CsAuthors.net database
Most of the data is coming from the
DBLP Computer Science Bibliography
and the rest is coming from CsAuthors.net own database.
We are working hard to keep everything up-to-date. However, we know that there are many papers not yet included in our dataset.
If something is wrong or missing, feel free to write me at
We are working hard to keep everything up-to-date. However, we know that there are many papers not yet included in our dataset.
If something is wrong or missing, feel free to write me at
my email address
.
The "Dijkstra number"
The Dijkstra number describes the collaborative distance between an author and
Edsger W. Dijkstra.
In our dataset 90.3% of authors are connected to Edsger W. Dijkstra and the average Dijkstra number among them is 5.08.
These kind of number/metrics are quite famous and already well defined in other fields.
In our dataset 90.3% of authors are connected to Edsger W. Dijkstra and the average Dijkstra number among them is 5.08.
These kind of number/metrics are quite famous and already well defined in other fields.
- The "Erdős number" expresses the collaborative distance with Paul Erdős, the famous Hungarian mathematician.
- The "Bacon number" expresses the co-acting distance with Kevin Bacon.
The "Erdős number"
The Erdős number describes the collaborative distance between an author and
Paul Erdős.
In our dataset 90.3% of authors are connected to Paul Erdős and the average Erdős number among them is 4.68.
Find more on Wikipedia with an article on the"Erdős number".
In our dataset 90.3% of authors are connected to Paul Erdős and the average Erdős number among them is 4.68.
Find more on Wikipedia with an article on the"Erdős number".
Alexander Li Cohen
Orcid: 0000-0001-6557-5866
According to our database1,
Alexander Li Cohen
authored at least 10 papers
between 2007 and 2025.
Collaborative distances:
Collaborative distances:
Timeline
Legend:
Book In proceedings Article PhD thesis Dataset OtherLinks
Online presence:
-
on orcid.org
On csauthors.net:
Bibliography
2025
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Dataset, September, 2025
2024
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Dataset, September, 2024
2023
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Dataset, November, 2023
2022
Reducing the Effects of Motion Artifacts in fMRI: A Structured Matrix Completion Approach.
IEEE Trans. Medical Imaging, 2022
2020
Dynamic Missing-Data Completion Reduces Leakage of Motion Artifact Caused by Temporal Filtering that Remains After Scrubbing.
Proceedings of the 17th IEEE International Symposium on Biomedical Imaging, 2020
2017
BIDS apps: Improving ease of use, accessibility, and reproducibility of neuroimaging data analysis methods.
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PLoS Comput. Biol., 2017
2009
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PLoS Comput. Biol., 2009
Resting-state functional connectivity in the human brain revealed with diffuse optical tomography.
, , , , , ,
NeuroImage, 2009
2008
Defining functional areas in individual human brains using resting functional connectivity MRI.
, , , , , , ,
NeuroImage, 2008
2007
A method for using blocked and event-related fMRI data to study "resting state" functional connectivity.
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NeuroImage, 2007