日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

It will (never) stop hurting: Do repeated or chronic experiences of exclusion lead to hyper- or hyposensitive psychological responses?

这种痛苦永远不会停止:反复或长期遭受排斥会导致过度敏感或敏感度降低的心理反应吗?

Büttner, Christiane M; Jauch, Melissa; Marinucci, Marco; Williams, Kipling D; Greifeneder, Rainer; Riva, Paolo; Rudert, Selma C

Small molecule targeting of the p38/Mk2 stress signaling pathways to improve cancer treatment

利用小分子靶向p38/Mk2应激信号通路来改善癌症治疗

Alimbetov, D; Umbayev, B; Tsoy, A; Begimbetova, D; Davis, T; Kipling, D; Askarova, Sh

Mixing Misery and Gin: The Effect of Alcohol Administration on Ostracism Response

苦难与杜松子酒的混合:酒精摄入对排斥反应的影响

Fairbairn, Catharine E; Creswell, Kasey G; Hales, Andrew H; Williams, Kipling D; Wilkins, Kaleigh V

Why Social Pain Can Live on: Different Neural Mechanisms Are Associated with Reliving Social and Physical Pain

社交痛苦为何会持续存在:不同的神经机制与重温社交痛苦和生理痛苦有关

Meyer, Meghan L; Williams, Kipling D; Eisenberger, Naomi I

Virtually ostracized: studying ostracism in immersive virtual environments

虚拟排斥:在沉浸式虚拟环境中研究排斥现象

Kassner, Matthew P; Wesselmann, Eric D; Law, Alvin Ty; Williams, Kipling D

Evidence for a telomere-independent "clock" limiting RAS oncogene-driven proliferation of human thyroid epithelial cells

有证据表明,存在一种不依赖于端粒的“时钟”限制了RAS癌基因驱动的人类甲状腺上皮细胞增殖。

Jones, C J; Kipling, D; Morris, M; Hepburn, P; Skinner, J; Bounacer, A; Wyllie, F S; Ivan, M; Bartek, J; Wynford-Thomas, D; Bond, J A

Progeroid syndromes: probing the molecular basis of aging?

早衰症:探索衰老的分子基础?

Kipling, D; Faragher, R G

Structural variation of the pseudoautosomal region between and within inbred mouse strains

近交系小鼠品系间及品系内假常染色体区域的结构变异

Kipling, D; Wilson, H E; Thomson, E J; Lee, M; Perry, J; Palmer, S; Ashworth, A; Cooke, H J

Generation of a human X-derived minichromosome using telomere-associated chromosome fragmentation

利用端粒相关染色体断裂生成人类X染色体衍生的微型染色体

Farr, C J; Bayne, R A; Kipling, D; Mills, W; Critcher, R; Cooke, H J

rar mutations which increase artificial chromosome stability in Saccharomyces cerevisiae identify transcription and recombination proteins

酿酒酵母中增加人工染色体稳定性的rar突变可鉴定转录和重组蛋白。

Kipling, D; Tambini, C; Kearsey, S E