Automated Author Profile

Dawood, Yousif

0000-0002-1218-3540

Current S-Index

0.1

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.0

Average Dataset Index per dataset

Total Datasets

6

Total datasets for this author

Average FAIR Score

13.5%

Average FAIR Score per dataset

Total Citations

0

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

HUB Proposal: Human Organ Atlas Hub (HOAHub)

This HOAHub will create a physical and virtual Hub which uses HiP-CT to scan whole human organs with local cellular resolution, producing a “Human Organ Atlas in Health and Disease”. It will bridge clinical imaging (centimetre scale) to molecular modalities (nanometer scale), providing unprecedented insights into our bodies, helping cure or mitigate diseases from neuro-degeneration to cancer. The HOAHub will bring together interdisciplinary groups to produce the novel experimental and computational technologies needed to analyse and interpret the scale-bridging data. By transforming HiP-CT into an efficient tool, HOAHub will enable the clinical impact of synchrotron imaging to be realised. Through these scientific and technical efficiencies, HOAHub will not only advance biological, computational and medical fields, it will provide anatomical training resources and a new Gold Standard for validating CT, MRI and 3D histology, inspiring new techniques and real-world clinical insights.

Authors

  • Chourrout, Matthieu ;
  • Dawood, Yousif ;
  • Docter, Daniel ;
  • Evangelinos, Angelos ;
  • Lee, Peter ;
  • Mittone, Alberto ;
  • Poologasundarampillai, Gowsihan ;
  • Schardt, Jenna ;
  • Stansby, David ;
  • Urban, Theresa ;
  • Walsh, Claire
0 Citations0 Mentions13% FAIR0.1 Dataset Index
10.15151/esrf-es-14871863472024

Overview at 20.06um of the femaleGenitalia of donor AUMC-007-23, scanned at ESRF on beamline BM18. (Version: 1)

Overview at 20.06um of the femaleGenitalia of donor AUMC-007-23, scanned at ESRF on beamline BM18 using the HiP-CT imaging technique. Hierarchical Phase-Contrast Tomography (HiP-CT) is an X-ray technique that decouples field of view and resolution to image anywhere in the human body with cellular (micron) resolution. Imaging areas can be full organs at a resolution of 25 micron or zoomed regions in these organs with resolutions between 6 and 0.6 micron, one hundred times the resolution of medical CT.

Authors

  • Human Organ Atlas Collaboration, The ;
  • Sharma, Aikta ;
  • Bellier, Alexandre ;
  • Farina Sarasqueta, Arantza ;
  • de Bakker, Bernadette ;
  • Bay, Brian ;
  • Walsh, Claire ;
  • Docter, Daniël ;
  • Jonigk, Danny ;
  • Stansby, David ;
  • Alblas, Demi ;
  • Boller, Elodie ;
  • Gaisne, Guillaume ;
  • Dejea I Velardo, Hector ;
  • Henderson, Isla ;
  • Hanemaaijer-van der Veer, Jermo ;
  • Chen, Jishizhan ;
  • Purzycka, Joanna ;
  • Brunet, Joseph ;
  • Young Lee, Ju ;
  • Huirne, Judith ;
  • Juffermans, Lynda ;
  • Ackermann, Maximilian ;
  • Donner, Naomi ;
  • Burger, Nicole ;
  • Palombi, Olivier ;
  • Tafforeau, Paul ;
  • Lee, Peter ;
  • Chaffanjon, Philippe ;
  • Shipley, Rebecca ;
  • Schoonhoven, Richard ;
  • Walker-Samuel, Simon ;
  • Urban, Theresa ;
  • MW Michels, Veerle ;
  • Wagner, Willi ;
  • Dawood, Yousif
0 Citations0 Mentions13% FAIR0.1 Dataset Index
10.15151/esrf-dc-23790118882026

Zoom (VOI-1) at 2.196um of the femaleGenitalia of donor AUMC-007-23, scanned at ESRF on beamline BM18. (Version: 1)

Zoom (VOI-1) at 2.196um of the femaleGenitalia of donor AUMC-007-23, scanned at ESRF on beamline BM18 using the HiP-CT imaging technique. Hierarchical Phase-Contrast Tomography (HiP-CT) is an X-ray technique that decouples field of view and resolution to image anywhere in the human body with cellular (micron) resolution. Imaging areas can be full organs at a resolution of 25 micron or zoomed regions in these organs with resolutions between 6 and 0.6 micron, one hundred times the resolution of medical CT.

