Most Cited Papers

The top 25 landmark papers on Grid Therapy, Lattice Therapy, and SFRT, ranked by real citation count via the NIH's iCite database.

Papers

  1. High-dose spatially-fractionated radiation (GRID): a new paradigm in the management of advanced cancers

    229 citations

    Mohiuddin M, Fujita M, Regine WF, et al.

    International journal of radiation oncology, biology, physics · 1999 Oct 1 · Vol 45 · Issue 3 · 721-7

    doi:10.1016/s0360-3016(99)00170-4View on PubMed →
  2. Spatially fractionated radiation therapy: History, present and the future

    162 citations

    Yan W, Khan MK, Wu X, et al.

    Clinical and translational radiation oncology · 2020 Jan · Vol 20 · 30-38

    doi:10.1016/j.ctro.2019.10.004View on PubMed →
  3. A Current Review of Spatial Fractionation: Back to the Future?

    147 citations

    Billena C, Khan AJ

    International journal of radiation oncology, biology, physics · 2019 May 1 · Vol 104 · Issue 1 · 177-187

    doi:10.1016/j.ijrobp.2019.01.073View on PubMed →
  4. High dose bystander effects in spatially fractionated radiation therapy

    135 citations

    Asur R, Butterworth KT, Penagaricano JA, et al.

    Cancer letters · 2015 Jan 1 · Vol 356 · Issue 1 · 52-7

    doi:10.1016/j.canlet.2013.10.032View on PubMed →
  5. The Technical and Clinical Implementation of LATTICE Radiation Therapy (LRT)

    133 citations

    Wu X, Perez NC, Zheng Y, et al.

    Radiation research · 2020 Dec 1 · Vol 194 · Issue 6 · 737-746

    doi:10.1667/RADE-20-00066.1View on PubMed →
  6. Understanding High-Dose, Ultra-High Dose Rate, and Spatially Fractionated Radiation Therapy

    112 citations

    Griffin RJ, Ahmed MM, Amendola B, et al.

    International journal of radiation oncology, biology, physics · 2020 Jul 15 · Vol 107 · Issue 4 · 766-778

    doi:10.1016/j.ijrobp.2020.03.028View on PubMed →
  7. Evaluation of spatially fractionated radiotherapy (GRID) and definitive chemoradiotherapy with curative intent for locally advanced squamous cell carcinoma of the head and neck: initial response rates and toxicity

    109 citations

    Peñagarícano JA, Moros EG, Ratanatharathorn V, et al.

    International journal of radiation oncology, biology, physics · 2010 Apr · Vol 76 · Issue 5 · 1369-75

    doi:10.1016/j.ijrobp.2009.03.030View on PubMed →
  8. Palliative treatment of advanced cancer using multiple nonconfluent pencil beam radiation. A pilot study

    104 citations

    Mohiuddin M, Curtis DL, Grizos WT, et al.

    Cancer · 1990 Jul 1 · Vol 66 · Issue 1 · 114-8

    doi:10.1002/1097-0142(19900701)66:1<114::aid-cncr2820660121>3.0.co;2-lView on PubMed →
  9. Photon GRID Radiation Therapy: A Physics and Dosimetry White Paper from the Radiosurgery Society (RSS) GRID/LATTICE, Microbeam and FLASH Radiotherapy Working Group

    91 citations

    Zhang H, Wu X, Zhang X, et al.

    Radiation research · 2020 Dec 1 · Vol 194 · Issue 6 · 665-677

    doi:10.1667/RADE-20-00047.1View on PubMed →
  10. Spatially fractionated stereotactic body radiation therapy (Lattice) for large tumors

    88 citations

    Duriseti S, Kavanaugh J, Goddu S, et al.

    Advances in radiation oncology · 2021 May-Jun · Vol 6 · Issue 3 · 100639

    doi:10.1016/j.adro.2020.100639View on PubMed →
  11. The impact of TNF-alpha induction on therapeutic efficacy following high dose spatially fractionated (GRID) radiation

    84 citations

    Sathishkumar S, Dey S, Meigooni AS, et al.

    Technology in cancer research & treatment · 2002 Apr · Vol 1 · Issue 2 · 141-7

    doi:10.1177/153303460200100207View on PubMed →
  12. Spatially fractionated radiation therapy: a critical review on current status of clinical and preclinical studies and knowledge gaps

    78 citations

    Prezado Y, Grams M, Jouglar E, et al.

