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Basis profile curve identification to understand electrical stimulation effects in human brain networks
- Miller, Kai J.;
- Mueller, Klaus-Robert;
- Hermes, Dora;
- van Vugt, Marieke Karlijn;
- Marinazzo, Daniele;
- 외 4명
WEB OF SCIENCE
11SCOPUS
28초록
Brain networks can be explored by delivering brief pulses of electrical current in one area while measuring voltage responses in other areas. We propose a convergent paradigm to study brain dynamics, focusing on a single brain site to observe the average effect of stimulating each of many other brain sites. Viewed in this manner, visually-apparent motifs in the temporal response shape emerge from adjacent stimulation sites. This work constructs and illustrates a data-driven approach to determine characteristic spatiotemporal structure in these response shapes, summarized by a set of unique basis profile curves (BPCs). Each BPC may be mapped back to underlying anatomy in a natural way, quantifying projection strength from each stimulation site using simple metrics. Our technique is demonstrated for an array of implanted brain surface electrodes in a human patient. This framework enables straightforward interpretation of single-pulse brain stimulation data, and can be applied generically to explore the diverse milieu of interactions that comprise the connectome.
키워드
- 제목
- Basis profile curve identification to understand electrical stimulation effects in human brain networks
- 저자
- Miller, Kai J.; Mueller, Klaus-Robert; Hermes, Dora; van Vugt, Marieke Karlijn; Marinazzo, Daniele; van Vugt, Marieke Karlijn; Marinazzo, Daniele; van Vugt, Marieke Karlijn; Marinazzo, Daniele
- 발행일
- 2021-09
- 유형
- Article
- 권
- 17
- 호
- 9