Authors

  • Human Organ Atlas Collaboration, The ;
  • Sharma, Aikta ;
  • Bellier, Alexandre ;
  • Farina Sarasqueta, Arantza ;
  • de Bakker, Bernadette ;
  • Bay, Brian ;
  • Walsh, Claire ;
  • Docter, Daniël ;
  • Jonigk, Danny ;
  • Stansby, David ;
  • Alblas, Demi ;
  • Boller, Elodie ;
  • Gaisne, Guillaume ;
  • Dejea I Velardo, Hector ;
  • Henderson, Isla ;
  • Hanemaaijer-van der Veer, Jermo ;
  • Chen, Jishizhan ;
  • Purzycka, Joanna ;
  • Brunet, Joseph ;
  • Young Lee, Ju ;
  • Huirne, Judith ;
  • Juffermans, Lynda ;
  • Ackermann, Maximilian ;
  • Donner, Naomi ;
  • Burger, Nicole ;
  • Palombi, Olivier ;
  • Tafforeau, Paul ;
  • Lee, Peter ;
  • Chaffanjon, Philippe ;
  • Shipley, Rebecca ;
  • Schoonhoven, Richard ;
  • Walker-Samuel, Simon ;
  • Urban, Theresa ;
  • MW Michels, Veerle ;
  • Wagner, Willi ;
  • Dawood, Yousif
0 Citations0 Mentions13% FAIR0.1 Dataset Index
10.15151/esrf-dc-23802068542026

Zoom (VOI-1) at 2.196um of the femaleGenitalia of donor AUMC-031-24, scanned at ESRF on beamline BM18. (Version: 1)

Zoom (VOI-1) at 2.196um of the femaleGenitalia of donor AUMC-031-24, scanned at ESRF on beamline BM18 using the HiP-CT imaging technique. Hierarchical Phase-Contrast Tomography (HiP-CT) is an X-ray technique that decouples field of view and resolution to image anywhere in the human body with cellular (micron) resolution. Imaging areas can be full organs at a resolution of 25 micron or zoomed regions in these organs with resolutions between 6 and 0.6 micron, one hundred times the resolution of medical CT.

Authors

  • Human Organ Atlas Collaboration, The ;
  • Sharma, Aikta ;
  • Bellier, Alexandre ;
  • Farina Sarasqueta, Arantza ;
  • de Bakker, Bernadette ;
  • Bay, Brian ;
  • Walsh, Claire ;
  • Docter, Daniël ;
  • Jonigk, Danny ;
  • Stansby, David ;
  • Alblas, Demi ;
  • Boller, Elodie ;
  • Gaisne, Guillaume ;
  • Dejea I Velardo, Hector ;
  • Henderson, Isla ;
  • Hanemaaijer-van der Veer, Jermo ;
  • Chen, Jishizhan ;
  • Purzycka, Joanna ;
  • Brunet, Joseph ;
  • Young Lee, Ju ;
  • Huirne, Judith ;
  • Juffermans, Lynda ;
  • Ackermann, Maximilian ;
  • Donner, Naomi ;
  • Burger, Nicole ;
  • Palombi, Olivier ;
  • Tafforeau, Paul ;
  • Lee, Peter ;
  • Chaffanjon, Philippe ;
  • Shipley, Rebecca ;
  • Schoonhoven, Richard ;
  • Walker-Samuel, Simon ;
  • Urban, Theresa ;
  • MW Michels, Veerle ;
  • Wagner, Willi ;
  • Dawood, Yousif
0 Citations0 Mentions13% FAIR0.1 Dataset Index
10.15151/esrf-dc-23802068622026

