| Literature DB >> 30416995 |
Abstract
In research and development laboratories, chemical or pharmaceutical analysis has been carried out by evaluating sample signals obtained from instruments. However, the qualitative and quantitative determination based on raw signals may not be always possible due to sample complexity. In such cases, there is a need for powerful signal processing methodologies that can effectively process raw signals to get correct results. Wavelet transform is one of the most indispensable and popular signal processing methods currently used for noise removal, background correction, differentiation, data smoothing and filtering, data compression and separation of overlapping signals etc. This review article describes the theoretical aspects of wavelet transform (i.e., discrete, continuous and fractional) and its characteristic applications in UV spectroscopic analysis of pharmaceuticals.Entities:
Keywords: UV spectroscopy; continuous wavelet transform; discrete wavelet transform; fractional wavelet transform; pharmaceutical analysis
Year: 2018 PMID: 30416995 PMCID: PMC6212466 DOI: 10.3389/fchem.2018.00503
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1Representation of Fourier transform of a signal from time domain to frequency domain.
Families of wavelets with names and their coding list.
| Haar | haar |
| Daubechies | db |
| Symlets | sym |
| Coiflets | coif |
| BiorSplines | bior |
| ReverseBior | rbio |
| Meyer | meyr |
| Dmeyer | dmey |
| Gaussian | gaus |
| Mexican hat function | mexh |
| Morlet | morl |
| Complex Gaussian | cgau |
| Shannon | shan |
| Frequency B-Spline | fbsp |
| Complex Morlet | cmor |
Figure 2(A) Absorption spectra and (B) CWT spectra of M (–) and N (–) compounds and their mixture (–).
Figure 3(A) Absorption spectra, (B) ratio spectra, and (C) Haar CWT spectra of M and N compounds and their binary mixture.
Applications of the continuous wavelet transform-zero crossing technique to UV spectroscopic analysis of pharmaceuticals.
| Thiamine HCl, pyridoxine HCl | CWT-zero crossing | Daubechies, Biorthogonal | UV absorption spectra | Dinç and Baleanu, |
| Hydrochlorothiazide, spironolactone | CWT-zero crossing | Daubechies, Biorthogonal | UV absorption spectra | Dinç et al., |
| Thiamine HCl; pyridoxine HCl | CWT-zero crossing | Mexican hat function, Meyer | UV absorption spectra | Dinç and Baleanu, |
| Thiamine HCl, pyridoxine HCl | CWT-zero crossing | Gaussian1, Gaussian2 | UV absorption spectra | Dinç and Baleanu, |
| Caffeine, propyphenazone | DWT-CWT-zero crossing | Mexican and Haar | UV absorption spectra | Dinç et al., |
| Benazepril, hydrochlorothiazide | DWT-CWT-zero crossing | Coiflets2 and Gaussian2 | UV absorption spectra | Dinç and Baleanu, |
| Hydrochlorothiazide, Spironolactone | CWT-zero crossing | Haar, Mexican hat function | UV absorption spectra | Dinç et al., |
| Benazepril, hydrochlorothiazide | CWT-zero crossing | Mexican, Haar, Daubechies3 | UV absorption spectra | Dinç and Baleanu, |
| Ascorbic acid, acetylsalicylic acid | CWT-zero crossing | Mexican hat function | UV absorption spectra | Dinç et al., |
| Diminazene aceturate and phenazone | CWT-zero crossing | Reverse Biorthogonal | UV absorption spectra | Dinç et al., |
| Quinapril, hydrochlorothiazide | CWT-zero crossing | Mexican hat wavelet function | UV absorption spectra | Dinç and Baleanu, |
| Oxfendazole and oxyclozanide | CWT-zero crossing | Mexican hat function | UV absorption spectra | Dinç and Baleanu, |
| Levodopa, benserazide | CWT-zero crossing | Symlets | UV absorption spectra | Dinç et al., |
| Chlortetracycline, benzocaine | CWT-zero crossing | Coiflets | UV absorption spectra | Dinç et al., |
| Pyridoxine hydrochloride, isoniazide | CWT-zero crossing | Mexican hat function | UV absorption spectra | Üstündag et al., |
| Risedronate sodium | CWT-zero crossing | Morlet, Biorthogonal | UV absorption spectra | Ugurlu et al., |
| ampicillin sodium, sulbactam sodium | CWT-zero crossing | Mexican hat function, Symtles | UV absorption spectra | Dinç and Baleanu, |
| Paracetamol, chloroxozone | CWT-zero crossing | Mexican hat function, Daubechies, Symplets, Coiflets, Biortogonal, Gaussian | UV absorption spectra | Dinç et al., |
| Levamisole, triclabendazole | CWT-zero crossing | Biorthogonal | UV absorption spectra | Dinç et al., |
| Telmisartan, hydrochlorothiazide | CWT-zero crossing | Gaussian, Biorthogonal | UV absorption spectra | Dinç and Baleanu, |
