Prognostic Implications of Total Hemispheric Glucose Metabolism Ratio in Cerebrocerebellar Diaschisis

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Prognostic Implications of Total Hemispheric Glucose Metabolism Ratio in Cerebrocerebellar Diaschisis. / Segtnan, Eivind Antonsen; Grupe, Peter; Jarden, Jens Ole; Gerke, Oke; Ivanidze, Jana; Christlieb, Sofie Beek; Constantinescu, Caius; Pedersen, John Erling; Houshmand, Sina; Hess, Soren; Zarei, Mojtaba; Gjedde, Albert; Alavi, Abass; Hoilund-Carlsen, Poul F.

In: Journal of Nuclear Medicine, Vol. 58, No. 5, 2017, p. 768-773.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Segtnan, EA, Grupe, P, Jarden, JO, Gerke, O, Ivanidze, J, Christlieb, SB, Constantinescu, C, Pedersen, JE, Houshmand, S, Hess, S, Zarei, M, Gjedde, A, Alavi, A & Hoilund-Carlsen, PF 2017, 'Prognostic Implications of Total Hemispheric Glucose Metabolism Ratio in Cerebrocerebellar Diaschisis', Journal of Nuclear Medicine, vol. 58, no. 5, pp. 768-773. https://doi.org/10.2967/jnumed.116.180398

APA

Segtnan, E. A., Grupe, P., Jarden, J. O., Gerke, O., Ivanidze, J., Christlieb, S. B., Constantinescu, C., Pedersen, J. E., Houshmand, S., Hess, S., Zarei, M., Gjedde, A., Alavi, A., & Hoilund-Carlsen, P. F. (2017). Prognostic Implications of Total Hemispheric Glucose Metabolism Ratio in Cerebrocerebellar Diaschisis. Journal of Nuclear Medicine, 58(5), 768-773. https://doi.org/10.2967/jnumed.116.180398

Vancouver

Segtnan EA, Grupe P, Jarden JO, Gerke O, Ivanidze J, Christlieb SB et al. Prognostic Implications of Total Hemispheric Glucose Metabolism Ratio in Cerebrocerebellar Diaschisis. Journal of Nuclear Medicine. 2017;58(5):768-773. https://doi.org/10.2967/jnumed.116.180398

Author

Segtnan, Eivind Antonsen ; Grupe, Peter ; Jarden, Jens Ole ; Gerke, Oke ; Ivanidze, Jana ; Christlieb, Sofie Beek ; Constantinescu, Caius ; Pedersen, John Erling ; Houshmand, Sina ; Hess, Soren ; Zarei, Mojtaba ; Gjedde, Albert ; Alavi, Abass ; Hoilund-Carlsen, Poul F. / Prognostic Implications of Total Hemispheric Glucose Metabolism Ratio in Cerebrocerebellar Diaschisis. In: Journal of Nuclear Medicine. 2017 ; Vol. 58, No. 5. pp. 768-773.

