Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul;36(3):329-333. doi: 10.1007/s10334-023-01106-x. Epub 2023 Jul 24.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul;36(3):329-333. doi: 10.1007/s10334-023-01106-x. Epub 2023 Jul 24.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul;36(3):329-333. doi: 10.1007/s10334-023-01106-x. Epub 2023 Jul 24.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul;36(3):329-333. doi: 10.1007/s10334-023-01106-x. Epub 2023 Jul 24.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul 24. doi: 10.1007/s10334-023-01106-x. Online ahead of print.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul 24. doi: 10.1007/s10334-023-01106-x. Online ahead of print.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul 24. doi: 10.1007/s10334-023-01106-x. Online ahead of print.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul 24. doi: 10.1007/s10334-023-01106-x. Online ahead of print.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Exploring the foothills: benefits below 1 Tesla?
MAGMA. 2023 Jul 24. doi: 10.1007/s10334-023-01106-x. Online ahead of print.NO ABSTRACTPMID:37482583 | DOI:10.1007/s10334-023-01106-x (Source: Magma)
Source: Magma - July 23, 2023 Category: Radiology Authors: Najat Salameh David J Lurie Özlem Ipek Clarissa Zimmerman Cooley Adrienne E Campbell-Washburn Source Type: research

Repeatability and reproducibility of apparent exchange rate measurements in yeast cell phantoms using filter-exchange imaging
CONCLUSIONS: Using ice-water and yeast cell-based phantoms, a protocol for the validation of FEXI pulse sequences was established for the assessment of stability, repeatability, reproducibility and directionality. In addition, a strong dependence of AXR on cell density and temperature was shown. As AXR is an emerging novel imaging biomarker, the suggested protocol will be useful for quality assurance of AXR measurements within a study and potentially across multiple sites.PMID:37436611 | DOI:10.1007/s10334-023-01107-w (Source: Magma)
Source: Magma - July 12, 2023 Category: Radiology Authors: Mathias Schillmaier Athanasia Kaika Geoffrey J Topping Rickmer Braren Franz Schilling Source Type: research

Repeatability and reproducibility of apparent exchange rate measurements in yeast cell phantoms using filter-exchange imaging
CONCLUSIONS: Using ice-water and yeast cell-based phantoms, a protocol for the validation of FEXI pulse sequences was established for the assessment of stability, repeatability, reproducibility and directionality. In addition, a strong dependence of AXR on cell density and temperature was shown. As AXR is an emerging novel imaging biomarker, the suggested protocol will be useful for quality assurance of AXR measurements within a study and potentially across multiple sites.PMID:37436611 | DOI:10.1007/s10334-023-01107-w (Source: Magma)
Source: Magma - July 12, 2023 Category: Radiology Authors: Mathias Schillmaier Athanasia Kaika Geoffrey J Topping Rickmer Braren Franz Schilling Source Type: research

Repeatability and reproducibility of apparent exchange rate measurements in yeast cell phantoms using filter-exchange imaging
CONCLUSIONS: Using ice-water and yeast cell-based phantoms, a protocol for the validation of FEXI pulse sequences was established for the assessment of stability, repeatability, reproducibility and directionality. In addition, a strong dependence of AXR on cell density and temperature was shown. As AXR is an emerging novel imaging biomarker, the suggested protocol will be useful for quality assurance of AXR measurements within a study and potentially across multiple sites.PMID:37436611 | DOI:10.1007/s10334-023-01107-w (Source: Magma)
Source: Magma - July 12, 2023 Category: Radiology Authors: Mathias Schillmaier Athanasia Kaika Geoffrey J Topping Rickmer Braren Franz Schilling Source Type: research

Repeatability and reproducibility of apparent exchange rate measurements in yeast cell phantoms using filter-exchange imaging
CONCLUSIONS: Using ice-water and yeast cell-based phantoms, a protocol for the validation of FEXI pulse sequences was established for the assessment of stability, repeatability, reproducibility and directionality. In addition, a strong dependence of AXR on cell density and temperature was shown. As AXR is an emerging novel imaging biomarker, the suggested protocol will be useful for quality assurance of AXR measurements within a study and potentially across multiple sites.PMID:37436611 | DOI:10.1007/s10334-023-01107-w (Source: Magma)
Source: Magma - July 12, 2023 Category: Radiology Authors: Mathias Schillmaier Athanasia Kaika Geoffrey J Topping Rickmer Braren Franz Schilling Source Type: research

Repeatability and reproducibility of apparent exchange rate measurements in yeast cell phantoms using filter-exchange imaging
CONCLUSIONS: Using ice-water and yeast cell-based phantoms, a protocol for the validation of FEXI pulse sequences was established for the assessment of stability, repeatability, reproducibility and directionality. In addition, a strong dependence of AXR on cell density and temperature was shown. As AXR is an emerging novel imaging biomarker, the suggested protocol will be useful for quality assurance of AXR measurements within a study and potentially across multiple sites.PMID:37436611 | DOI:10.1007/s10334-023-01107-w (Source: Magma)
Source: Magma - July 12, 2023 Category: Radiology Authors: Mathias Schillmaier Athanasia Kaika Geoffrey J Topping Rickmer Braren Franz Schilling Source Type: research

Repeatability and reproducibility of apparent exchange rate measurements in yeast cell phantoms using filter-exchange imaging
CONCLUSIONS: Using ice-water and yeast cell-based phantoms, a protocol for the validation of FEXI pulse sequences was established for the assessment of stability, repeatability, reproducibility and directionality. In addition, a strong dependence of AXR on cell density and temperature was shown. As AXR is an emerging novel imaging biomarker, the suggested protocol will be useful for quality assurance of AXR measurements within a study and potentially across multiple sites.PMID:37436611 | DOI:10.1007/s10334-023-01107-w (Source: Magma)
Source: Magma - July 12, 2023 Category: Radiology Authors: Mathias Schillmaier Athanasia Kaika Geoffrey J Topping Rickmer Braren Franz Schilling Source Type: research