2022
DOI: 10.14336/ad.2021.0711
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Review on Laser Technology in Intravascular Imaging and Treatment

Abstract: Blood vessels are one of the most essential organs, which nourish all tissues in our body. Once there are intravascular plaques or vascular occlusion, other organs and circulatory systems will not work properly. Therefore, it is necessary to detect abnormal blood vessels by intravascular imaging technologies for subsequent vascular treatment. The emergence of lasers and fiber optics promotes the development of intravascular imaging and treatment. Laser imaging techniques can obtain deep vascular images owing t… Show more

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Cited by 8 publications
(4 citation statements)
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References 155 publications
(201 reference statements)
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“…Advancements in endovascular techniques allow for improved and minimally invasive management of branch vessel involvement in dissections, ensuring adequate blood flow to vital organs. Image-guided navigation systems using advanced imaging modalities such as fluoroscopy, intravascular ultrasound (IVUS), or optical coherence tomography (OCT) allow for precise placement and deployment of endovascular devices in patients with AD [ 40 ]. Real-time imaging guidance enhances procedural accuracy and reduces the risk of procedural complications, improving patient outcomes.…”
Section: Reviewmentioning
confidence: 99%
“…Advancements in endovascular techniques allow for improved and minimally invasive management of branch vessel involvement in dissections, ensuring adequate blood flow to vital organs. Image-guided navigation systems using advanced imaging modalities such as fluoroscopy, intravascular ultrasound (IVUS), or optical coherence tomography (OCT) allow for precise placement and deployment of endovascular devices in patients with AD [ 40 ]. Real-time imaging guidance enhances procedural accuracy and reduces the risk of procedural complications, improving patient outcomes.…”
Section: Reviewmentioning
confidence: 99%
“…When the pulses are of short duration of the order of a nanosecond or even better than a picosecond, the mechanical shock waves that are generated can damage the very structure of the medium in which the wave propagates, especially if this is biological matter. 24 , 25 This phenomenon can also be used for medical purposes, such as laser lithotripsy, 26 intravascular treatment 27 such as laser angioplasty and endovenous laser ablation, dermatological applications such as skin rejuvenation 28 or even cosmetic purposes such as the removal of tattoos.…”
Section: Photomechanical Interactionmentioning
confidence: 99%
“…Also, it is able to ablate tissue in a precise way, due to the small absorption depth (<100 μm). Many investigations about laser angioplasty have been carried out using UV lasers over the last two decades [4,5].…”
Section: Introductionmentioning
confidence: 99%