Doppler optical coherence tomography or optical Doppler tomography (ODT) has been demonstrated to spatially localize flow velocity mapping as well as to obtain images of microstructure of samples simulta- neously. I...Doppler optical coherence tomography or optical Doppler tomography (ODT) has been demonstrated to spatially localize flow velocity mapping as well as to obtain images of microstructure of samples simulta- neously. In recent decades, spectral domain Doppler optical coherence tomography (OCT) has been applied to observe three-dimensional (3D) vascular distribution. In this study, we developed a spectral domain optical coherence tomography system (SD-OCT) using super luminescent diode (SLD) as light source. The center wavelength of SLD is 835 nm with a 45-nm bandwidth. Theoretically, the transverse resolution, axial resolution and penetration depth of this SD-OCT system are 6.13 μm, 6.84 μm and 3.62 mm, respectively. By imaging mouse model with dorsal skin window chamber, we obtained a series of real-time OCT images and reconstructed 3D images of the specific area inside the dorsal skin window chamber by Amira. As a result, we can obtain the clear and complex distribution images of blood vessels of mouse model.展开更多
目的:NOD样受体热蛋白结构域相关蛋白6(NOD-like receptor thermal protein domain associated protein 6,NLRP6)是新发现的寡聚化核苷酸结合结构域样受体家族成员,广泛表达于肠道、肝脏、肾脏、脾脏和肌肉等组织器官,在炎症、焦亡和自...目的:NOD样受体热蛋白结构域相关蛋白6(NOD-like receptor thermal protein domain associated protein 6,NLRP6)是新发现的寡聚化核苷酸结合结构域样受体家族成员,广泛表达于肠道、肝脏、肾脏、脾脏和肌肉等组织器官,在炎症、焦亡和自噬等多种生物过程发挥广泛的调节作用。近期研究表明,NLRP6在应激条件下对多种组织器官的疾病表型具有重要影响。然而,NLRP6对组织器官生长发育的影响尚未可知。方法:采用CRISPR/Cas9基因编辑技术构建NLRP6基因敲除小鼠,饲养并记录小鼠的生长和繁殖情况。将小鼠的脾、肝、心、肾、脑、四肢和后背皮肤等组织器官进行解剖和切片染色,以评估NLRP6基因敲除对实质器官的宏观发育影响和对组织结构的微观影响。结果:在自然状态下,NLRP6基因敲除缩短了雄鼠的性成熟期并使成年雄鼠的睾丸发生不可逆的破溃与萎缩。在四肢发育上,NLRP6基因敲除诱导成年雄鼠后肢横纹肌断裂,导致后肢明显萎缩。在脾脏发育上,NLRP6基因敲除不仅显著增加了雄鼠的脾脏体积(P<0.01)还诱导雄鼠脾脏出现炎性细胞浸润。在后背皮肤上,NLRP6基因敲除引发雄鼠后背皮肤出现明显的溃疡损伤、胶原纤维增生和炎性细胞浸润。结论:在自然生长发育条件下,NLRP6基因敲除选择性影响小鼠的生殖器发育与性成熟期、后肢肌肉发育、脾脏大小及其炎症免疫状态以及后背皮肤的结构完整性,而且这一作用具有明显的雄激素依赖性。展开更多
The effect of optical cleaning method combined with laser speckle imaging(LSI)was discussed to improve the detection depth of LSI due to high scattering characteristics of skin,which limit its clinical application.A d...The effect of optical cleaning method combined with laser speckle imaging(LSI)was discussed to improve the detection depth of LSI due to high scattering characteristics of skin,which limit its clinical application.A double-layer skin tissue model embedded with a single blood vessel was established,and the Monte Carlo method was used to simulate photon propagation under the action of light-permeating agent.808 nm semiconductor and 632.8 nm He–Ne lasers were selected to study the e®ect of optical clearing agents(OCAs)on photon deposition in tissues.Results show that the photon energy deposition density in the epidermis increases with the amount of tissue°uid replaced by OCA.Compared with glucose solution,polyethylene glycol 400(PEG 400)and glycerol can considerably