Marie E Galteau, Margaret Broadwater, Yi Chen, Gabriel Desrosiers-Gregoire, Rita Gil, Johannes Kaesser, Eugene Kim, Pervin Kıryağdı, Henriette Lambers, Yanyan Y Liu, Xavier López-Gil, Eilidh MacNicol, Parastoo Mohebkhodaei, Ricardo X N De Oliveira, Carolina A Pereira, Henning M Reimann, Alejandro Rivera-Olvera, Erwan Selingue, Nikoloz Sirmpilatze, Sandra Strobelt, Akira Sumiyoshi, Channelle Tham, Raul Tudela, Roël M Vrooman, Isabel Wank, Yongzhi Zhang, Wessel A van Engelenburg, Jürgen Baudewig, Susann Boretius, Diana Cash, M Mallar Chakravarty, Kai-Hsiang Chuang, Luisa Ciobanu, Gabriel A Devenyi, Cornelius Faber, Andreas Hess, Judith R Homberg, Ileana O Jelescu, Carles Justicia, Ryuta Kawashima, Thoralf Niendorf, Tom W J Scheenen, Noam Shemesh, Guadalupe Soria, Nick Todd, Lydia Wachsmuth, Xin Yu, Baogui B Zhang, Yen-Yu Ian Shih, Sung-Ho Lee, Joanes Grandjean
{"title":"使用统一管道的多中心回顾性大鼠感觉诱发功能MRI数据集的激活映射。","authors":"Marie E Galteau, Margaret Broadwater, Yi Chen, Gabriel Desrosiers-Gregoire, Rita Gil, Johannes Kaesser, Eugene Kim, Pervin Kıryağdı, Henriette Lambers, Yanyan Y Liu, Xavier López-Gil, Eilidh MacNicol, Parastoo Mohebkhodaei, Ricardo X N De Oliveira, Carolina A Pereira, Henning M Reimann, Alejandro Rivera-Olvera, Erwan Selingue, Nikoloz Sirmpilatze, Sandra Strobelt, Akira Sumiyoshi, Channelle Tham, Raul Tudela, Roël M Vrooman, Isabel Wank, Yongzhi Zhang, Wessel A van Engelenburg, Jürgen Baudewig, Susann Boretius, Diana Cash, M Mallar Chakravarty, Kai-Hsiang Chuang, Luisa Ciobanu, Gabriel A Devenyi, Cornelius Faber, Andreas Hess, Judith R Homberg, Ileana O Jelescu, Carles Justicia, Ryuta Kawashima, Thoralf Niendorf, Tom W J Scheenen, Noam Shemesh, Guadalupe Soria, Nick Todd, Lydia Wachsmuth, Xin Yu, Baogui B Zhang, Yen-Yu Ian Shih, Sung-Ho Lee, Joanes Grandjean","doi":"10.1162/IMAG.a.157","DOIUrl":null,"url":null,"abstract":"<p><p>Functional Magnetic Resonance Imaging (fMRI) in rodents is pivotal for understanding the mechanisms underlying Blood Oxygen Level-Dependent (BOLD) signals and phenotyping animal models of disorders, among other applications. Despite its growing use, comparing rodent fMRI results across different research sites remains challenging due to variations in experimental protocols. Here, we aggregated and analyzed 22 sensory-evoked rat fMRI datasets from 12 imaging centers, totaling scans from 220 rats, to get a snapshot of the current acquisitions in the field. This retrospective analysis highlights common practices and parameters to inform future cross-laboratory standardization efforts. We applied a standardized preprocessing pipeline and evaluated the impact of different hemodynamic response function models on group- and individual-level activity patterns. Our analysis revealed inter-dataset variability attributed to differences in experimental design, anesthesia protocols, and imaging parameters. We identified robust activation clusters in all (22/22) datasets. The comparison between stock human models implemented in software and rat-specific models showed significant variations in the resulting statistical maps. Our findings emphasize the necessity for standardized protocols and collaborative efforts to improve the reproducibility and reliability of rodent fMRI studies. We provide open access to all datasets and analysis code to foster transparency and further research in the field.</p>","PeriodicalId":73341,"journal":{"name":"Imaging neuroscience (Cambridge, Mass.)","volume":"3 ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2025-09-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC12455057/pdf/","citationCount":"0","resultStr":"{\"title\":\"Activation mapping in multi-center retrospective rat sensory-evoked functional MRI datasets using a unified pipeline.