605-616. doi: 10.1038/s43588-022-00299-w. Epub 2022 Sep 8. Nat Comput Sci. 2022. PMID: 38177466 Free PMC article.
The NEALS primary lateral sclerosis registry.
Paganoni S, De Marchi F, Chan J, Thrower SK, Staff NP, Datta N, Kisanuki YY, Drory V, Fournier C, Pioro EP, Goutman SA, Atassi N; NEALS PLS Registry Study Group; Jeon M, Caldwell S, Mcdonough T, Gentile C, Liu J, Turner M, Denny C, Felice K, Green M, Scarberry S, Abu-Saleh S, Nefussy B, Hastings D, Kim S, Swihart B, Arcila-Londono X, Newman DS, Silverman M, Genge A, Salmon K, Elman L, Mccluskey L, Almasy K, Gotkine M, Goslin K, Cummings A, Edwards EK, Rivner M, Bouchard K, Quarles B, Kwan J, Jaffa M, Baloh R, Allred P, Walk D, Maiser S, Manousakis G, Ferment V, Fernandes JAM Jr, Thaisetthawatkul P, Heimes D, Phillips M, Sams L, Kahler M, Corcoran A, Larriviere DG, Chotto S, Juba G. Paganoni S, et al. Among authors: thrower sk. Amyotroph Lateral Scler Frontotemporal Degener. 2020 Nov;21(sup1):74-81. doi: 10.1080/21678421.2020.1804591. Epub 2020 Sep 11. Amyotroph Lateral Scler Frontotemporal Degener. 2020. PMID: 32915077
Serum Levels of Aryl Hydrocarbon Receptor Plasma Agonist Activity Are Reduced in Patients With NMOSD and Correlate With Disease Activity.
Tsaktanis T, Ammon L, Lößlein L, Peter A, Vandrey O, Naumann UJ, Behne M, Cook LJ, Levy M, Yeaman MR, Bennett JL, Rothhammer V; Guthy-Jackson Charitable Foundation CIRCLES Study Group. Tsaktanis T, et al. Neurol Neuroimmunol Neuroinflamm. 2025 Sep;12(5):e200457. doi: 10.1212/NXI.0000000000200457. Epub 2025 Aug 5. Neurol Neuroimmunol Neuroinflamm. 2025. PMID: 40763318 Free article.
Effect of eccentric muscle force on shoulder internal impingement in a cadaveric model of throwing.
Mihata T, Jun BJ, McGarry MH, Lee TQ. Mihata T, et al. J Shoulder Elbow Surg. 2025 Jul 29:S1058-2746(25)00556-7. doi: 10.1016/j.jse.2025.06.011. Online ahead of print. J Shoulder Elbow Surg. 2025. PMID: 40744320
To assess the effects of eccentric internal rotator muscles, all data were compared between initial muscle forces, calculated using data from asymptomatic throwers, and the increased or decreased eccentric force of the subscapularis, pectoralis major, latissimus dorsi, and …
To assess the effects of eccentric internal rotator muscles, all data were compared between initial muscle forces, calculated using data fro …
Relationship Between Early and Maximal Isometric Upper-Body Push and Pull Force Production Among Elite Female and Male Swedish Track and Field Throwers.
Augustsson J, Gunhamn T, Andersson H. Augustsson J, et al. Sports (Basel). 2025 Jul 10;13(7):226. doi: 10.3390/sports13070226. Sports (Basel). 2025. PMID: 40711111 Free PMC article.
This study examined the relationship between early force production (250 ms, subdivided into early phase: 0-100 ms; late phase: 100-250 ms) and peak isometric upper-body push and pull force in elite Swedish track and field throwers. A total of 30 athletes (17 females, 13 m …
This study examined the relationship between early force production (250 ms, subdivided into early phase: 0-100 ms; late phase: 100-250 ms) …
Female athletes have high return to sport and low complication rates following ulnar collateral ligament (UCL) repair or reconstruction: a systematic review.
Dave U, Chang N, Rubin J, Harkin W, Atkins M, Bi AS, Verma NN. Dave U, et al. JSES Rev Rep Tech. 2025 Mar 23;5(3):453-459. doi: 10.1016/j.xrrt.2025.02.007. eCollection 2025 Aug. JSES Rev Rep Tech. 2025. PMID: 40697295 Free PMC article. Review.
HYPOTHESIS AND BACKGROUND: Ulnar collateral ligament (UCL) injuries can be caused by repetitive microtrauma, particularly in throwers and overhead athletes or from acute elbow trauma-producing excessive valgus stress. ...
HYPOTHESIS AND BACKGROUND: Ulnar collateral ligament (UCL) injuries can be caused by repetitive microtrauma, particularly in throwers
1,143 results