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Paper Citation Record · LEDGER

Learned backprojection for sparse and limited view photoacoustic tomography

As of 16 August 2026, this Paper Citation Record lists 28 of 28 outbound references and 0 inbound Pith citation observations for arXiv:1908.00593.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
1908.00593 v1

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measured 28 of 28 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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A source-named dated measurement, never combined with another source.

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Reference resolution

28 of 28 outbound references displayed

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External citation measurements

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Outbound references

Observation d1d1bebc-3726-4dfd-99d7-7f8cf5032c26 · outbound

This paper cites Tensorflow: a system for large-scale machine learn- ing.

Learned backprojection for sparse and limited view photoacoustic tomography Tensorflow: a system for large-scale machine learn- ing

Reference 1

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Observation dea73a9b-266c-456c-bc1d-939698370795 · outbound

This paper cites Deep learning for photoacoustic tomography from sparse data.Inverse Prob- lems in Science and Engineering , pages 1–19, 2018.

Learned backprojection for sparse and limited view photoacoustic tomography Deep learning for photoacoustic tomography from sparse data.Inverse Prob- lems in Science and Engineering , pages 1–19, 2018

Reference 2

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Observation e203dbce-393b-4b63-9061-79e25b69fd29 · outbound

This paper cites All-optical photoacoustic projection imaging.Biomedical optics express, 8(9):3938–3951, 2017.

Learned backprojection for sparse and limited view photoacoustic tomography All-optical photoacoustic projection imaging.Biomedical optics express, 8(9):3938–3951, 2017

Reference 3

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Observation aa895f53-f2b3-4734-ab3c-c45ca4ea9219 · outbound

This paper cites Temporal back-projection algorithms for photoacous- tic tomography with integrating line detectors.

Learned backprojection for sparse and limited view photoacoustic tomography Temporal back-projection algorithms for photoacous- tic tomography with integrating line detectors

Reference 4

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Observation 91c24e98-8f08-460f-847c-7b911235059f · outbound

This paper cites Low-dose ct via convolutional neural network.Biomedical optics express, 8(2):679–694, 2017.

Learned backprojection for sparse and limited view photoacoustic tomography Low-dose ct via convolutional neural network.Biomedical optics express, 8(2):679–694, 2017

Reference 5

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Observation 04ec026b-d461-46e5-91de-7981a1b11744 · outbound

This paper cites Keras.https://github.com/fchollet/keras, 2015.

Learned backprojection for sparse and limited view photoacoustic tomography Keras.https://github.com/fchollet/keras, 2015

Reference 6

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Observation 6b2d4faf-3bba-42c6-86f2-d3748261cf7d · outbound

This paper cites Accurate model-based reconstruction algorithm for three- dimensional optoacoustic tomography.

Learned backprojection for sparse and limited view photoacoustic tomography Accurate model-based reconstruction algorithm for three- dimensional optoacoustic tomography

Reference 7

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Observation f580e212-11c3-4b17-bd3d-f73979babfeb · outbound

This paper cites Oper- ator learning approach for the limited view problem in photoacoustic tomography.

Learned backprojection for sparse and limited view photoacoustic tomography Oper- ator learning approach for the limited view problem in photoacoustic tomography

Reference 8

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Observation db4b6223-71f0-47b9-bc50-8c7efda22aec · outbound

This paper cites Inversion of spherical means and the wave equation in even dimensions.

Learned backprojection for sparse and limited view photoacoustic tomography Inversion of spherical means and the wave equation in even dimensions

Reference 9

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Observation 3a544920-4079-498a-9018-9a99755b817b · outbound

This paper cites Determining a function from its mean values over a family of spheres.SIAM journal on mathematical analysis , 35(5):1213–1240, 2004.

Learned backprojection for sparse and limited view photoacoustic tomography Determining a function from its mean values over a family of spheres.SIAM journal on mathematical analysis , 35(5):1213–1240, 2004

Reference 10

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Observation 02e0c39c-0afb-46cb-8d20-57246971bad6 · outbound

This paper cites Universal inversion formulas for recovering a func- tion from spherical means.

Learned backprojection for sparse and limited view photoacoustic tomography Universal inversion formulas for recovering a func- tion from spherical means

Reference 11

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Observation d0248874-5f3e-40d8-a40c-740d445c96e5 · outbound

This paper cites Deep Learning Interior Tomography for Region-of-Interest Reconstruction.

Learned backprojection for sparse and limited view photoacoustic tomography Deep Learning Interior Tomography for Region-of-Interest Reconstruction

Reference 12

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Observation 0fce58c2-2070-4717-bd28-7b248dafda9d · outbound

This paper cites Model-based learning for accelerated, limited-view 3-d photoacoustic tomography.

Learned backprojection for sparse and limited view photoacoustic tomography Model-based learning for accelerated, limited-view 3-d photoacoustic tomography

Reference 13

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Observation f45aa98a-165d-4565-a54b-8b8458525f95 · outbound

This paper cites Deep Learning-Guided Image Reconstruction from Incomplete Data.

