Package: fsl Version: 5.0.8-1~nd14.04+1 Architecture: all Maintainer: NeuroDebian Team Installed-Size: 54 Depends: fsl-core Homepage: http://www.fmrib.ox.ac.uk/fsl/ Priority: optional Section: non-free/oldlibs Filename: pool/non-free/f/fsl/fsl_5.0.8-1~nd14.04+1_all.deb Size: 20652 SHA256: 94b5ab816f71277e047fdd84fcbe3773e878fa02afe90fae5842dcbfacf52ae8 SHA1: 9a1bfc3fa9ab3c8c29ce6ff3a2c30de05cb4c15e MD5sum: 282a8b64f677e0e87d4fe61e63a66232 Description: transitional dummy package The only purpose of this package is to enable upgrades to the new 'fsl-core' package which replaces 'fsl'. This package can safely be removed. . Users aiming to perform a complete FSL installation (including all data components) are advised to install the 'fsl-complete' package from NeuroDebian. Package: fsl-5.0 Source: fsl Version: 5.0.8-1~nd14.04+1 Architecture: all Maintainer: NeuroDebian Team Installed-Size: 51 Depends: fsl-5.0-core Homepage: http://www.fmrib.ox.ac.uk/fsl/ Priority: optional Section: non-free/oldlibs Filename: pool/non-free/f/fsl/fsl-5.0_5.0.8-1~nd14.04+1_all.deb Size: 19288 SHA256: 1d7a20bedd9c5485e5af50bbce3e760a9474d494e17749e841d5b3799856d5db SHA1: bc20204477cc9b95a68f167f2ff0d5ae39f87611 MD5sum: ed1c8be42df2f58e249212de0c06568f Description: transitional dummy package The only purpose of this package is to enable upgrades to the new 'fsl-5.0-core' package which replaces 'fsl-5.0'. This package can safely be removed. . Users aiming to perform a complete FSL 5.0 installation (including all data components) are advised to install the 'fsl-5.0-complete' package from NeuroDebian. Package: fsl-5.0-doc Source: fsl Version: 5.0.6-2~nd13.10+1+nd14.04+1 Architecture: all Maintainer: NeuroDebian Team Installed-Size: 5016 Recommends: fslview-doc Suggests: fsl-5.0-doc-wikiattachments Breaks: fsl-doc-5.0 (<< 5.0.3) Replaces: fsl-doc-5.0 (<< 5.0.3) Provides: fsl-doc Homepage: http://www.fmrib.ox.ac.uk/fsl/ Priority: optional Section: non-free/doc Filename: pool/non-free/f/fsl/fsl-5.0-doc_5.0.6-2~nd13.10+1+nd14.04+1_all.deb Size: 2082898 SHA256: 54d4363dfb4c8812a02f734ecdcf271496b0c655714b1c30c52082d4e9d3edd5 SHA1: f297bbb7bbbed47f152ac94a77acc249009e3310 MD5sum: e1d862c02cdd4a7c393841827eba47cd Description: documentation for FSL FSL is a comprehensive library of image analysis and statistical tools for fMRI, MRI and DTI brain imaging data. The suite consists of various command line tools, as well as simple GUIs for its core analysis pipelines. Among others, FSL offers implementations of standard GLM analysis, white matter tractography, tissue segmentation, affine and non-linear co-registration, and independent component analysis. FSL is a comprehensive library of image analysis and statistical tools for FMRI, MRI and DTI brain imaging data. . This package provides the FSL documentation in HTML format. Package: fsl-core Source: fsl Version: 5.0.8-1~nd14.04+1 Architecture: all Maintainer: NeuroDebian Team Installed-Size: 69 Depends: fsl-5.0-core Breaks: fsl (<< 5.0.3) Replaces: fsl (<< 5.0.3) Homepage: http://www.fmrib.ox.ac.uk/fsl/ Priority: optional Section: non-free/science Filename: pool/non-free/f/fsl/fsl-core_5.0.8-1~nd14.04+1_all.deb Size: 20476 SHA256: 47cc10faefc1a75c8db880227deaa524fbabd07d9d1f94ca33bb8883606d4f6d SHA1: 1bf6fe6e39ea52cb84e82b8d9123e94cc8a6438f MD5sum: a2120668241f118482361407ab8adba9 Description: metapackage for the latest version of FSL FSL is a comprehensive library of image analysis and statistical tools for fMRI, MRI and DTI brain imaging data. The suite consists of various command line tools, as well as simple GUIs for its core analysis pipelines. Among others, FSL offers implementations of standard GLM analysis, white matter tractography, tissue segmentation, affine and non-linear co-registration, and independent component analysis. . Some FSL components require additional data packages (fsl-atlases, fsl-first-data, fsl-possum-data) that are currently available from the NeuroDebian repository only. For more information on how to obtain these data packages visit http://neuro.debian.net. . Users aiming to perform a complete FSL installation (including all data components) are advised to