Publications by authors named "T Pradeesh Kumar"

Aim: The study aims to assess the effectiveness of eggshell-derived nanohydroxyapatite (EnHA) as a bone graft material for treating intrabony defects, using cone-beam computed tomography (CBCT) for evaluation.

Materials And Methods: Ten patients were divided into two groups: Group 1: individuals with 2-wall defects, Group 2: those with 3-wall defects. Follow-up appointments at 1-, 3-, and 6-month intervals included assessments of clinical attachment level (CAL), probing depth (PD), and gingival recession (GR).

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Background: Non-secretory multiple myeloma (NSMM) is defined as clonal bone marrow plasma cells ≥10% or biopsy proven plasmacytoma, evidence of end-organ damage due to underlying plasma cell dyscrasia, namely hypercalcemia, renal insufficiency, anaemia, bone lesions and lack of serum and urinary monoclonal protein on electrophoresis and immunofixation. They represent 3-5% of multiple myeloma (MM). With the advent of serum free light chain (s FLC) measurement, most of NSMMs have been classified as Light chain Multiple myeloma (LCMM).

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In this work, novel 2-substituted-3-((1-substituted-1H-1,2,3-triazol-4-yl) methoxy) quinoxaline analogues were designed, synthesized, and various analytical techniques, viz., H NMR, C NMR, and Mass spectrometry, were deployed in the structure confirmation of the final compounds. Synthesized derivatives were evaluated for their antimycobacterial activity against Mycobacterium tuberculosis (Mtb) H37Rv.

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Pulmonary blastoma, a rare and aggressive primary lung tumour, poses diagnostic challenges due to its vague clinical presentation and rarity. Here, we outline the case of a chronic smoker in his 50s presenting with cough and blood-tinged sputum. Radiological assessment revealed a mass lesion in the left upper lobe.

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Persistent accumulation of fly ash, a byproduct of coal combustion, poses significant environmental challenges due to its elevated levels of toxicity, heavy metal contamination, and ecological issues. Present review explores the ecological significance and functional potential of microfauna and mesofauna in mitigating environmental impacts, focusing on their ability to rehabilitate fly ash dump sites into biologically active and sustainable ecosystems. Microfaunal groups, including protozoa, nematodes, and other small invertebrates, play essential roles in promoting soil aggregation, pollutant biotransformation, and nutrient cycling while fostering synergistic interactions with plant communities to accelerate bioremediation processes and biodiversity recovery.

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