How Do Arabidopsis Seedlings Sense and React to Increasing Ambient Temperatures? [PDF]
Fehér A, Hamid RSB, Magyar Z.
europepmc +1 more source
Sperm navigation in humans: a concerted action of multiple means. [PDF]
Eisenbach M.
europepmc +1 more source
Evolutionary adaptations of TRPA1 thermosensitivity and skin thermoregulation in vertebrates. [PDF]
Bertolesi GE, Heshami N, McFarlane S.
europepmc +1 more source
Bridging the Gap: From Photoperception to the Transcription Control of Genes Related to the Production of Phenolic Compounds. [PDF]
Volná A +4 more
europepmc +1 more source
Cold Tissue Temperature Decreases Electrocutaneous Sensory Perception and Discriminability. [PDF]
Travis JW +5 more
europepmc +1 more source
Physical communication pathways in bacteria: an extra layer to quorum sensing. [PDF]
de la Viuda V, Buceta J, Grobas I.
europepmc +1 more source
Canalization of flower production across thermal environments requires Florigen and CLAVATA signaling. [PDF]
Smith ES +6 more
europepmc +1 more source
Thermosensing and thermal responses in plants
Thermosensors have been identified in plants in recent years. Understanding how plants sense and respond to rising temperatures is of utmost importance currently in terms of global warming and its actual and potential impact on us. This forum explores the recent understanding of plant thermosensing and thermal responses.
Junwen Wu, Yukun Liu
exaly +5 more sources
Integrated smart clothing with photothermal conversion and thermosensing functions is highly desired for next-generation smart wearable applications. Conducting polymer is a promising material that possesses efficient photothermal conversion performance,
Mianqi Xue, Yao Tang, Xiaoling Zang
exaly +3 more sources
Why thermosensing? A primer on thermoregulation [PDF]
Jutta Passlick-Deetjen
exaly +3 more sources

