1naresh
Array
(
[urn:ac.highwire.org:guest:identity] => Array
(
[runtime-id] => urn:ac.highwire.org:guest:identity
[type] => guest
[service-id] => ajnr-ac.highwire.org
[access-type] => Controlled
[privilege] => Array
(
[urn:ac.highwire.org:guest:privilege] => Array
(
[runtime-id] => urn:ac.highwire.org:guest:privilege
[type] => privilege-set
[privilege-set] => GUEST
)
)
[credentials] => Array
(
[method] => guest
)
)
)
1nareshArray
(
[urn:ac.highwire.org:guest:identity] => Array
(
[runtime-id] => urn:ac.highwire.org:guest:identity
[type] => guest
[service-id] => ajnr-ac.highwire.org
[access-type] => FreeToRead
[privilege] => Array
(
[urn:ac.highwire.org:guest:privilege] => Array
(
[runtime-id] => urn:ac.highwire.org:guest:privilege
[type] => privilege-set
[privilege-set] => GUEST
)
)
[credentials] => Array
(
[method] => guest
)
)
)
PT - JOURNAL ARTICLE
AU - Lasocki, Arian
AU - Stuckey, Stephen L.
AU - Caspersz, Lauren
AU - Xie, Jing
AU - McArthur, Grant A.
TI - Prospective Comparison of T1-SPACE and MPRAGE for the Identification of Intrinsic T1 Hyperintensity in Patients with Intracranial Melanoma Metastases
AID - 10.3174/ajnr.A7975
DP - 2023 Sep 01
TA - American Journal of Neuroradiology
PG - 1039--1044
VI - 44
IP - 9
4099 - http://www.ajnr.org/content/44/9/1039.short
4100 - http://www.ajnr.org/content/44/9/1039.full
SO - Am. J. Neuroradiol.2023 Sep 01; 44
AB - BACKGROUND AND PURPOSE: Volumetric TSE (3D-TSE) techniques are increasingly replacing volumetric magnetization-prepared gradient recalled-echo (3D-GRE) sequences due to improved metastasis detection. In addition to providing a baseline for assessing postcontrast enhancement, precontrast T1WI also identifies intrinsic T1 hyperintensity, for example, reflecting melanin or blood products. The ability of precontrast 3D-TSE to demonstrate intrinsic T1 hyperintensity is not clear from the literature; thus, this study compares precontrast 3D-TSE and 3D-GRE sequences for identifying intrinsic T1 hyperintensity in patients with metastatic melanoma.MATERIALS AND METHODS: Patients with metastatic melanoma and previously reported intrinsic T1 hyperintensity were identified. MRIs were performed at 3T including both 3D-GRE (MPRAGE) and 3D-TSE T1 sampling perfection with application-optimized contrasts by using different flip angle evolution (T1-SPACE) sequences precontrast. Axial 1-mm slices of both T1WI sequences were independently reviewed by 2 neuroradiologists, comparing the conspicuity of each lesion between the 2 sequences according to a 5-point scale and assessing whether the intrinsic T1 hyperintensity was attributable to melanin, blood products, or both.RESULTS: Twenty examinations were performed, with a total of 214 lesions demonstrating intrinsic T1 hyperintensity. Both readers found that intrinsic T1 hyperintensity was less conspicuous with T1-SPACE compared with MPRAGE for most lesions assessed (81.8%, averaged across both readers), including for lesions with intrinsic T1 hyperintensity attributable to melanin and blood products. Intrinsic T1 hyperintensity was rarely more conspicuous on T1-SPACE (1.4%).CONCLUSIONS: Precontrast intrinsic T1 hyperintensity is more conspicuous with MPRAGE than T1-SPACE. In patients with metastatic melanoma, 3D-GRE should be preferred as the precontrast T1WI sequence when both 3D-TSE and 3D-GRE are performed postcontrast and when not administering IV contrast.3D-GREvolumetric magnetization-prepared gradient recalled-echo3D-TSEvolumetric TSEIMMintracranial melanoma metastasesT1Hintrinsic T1 hyperintensityT1-SPACET1 sampling perfection with application-optimized contrasts by using different flip angle evolution