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Paper Citation Record · LEDGER

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks

As of 9 August 2026, this Paper Citation Record lists 56 of 56 outbound references and 0 inbound Pith citation observations for arXiv:2603.23206.

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pith.paper-citation-record.v1
2603.23206 v2

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measured 56 of 56 reference resolution

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measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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Reference resolution

56 of 56 outbound references displayed

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Outbound references

Observation 5d640cca-c8db-42ae-8e64-ffb61c6bf0ed · outbound

This paper cites Optimal ANN-SNN Conversion for Fast and Accurate Inference in Deep Spiking Neural Networks.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Optimal ANN-SNN Conversion for Fast and Accurate Inference in Deep Spiking Neural Networks

Reference 1

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Observation 554fd5ad-a847-446e-8eea-439743e1ebe0 · outbound

This paper cites Attention-based deep spiking neural networks for temporal credit assignment problems,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Attention-based deep spiking neural networks for temporal credit assignment problems,

Reference 2

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Observation 5f1d0179-c07e-41d8-b423-5da0290b4450 · outbound

This paper cites A tandem learning rule for effective training and rapid inference of deep spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks A tandem learning rule for effective training and rapid inference of deep spiking neural networks,

Reference 3

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Observation 91070662-667b-4378-93fc-5e72bfe7a8e9 · outbound

This paper cites End to end learning of spiking neural network based on r- stdp for a lane keeping vehicle,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks End to end learning of spiking neural network based on r- stdp for a lane keeping vehicle,

Reference 4

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Observation caa25316-5252-4b3d-87ae-a05e312fb239 · outbound

This paper cites Indirect and direct training of spiking neural networks for end-to-end control of a lane-keeping vehicle,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Indirect and direct training of spiking neural networks for end-to-end control of a lane-keeping vehicle,

Reference 5

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Observation 4783c3e6-1be1-4e38-b0c0-caef86422c96 · outbound

This paper cites Progressive tandem learning for pattern recognition with deep spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Progressive tandem learning for pattern recognition with deep spiking neural networks,

Reference 6

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Observation 45092c25-5699-47e8-a1b5-51502a970787 · outbound

This paper cites A quantitative description of mem- brane current and its application to conduction and excitation in nerve.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks A quantitative description of mem- brane current and its application to conduction and excitation in nerve

Reference 7

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Observation f9c2c21e-19fe-45ac-9621-493a87c1b679 · outbound

This paper cites Networks of spiking neurons: the third generation of neural network models,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Networks of spiking neurons: the third generation of neural network models,

Reference 8

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Observation 7b85531e-5de5-4b51-9bc9-a72e7c497cb3 · outbound

This paper cites Direct training for spiking neural networks: Faster, larger, better,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Direct training for spiking neural networks: Faster, larger, better,

Reference 9

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Observation a5c2a5b6-0b64-4811-961a-c76e3edd4516 · outbound

This paper cites Mapping from frame- driven to frame-free event-driven vision systems by low-rate rate coding and coincidence processing–application to feedforward convnets,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Mapping from frame- driven to frame-free event-driven vision systems by low-rate rate coding and coincidence processing–application to feedforward convnets,

Reference 10

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Observation d2f92ed7-0df7-45fb-a9b7-15d61101449f · outbound

This paper cites Rmp-snn: Residual membrane potential neuron for enabling deeper high-accuracy and low-latency spiking neural network,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Rmp-snn: Residual membrane potential neuron for enabling deeper high-accuracy and low-latency spiking neural network,

Reference 11

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Observation 4086311f-67f8-46fc-ad32-8307cba201be · outbound

This paper cites Optimal ANN-SNN Conversion for High-accuracy and Ultra-low-latency Spiking Neural Networks.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Optimal ANN-SNN Conversion for High-accuracy and Ultra-low-latency Spiking Neural Networks

Reference 12

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Observation 9f1631dc-4417-4530-b836-9d760ac95de9 · outbound

This paper cites Surrogate gradient learning in spiking neural networks: Bringing the power of gradient-based opti- mization to spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Surrogate gradient learning in spiking neural networks: Bringing the power of gradient-based opti- mization to spiking neural networks,

Reference 13

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Observation 899fb016-453b-4151-91db-3ae7ad3a8c76 · outbound

This paper cites Spatio-temporal backpropa- gation for training high-performance spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Spatio-temporal backpropa- gation for training high-performance spiking neural networks,

Reference 14

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Observation 93595b24-5abb-4599-9213-fb012a9bc9cf · outbound

This paper cites Assisting training of deep spiking neural networks with parameter initialization,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Assisting training of deep spiking neural networks with parameter initialization,

