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Year Number of Results
1980 2
1981 1
1983 1
1984 1
1985 4
1986 5
1987 1
1988 1
1990 1
1991 4
1992 4
1993 3
1994 5
1995 6
1996 7
1997 3
1998 4
1999 8
2000 8
2001 6
2002 6
2003 15
2004 10
2005 5
2006 8
2007 13
2008 17
2009 16
2010 7
2011 15
2012 9
2013 12
2014 14
2015 16
2016 22
2017 24
2018 38
2019 16
2020 27
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2023 37
2024 10

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434 results

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Page 1
Brain charts for the human lifespan.
Bethlehem RAI, Seidlitz J, White SR, Vogel JW, Anderson KM, Adamson C, Adler S, Alexopoulos GS, Anagnostou E, Areces-Gonzalez A, Astle DE, Auyeung B, Ayub M, Bae J, Ball G, Baron-Cohen S, Beare R, Bedford SA, Benegal V, Beyer F, Blangero J, Blesa Cábez M, Boardman JP, Borzage M, Bosch-Bayard JF, Bourke N, Calhoun VD, Chakravarty MM, Chen C, Chertavian C, Chetelat G, Chong YS, Cole JH, Corvin A, Costantino M, Courchesne E, Crivello F, Cropley VL, Crosbie J, Crossley N, Delarue M, Delorme R, Desrivieres S, Devenyi GA, Di Biase MA, Dolan R, Donald KA, Donohoe G, Dunlop K, Edwards AD, Elison JT, Ellis CT, Elman JA, Eyler L, Fair DA, Feczko E, Fletcher PC, Fonagy P, Franz CE, Galan-Garcia L, Gholipour A, Giedd J, Gilmore JH, Glahn DC, Goodyer IM, Grant PE, Groenewold NA, Gunning FM, Gur RE, Gur RC, Hammill CF, Hansson O, Hedden T, Heinz A, Henson RN, Heuer K, Hoare J, Holla B, Holmes AJ, Holt R, Huang H, Im K, Ipser J, Jack CR Jr, Jackowski AP, Jia T, Johnson KA, Jones PB, Jones DT, Kahn RS, Karlsson H, Karlsson L, Kawashima R, Kelley EA, Kern S, Kim KW, Kitzbichler MG, Kremen WS, Lalonde F, Landeau B, Lee S, Lerch J, Lewis JD, Li J, Liao W, Liston C, Lombardo MV, Lv J, Lynch C, Mallar… See abstract for full author list ➔ Bethlehem RAI, et al. Nature. 2022 Apr;604(7906):525-533. doi: 10.1038/s41586-022-04554-y. Epub 2022 Apr 6. Nature. 2022. PMID: 35388223 Free PMC article.
The CAM assay in the study of the metastatic process.
Ribatti D. Ribatti D. Exp Cell Res. 2021 Mar 15;400(2):112510. doi: 10.1016/j.yexcr.2021.112510. Epub 2021 Jan 29. Exp Cell Res. 2021. PMID: 33524363 Review.
Among the in vivo experimental models, the chick embryo chorioallantoic membrane (CAM) has been routinely used to implant several malignant cell lines or tumor tissues to study their angiogenic and metastatic capability. Since the chick embryo is naturally immunodeficient, the …
Among the in vivo experimental models, the chick embryo chorioallantoic membrane (CAM) has been routinely used to implant several malignant …
CAM Models: Lessons and Implications for CAM Evolution.
Burgos A, Miranda E, Vilaprinyo E, Meza-Canales ID, Alves R. Burgos A, et al. Front Plant Sci. 2022 Jun 23;13:893095. doi: 10.3389/fpls.2022.893095. eCollection 2022. Front Plant Sci. 2022. PMID: 35812979 Free PMC article. Review.
A firm understanding of CAM is thus crucial for the development of agricultural responses to climate change. Computational models on CAM can contribute significantly to this understanding. Two types of models have been used so far. ...
A firm understanding of CAM is thus crucial for the development of agricultural responses to climate change. Computational models on CAM
The diverse diaspora of CAM: a pole-to-pole sketch.
Holtum JAM. Holtum JAM. Ann Bot. 2023 Nov 25;132(4):597-625. doi: 10.1093/aob/mcad067. Ann Bot. 2023. PMID: 37303205 Free PMC article. Review.
