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Fong, T.

Publications and source records attributed to Fong, T..

3 recordsLinked to original sources

Graft protection by myeloid progenitor cells using lethal or non-lethal preconditioning.

Myeloid progenitor cell (MPC) therapy can protect against infection and can be used as an irradiation countermeasure, but can also prevent rejection of matched grafts. Here we report on the matching requirements between MPCs and skin grafts, and on the development of a non-lethal preconditioning model that supports MPC-induced protection of skin grafts. Mouse MPCs (mMPC) were obtained from HSC following 10-day ex vivo expansion. Skin grafts were tested in host mice that either received a lethal dose of irradiation and reconstitution with allogeneic mMPC and third party HSCs or were given injections with depleting antibodies and chemotherapeutics followed by transplantation of mMPC without HSC. mMPC-matched grafts were protected and no significant difference was observed between mice receiving irradiation and fully matched grafts (major and minor transplantation antigens), partially matched grafts (major only), and fully matched grafts in mice that received sublethal irradiation. Haploidentical grafts (half of the MHC alleles not matched at all) are not protected. We conclude that closely matched mMPCs are sufficient to prevent rejection. We also show that mMPCs are effective in a trachea transplant model. Graft protection does not require either lethal preconditioning or an accompanying HSC transplantation, and affects both T- and B-cell responses.

immunology↗

Computational and neural evidence for altered fast and slow learning from losses in gambling disorder

Learning occurs across multiple timescales, with fast learning crucial for adapting to sudden environmental changes, and slow learning beneficial for extracting robust knowledge from multiple events. Here we asked if miscalibrated fast vs slow learning can lead to maladaptive decision-making in individuals with gambling disorder. Participants with problem gambling and a recreational gambling control group without any symptoms associated with problem gambling performed a probabilistic decision-making task involving reward-learning and loss-avoidance while being scanned with fMRI. Problem gamblers showed impaired reversal learning from losses compared to the control group, with excessive dependence on slow timescales and reduced reliance on fast timescales. fMRI data implicated the putamen, an area associated with habit, and medial prefrontal cortex (PFC) in slow loss-value encoding, with significantly more robust encoding in medial PFC in problem gamblers compared to controls. Problem gamblers also exhibited stronger loss prediction error encoding in the insular cortex. These findings suggest that individuals with problem gambling have an impaired ability to adjust their predictions following losses, manifested by a stronger influence of slow value learning. This impairment could contribute to the behavioral inflexibility of problem gamblers, particularly the persistence in gambling behavior typically observed in those individuals after incurring loss outcomes.

neuroscience↗

PyRodentTracks: flexible computer vision and RFID based system for multiple rodent tracking and behavioral assessment.

PyRodentTracks (PRT) is a scalable and customizable computer vision and RFID- based system for multiple rodent tracking and behavior assessment that can be set up within minutes in any user-defined arena at minimal cost. PRT is composed of the online Raspberry Pi-based video and RFID acquisition and the subsequent offline analysis tools. The system is capable of tracking up to 6 mice in experiments ranging from minutes to days. PRT maintained a minimum of 88% detections tracked with an overall accuracy >85% when compared to manual validation of videos containing 1-4 mice in a modified home-cage. As expected, chronic recording in home-cage revealed diurnal activity patterns. Moreover, it was observed that novel non-cagemate mice pairs exhibit more similarity in travel trajectory patterns over a 10-minute period in the openfield than cagemates. Therefore, shared features within travel trajectories between animals may be a measure of sociability that has not been previously reported. Moreover, PRT can interface with open-source packages such as Deeplabcut and Traja for pose estimation and travel trajectory analysis, respectively. In combination with Traja, PRT resolved motor deficits exhibited in stroke animals. Overall, we present an affordable, open-sourced, and customizable/scalable rodent-specific behavior recording and analysis system. Statement of SignificanceAn affordable, customizable, and easy-to-use open-source rodent tracking system is described. To tackle the increasingly complex questions in neuroscience, researchers need a flexible system to track rodents of different coat colors in various complex experimental paradigms. The majority of current tools, commercial or otherwise, can only be fully automated to track multiple animals of the same type in a single defined environment and are not easily setup within custom arenas or cages. Moreover, many tools are not only expensive but are also difficult to set up and use, often requiring users to have extensive hardware and software knowledge. In contrast, PRT is easy to install and can be adapted to track rodents of any coat color in any user-defined environment with few restrictions. We believe that PRT will be an invaluable tool for researchers that are quantifying behavior in identified animals.

neuroscience↗