Bibtex

@article{a6812f227c04454e88955423d4af9049,
title = "Prognostic Implications of Total Hemispheric Glucose Metabolism Ratio in Cerebrocerebellar Diaschisis",
abstract = "Diaschisis denotes brain dysfunction remote from a focal brain lesion. We have quantified diaschisis and investigated its prognostic value in glioma. Methods: We compared 50 18F-FDG PET/CT studies collected prospectively from 14 patients with supratentorial glioma (5 men and 9 women; age range, 35–77 y) with 10 single scans from healthy controls (age range, 43–75 y). Dedicated 3-dimensional segmentation software was used to obtain total hemispheric glucose metabolic ratios (THGr) by dividing total hemispheric 18F-FDG uptake in each diaschitic hemisphere—that is, the ipsilateral cerebral hemisphere (THGr(Ce)) and the contralateral cerebellar hemisphere (THGr(Cb))—by its respective contralateral side. Receiver-operating-characteristic (ROC) analysis was performed to determine optimal cut-offs for combinations of THGr(Ce) and THGr(Cb). Two independent observers obtained data for reproducibility analysis, and THGr values were compared with qualitative assessment of diaschisis performed by a PET neuroimaging specialist. Results: Qualitative analysis confirmed cerebrocerebellar diaschisis in all glioblastoma PET studies performed within 1 y of death. Healthy subjects had significantly higher THGr(Ce) values (P = 0.0007) and THGr(Cb) values (P = 0.02) than glioblastoma patients. ROC analysis yielded diaschisis thresholds of 0.62 for THGr(Ce) and 0.84 for THGr (Cb). Qualitative assessment demonstrated cerebral diaschisis in 16 of 17 (94%) cases with THGr(Ce) below the determined threshold and cerebellar diaschisis in 25 of 26 (96%) cases with THGr(Cb) below the determined threshold. When both THGr(Ce) and THGr(Cb) were below the ROC threshold, the combined diaschisis measures had a positive predictive value for survival below 1 y of 100%. When one parameter was below the threshold, it had a positive predictive value of 75%, and when both parameters exceeded thresholds, the negative predictive value for survival above 1 y was 79%. Median interrater variability was 3.3% and 5.9% for THGr(Ce) and THGr(Cb), respectively. Conclusion: The THGr measures demonstrated diaschisis in the cerebrum and cerebellum of patients with glioma. Combined cerebrocerebellar diaschisis ratios with ROC thresholds for both forebrain and hindbrain had high negative and positive predictive values for survival for less than a year. The THGr method allows comparison of data obtained at different institutions and is now open for further validation in gliomas and other cerebral diseases.",
keywords = "diaschisis, brain, cerebellum, glioma, quantification, FDG-PET/CT",
author = "Segtnan, {Eivind Antonsen} and Peter Grupe and Jarden, {Jens Ole} and Oke Gerke and Jana Ivanidze and Christlieb, {Sofie Beek} and Caius Constantinescu and Pedersen, {John Erling} and Sina Houshmand and Soren Hess and Mojtaba Zarei and Albert Gjedde and Abass Alavi and Hoilund-Carlsen, {Poul F.}",
year = "2017",
doi = "10.2967/jnumed.116.180398",
language = "English",
volume = "58",
pages = "768--773",
journal = "The Journal of Nuclear Medicine",
issn = "0161-5505",
publisher = "Society of Nuclear Medicine",
number = "5",

}

RIS

TY - JOUR

T1 - Prognostic Implications of Total Hemispheric Glucose Metabolism Ratio in Cerebrocerebellar Diaschisis

AU - Segtnan, Eivind Antonsen

AU - Grupe, Peter

AU - Jarden, Jens Ole

AU - Gerke, Oke

AU - Ivanidze, Jana

AU - Christlieb, Sofie Beek

AU - Constantinescu, Caius

AU - Pedersen, John Erling

AU - Houshmand, Sina

AU - Hess, Soren

AU - Zarei, Mojtaba

AU - Gjedde, Albert

AU - Alavi, Abass

AU - Hoilund-Carlsen, Poul F.

