- 🎓 I received my BSc in Molecular Biology and Genetics and in Software Engineering from Üsküdar University in Istanbul as a double major. I am currently pursuing my Master's in Computational Neuroscience.
- 🧠 My primary research focus lies in Neuroscience. I am interested in how neural information processing works across both biological and artificial neural networks. To read more about my research interests, please check out my website: Neurojedi
- 💻 Here, I share my notes from various Machine Learning resources, small course projects, and code from some of my research projects.
- ⚡ I love listening to AC/DC, Guns N' Roses, Halestorm, Nightwish, Kiss, Metallica, Black Sabbath, and Iron Maiden. Also I have a science history blog on
- Turkey
- @neuro_jedi
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CNNs-Introduction
CNNs-Introduction PublicA series of notebooks that provides an in-depth introduction to Convolutional Neural Networks and the most common CNN architectures with hands-on practices.
Jupyter Notebook 2
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Machine-Learning-Zero2Hero
Machine-Learning-Zero2Hero PublicA series of notebooks that introduce Machine Learning concepts with hands-on practice and its mathematics in brief.
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Deep-Learning-Fundamentals-with-TensorFlow
Deep-Learning-Fundamentals-with-TensorFlow PublicA series of notebooks that introduce Fundamental Deep Learning concepts with hands-on practice using TensorFlow.
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Brain-Tumor-Segmentation-using-3DUNet
Brain-Tumor-Segmentation-using-3DUNet PublicA work on segmenting brain tumors on BraTS Dataset using Pre-trained and Fully-trained 3D U-Nets with commonly used loss functions to assess the effect of loss function on generalization error.
Jupyter Notebook 1
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PCP-Hitman
PCP-Hitman PublicThis repository contains the code to train an alphazero like model in connect four, as well as the option to play against different agents (alphazero, random, minimax, mcts) or to let them play aga…
Jupyter Notebook 1
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StoMNeuro
StoMNeuro PublicFinal project for the Stochastic Modeling in Neuroscience course at TU Berlin, involving a PyTorch implementation and evaluation of neuLVM for mesoscopic modeling of hidden spiking neurons.
Jupyter Notebook
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