    Physics in medicine and biology · 2024 May 10 · Vol 69 · Issue 10

    doi:10.1088/1361-6560/ad4192View on PubMed →
  13. Should Peak Dose Be Used to Prescribe Spatially Fractionated Radiation Therapy?-A Review of Preclinical Studies

    74 citations

    Fernandez-Palomo C, Chang S, Prezado Y

    Cancers · 2022 Jul 26 · Vol 14 · Issue 15

    doi:10.3390/cancers14153625View on PubMed →
  14. Combined High-Dose LATTICE Radiation Therapy and Immune Checkpoint Blockade for Advanced Bulky Tumors: The Concept and a Case Report

    74 citations

    Jiang L, Li X, Zhang J, et al.

    Frontiers in oncology · 2020 · Vol 10 · 548132

    doi:10.3389/fonc.2020.548132View on PubMed →
  15. Microbeam radiation therapy: Clinical perspectives

    71 citations

    Grotzer MA, Schültke E, Bräuer-Krisch E, et al.

    Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics (AIFB) · 2015 Sep · Vol 31 · Issue 6 · 564-7

    doi:10.1016/j.ejmp.2015.02.011View on PubMed →
  16. Lattice Radiation Therapy in clinical practice: A systematic review

    70 citations

    Iori F, Cappelli A, D'Angelo E, et al.

    Clinical and translational radiation oncology · 2023 Mar · Vol 39 · 100569

    doi:10.1016/j.ctro.2022.100569View on PubMed →
  17. The Use of Lattice Radiation Therapy (LRT) in the Treatment of Bulky Tumors: A Case Report of a Large Metastatic Mixed Mullerian Ovarian Tumor

    67 citations

    Blanco Suarez JM, Amendola BE, Perez N, et al.

    Cureus · 2015 Nov 24 · Vol 7 · Issue 11 · e389

    doi:10.7759/cureus.389View on PubMed →
  18. Microbeam radiation therapy - grid therapy and beyond: a clinical perspective

    66 citations

    Schültke E, Balosso J, Breslin T, et al.

    The British journal of radiology · 2017 Oct · Vol 90 · Issue 1078 · 20170073

    doi:10.1259/bjr.20170073View on PubMed →
  19. Spatially Fractionated Radiation Therapy Using Lattice Radiation in Far-advanced Bulky Cervical Cancer: A Clinical and Molecular Imaging and Outcome Study

    65 citations

    Amendola BE, Perez NC, Mayr NA, et al.

    Radiation research · 2020 Dec 1 · Vol 194 · Issue 6 · 724-736

    doi:10.1667/RADE-20-00038.1View on PubMed →
  20. Evidence for Early Stage Anti-Tumor Immunity Elicited by Spatially Fractionated Radiotherapy-Immunotherapy Combinations

    62 citations

    Johnsrud AJ, Jenkins SV, Jamshidi-Parsian A, et al.

    Radiation research · 2020 Dec 1 · Vol 194 · Issue 6 · 688-697

    doi:10.1667/RADE-20-00065.1View on PubMed →
  21. Therapeutic advantage of grid irradiation for large single fractions

    60 citations

    Zwicker RD, Meigooni A, Mohiuddin M

    International journal of radiation oncology, biology, physics · 2004 Mar 15 · Vol 58 · Issue 4 · 1309-15

    doi:10.1016/j.ijrobp.2003.07.003View on PubMed →
  22. LITE SABR M1: A phase I trial of Lattice stereotactic body radiotherapy for large tumors

    59 citations

    Duriseti S, Kavanaugh JA, Szymanski J, et al.

    Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology · 2022 Feb · Vol 167 · 317-322

    doi:10.1016/j.radonc.2021.11.023View on PubMed →
  23. Feasibility of delivering grid therapy using a multileaf collimator

    59 citations

    Ha JK, Zhang G, Naqvi SA, et al.

    Medical physics · 2006 Jan · Vol 33 · Issue 1 · 76-82

    doi:10.1118/1.2140116View on PubMed →
  24. Lattice or Oxygen-Guided Radiotherapy: What If They Converge? Possible Future Directions in the Era of Immunotherapy

    58 citations

    Ferini G, Valenti V, Tripoli A, et al.

    Cancers · 2021 Jun 30 · Vol 13 · Issue 13

    doi:10.3390/cancers13133290View on PubMed →
  25. Conventional dose rate spatially-fractionated radiation therapy (SFRT) treatment response and its association with dosimetric parameters-A preclinical study in a Fischer 344 rat model

    57 citations

    Rivera JN, Kierski TM, Kasoji SK, et al.

    PloS one · 2020 · Vol 15 · Issue 6 · e0229053

    doi:10.1371/journal.pone.0229053View on PubMed →