Reference 15

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Observation 470128fd-38f2-41a3-a9e2-31ffa0f06fcf · outbound

This paper cites Spike arrival times: A highly efficient coding scheme for neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Spike arrival times: A highly efficient coding scheme for neural networks,

Reference 16

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Observation 1d6228c9-353b-4aeb-afd3-4f2f7e1c71e2 · outbound

This paper cites Temporal encoding of two- dimensional patterns by single units in primate inferior temporal cortex. iii. information theoretic analysis,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Temporal encoding of two- dimensional patterns by single units in primate inferior temporal cortex. iii. information theoretic analysis,

Reference 17

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Observation 1cda83b9-1ccb-4192-b99a-72bb3e1cd551 · outbound

This paper cites Information encoding and the responses of single neurons in the primate temporal visual cortex,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Information encoding and the responses of single neurons in the primate temporal visual cortex,

Reference 18

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Observation 2a621afb-0d89-4f34-9c03-8b7fb4aa4122 · outbound

This paper cites Decoding cortical neuronal signals: network models, information estimation and spatial tuning,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Decoding cortical neuronal signals: network models, information estimation and spatial tuning,

Reference 19

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Observation 71908717-32c1-49fa-8361-74c44520694c · outbound

This paper cites Information encoding in short firing rate epochs by single neurons in the primate temporal visual cortex,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Information encoding in short firing rate epochs by single neurons in the primate temporal visual cortex,

Reference 20

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Observation 82d5837c-6cac-4e30-bd5d-3dcaa9a6e5e9 · outbound

This paper cites Stdp-based spiking deep convolutional neural networks for object recognition,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Stdp-based spiking deep convolutional neural networks for object recognition,

Reference 21

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Observation 489c78bc-d192-4791-ae51-29e1b1ed848c · outbound

This paper cites Precise-spike-driven synaptic plasticity: Learning hetero-association of spatiotemporal spike patterns,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Precise-spike-driven synaptic plasticity: Learning hetero-association of spatiotemporal spike patterns,

Reference 22

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Observation 877363f0-0119-42ed-918c-ce6d5d4beaff · outbound

This paper cites Supervised learning based on temporal coding in spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Supervised learning based on temporal coding in spiking neural networks,

Reference 23

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Observation ac2b96d2-1b43-404c-8f46-172fbf417f44 · outbound

This paper cites Rectified linear postsynaptic potential function for backpropagation in deep spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Rectified linear postsynaptic potential function for backpropagation in deep spiking neural networks,

Reference 24

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Observation 3af9e007-5504-4c5d-ba4c-c1be2fd6f115 · outbound

This paper cites Temporal-coded spiking neural networks with dynamic firing threshold: Learning with event-driven backpropagation,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Temporal-coded spiking neural networks with dynamic firing threshold: Learning with event-driven backpropagation,

Reference 25

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This paper cites A survey of encoding techniques for signal processing in spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks A survey of encoding techniques for signal processing in spiking neural networks,

Reference 26

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This paper cites Neural coding in spiking neural networks: A comparative study for robust neuromorphic systems.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Neural coding in spiking neural networks: A comparative study for robust neuromorphic systems

Reference 27

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This paper cites Batch normalization: Accelerating deep network training by reducing internal covariate shift,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Batch normalization: Accelerating deep network training by reducing internal covariate shift,

Reference 28

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Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Adaptive Computation Time for Recurrent Neural Networks

Reference 29

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Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks PonderNet: Learning to Ponder

Reference 30

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This paper cites T2fsnn: deep spiking neural networks with time-to-first-spike coding,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks T2fsnn: deep spiking neural networks with time-to-first-spike coding,

Reference 31

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This paper cites Deep spiking neural network: Energy efficiency through time based coding,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Deep spiking neural network: Energy efficiency through time based coding,

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This paper cites Training Energy-Efficient Deep Spiking Neural Networks with Time-to-First-Spike Coding.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Training Energy-Efficient Deep Spiking Neural Networks with Time-to-First-Spike Coding

Reference 33

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This paper cites High-performance deep spiking neural networks with 0.3 spikes per neuron,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks High-performance deep spiking neural networks with 0.3 spikes per neuron,

Reference 34

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Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Temporal-coded spiking Transformer,

Reference 35

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This paper cites Very Deep Convolutional Networks for Large-Scale Image Recognition.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Very Deep Convolutional Networks for Large-Scale Image Recognition

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Observation da3417ca-2e28-43b0-9d08-ee3737a85644 · outbound

This paper cites Deep residual learning in spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Deep residual learning in spiking neural networks,

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Observation 2b3f045c-ac5f-4659-a715-214f1c62d752 · outbound

This paper cites Decoupled Weight Decay Regularization.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Decoupled Weight Decay Regularization

