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1.
J Chem Phys ; 159(7)2023 Aug 21.
Article in English | MEDLINE | ID: mdl-37594067

ABSTRACT

A polarization consistent framework, where dielectric screening is affected consistently in polarizable continuum model (PCM) calculations, is employed for the study of solvation energies. The computational framework combines a screened range-separated-hybrid functional (SRSH) with PCM calculations, SRSH-PCM, where dielectric screening is imposed in both PCM self-consistent reaction field (SCRF) iterations and the electronic structure Hamiltonian. We begin by demonstrating the impact of modifying the Hamiltonian to include such dielectric screening in SCRF iterations by considering the solutions of electrostatically embedded Hartree-Fock (HF) exact exchange equations. Long-range screened HF-PCM calculations are shown to capture properly the linear dependence of gap energy of frontier orbitals on the inverse of the dielectric constant, whereas unscreened HF-PCM orbital energies are fallaciously semi-constant with respect to the dielectric constant and, therefore, inconsistent with the ionization energy gaps. Similar trends affect density functional theory (DFT) calculations that aim to achieve predictive quality. Importantly, the dielectric screened calculations are shown to significantly affect DFT- and HF PCM-based solvation energies, where screened solvation energies are smaller compared to the unscreened values. Importantly, SRSH-PCM, therefore, appears to reduce the tendency of DFT-PCM to overestimate solvation energies, where we find the effect to increase with the dielectric constant and the polarity of the molecular solute, trends that enhance the quality of DFT-PCM calculations of solvation energy. Understanding the relationship of dielectric screening in the Hamiltonian and DFT-PCM calculations can ultimately benefit on-going efforts for the design of predictive and parameter free descriptions of solvation energies.

2.
JNMA J Nepal Med Assoc ; 52(189): 233-7, 2013.
Article in English | MEDLINE | ID: mdl-23591302

ABSTRACT

INTRODUCTION: Quality control is an essential component in every clinical laboratory which maintains the excellence of laboratory standards, supplementing to proper disease diagnosis, patient care and resulting in overall strengthening of health care system. Numerous quality control schemes are available, with combinations of procedures, most of which are tedious, time consuming and can be "too technical" whereas commercially available quality control materials can be expensive especially for laboratories in developing nations like Nepal. Here, we present a procedure performed at our centre with self prepared control serum and use of simple statistical tools for quality assurance. METHODS: The pooled serum was prepared as per guidelines for preparation of stabilized liquid quality control serum from human sera. Internal Quality Assessment was performed on this sample, on a daily basis which included measurement of 12 routine biochemical parameters. The results were plotted on Levey-Jennings charts and analysed with quality control rules, for a period of one month. RESULTS: The mean levels of biochemical analytes in self prepared control serum were within normal physiological range. This serum was evaluated every day along with patients' samples. The results obtained were plotted on control charts and analysed using common quality control rules to identify possible systematic and random errors. Immediate mitigation measures were taken and the dispatch of erroneous reports was avoided. CONCLUSIONS: In this study we try to highlight on a simple internal quality control procedure which can be performed by laboratories, with minimum technology, expenditure, and expertise and improve reliability and validity of the test reports.


Subject(s)
Clinical Laboratory Services , Quality Assurance, Health Care/organization & administration , Clinical Laboratory Techniques , Humans , Nepal , Prospective Studies , Quality Control , Reference Standards , Reproducibility of Results
3.
JNMA J Nepal Med Assoc ; 52(189): 285-7, 2013.
Article in English | MEDLINE | ID: mdl-23591313

ABSTRACT

The eponym 'Amyand hernia' coined in recognition of Claudius Amyand, the first surgeon to successfully perform appendectomy in a hernia sac containing appendix, refers to the vermiform appendix within inguinal hernia. Here, we present a rare case, of Amyand's hernia in an 18 month-old boy who was brought with an inguino-scortal swelling which later on exploration was left sided Amyand's hernia with sliding component. Amyand's hernia is not very often seen in the clinical practice and its pre-operative diagnosis is very difficult hence awareness of this disease condition is essential for preoperative suspicion and even diagnosis of the condition.


Subject(s)
Appendicitis/complications , Appendicitis/diagnosis , Hernia, Inguinal/complications , Hernia, Inguinal/diagnosis , Appendectomy , Appendicitis/surgery , Hernia, Inguinal/surgery , Herniorrhaphy , Humans , Infant , Male
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