Mechanosensory transduction for senses such as proprioception, touch, balance, acceleration, hearing and pain relies on mechanotransduction channels, which convert mechanical stimuli into electrical signals in specialized sensory cells. How force gates mechanotransduction channels is a central question in the field, for which there are two major models. One is the membrane-tension model: force applied to the membrane generates a change in membrane tension that is sufficient to gate the channel, as in the bacterial MscL channel and certain eukaryotic potassium channels. The other is the tether model: force is transmitted via a tether to gate the channel. The transient receptor potential (TRP) channel NOMPC is important for mechanosensation-r...
Transduction of mechanical stimuli by receptor neurons is essential for senses such as hearing, touc...
Mechanosensitive ion channels transduce physical force into electrochemical signaling that underlies...
SummaryThe generation of coordinated body movements relies on sensory feedback from mechanosensitive...
SummaryHow metazoan mechanotransduction channels sense mechanical stimuli is not well understood. Th...
How metazoan mechanotransduction channels sense mechanical stimuli is not well understood. The NOMPC...
Our senses of touch and hearing are dependent on the conversion of external mechanical forces into e...
SummaryBackgroundMechanoreceptors contain compliant elements, termed “gating springs,” that transfer...
SummaryTwo new studies show that the Drosophila transient receptor potential (TRP) family member NOM...
Mechanosensitive channels transduce physical force into electrochemical signaling in processes such ...
Touch sensation is essential for behaviours ranging from environmental exploration to social interac...
Mechanoreception underlies the senses of touch, hearing and balance. An early event in mechanorecept...
Prokaryotic mechanosensitive (MS) channels open by sensing the physical state of the membrane. As su...
BACKGROUND: A TRPN channel protein is essential for sensory transduction in insect mechanosensory ne...
Mechanosensitive ion channels underlie neuronal responses to physical forces in the sensation of tou...
In mechanotransduction, sensory receptors convert force into electrical signals to mediate such dive...
Transduction of mechanical stimuli by receptor neurons is essential for senses such as hearing, touc...
Mechanosensitive ion channels transduce physical force into electrochemical signaling that underlies...
SummaryThe generation of coordinated body movements relies on sensory feedback from mechanosensitive...
SummaryHow metazoan mechanotransduction channels sense mechanical stimuli is not well understood. Th...
How metazoan mechanotransduction channels sense mechanical stimuli is not well understood. The NOMPC...
Our senses of touch and hearing are dependent on the conversion of external mechanical forces into e...
SummaryBackgroundMechanoreceptors contain compliant elements, termed “gating springs,” that transfer...
SummaryTwo new studies show that the Drosophila transient receptor potential (TRP) family member NOM...
Mechanosensitive channels transduce physical force into electrochemical signaling in processes such ...
Touch sensation is essential for behaviours ranging from environmental exploration to social interac...
Mechanoreception underlies the senses of touch, hearing and balance. An early event in mechanorecept...
Prokaryotic mechanosensitive (MS) channels open by sensing the physical state of the membrane. As su...
BACKGROUND: A TRPN channel protein is essential for sensory transduction in insect mechanosensory ne...
Mechanosensitive ion channels underlie neuronal responses to physical forces in the sensation of tou...
In mechanotransduction, sensory receptors convert force into electrical signals to mediate such dive...
Transduction of mechanical stimuli by receptor neurons is essential for senses such as hearing, touc...
Mechanosensitive ion channels transduce physical force into electrochemical signaling that underlies...
SummaryThe generation of coordinated body movements relies on sensory feedback from mechanosensitive...