\",\"authors\":\"Marie E Galteau, Margaret Broadwater, Yi Chen, Gabriel Desrosiers-Gregoire, Rita Gil, Johannes Kaesser, Eugene Kim, Pervin Kıryağdı, Henriette Lambers, Yanyan Y Liu, Xavier López-Gil, Eilidh MacNicol, Parastoo Mohebkhodaei, Ricardo X N De Oliveira, Carolina A Pereira, Henning M Reimann, Alejandro Rivera-Olvera, Erwan Selingue, Nikoloz Sirmpilatze, Sandra Strobelt, Akira Sumiyoshi, Channelle Tham, Raul Tudela, Roël M Vrooman, Isabel Wank, Yongzhi Zhang, Wessel A van Engelenburg, Jürgen Baudewig, Susann Boretius, Diana Cash, M Mallar Chakravarty, Kai-Hsiang Chuang, Luisa Ciobanu, Gabriel A Devenyi, Cornelius Faber, Andreas Hess, Judith R Homberg, Ileana O Jelescu, Carles Justicia, Ryuta Kawashima, Thoralf Niendorf, Tom W J Scheenen, Noam Shemesh, Guadalupe Soria, Nick Todd, Lydia Wachsmuth, Xin Yu, Baogui B Zhang, Yen-Yu Ian Shih, Sung-Ho Lee, Joanes Grandjean\",\"doi\":\"10.1162/IMAG.a.157\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Functional Magnetic Resonance Imaging (fMRI) in rodents is pivotal for understanding the mechanisms underlying Blood Oxygen Level-Dependent (BOLD) signals and phenotyping animal models of disorders, among other applications. Despite its growing use, comparing rodent fMRI results across different research sites remains challenging due to variations in experimental protocols. Here, we aggregated and analyzed 22 sensory-evoked rat fMRI datasets from 12 imaging centers, totaling scans from 220 rats, to get a snapshot of the current acquisitions in the field. This retrospective analysis highlights common practices and parameters to inform future cross-laboratory standardization efforts. We applied a standardized preprocessing pipeline and evaluated the impact of different hemodynamic response function models on group- and individual-level activity patterns. Our analysis revealed inter-dataset variability attributed to differences in experimental design, anesthesia protocols, and imaging parameters. We identified robust activation clusters in all (22/22) datasets. The comparison between stock human models implemented in software and rat-specific models showed significant variations in the resulting statistical maps. Our findings emphasize the necessity for standardized protocols and collaborative efforts to improve the reproducibility and reliability of rodent fMRI studies. 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Activation mapping in multi-center retrospective rat sensory-evoked functional MRI datasets using a unified pipeline.
Functional Magnetic Resonance Imaging (fMRI) in rodents is pivotal for understanding the mechanisms underlying Blood Oxygen Level-Dependent (BOLD) signals and phenotyping animal models of disorders, among other applications. Despite its growing use, comparing rodent fMRI results across different research sites remains challenging due to variations in experimental protocols. Here, we aggregated and analyzed 22 sensory-evoked rat fMRI datasets from 12 imaging centers, totaling scans from 220 rats, to get a snapshot of the current acquisitions in the field. This retrospective analysis highlights common practices and parameters to inform future cross-laboratory standardization efforts. We applied a standardized preprocessing pipeline and evaluated the impact of different hemodynamic response function models on group- and individual-level activity patterns. Our analysis revealed inter-dataset variability attributed to differences in experimental design, anesthesia protocols, and imaging parameters. We identified robust activation clusters in all (22/22) datasets. The comparison between stock human models implemented in software and rat-specific models showed significant variations in the resulting statistical maps. Our findings emphasize the necessity for standardized protocols and collaborative efforts to improve the reproducibility and reliability of rodent fMRI studies. We provide open access to all datasets and analysis code to foster transparency and further research in the field.