They have colonized terrestrial, epiphytic, lithophytic, palustrine and aquatic systems, developing perennial, annual or geophyte strategies that can be structurally arborescent, shrub, forb, cladode, epiphyte, vine or leafless with photosynthetic roots. CAM can enh …
They have colonized terrestrial, epiphytic, lithophytic, palustrine and aquatic systems, developing perennial, annual or geophyte strategies …
Mel-CAM Expression in Common Oral Carcinomas.
Shamloo N, Taghavi N, Behrad S, Dehghani Nazhvani A. Shamloo N, et al. J Dent (Shiraz). 2020 Sep;21(3):184-189. doi: 10.30476/DENTJODS.2019.77873.0. J Dent (Shiraz). 2020. PMID: 33062811 Free PMC article.
STATEMENT OF THE PROBLEM: Mel-CAM (CD(146), MUC(18)) is a 113-kD heterophilic cell-cell adhesion glycoprotein found in normal and tumoral tissues. The biologic functions and role of the Mel-CAM can be employed as a diagnostic marker in pathology. PURPOSE: The aim of …
STATEMENT OF THE PROBLEM: Mel-CAM (CD(146), MUC(18)) is a 113-kD heterophilic cell-cell adhesion glycoprotein found in normal and tumoral ti …
Nr-CAM: a cell adhesion molecule with ligand and receptor functions.
Grumet M. Grumet M. Cell Tissue Res. 1997 Nov;290(2):423-8. doi: 10.1007/s004410050949. Cell Tissue Res. 1997. PMID: 9321706 Review.
In addition, by binding to neuronal receptors such as axonin-1, it can modulate axonal guidance. Nr-CAM can also interact laterally with contactin/F11 within the plasma membrane in the form of a complex that may transmit signals to regulate axonal growth. ...
In addition, by binding to neuronal receptors such as axonin-1, it can modulate axonal guidance. Nr-CAM can also interact late …
Role of calmodulin in thermotolerance.
Jia L, Chu H, Wu D, Feng M, Zhao L. Jia L, et al. Plant Signal Behav. 2014 Apr 29;9:e28887. doi: 10.4161/psb.28887. Online ahead of print. Plant Signal Behav. 2014. PMID: 24781358 Free PMC article. Review.
Our experiments indicate the existence of a cross talk among H (2)O (2), NO, Ca (2+) channels, and the activation of calmodulin (CaM) to stimulate the DNA-binding activity of HS transcription factors as well as the accumulation of HS proteins so as to confer thermotolerance. C
Our experiments indicate the existence of a cross talk among H (2)O (2), NO, Ca (2+) channels, and the activation of calmodulin (CaM) to sti …
Bioinspired dynamic microcapsules.
AlDala'een NFD, Mohamad WNKW, Alias N, Ali AM, Shaikh Mohammed J. AlDala'een NFD, et al. Soft Matter. 2017 Dec 20;14(1):124-131. doi: 10.1039/c7sm01682d. Soft Matter. 2017. PMID: 29215674
Abundant illustrations of protein domains exist in nature, with remarkable ligand binding characteristics and structures that undergo conformational changes. For example, calmodulin (CaM) can have three conformational states, which are the unstructured Apo-state, Ca …
Abundant illustrations of protein domains exist in nature, with remarkable ligand binding characteristics and structures that undergo confor …
Engineering of Crassulacean Acid Metabolism.
Schiller K, Bräutigam A. Schiller K, et al. Annu Rev Plant Biol. 2021 Jun 17;72:77-103. doi: 10.1146/annurev-arplant-071720-104814. Epub 2021 Apr 13. Annu Rev Plant Biol. 2021. PMID: 33848427
The circadian pattern of CO(2) fixation and the stomatal opening pattern observed in CAM can be explained largely with a regulatory architecture already present in C(3) plants. ...
The circadian pattern of CO(2) fixation and the stomatal opening pattern observed in CAM can be explained largely with a regul …
Atmospheric CO2 decline and the timing of CAM plant evolution.
Sage RF, Gilman IS, Smith JAC, Silvera K, Edwards EJ. Sage RF, et al. Ann Bot. 2023 Nov 25;132(4):753-770. doi: 10.1093/aob/mcad122. Ann Bot. 2023. PMID: 37642245 Free PMC article.
CONCLUSIONS: The evidence indicates strong CAM repeatedly evolved in reduced CO2 conditions of the past 30 million years. Weaker CAM can pre-date low CO2 and, in the Crassulaceae, strong CAM may also have arisen in water-limited microsites under relatively high CO2. …
CONCLUSIONS: The evidence indicates strong CAM repeatedly evolved in reduced CO2 conditions of the past 30 million years. Weaker CAM
434 results