install the 'fsl-complete' package from NeuroDebian. Package: fsl-doc-5.0 Source: fsl Version: 5.0.6-2~nd13.10+1+nd14.04+1 Architecture: all Maintainer: NeuroDebian Team Installed-Size: 27 Depends: fsl-5.0-doc Homepage: http://www.fmrib.ox.ac.uk/fsl/ Priority: optional Section: non-free/oldlibs Filename: pool/non-free/f/fsl/fsl-doc-5.0_5.0.6-2~nd13.10+1+nd14.04+1_all.deb Size: 18440 SHA256: f6f6845bd773983bfd510d0a7181fcd73003e23a6477068bb04ce2f47e5ac5fc SHA1: 0e7b5afb471bab534633c6b3a57ca3078215bc63 MD5sum: 337541788cf5ee78476a84d0bbe4bbc4 Description: transitional dummy package The only purpose of this package is to enable upgrades to the new 'fsl-5.0-doc' package which replaces 'fsl-doc-5.0'. This package can safely be removed. . Users aiming to perform a complete FSL 5.0 installation (including all data components) are advised to install the 'fsl-5.0-complete' package from NeuroDebian. Package: matlab-psychtoolbox-3 Source: psychtoolbox-3-nonfree Version: 3.0.11.20140816-1~nd+1 Architecture: all Maintainer: NeuroDebian Maintainers Installed-Size: 4 Depends: neurodebian-popularity-contest, matlab-psychtoolbox-3-nonfree (= 3.0.11.20140816-1~nd+1), psychtoolbox-3-common (>= 3.0.11.20140816-1~nd+1.dfsg) Recommends: matlab-support Homepage: http://psychtoolbox.org Priority: extra Section: non-free/science Filename: pool/non-free/p/psychtoolbox-3-nonfree/matlab-psychtoolbox-3_3.0.11.20140816-1~nd+1_all.deb Size: 3968 SHA256: ef438d9c3f2969aac7abb75ff181a2ddb8195a4d8f6890f2d0166d0ac2c9b8c9 SHA1: 1da9edf5eef6102c3ec21ea156f9b8bce808654f MD5sum: bd31111c87f63ecfcca67d269ed173a1 Description: toolbox for vision research -- Matlab bindings Psychophysics Toolbox Version 3 (PTB-3) is a free set of Matlab and GNU/Octave functions for vision research. It makes it easy to synthesize and show accurately controlled visual and auditory stimuli and interact with the observer. . The Psychophysics Toolbox interfaces between Matlab or Octave and the computer hardware. The Psychtoolbox's core routines provide access to the display frame buffer and color lookup table, allow synchronization with the vertical retrace, support millisecond timing, allow access to OpenGL commands, and facilitate the collection of observer responses. Ancillary routines support common needs like color space transformations and the QUEST threshold seeking algorithm. . This package exposes PTB-3 within Matlab environment. It also provides a convenience script ptb3-matlab to simplify running psychtoolbox in matlab. . See also http://www.psychtoolbox.org/UsingPsychtoolboxOnUbuntu for additional information about systems tune-up and initial configuration. . For now it relies on -nonfree package providing binary builds of all PTB-3 bindings for Matlab. Package: virtual-mri-nonfree Source: vmri-nonfree Version: 3.2.14-1~nd12.10+1+nd13.04+1+nd13.10+1+nd14.04+1 Architecture: all Maintainer: NeuroDebian Team Installed-Size: 3020 Depends: neurodebian-popularity-contest, openjdk-7-jre | java-runtime Homepage: http://www.iftm.de/elearning/vmri/idx_vmri.htm Priority: extra Section: non-free/science Filename: pool/non-free/v/vmri-nonfree/virtual-mri-nonfree_3.2.14-1~nd12.10+1+nd13.04+1+nd13.10+1+nd14.04+1_all.deb Size: 1771702 SHA256: 2bf1087b73a5ae7c163ee7d37e5cbb911f3b5d22350b21f3703202cfe53362b4 SHA1: 20fc295238e534c298d4fbe04e9514189749866b MD5sum: 2df66e108c5e49eff77c0b0adb7ad92e Description: Virtual Magnetic Resonance Imager A realistic simulation of magnetic reasonance imaging that allows for exploring the most relevant parameters of a scanner to aid training of students and doctors. . At the moment the pulse sequence classes SR, IR, SE, TSE, FLASH and FISP are implemented. Parameters, like TR, TE, TI, flip-angle or echo train length, can be adjusted. The choice of matrix size, FOV, slice-thickness and number of acquisitions affect the signal-to-noise ratio of the images. In a first step, the simulation calculates the signal intensity in the k-space. Aliasing- and motion-artifacts are simulated by modifying the k-space data. In a last step, a 2D-fouriertransform of the k-space data is performed. Window and center of the resulting images can be changed.