Overview at 20.06um of the femaleGenitalia of donor AUMC-031-24, scanned at ESRF on beamline BM18. (Version: 1)

Overview at 20.06um of the femaleGenitalia of donor AUMC-031-24, scanned at ESRF on beamline BM18 using the HiP-CT imaging technique. Hierarchical Phase-Contrast Tomography (HiP-CT) is an X-ray technique that decouples field of view and resolution to image anywhere in the human body with cellular (micron) resolution. Imaging areas can be full organs at a resolution of 25 micron or zoomed regions in these organs with resolutions between 6 and 0.6 micron, one hundred times the resolution of medical CT.

Authors

  • Human Organ Atlas Collaboration, The ;
  • Sharma, Aikta ;
  • Bellier, Alexandre ;
  • Farina Sarasqueta, Arantza ;
  • de Bakker, Bernadette ;
  • Bay, Brian ;
  • Walsh, Claire ;
  • Docter, Daniël ;
  • Jonigk, Danny ;
  • Stansby, David ;
  • Alblas, Demi ;
  • Boller, Elodie ;
  • Gaisne, Guillaume ;
  • Dejea I Velardo, Hector ;
  • Henderson, Isla ;
  • Hanemaaijer-van der Veer, Jermo ;
  • Chen, Jishizhan ;
  • Purzycka, Joanna ;
  • Brunet, Joseph ;
  • Young Lee, Ju ;
  • Huirne, Judith ;
  • Juffermans, Lynda ;
  • Ackermann, Maximilian ;
  • Donner, Naomi ;
  • Burger, Nicole ;
  • Palombi, Olivier ;
  • Tafforeau, Paul ;
  • Lee, Peter ;
  • Chaffanjon, Philippe ;
  • Shipley, Rebecca ;
  • Schoonhoven, Richard ;
  • Walker-Samuel, Simon ;
  • Urban, Theresa ;
  • MW Michels, Veerle ;
  • Wagner, Willi ;
  • Dawood, Yousif
0 Citations0 Mentions13% FAIR0.1 Dataset Index
10.15151/esrf-dc-23802068702026

Overview at 20.026um of the uterus of donor AUMC-005, scanned at ESRF on beamline BM18. (Version: 1)

Overview at 20.026um of the uterus of donor AUMC-005, scanned at ESRF on beamline BM18 using the HiP-CT imaging technique. Hierarchical Phase-Contrast Tomography (HiP-CT) is an X-ray technique that decouples field of view and resolution to image anywhere in the human body with cellular (micron) resolution. Imaging areas can be full organs at a resolution of 25 micron or zoomed regions in these organs with resolutions between 6 and 0.6 micron, one hundred times the resolution of medical CT.

Authors

  • Human Organ Atlas Collaboration, The ;
  • Mittone, Alberto ;
  • Bellier, Alexandre ;
  • Yendiki, Anastasia ;
  • Evangelinos, Angelos ;
  • Farina Sarasqueta, Arantza ;
  • de Bakker, Bernadette ;
  • Walsh, Claire ;
  • Docter, Daniël ;
  • Jonigk, Danny ;
  • Stansby, David ;
  • Poologasundarampillai, Gowsihan ;
  • Gaisne, Guillaume ;
  • Dejea I Velardo, Hector ;
  • Schardt, Jenna ;
  • Hanemaaijer-van der Veer, Jermo ;
  • Purzycka, Joanna ;
  • Brunet, Joseph ;
  • Young Lee, Ju ;
  • Huirne, Judith ;
  • Juffermans, Lynda ;
  • Chourrout, Matthieu ;
  • Ackermann, Maximilian ;
  • Donner, Naomi ;
  • Burger, Nicole ;
  • Tafforeau, Paul ;
  • Lee, Peter ;
  • Schoonhoven, Richard ;
  • Verleden, Stijn ;
  • Urban, Theresa ;
  • MW Michels, Veerle ;
  • Dawood, Yousif
0 Citations0 Mentions13% FAIR0.1 Dataset Index
10.15151/esrf-dc-22121150722025