MiniVStimA: A miniaturized easy to use implantable electrical stimulator for small laboratory animals.
According to PubMed, roughly 10% of the annually added publications are describing findings from the small animal model (mice and rats), including investigations in the field of muscle physiology and training. A subset of this research requires neural stimulation with flexible adjustments of stimula...
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Online Access: | https://doi.org/10.1371/journal.pone.0241638 |
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doaj-4684a34c7c2548b483a0029672a9d5cd2021-03-04T12:28:50ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-011510e024163810.1371/journal.pone.0241638MiniVStimA: A miniaturized easy to use implantable electrical stimulator for small laboratory animals.Manfred BijakMartin SchmollJonathan C JarvisEwald UngerHermann LanmüllerAccording to PubMed, roughly 10% of the annually added publications are describing findings from the small animal model (mice and rats), including investigations in the field of muscle physiology and training. A subset of this research requires neural stimulation with flexible adjustments of stimulation parameters, highlighting the need for reliable implantable electrical stimulators, small enough (~1 cm3), that even mice can tolerate them without impairing their movement. The MiniVStimA is a battery-powered implant for nerve stimulation with an outer diameter of 15 mm and an encapsulated volume of 1.2 cm3 in its smallest variation. It can be pre-programmed according to the experimental protocol and controlled after implantation with a magnet. It delivers constant current charge-balanced monophasic rectangular pulses up to 2 mA and 1 ms phase width (1 kΩ load). The circuitry is optimized for small volume and energy efficiency. Due to the variation of the internal oscillator (31 kHz ± 10%), calibration measures must be implemented during the manufacturing process, which can reduce the deviation of the frequency related parameters down to ± 1%. The expected lifetime of the smaller (larger) version is 100 (480) days for stimulation with 7 Hz all day and 10 (48) days for stimulation with 100 Hz. Devices with complex stimulation patterns for nerve stimulation have been successfully used in two in-vivo studies, lasting up to nine weeks. The implant worked fully self-contained while the animal stayed in its familiar environment. External components are not required during the entire time.https://doi.org/10.1371/journal.pone.0241638 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Manfred Bijak Martin Schmoll Jonathan C Jarvis Ewald Unger Hermann Lanmüller |
spellingShingle |
Manfred Bijak Martin Schmoll Jonathan C Jarvis Ewald Unger Hermann Lanmüller MiniVStimA: A miniaturized easy to use implantable electrical stimulator for small laboratory animals. PLoS ONE |
author_facet |
Manfred Bijak Martin Schmoll Jonathan C Jarvis Ewald Unger Hermann Lanmüller |
author_sort |
Manfred Bijak |
title |
MiniVStimA: A miniaturized easy to use implantable electrical stimulator for small laboratory animals. |
title_short |
MiniVStimA: A miniaturized easy to use implantable electrical stimulator for small laboratory animals. |
title_full |
MiniVStimA: A miniaturized easy to use implantable electrical stimulator for small laboratory animals. |
title_fullStr |
MiniVStimA: A miniaturized easy to use implantable electrical stimulator for small laboratory animals. |
title_full_unstemmed |
MiniVStimA: A miniaturized easy to use implantable electrical stimulator for small laboratory animals. |
title_sort |
minivstima: a miniaturized easy to use implantable electrical stimulator for small laboratory animals. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2020-01-01 |
description |
According to PubMed, roughly 10% of the annually added publications are describing findings from the small animal model (mice and rats), including investigations in the field of muscle physiology and training. A subset of this research requires neural stimulation with flexible adjustments of stimulation parameters, highlighting the need for reliable implantable electrical stimulators, small enough (~1 cm3), that even mice can tolerate them without impairing their movement. The MiniVStimA is a battery-powered implant for nerve stimulation with an outer diameter of 15 mm and an encapsulated volume of 1.2 cm3 in its smallest variation. It can be pre-programmed according to the experimental protocol and controlled after implantation with a magnet. It delivers constant current charge-balanced monophasic rectangular pulses up to 2 mA and 1 ms phase width (1 kΩ load). The circuitry is optimized for small volume and energy efficiency. Due to the variation of the internal oscillator (31 kHz ± 10%), calibration measures must be implemented during the manufacturing process, which can reduce the deviation of the frequency related parameters down to ± 1%. The expected lifetime of the smaller (larger) version is 100 (480) days for stimulation with 7 Hz all day and 10 (48) days for stimulation with 100 Hz. Devices with complex stimulation patterns for nerve stimulation have been successfully used in two in-vivo studies, lasting up to nine weeks. The implant worked fully self-contained while the animal stayed in its familiar environment. External components are not required during the entire time. |
url |
https://doi.org/10.1371/journal.pone.0241638 |
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