1) Boyden ES, Zhang F, Bamberg E, et al. Millisecond-timescale, genetically targeted optical control of neural activity. Nat Neurosci 2005;8(9):1263-8.
2) Armbruster BN, Li X, Pausch MH, et al. Evolving the lock to fit the key to create a family of G protein-coupled receptors potently activated by an inert ligand. Proc Natl Acad Sci USA 2007;104(12):5163-8. doi:10.1073/pnas.0700293104.
3) Hill RZ, Bautista DM. Getting in touch with mechanical pain mechanisms. Trends Neurosci 2020;43(5):311-25.
4) 半場道子.慢性痛のサイエンス:脳からみた痛みの機序と治療戦略.東京:医学書院;2018.
5) Basbaum AI, Bautista DM, Scherrer G, et al. Cellular and molecular mechanisms of pain. Cell 2009;139(2):267-84.
6) Caterina MJ, Leffler A, Malmberg AB, et al. Impaired nociception and pain sensation in mice lacking the capsaicin receptor. Science 2000;288(5464):306-13.
7) North RA. P2X3 receptors and peripheral pain mechanisms. J Physiol 2004;554(Pt 2):301-8.
8) Usoskin D, Furlan A, Islam S, et al. Unbiased classification of sensory neuron types by large-scale single-cell RNA sequencing. Nat Neurosci 2015:18(1):145-53.
9) Lipovsek M, Bardy C, Cadwell CR, et al. Patch-seq:past, present, and future. J Neurosci 2021;41(5):937-46.
10) La Manno G, Siletti K, Furlan A, et al. Molecular architecture of the developing mouse brain. Nature 2021;596(7870):92-6.
11) Beaudry H, Daou I, Ase AR, et al. Distinct behavioral responses evoked by selective optogenetic stimulation of the major TRPV1+ and MrgD+ subsets of C-fibers. Pain 2017;158(12):2329-39.
12) Arcourt A, Gorham L, Dhandapani R, et al. Touch receptor-derived sensory information alleviates acute pain signaling and fine-tunes nociceptive reflex coordination. Neuron 2017;93(1):179-93.
13) Dhandapani R, Arokiaraj CM, Taberner F J, et al. Control of mechanical pain hypersensitivity in mice through ligand-targeted photoablation of TrkB-positive sensory neurons. Nat Commun 2018;9(1):1640.
14) Jones JM, Foster W, Twomey CR, et al. A machine-vision approach for automated pain measurement at millisecond timescales. Elife 2020;9:e57258. doi:10.7554/eLife.57258.