Reference 38

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Observation c958d980-6f5e-40d5-a660-983def3ebe16 · outbound

This paper cites Autoaug- ment: Learning augmentation strategies from data,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Autoaug- ment: Learning augmentation strategies from data,

Reference 39

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Observation 30951d0c-f2cd-4708-a680-9560ba722285 · outbound

This paper cites Tiny imagenet visual recognition challenge,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Tiny imagenet visual recognition challenge,

Reference 40

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Observation 6e84e1e4-94b8-4668-9fff-697df4373d74 · outbound

This paper cites Randaugment: Practical automated data augmentation with a reduced search space,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Randaugment: Practical automated data augmentation with a reduced search space,

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Observation 84c89b29-26c6-4256-8b76-bd0f48a0af8c · outbound

This paper cites Cifar10-dvs: an event-stream dataset for object classification,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Cifar10-dvs: an event-stream dataset for object classification,

Reference 42

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Observation 43ea8993-3c1a-47bc-b611-f3adff4dd914 · outbound

This paper cites Neuromorphic data augmentation for training spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Neuromorphic data augmentation for training spiking neural networks,

Reference 43

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Observation 42ff1c7b-982e-45e3-b0b5-27d154c7d781 · outbound

This paper cites Diet-snn: A low-latency spiking neural network with direct input encoding and leakage and threshold optimization,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Diet-snn: A low-latency spiking neural network with direct input encoding and leakage and threshold optimization,

Reference 44

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Observation c6dc9c7b-d663-4116-b876-24cd9401962c · outbound

This paper cites Spike-based dynamic computing with asynchronous sensing-computing neuromorphic chip,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Spike-based dynamic computing with asynchronous sensing-computing neuromorphic chip,

Reference 45

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Observation feea4178-64fd-4eb8-9f47-d2563ab3ebd9 · outbound

This paper cites Pruning Convolutional Neural Networks for Resource Efficient Inference.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Pruning Convolutional Neural Networks for Resource Efficient Inference

Reference 46

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Observation b6e572c7-99c3-42cd-9860-22f4a65121bb · outbound

This paper cites A million spiking-neuron integrated circuit with a scalable communication network and interface,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks A million spiking-neuron integrated circuit with a scalable communication network and interface,

Reference 47

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Observation aa0ea91d-d9f6-48e5-9ac1-34e18882f757 · outbound

This paper cites A hybrid neural coding approach for pattern recognition with spiking neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks A hybrid neural coding approach for pattern recognition with spiking neural networks,

Reference 48

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Observation c6fcaf32-f51f-4f81-a46e-f540da818183 · outbound

This paper cites Accurate and efficient time-domain classification with adaptive spiking recurrent neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Accurate and efficient time-domain classification with adaptive spiking recurrent neural networks,

Reference 49

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Observation 7a5a11c2-5554-42b4-9f3d-308c51010f99 · outbound

This paper cites Toward scalable, efficient, and accurate deep spiking neural networks with backward residual connec- tions, stochastic softmax, and hybridization,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Toward scalable, efficient, and accurate deep spiking neural networks with backward residual connec- tions, stochastic softmax, and hybridization,

Reference 50

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Observation bb3a2038-ddb2-4aee-a597-35e40d209d7f · outbound

This paper cites 1.1 computing’s energy problem (and what we can do about it),.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks 1.1 computing’s energy problem (and what we can do about it),

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Observation f85b3bd9-3f52-4c5a-b09b-8506c5c8d3ba · outbound

This paper cites Temporal Efficient Training of Spiking Neural Network via Gradient Re-weighting.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Temporal Efficient Training of Spiking Neural Network via Gradient Re-weighting

Reference 52

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Observation fbd200e9-0945-4d8a-8f5e-37e2f7436be7 · outbound

This paper cites The spinnaker project,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks The spinnaker project,

Reference 53

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Observation 3a0aba16-b036-408f-a014-0acf5c745e94 · outbound

This paper cites Benchmarking Neural Network Robustness to Common Corruptions and Perturbations.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Benchmarking Neural Network Robustness to Common Corruptions and Perturbations

Reference 54

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Observation e880dbd4-31fe-4e10-a565-5cb635943e83 · outbound

This paper cites Unleashing the potential of spik- ing neural networks with dynamic confidence,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Unleashing the potential of spik- ing neural networks with dynamic confidence,

Reference 55

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Observation 2c867945-5f69-43b4-82a1-a7f7c3c23598 · outbound

This paper cites Seenn: Towards temporal spiking early exit neural networks,.

Latency Coding for Efficient and Low-Latency Deep Spiking Neural Networks Seenn: Towards temporal spiking early exit neural networks,

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