| Perindopril, indapamide | CWT-zero crossing | Haar and Biorthogonal1.5 | UV absorption spectra | Pektaş et al., |
| Valsartan, amlodipine | CWT-zero crossing | Daubechies, Dmeyer | UV absorption spectra | Dinç and Baleanu, |
| Metformin hydrochloride, glibenclamide | DWT-CWT-zero crossing | Daubechies, Reverse Biorthogonal, Gaussian | UV absorption spectra | Sohrabi et al., |
| Trimethoprim, sulphamethoxazole | CWT-zero crossing | Biorthogonal, Coiflets, Daubechies, Haar | UV absorption spectra | Dinç et al., |
| Amlodipine, atorvastatine | CWT-zero crossing | Mexican hat function | UV absorption spectra | Shariati-Rad et al., |
| Estradiol valerate, cyproterone acetate | CWT-zero crossing | Symlets | UV absorption spectra | Dinç et al., |
| Lamivudine, zidovudine | CWT-zero crossing | Mexican hat wavelet, Symlets, Daubechies | UV absorption spectra | Dinç et al., |
| Diphenhydramine hydrochloride | CWT-zero crossing | Biorthogonal | UV absorption spectra | Devrim et al., |
| Ambroxol hydrochloride, doxycycline | CWT-zero crossing | Haar wavelet function | UV absorption spectra | Darwish et al., |
| Oxfendazole, oxyclozanide | MOFrFT-CWT-zero-crossing | Mexican hat | UV absorption spectra | Dinç et al., |
| Atenolol, chlorthalidone | CWT-zero crossing | Coiflet, Mexican Hat function | UV absorption spectra | Dinç et al., |
| Valsartan, hydrochlorothiazide | CWT-zero crossing | Mexican hat function, Daubechies | UV absorption spectra | Dinç et al., |
Applications of the fractional wavelet transform and its combination with other chemometric techniques to UV spectroscopic analysis of pharmaceuticals.
| Ampicillin, sulbactam | FWT-derivative method | – | UV absorption data | Dinç and Baleanu, |
| Lacidipine and its photodegradation product | FWT-CWT | Mexican hat function | UV absorption data | Dinç et al., |
| Cilazapril, hydrochlorothiazide | FWT-PLS | – | UV absorption data | Dinç et al., |
| Paracetamol, propiphenazone, caffeine and thiamine | FWT-PCR, FWT-PLS, FWT-ANN | – | UV absorption data | Dinç et al., |
| Amlodipine, valsartan | FWT-PLS1, FWT-PLS2 | – | UV absorption data | Çelebier et al., |
| Trimethoprim, sulfachloropyridazine sodium | FWT-derivative method | – | UV absorption data | Kanbur et al., |
| Atorvastatin, amlodipine | FWT-CWT | Mexican wavelet hat function | UV absorption data | Dinç and Baleanu, |
| Trimethoprim, sulphamethoxazole | FWT-PCR, FWT-PLS | – | UV absorption data | Dinç et al., |
| of oxytetracycline and flunixin megluminein | FWT-PCR, FWT-PLS | – | UV absorption data | Kambur et al., |
| Olmesartan modoxomil, hydrochlorothiazide | FWT-CWT | Mexican wavelet hat function | UV absorption data | Dinç et al., |
| Thiamine HCl, pyridoxine HCl, lidocaine HCl | FWT-PCR, FWT-PLS, | – | UV absorption data | Dinç and Baleanu, |
| FWT-CWT-PCR, FWT-CWT-PLS | ||||
| Melatonin and its photodegradation | FWT-CWT | Biorthogonal, symplets | UV absorption data | Dinç et al., |
Applications of the wavelet transform-multivariate approaches to UV spectroscopic analysis of pharmaceuticals.
| Tetramethrin, propoxur; piperonil butoxide | CWT-PCR, CWT-PLS | Mexican hat function | UV absorption spectra | Dinç et al., |
| Paracetamol, ascorbic acid, acetylsalicylic acid | DWT-CLS, DWT-PLS | Haar | UV absorption spectra | Dinç et al., |
Applications of the ratio spectra-continuous wavelet transform, ratio spectra- continuous wavelet transform-zero crossing approaches to UV spectroscopic analysis of pharmaceuticals.
| Paracetamol, acetylsalicylic acid, caffeine | Ratio spectra-CWT-ZC | Mexican hat function | UV ratio spectra | Dinç et al., |
| Diminazene aceturate and phenazone | Ratio spectra-CWT | Reverse Biorthogonal | UV ratio spectra | Dinç et al., |
| Paracetamol, metamizol, caffeine | Ratio spectra-CWT-ZC | Mexican hat function, Reverse biorthogonal, Biorthogonal | UV ratio spectra | Dinç et al., |
| Levamizol, oxycloanide | Ratio spectra-CWT | Daubechies | UV ratio spectra | Dinç et al., |
| oxfendazole and oxyclozanide | Ratio spectra-CWT | Morlet | UV ratio spectra | Dinç and Baleanu, |
| Ascorbic acid, acetylsalicylic acid and paracetamol | Double divisor-ratio spectra-CWT | Haar, Mexican hat function | UV- double divisor-ratio spectra | Dinç and Baleanu, |
| vitamin C, aspirin | Ratio spectra-CWT | Biorthogonal | UV ratio spectra | Dinç and Baleanu, |
| valsartan and hydrochlorothiazide | Ratio spectra-CWT | Mexican hat function, Coiflets | UV ratio spectra | Dinç et al., |