PY - 2017

Y1 - 2017

N2 - Diaschisis denotes brain dysfunction remote from a focal brain lesion. We have quantified diaschisis and investigated its prognostic value in glioma. Methods: We compared 50 18F-FDG PET/CT studies collected prospectively from 14 patients with supratentorial glioma (5 men and 9 women; age range, 35–77 y) with 10 single scans from healthy controls (age range, 43–75 y). Dedicated 3-dimensional segmentation software was used to obtain total hemispheric glucose metabolic ratios (THGr) by dividing total hemispheric 18F-FDG uptake in each diaschitic hemisphere—that is, the ipsilateral cerebral hemisphere (THGr(Ce)) and the contralateral cerebellar hemisphere (THGr(Cb))—by its respective contralateral side. Receiver-operating-characteristic (ROC) analysis was performed to determine optimal cut-offs for combinations of THGr(Ce) and THGr(Cb). Two independent observers obtained data for reproducibility analysis, and THGr values were compared with qualitative assessment of diaschisis performed by a PET neuroimaging specialist. Results: Qualitative analysis confirmed cerebrocerebellar diaschisis in all glioblastoma PET studies performed within 1 y of death. Healthy subjects had significantly higher THGr(Ce) values (P = 0.0007) and THGr(Cb) values (P = 0.02) than glioblastoma patients. ROC analysis yielded diaschisis thresholds of 0.62 for THGr(Ce) and 0.84 for THGr (Cb). Qualitative assessment demonstrated cerebral diaschisis in 16 of 17 (94%) cases with THGr(Ce) below the determined threshold and cerebellar diaschisis in 25 of 26 (96%) cases with THGr(Cb) below the determined threshold. When both THGr(Ce) and THGr(Cb) were below the ROC threshold, the combined diaschisis measures had a positive predictive value for survival below 1 y of 100%. When one parameter was below the threshold, it had a positive predictive value of 75%, and when both parameters exceeded thresholds, the negative predictive value for survival above 1 y was 79%. Median interrater variability was 3.3% and 5.9% for THGr(Ce) and THGr(Cb), respectively. Conclusion: The THGr measures demonstrated diaschisis in the cerebrum and cerebellum of patients with glioma. Combined cerebrocerebellar diaschisis ratios with ROC thresholds for both forebrain and hindbrain had high negative and positive predictive values for survival for less than a year. The THGr method allows comparison of data obtained at different institutions and is now open for further validation in gliomas and other cerebral diseases.

AB - Diaschisis denotes brain dysfunction remote from a focal brain lesion. We have quantified diaschisis and investigated its prognostic value in glioma. Methods: We compared 50 18F-FDG PET/CT studies collected prospectively from 14 patients with supratentorial glioma (5 men and 9 women; age range, 35–77 y) with 10 single scans from healthy controls (age range, 43–75 y). Dedicated 3-dimensional segmentation software was used to obtain total hemispheric glucose metabolic ratios (THGr) by dividing total hemispheric 18F-FDG uptake in each diaschitic hemisphere—that is, the ipsilateral cerebral hemisphere (THGr(Ce)) and the contralateral cerebellar hemisphere (THGr(Cb))—by its respective contralateral side. Receiver-operating-characteristic (ROC) analysis was performed to determine optimal cut-offs for combinations of THGr(Ce) and THGr(Cb). Two independent observers obtained data for reproducibility analysis, and THGr values were compared with qualitative assessment of diaschisis performed by a PET neuroimaging specialist. Results: Qualitative analysis confirmed cerebrocerebellar diaschisis in all glioblastoma PET studies performed within 1 y of death. Healthy subjects had significantly higher THGr(Ce) values (P = 0.0007) and THGr(Cb) values (P = 0.02) than glioblastoma patients. ROC analysis yielded diaschisis thresholds of 0.62 for THGr(Ce) and 0.84 for THGr (Cb). Qualitative assessment demonstrated cerebral diaschisis in 16 of 17 (94%) cases with THGr(Ce) below the determined threshold and cerebellar diaschisis in 25 of 26 (96%) cases with THGr(Cb) below the determined threshold. When both THGr(Ce) and THGr(Cb) were below the ROC threshold, the combined diaschisis measures had a positive predictive value for survival below 1 y of 100%. When one parameter was below the threshold, it had a positive predictive value of 75%, and when both parameters exceeded thresholds, the negative predictive value for survival above 1 y was 79%. Median interrater variability was 3.3% and 5.9% for THGr(Ce) and THGr(Cb), respectively. Conclusion: The THGr measures demonstrated diaschisis in the cerebrum and cerebellum of patients with glioma. Combined cerebrocerebellar diaschisis ratios with ROC thresholds for both forebrain and hindbrain had high negative and positive predictive values for survival for less than a year. The THGr method allows comparison of data obtained at different institutions and is now open for further validation in gliomas and other cerebral diseases.

KW - diaschisis

KW - brain

KW - cerebellum

KW - glioma

KW - quantification

KW - FDG-PET/CT

U2 - 10.2967/jnumed.116.180398

DO - 10.2967/jnumed.116.180398

M3 - Journal article

C2 - 27789719

VL - 58

SP - 768

EP - 773

JO - The Journal of Nuclear Medicine

JF - The Journal of Nuclear Medicine

SN - 0161-5505

IS - 5

ER -

ID: 182543153