
Roshan Paudel- PhD
- CS Faculty at Morgan State University
Roshan Paudel
- PhD
- CS Faculty at Morgan State University
About
21
Publications
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55
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Introduction
Current institution
Additional affiliations
August 2021 - present
Publications
Publications (21)
Although antibody derivatives, such as Fabs and scFvs, have revolutionized the cellular imaging, quantification and tracking of proteins, analogous tools and strategies are unavailable for cellular RNA visualization. Here, we developed four synthetic anti-RNA scFv (sarabody) probes and their green fluorescent protein (GFP) fusions and demonstrated...
Mutations in the ryanodine receptor (RyR2) gene have been linked to arrhythmia and possibly sudden cardiac death (SCD) during acute emotional stress, physical activities, or catecholamine perfusion. The most prevalent disorder is catecholaminergic polymorphic ventricular tachycardia (CPVT1). Four primary mechanisms have been proposed to describe CP...
Abstract—This study focuses on the critical role of genetic
biomarkers in diagnosing, treating, and preventing the develop-
ment of colon cancer. The identification of these biomarkers en-
hances the precision of colon cancer diagnosis and classification.
Detecting specific genetic mutations makes distinctions among
various colon cancer types fea...
Breast cancer (BC) is the second leading cause of death in the United States in women. 1 in 8 women in their lifetime has a risk of developing breast cancer. With advances in omics technology, more data is available for diagnosis, treatment, and prognosis. The help of Machine Learning algorithms, a subdomain of Artificial Intelligence, would allow...
Calsequestrin Type 2 (CASQ2) is a high-capacity, low-affinity, Ca²⁺-binding protein expressed in the sarcoplasmic reticulum (SR) of the cardiac myocyte. Mutations in CASQ2 have been linked to the arrhythmia catecholaminergic polymorphic ventricular tachycardia (CPVT2) that occurs with acute emotional stress or exercise can result in sudden cardiac...
Calcium sparks are the elementary Ca²⁺ release events in excitation-contraction coupling that underlie the Ca²⁺ transient. The frequency-dependent contractile force generated by cardiac myocytes depends upon the characteristics of the Ca²⁺ transients. A stochastic computational local control model of a guinea pig ventricular cardiomyocyte was devel...