Editorial to the Special Issue Entitled “Optical Surgical Navigation”

Kucikas V, Werner MP, Schmitz-Rode T, Louradour F, van Zandvoort M (2021) Two-photon endoscopy: state of the art and perspectives. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01665-2

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Linders DGJ et al (2022) Cysteine cathepsins in breast cancer: promising targets for fluorescence-guided surgery. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01768-4

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Stibbe JA et al (2022) Highlighting the undetectable - fluorescence molecular imaging in gastrointestinal endoscopy. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01741-1

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Streeter SS et al (2022) Current and future applications of fluorescence guidance in orthopaedic surgery. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01789-z

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Van Keulen S, Hom M, White H, Rosenthal EL, Baik FM (2022) The evolution of fluorescence-guided surgery. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01772-8

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Najafiaghdam H, Pedroso CCS, Torquato NA, Cohen BE, Anwar M (2022) Fully integrated ultra-thin intraoperative micro-imager for cancer detection using upconverting nanoparticles. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01710-8

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Baart VM et al (2021) Side-by-Side comparison of uPAR-targeting optical imaging antibodies and antibody fragments for fluorescence-guided surgery of solid tumors. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01657-2

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Brandt PJ et al (2022) Detection and typing of renal amyloidosis by fluorescence spectroscopy using the environmentally sensitive fluorophore K114. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01754-w

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Fushiki H, Yoshikawa T, Matsuda T, Sato T, Suwa A (2021) Preclinical development and validation of ASP5354: a near-infrared fluorescent agent for intraoperative ureter visualization. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01613-0

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Garcia de Jalon E et al (2021) Comparison of five near-infrared fluorescent folate conjugates in an ovarian cancer model. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01685-y

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Liu Z et al (2021) PEGylated and non-PEGylated TCP-1 probes for imaging of colorectal cancer. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01684-z

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Meijer RPJ et al (2022) Data-driven identification of targets for fluorescence-guided surgery in non-small cell lung cancer. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01791-5

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Wang C et al (2022) Rapid and quantitative intraoperative pathology-assisted surgery by paired-agent imaging-derived confidence map. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01780-8

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Wang C et al (2021) Improved discrimination of tumors with low and heterogeneous egfr expression in fluorescence-guided surgery through paired-agent protocols. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01656-3

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Wang C et al (2021) Identification of a suitable untargeted agent for the clinical translation of aby-029 paired-agent imaging in fluorescence-guided surgery. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01642-9

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Azargoshasb S et al (2022) Quantifying the impact of signal-to-background ratios on surgical discrimination of fluorescent lesions. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01736-y

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LaRochelle EPM, Streeter SS, Littler EA, Ruiz AJ (2022) 3D-printed tumor phantoms for assessment of in vivo fluorescence imaging analysis methods. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01783-5

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Azari F et al (2021) Evaluation of OTL38-generated tumor-to-background ratio in intraoperative molecular imaging-guided lung cancer resections. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01618-9

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Azari F et al (2022) Effects of Light-absorbing carbons in intraoperative molecular imaging-guided lung cancer resections. Mol Imaging Biol. https://doi.org/10.1007/s11307-021-01699-6

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Kennedy GT et al (2022) Three-dimensional near-infrared specimen mapping can identify the distance from the tumor to the surgical margin during resection of pulmonary ground glass opacities. Mol Imaging Biol. https://doi.org/10.1007/s11307-022-01750-0

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