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November 2014 in “Journal of Comparative Physiology A” Spider joint hair sensilla are adapted to sense movement during walking.
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September 2014 in “PLoS ONE” SK2 channels help control sensory signals in rat muscle spindles and hair follicles.
January 2025 in “Nature Communications” Large-scale reconstructions enhance understanding of vibrissal sensory mapping in the brain.
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March 2022 in “Development” Mechanical forces are crucial in shaping our sensory organs during development.
February 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” Merkel cells stabilize nerve endings in the skin, and they change independently of each other.
June 2026 in “Institutional Repositories DataBase (IRDB)” Crickets have genetically controlled hair plates that help them sense and move their antennae.
July 2026 in “bioRxiv (Cold Spring Harbor Laboratory)” FAKΔe4 helps cells sense and respond to different stiffness levels in their environment.
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April 1997 in “Archives of Dermatological Research” Mast cell and nerve fiber interactions in mouse skin change with the hair cycle.
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November 1968 in “Journal of neurophysiology” Cats' hairy skin has different touch receptors connected by myelinated fibers.
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July 1999 in “Journal of Anatomy” Methylene blue staining effectively reveals detailed nerve structures in rat snouts.
May 2026 in “Journal of Controlled Release” January 2019 in “Columbia Academic Commons (Columbia University)” TRPV3 and TRPV6 channels change structure to regulate calcium and heat responses.
January 2024 in “OPAL (Open@LaTrobe) (La Trobe University)” TRPV3 channels are involved in skin processes and are affected by shear stress, influencing itch and mechanotransduction.
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August 2014 in “PLoS ONE” GFRα2 is essential for controlling neuron size but not for target innervation in certain sensory neurons.
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July 1999 in “Journal of Anatomy” Methylene blue staining effectively highlights detailed nerve structures in rat fur.
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January 2000 in “Journal of comparative neurology” Rat vibrissae have sensory terminals with specific structures that help detect hair movements.
Skin stem cells in hair follicles are important for touch sensation.
April 2025 in “Journal of the Association for Research in Otolaryngology” NM2 and RLC phosphorylation are essential for normal inner ear hair cell function.
July 2026 in “Journal of Investigative Dermatology” Tissue stiffness affects sweat gland development by guiding cell differentiation through specific signals.
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January 2003 Merkel cells likely attract sensory nerve fibers.
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November 2010 in “Journal of Neuroscience” Hair clipping can trigger axon growth and changes in the skin.
TRPV4 channels in the skin may enhance the effects of acupuncture.
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June 2019 in “IEEJ Transactions on Sensors and Micromachines” A new device mimics hair follicle functions and detects tiny forces with high sensitivity.
Mechanical surface cues can control macrophage behavior for better immunotherapy and tissue healing.
Reducing PIEZO1 speeds up wound healing.
December 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” Actin filaments help stabilize and integrate cell membranes during transfer.
June 2026 in “arXiv (Cornell University)” Hair beds in fluid show nonlinear response due to viscosity, inertia, and elasticity.
October 2025 in “bioRxiv (Cold Spring Harbor Laboratory)” Aging reduces hair cell size and function in mice, contributing to hearing loss.
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February 1994 in “Developmental dynamics” Specific proteins and molecules play key roles in the development of human hair follicles.