Results 41 to 50 of about 1,287 (150)
The transient receptor potential vanilloid (TRPV) ion channel family is involved in multiple sensory and physiological functions including thermosensing and temperature-dependent neuroendocrine regulation.
Marina Morini +5 more
doaj +1 more source
TRPV3 in skin thermosensation and temperature responses. [PDF]
Human skin, as a sophisticated sensory organ, is able to detect subtle changes in ambient temperature. This thermosensory capability is primarily mediated by temperature-sensitive TRP channels expressed in both sensory neurons and keratinocytes. Among these, TRPV3, which responds to warm temperatures and plays a crucial role in various skin functions ...
Lei J, Tominaga M.
europepmc +3 more sources
Tackling thermosensation with multidimensional phenotyping [PDF]
Most if not all animals sense temperature using specialized thermosensory neurons. Genetic studies in simple organisms have been used to identify gene products required for detecting temperature changes or for mediating the effects of temperature on behaviour.
openaire +3 more sources
Detection of defects in thermoplastic CFRP welded zones using eddy current thermo-sensing
In recent years, thermoplastic CFRP attracts considerable attention especially in aviation and automobile industries due to weldability of thermoplastic CFRP.
Koichi MIZUKAMI +3 more
doaj +1 more source
Fabrication of Microbolometer Arrays Based on Polymorphous Silicon–Germanium
This work reports the development of arrays of infrared sensors (microbolometers) using a hydrogenated polymorphous silicon–germanium alloy (pm-SixGe1-x:H). Basically, polymorphous semiconductors consist of an amorphous semiconductor matrix with embedded
Ricardo Jimenez +9 more
doaj +1 more source
A brief history of Thermosense [PDF]
The first Thermosense Conference held at the Chattanooga Choo-Choo Hotel in 1978 was in response to the “Carter Energy Crisis”. There were three sessions with a total of fifteen papers presented. The sessions all dealt with IR thermography with the first devoted to building heat loss, the second giving case studies and the third devoted to progress ...
Gary L. Orlove, Robert Madding
openaire +1 more source
Molecular mechanisms of thermosensation
We feel a wide range of temperatures spanning from cold to heat. Within this range, temperatures over about 43 degrees C and below about 15 degrees C evoke not only a thermal sensation, but also a feeling of pain. In mammals, six thermosensitive ion channels have been reported, all of which belong to the TRP (transient receptor potential) super family.
openaire +4 more sources
Technologies for the automated collection of heat stress data in sheep
The automated collection of phenotypic measurements in livestock is becoming increasingly important to both researchers and farmers. The capacity to non-invasively collect real-time data, provides the opportunity to better understand livestock behaviour ...
Bobbie E. Lewis Baida +4 more
doaj +1 more source
This review covers recent progress in the understanding of stress‐responsive regulatory networks in soybean and highlights emerging genomic and breeding strategies. Integrating molecular insights and precision breeding will help to accelerate the development of climate‐resilient soybean cultivars.
Ali Shahzad +8 more
wiley +1 more source
Behavioral genetics of thermosensation and hygrosensation in Drosophila. [PDF]
Whereas temperature and humidity are critical variables affecting physiology, behavior, and evolution, the genetic and neuronal underpinnings of thermosensation and hygrosensation remain poorly understood. We have initiated a behavioral-genetic investigation of these sensory systems in Drosophila.
Sayeed, Omer, Benzer, Seymour
openaire +4 more sources

