Works by Koh, Jin Ming (exact spelling)

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  1.  23
    Black Swans of CRISPR: Stochasticity and Complexity of Genetic Regulation.Kang Hao Cheong, Jin Ming Koh & Michael C. Jones - 2019 - Bioessays 41 (7):1900032.
    Graphical AbstractRecent waves of controversies surrounding genetic engineering have spilled into popular science in Twitter battles between reputable scientists and their followers. Here, a cautionary perspective on the possible blind spots and risks of CRISPR and related biotechnologies is presented, focusing in particular on the stochastic nature of cellular control processes.
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  2.  15
    Paradoxical Survival: Examining the Parrondo Effect across Biology.Kang Hao Cheong, Jin Ming Koh & Michael C. Jones - 2019 - Bioessays 41 (6):1900027.
    Parrondo's paradox, in which losing strategies can be combined to produce winning outcomes, has received much attention in mathematics and the physical sciences; a plethora of exciting applications has also been found in biology at an astounding pace. In this review paper, the authors examine a large range of recent developments of Parrondo's paradox in biology, across ecology and evolution, genetics, social and behavioral systems, cellular processes, and disease. Intriguing connections between numerous works are identified and analyzed, culminating in an (...)
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  3.  14
    Synaptic Pruning in Schizophrenia: Does Minocycline Modulate Psychosocial Brain Development?Michael C. Jones, Jin Ming Koh & Kang Hao Cheong - 2020 - Bioessays 42 (9):2000046.
    Recent studies suggest that the tetracycline antibiotic minocycline, or its cousins, hold therapeutic potential for affective and psychotic disorders. This is proposed on the basis of a direct effect on microglia‐mediated frontocortical synaptic pruning (FSP) during adolescence, perhaps in genetically susceptible individuals harboring risk alleles in the complement component cascade that is involved in this normal process of CNS circuit refinement. In reviewing this field, it is argued that minocycline is actually probing and modulating a deeply evolved and intricate system (...)
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