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1.
J Neurophysiol ; 114(4): 2249-57, 2015 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-26269550

RESUMEN

It is not known how changes in skin mechanics affect the responses of cutaneous mechanoreceptors in the finger pads to compression forces. We used venous occlusion to change the stiffness of the fingers and investigated whether this influenced the firing of low-threshold mechanoreceptors to surfaces of differing stiffness. Unitary recordings were made from 10 slowly adapting type I (SAI), 10 fast adapting type I (FAI) and 9 slowly adapting type II (SAII) units via tungsten microelectrodes inserted into the median nerve at the wrist. A servo-controlled stimulator applied ramp-and-hold forces (1, 2, and 4 N) at a constant loading and unloading rate (2 N/s) via a flat 2.5-cm-diameter silicone disk over the center of the finger pad. Nine silicone disks (objects), varying in compliance, were used. Venous occlusion, produced by inflating a sphygmomanometer cuff around the upper arm to 40 ± 5 mmHg, was used to induce swelling of the fingers and increase the compliance of the finger pulp. Venous occlusion had no effect on the firing rates of the SAI afferents, nor on the slopes of the relationship between mean firing rate and object compliance at each amplitude, but did significantly reduce the slopes for the FAI afferents. Although the SAII afferents possess a poor capacity to encode changes in object compliance, mean firing rates were significantly lower during venous occlusion. The finding that venous occlusion had no effect on the firing properties of SAI afferents indicates that these afferents preserve their capacity to encode changes in object compliance, despite changes in skin mechanics.


Asunto(s)
Fenómenos Biomecánicos/fisiología , Dedos/fisiología , Nervio Mediano/fisiología , Neuronas Aferentes/fisiología , Fenómenos Fisiológicos de la Piel , Tacto/fisiología , Potenciales de Acción , Adolescente , Adulto , Elasticidad , Femenino , Dedos/inervación , Humanos , Masculino , Microelectrodos , Estimulación Física , Piel/inervación , Presión Venosa/fisiología , Muñeca/fisiología , Adulto Joven
2.
J Neurophysiol ; 111(6): 1308-17, 2014 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-24371291

RESUMEN

We undertook a neurophysiological investigation of the responses of low-threshold mechanoreceptors in the human finger pad to surfaces of differing softness. Unitary recordings were made from 26 slowly adapting type I (SAI), 17 fast-adapting type I (FAI), and 9 slowly adapting type II (SAII) afferents via tungsten microelectrodes inserted into the median nerve at the wrist. A servo-controlled stimulator applied ramp-and-hold forces (1, 2, 4 N) at a constant loading and unloading rate (2 N/s) via a flat silicone disc over the center of the finger pad. Nine discs were used, which linearly increased in stiffness across the range. Population responses of the SAI afferents showed the greatest sensitivity to compliance, with a steep monotonic increase in mean firing rate with increasing stiffness (decreasing compliance) of the surface during the loading and plateau (but not unloading) phases. FAI afferents also showed a linear increase in firing during the loading but not unloading phase, although the slope was significantly lower than that of the SAI afferents at all amplitudes. Conversely, SAII afferents were influenced by object compliance only in certain conditions. Given their high density in the finger pads and their linear relationship between firing rate and object compliance during the loading and plateau phases, SAI afferents (together with FAI afferents during the loading phase) are ideally suited to contributing information on surface compliance to the overall estimation of softness, but the SAII afferents appear to play only a minor role.


Asunto(s)
Potenciales de Acción , Dedos/inervación , Neuronas Aferentes/fisiología , Umbral Sensorial , Tacto , Adolescente , Adulto , Femenino , Dedos/fisiología , Humanos , Masculino , Mecanorreceptores/fisiología , Nervio Mediano/citología , Nervio Mediano/fisiología , Tiempo de Reacción
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