Korea University · 物理学・天文学
Professor Myonggeun Yoon's research lab specializes in interdisciplinary studies at the intersection of biomedical physics, nanotechnology, and neuroscience. The lab focuses on developing advanced radiation therapy techniques, particularly through dose optimization in intensity-modulated radiotherapy using novel metrics like the S-index, and explores radiation dose enhancement via high-Z nanoparticles and chemotherapeutic agents in cancer treatment. Additionally, the lab investigates neural regeneration and retinotopic map reorganization in model organisms such as goldfish, providing insights into brain plasticity and visual system repair. The integration of computational modeling, experimental radiobiology, and nanoscale material characterization defines the lab’s multidisciplinary approach.
Figures are computed from collected data and may differ slightly.
The goal of the present study was to develop a new dose-volume histogram (DVH)- based homogeneity index for effectively evaluating the dose homogeneity of intensity-modulated radiotherapy plans. The new index, called the sigma-index ("S-index") is defined as the standard deviation of the normalized differential DVH curve. In a study of 16 patients with brain tumors at our institution, the S-index was found to vary from 0.80 to 3.15. Our results showed that the S-index provides a more reliable an
1. The patterns of re-established visual projections on to the rostral half-tectum are studied following excision of the caudal tectum at various intervals after section of either the contralateral optic nerve or the ipsilateral optic tract in adult goldfish. 2. The pattern of a newly restored retinotectal projection depends on the duration of the post-operative period given to the halved tectum before it is re-innervated by regenrating optic fibres from the retina. 3. When the duration is such
Glioblastoma, the most common primary brain tumor in adults, is an incurable malignancy with poor short-term survival and is typically treated with radiotherapy along with temozolomide. While the development of tumor-treating fields (TTFields), electric fields with alternating low and intermediate intensity has facilitated glioblastoma treatment, clinical outcomes of TTFields are reportedly inconsistent. However, combinatorial administration of chemotherapy with TTFields has proven effective for
1. The pattern of visual projection from the retina on to the optic tectum was studied with neurophysiological mapping methods following reimplantation of the optic tectum in young adult goldfish.2. When a rectangular piece of the tectum was dissected out and then reimplanted to the same tectum in situ, the restored visual projection showed a normal retinotopic order over the area of the tectal reimplant.3. If the tectal tissue was reimplanted after rotation by 180 degrees , the visual projectio
Radiation dose enhancement by injection of a high atomic number (Z) material into tumor volumes has been studied for various radiation sources and different concentrations of gold nanoparticles. Brachytherapy employs low energy photons of less than similar to 0.5 MeV, which indeed is the optimal energy range for radiation dose enhancement by introduction of high-Z material. The present study uses the MCNPX (TM) code to estimate the dose enhancement by gold nanoparticles for the four common brach
We report on the self-assembly of a superlattice of nanodots of different elements (Sn,In) on a $\mathrm{Si}(111)\ensuremath{-}(7\ifmmode\times\else\texttimes\fi{}7)$ template surface, observed with a scanning tunneling microscope. The formation of nanodots is a feature of the $\mathrm{Si}(111)\ensuremath{-}(7\ifmmode\times\else\texttimes\fi{}7)$ surface, and a characteristic of adsorbates of different valency. In this paper, we examine the evolution of these nanodots with increasing coverage to
1. The topographic pattern of re-established visual projections after a reciprocal transplantation between tectal and cerebellar tissues was studied in adult goldfish. 2. A rectangular tissue was dissected from the left tectum, and a similar piece from the cerebellum in the same fish. The cerebellar piece was rotated by either 180 or 0 degrees around the dorsoventral axis, and transplanted into the tectum in place of the tectal piece. This tectal tissue was likewise grafted into the cerebellum a
1. The pattern of visual projection from the retina on to the optic tectum following reimplantation of a piece of the tectal tissue was studied with neurophysiological mapping methods in adult goldfish. 2. When a rectangular piece of the tectum was dissected, lifted free, and then reimplanted to the same tectum after rotation by 180 degrees around the dorsoventral axis, the re-established visual projection later showed a complete reversal of retinotopic order within the reimplanted area with ref
This study examined the dose response of an optically stimulated luminescence dosemeter (OSLD) to megavoltage photon and electron beams. A nanoDot™ dosemeter was used to measure the dose response of the OSLD. Photons of 6-15 MV and electrons of 9-20 MeV were delivered by a Varian 21iX machine (Varian Medical System, Inc. Milpitas, CA, USA). The energy dependency was <1 %. For the 6-MV photons, the dose was linear until 200 cGy. The superficial dose measurements revealed photon irradiation to hav
1. Possible influence of different visual environments on the reorganization of retinotectal projection was studied with neurophysiological mapping methods following excision of the caudal half of the optic tectum in adult goldfish. 2. Post-operative light-deprivation showed no significant effects: in the absence of visual input, the visual projection from the whole retina because compressed on to the remaining rostral half-tectum in correct retinotopic order within 4 months, regardless of wheth
The brain manifests utmost complexities in its structural organization. Several billion nerve cells are intimately interconnected, not at random, but in highly ordered, specific patterns that enable the brain to perform its various versatile functions. How do the functional interconnections among the neural elements of the brain develop during embryogenesis, beginning from a single fertilized egg cell?
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