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INNOSC Theranostics and
            Pharmacological Sciences                                                     Theranostics in neurosurgery



               Potential application of a handheld confocal endomicroscope      https://doi.org/10.1177/1545968312461716
               imaging system using a variety of fluorophores in   74.  Pool D, Valentine J, Bear N, et al., 2015, The orthotic and
               experimental gliomas and normal brain. Neurosurg Focus,   therapeutic effects following daily community applied
               36: E16.
                                                                  functional electrical stimulation in children with unilateral
               https://doi.org/10.3171/2013.11.focus13486         spastic cerebral palsy: A randomised controlled trial. BMC
                                                                  Pediatr, 15: 154.
            64.  Abramov I, Park MT, Gooldy TC,  et al., 2022, Real-time
               intraoperative surgical telepathology using confocal laser      https://doi.org/10.1186/s12887-015-0472-y
               endomicroscopy. Neurosurgical Focus, 52: E9.
                                                               75.  Fang Y, Lerner ZF, 2021, Feasibility of augmenting ankle
               https://doi.org/10.3171/2022.3.focus2250           exoskeleton walking performance with step length
                                                                  biofeedback in individuals with cerebral palsy. IEEE Trans
            65.  Chien CH, 2020, Thinking Beyond Fluorescence: Biological   Neural Syst Rehabil Eng, 29: 442–449.
               Imaging with SHG and THG Microscopy. Discovery Blog.
               Japan: Olympus Life Science. Available from: https://www.     https://doi.org/10.1109/TNSRE.2021.3055796
               olympus-lifescience.com/en/discovery/thinking-beyond-  76.  Willerslev-Olsen M, Andersen JB, Sinkjaer T, et al., 2014,
               fluorescence-biological-imaging-with-shg-and-thg-  Sensory feedback to ankle plantar flexors is not exaggerated
               microscopy [Last accessed on 2023 Mar 24].         during gait in spastic hemiplegic children with cerebral
            66.  Weigelin B, Bakker GJ, Friedl P, 2016, Third harmonic   palsy. J Neurophysiol, 111: 746–754.
               generation microscopy of cells and tissue organization. J Cell      https://doi.org/10.1152/jn.00372.2013
               Sci, 129: 245–255.
                                                               77.  Moll I, Marcellis RG, Coenen ML, et al., 2022, A randomized
               https://doi.org/10.1242/jcs.152272                 crossover study of functional electrical stimulation during
            67.  Gavgiotaki E, Filippidis G, Tsafas V,  et al., 2020, Third   walking in spastic cerebral palsy: The FES on participation
               Harmonic Generation microscopy distinguishes malignant   (FESPa) trial. BMC Pediatr, 22: 37.
               cell grade in human breast tissue biopsies. Sci Rep, 10: 11055.      https://doi.org/10.1186/s12887-021-03037-9
               https://doi.org/10.1038/s41598-020-67857-y      78.  Frisk RF, Jensen P, Kirk H,  et al., 2017, Contribution of
            68.  Izadyyazdanabadi M, Belykh E, Mooney MA, et al., 2018,   sensory feedback to plantar flexor muscle activation during
               Prospects for theranostics in neurosurgical imaging:   push-off in adults with cerebral palsy.  J  Neurophysiol,
               Empowering confocal laser endomicroscopy diagnostics via   118: 3165–3174.
               deep learning. Front Oncol, 8: 240.                https://doi.org/10.1152/jn.00508.2017
               https://doi.org/10.3389/fonc.2018.00240         79.  MacIntosh A, Desailly E, Vignais N,  et al., 2020, A
            69.  Epe B, Pflaum M, Boiteux S, 1993, DNA damage induced by   biofeedback-enhanced therapeutic exercise video game
               photosensitizers in cellular and cell-free systems. Mutat Res,   intervention for  young people with cerebral  palsy:
               299: 135–145.                                      A  randomized single-case experimental design feasibility
                                                                  study. PLoS One, 15: e0234767.
               https://doi.org/10.1016/0165-1218(93)90091-q
                                                                  https://doi.org/10.1371/journal.pone.0234767
            70.  Ge J, Wood DK, Weingeist DM,  et al., 2013, Standard
               fluorescent imaging of live cells is highly genotoxic.   80.  Wood KC, Lathan CE, Kaufman KR, 2013, Feasibility of
               Cytometry A, 83: 552–560.                          gestural feedback treatment for upper extremity movement
                                                                  in children with cerebral palsy. IEEE Trans Neural Syst
               https://doi.org/10.1002/cyto.a.22291               Rehabil Eng, 21: 300–305.
            71.  Martirosyan NL, Eschbacher JM, Kalani MY,  et al., 2016,      https://doi.org/10.1109/tnsre.2012.2227804
               Prospective evaluation of the  utility of intraoperative
               confocal laser endomicroscopy in patients with brain   81.  Susko T, Swaminathan K, Krebs HI, 2016, MIT-skywalker:
               neoplasms using fluorescein sodium: Experience with   A novel gait neurorehabilitation robot for stroke and cerebral
               74 cases. Neurosurgical Focus, 40: E11.            palsy. IEEE Trans Neural Syst Rehabil Eng, 24: 1089–1099.
               https://doi.org/10.3171/2016.1.focus15559          https://doi.org/10.1109/tnsre.2016.2533492
            72.  Vitrikas K, Dalton H, Breish D, 2020, Cerebral palsy: An   82.  Sukal-Moulton T, Clancy T, Zhang LQ, et al., 2014, Clinical
               overview. Am Fam Physician, 101: 213–220.          application of a robotic ankle training program for cerebral
                                                                  palsy compared to the research laboratory application: Does
            73.  Damiano DL, Prosser LA, Curatalo LA, et al., 2013, Muscle   it translate to practice? Arch Phys Med Rehabil, 95: 1433–1440.
               plasticity and ankle control after repetitive use of a functional
               electrical stimulation device for foot drop in cerebral palsy.      https://doi.org/10.1016/j.apmr.2014.04.010
               Neurorehabil Neural Repair, 27: 200–207.        83.  Moreau NG, Bodkin AW, Bjornson K,  et al., 2016,


            Volume 6 Issue 2 (2023)                         13                        https://doi.org/10.36922/itps.417
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