2019
DOI: 10.1002/jbio.201900119
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Biological nascent evolution of snail bone and collagen revealed by nonlinear optical microscopy

Abstract: Using nonlinear optical microscopy of coherent antistokes Raman scattering (CARS), second harmonic generation (SHG) and two-photo excitation fluorescence, we in situ observed how the collagen and the bone grow synergistically and competitively during nascent biological evolution. The sdsCO 2− 3 and PO 2− 3 ions were first observed to be dispersed in the liquid environment, and the collagen was observed 2 days later. With the help of the collagen, the CO 2− 3 and PO 2− 3 ions gradually moved closer to the colla… Show more

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Cited by 12 publications
(8 citation statements)
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References 18 publications
(17 reference statements)
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“…However, photoinduced charge transfer also exists during two-photon absorption (TPA). Since the birth of pulsed lasers, research on nonlinear optical absorption has sprung up. TPA is also a type of nonlinear absorption spectrum. TPA is a third-order nonlinear optical phenomenon in which molecules absorb two photons at the same time, which can be quantified by TPA cross-section, and the number of absorbed photons is proportional to the imaginary part of χ (3) tensors. ,, The nonlinear optical coefficient can be defined by the response theory, so the TPA absorption cross section can also be calculated by the quadratic response theory.…”
Section: Introductionmentioning
confidence: 99%
“…However, photoinduced charge transfer also exists during two-photon absorption (TPA). Since the birth of pulsed lasers, research on nonlinear optical absorption has sprung up. TPA is also a type of nonlinear absorption spectrum. TPA is a third-order nonlinear optical phenomenon in which molecules absorb two photons at the same time, which can be quantified by TPA cross-section, and the number of absorbed photons is proportional to the imaginary part of χ (3) tensors. ,, The nonlinear optical coefficient can be defined by the response theory, so the TPA absorption cross section can also be calculated by the quadratic response theory.…”
Section: Introductionmentioning
confidence: 99%
“…The SPs' materials are widely used in these fields, in which SPs resonance (SPR) is distributed in ultraviolet or visible light regions. For some special applications, such as optical communication, biological detection in vivo, and photon medicine [14,15], SPR in the near-infrared band is more prevalent. However, due to the rapid development of non-linear optics, SPR also plays a very important role in some non-linear optical spectroscopy fields, such as surface-enhanced two-photon excited fluorescence (SE-TPEF) [16][17][18], second harmonic generation (SE-SHG) [19], and coherent anti-Stokes-Raman scattering (SE-CARS) [20].…”
Section: Introductionmentioning
confidence: 99%
“…Density functional theory (DFT) is an ab initio quantum mechanical algorithm that does not rely on any empirical parameters [28]. It is a reliable condensed matter physics and first-principles theory that can accurately calculate the electronic structure and optical properties of materials [14]. Because exchange-correlation functionals in DFT can thoroughly describe the exchange-correlation effects between electrons in a multi-electron system, this method is universally applicable to materials composed of various elements, and is not limited to the crystal structures and components.…”
Section: Introductionmentioning
confidence: 99%
“…14 The TPA process can absorb relatively low energy photons to excite the system to a relatively high excited state. 15,16 Therefore, TPA is oen used in the biomedical eld to observe uorescence and ensure that samples are not damaged by high-energy lasers. [17][18][19] In recent years, the application of TPA has been dramatically expanded.…”
Section: Introductionmentioning
confidence: 99%