Exclusive Image Gallery on Human Spinal Cord Regeneration-Clinical Image-28

<p>Self-organization of premotor spinal *2-oscillator O1, which innervates the external urinary bladder sphincter (skeletal muscle). Brain-dead human HT6; recording from a dorsal S4 nerve root. A. Recordings from *2-motoneurons O1 and O2, firing in the oscillatory mode with impulse trains of 2...

Szczegółowa specyfikacja

Zapisane w:
Opis bibliograficzny
1. autor: Giselher Schalow (Autor)
Format: Książka
Wydane: Imaging Journal of Clinical and Medical Sciences - Peertechz Publications, 2019-06-16.
Hasła przedmiotowe:
Dostęp online:Connect to this object online.
Etykiety: Dodaj etykietę
Nie ma etykietki, Dołącz pierwszą etykiete!

MARC

LEADER 00000 am a22000003u 4500
001 peertech__10_17352_2455-8702_000067
042 |a dc 
100 1 0 |a Giselher Schalow  |e author 
245 0 0 |a Exclusive Image Gallery on Human Spinal Cord Regeneration-Clinical Image-28 
260 |b Imaging Journal of Clinical and Medical Sciences - Peertechz Publications,   |c 2019-06-16. 
520 |a <p>Self-organization of premotor spinal *2-oscillator O1, which innervates the external urinary bladder sphincter (skeletal muscle). Brain-dead human HT6; recording from a dorsal S4 nerve root. A. Recordings from *2-motoneurons O1 and O2, firing in the oscillatory mode with impulse trains of 2 (upper recording) and 3 (lower recording) action potentials (APs). The durations of the oscillation periods were 110 (O1) and 164ms (O2). The interspike intervals of the impulse trains were 5.9ms (O1) and 4.6 and 7.4ms (O2). Motoneuron O1 conducted at 36 m/s; its recurrent fiber conducted at 21 m/s. The measurement layout is shown schematically. The inserts show the oscillatory firing modes; they have not been drawn to scale.</p> 
540 |a Copyright © Giselher Schalow et al. 
546 |a en 
655 7 |a Clinical Image  |2 local 
856 4 1 |u https://doi.org/10.17352/2455-8702.000067  |z Connect to this object online.