Learned backprojection for sparse and limited view photoacoustic tomography Deep Learning-Guided Image Reconstruction from Incomplete Data

Reference 14

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Observation fe82784e-f31e-485e-900b-2a19950cbb80 · outbound

This paper cites Mathematics of photoacoustic and thermoacoustic tomography.

Learned backprojection for sparse and limited view photoacoustic tomography Mathematics of photoacoustic and thermoacoustic tomography

Reference 15

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Observation b9c12882-c8bb-4b7d-94bd-b977fc36ca92 · outbound

This paper cites Explicit inversion formulae for the spherical mean radon transform.

Learned backprojection for sparse and limited view photoacoustic tomography Explicit inversion formulae for the spherical mean radon transform

Reference 16

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Observation b0b1f686-4743-4d20-9f29-a58ebf8da3c6 · outbound

This paper cites NETT: Solving Inverse Problems with Deep Neural Networks.

Learned backprojection for sparse and limited view photoacoustic tomography NETT: Solving Inverse Problems with Deep Neural Networks

Reference 17

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Observation 2ad67390-8434-464b-9259-bca3934cf928 · outbound

This paper cites Limited-view photoacoustic imaging based on an iterative adaptive weighted filtered backprojection approach.Applied optics, 52(15):3477–3483, 2013.

Learned backprojection for sparse and limited view photoacoustic tomography Limited-view photoacoustic imaging based on an iterative adaptive weighted filtered backprojection approach.Applied optics, 52(15):3477–3483, 2013

Reference 18

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Observation 5e618546-5ae7-4ae3-b438-444399857569 · outbound

This paper cites A family of inversion formulas in Thermoacoustic Tomography.

Learned backprojection for sparse and limited view photoacoustic tomography A family of inversion formulas in Thermoacoustic Tomography

Reference 19

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Observation bdf9f0a7-e7cf-4fec-98d1-ed0b118fea04 · outbound

This paper cites Piezoelectric line detector array for photoacoustic tomography.

Learned backprojection for sparse and limited view photoacoustic tomography Piezoelectric line detector array for photoacoustic tomography

Reference 20

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Observation c8414c39-232b-4a50-9739-c6f137a4052e · outbound

This paper cites Weight factors for limited angle photoacoustic tomography.

Learned backprojection for sparse and limited view photoacoustic tomography Weight factors for limited angle photoacoustic tomography

Reference 21

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Observation 8e58507b-93e2-4af7-b310-ddef5c5dc1b1 · outbound

This paper cites Experimental evaluation of reconstruction algorithms for limited view photoacoustic tomography with line detectors.

Learned backprojection for sparse and limited view photoacoustic tomography Experimental evaluation of reconstruction algorithms for limited view photoacoustic tomography with line detectors

Reference 22

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Observation 0250313d-fdba-4655-bfcd-5f1e74c6a5ff · outbound

This paper cites Photoacoustic tomography using a mach-zehnder interfer- ometer as an acoustic line detector.Applied optics, 46(16):3352–3358, 2007.

Learned backprojection for sparse and limited view photoacoustic tomography Photoacoustic tomography using a mach-zehnder interfer- ometer as an acoustic line detector.Applied optics, 46(16):3352–3358, 2007

Reference 23

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Observation 9815f86f-2ef5-4159-9695-a4bb03d58b95 · outbound

This paper cites Real-time photoacoustic projection imaging using deep learning.

Learned backprojection for sparse and limited view photoacoustic tomography Real-time photoacoustic projection imaging using deep learning

Reference 24

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Observation 8d6bf4aa-47e3-4cdd-bdeb-ee180bffdcda · outbound

This paper cites Universal back-projection algo- rithm for photoacoustic computed tomography.

Learned backprojection for sparse and limited view photoacoustic tomography Universal back-projection algo- rithm for photoacoustic computed tomography

Reference 25

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This paper cites Time reversal and its application to to- mography with diffracting sources.Physical review letters, 92(3):033902, 2004.

Learned backprojection for sparse and limited view photoacoustic tomography Time reversal and its application to to- mography with diffracting sources.Physical review letters, 92(3):033902, 2004

Reference 26

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Observation b0584bec-1fa8-4345-9408-f399a0db4ed3 · outbound

This paper cites Photoa- coustic tomography with direction dependent data: An exact series re- construction approach.

Learned backprojection for sparse and limited view photoacoustic tomography Photoa- coustic tomography with direction dependent data: An exact series re- construction approach

Reference 27

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Observation dd839d30-51d4-4368-bdcb-31aa6dec4836 · outbound

This paper cites Image Prediction for Limited-angle Tomography via Deep Learning with Convolutional Neural Network.

Learned backprojection for sparse and limited view photoacoustic tomography Image Prediction for Limited-angle Tomography via Deep Learning with Convolutional Neural Network

Reference 28

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