increase the average penetration depth of photons in the skin tissue,thereby raising the sampling depth of the LSI.After the action of glycerol,PEG 400,and glucose,the average photon penetration depth is increased by 51.78%,51.06%,and 21.51%for 808nm,68.93%,67.94%,and 26.67%for 632.8 nm lasers,respectively.In vivo experiment by dorsal skin chamber proves that glycerol can cause a substantial decrease in blood°ow rate,whereas PEG 400 can signicantly improve the capability of light penetration without a®ecting blood velocity,which exhibits considerable potential in the monitoring of blood°ow in skin tissues.展开更多
文摘Doppler optical coherence tomography or optical Doppler tomography (ODT) has been demonstrated to spatially localize flow velocity mapping as well as to obtain images of microstructure of samples simulta- neously. In recent decades, spectral domain Doppler optical coherence tomography (OCT) has been applied to observe three-dimensional (3D) vascular distribution. In this study, we developed a spectral domain optical coherence tomography system (SD-OCT) using super luminescent diode (SLD) as light source. The center wavelength of SLD is 835 nm with a 45-nm bandwidth. Theoretically, the transverse resolution, axial resolution and penetration depth of this SD-OCT system are 6.13 μm, 6.84 μm and 3.62 mm, respectively. By imaging mouse model with dorsal skin window chamber, we obtained a series of real-time OCT images and reconstructed 3D images of the specific area inside the dorsal skin window chamber by Amira. As a result, we can obtain the clear and complex distribution images of blood vessels of mouse model.
文摘目的:NOD样受体热蛋白结构域相关蛋白6(NOD-like receptor thermal protein domain associated protein 6,NLRP6)是新发现的寡聚化核苷酸结合结构域样受体家族成员,广泛表达于肠道、肝脏、肾脏、脾脏和肌肉等组织器官,在炎症、焦亡和自噬等多种生物过程发挥广泛的调节作用。近期研究表明,NLRP6在应激条件下对多种组织器官的疾病表型具有重要影响。然而,NLRP6对组织器官生长发育的影响尚未可知。方法:采用CRISPR/Cas9基因编辑技术构建NLRP6基因敲除小鼠,饲养并记录小鼠的生长和繁殖情况。将小鼠的脾、肝、心、肾、脑、四肢和后背皮肤等组织器官进行解剖和切片染色,以评估NLRP6基因敲除对实质器官的宏观发育影响和对组织结构的微观影响。结果:在自然状态下,NLRP6基因敲除缩短了雄鼠的性成熟期并使成年雄鼠的睾丸发生不可逆的破溃与萎缩。在四肢发育上,NLRP6基因敲除诱导成年雄鼠后肢横纹肌断裂,导致后肢明显萎缩。在脾脏发育上,NLRP6基因敲除不仅显著增加了雄鼠的脾脏体积(P<0.01)还诱导雄鼠脾脏出现炎性细胞浸润。在后背皮肤上,NLRP6基因敲除引发雄鼠后背皮肤出现明显的溃疡损伤、胶原纤维增生和炎性细胞浸润。结论:在自然生长发育条件下,NLRP6基因敲除选择性影响小鼠的生殖器发育与性成熟期、后肢肌肉发育、脾脏大小及其炎症免疫状态以及后背皮肤的结构完整性,而且这一作用具有明显的雄激素依赖性。
基金supported by the National Natural Science Foundation of China(Grant No.51727811).
文摘The effect of optical cleaning method combined with laser speckle imaging(LSI)was discussed to improve the detection depth of LSI due to high scattering characteristics of skin,which limit its clinical application.A double-layer skin tissue model embedded with a single blood vessel was established,and the Monte Carlo method was used to simulate photon propagation under the action of light-permeating agent.808 nm semiconductor and 632.8 nm He–Ne lasers were selected to study the e®ect of optical clearing agents(OCAs)on photon deposition in tissues.Results show that the photon energy deposition density in the epidermis increases with the amount of tissue°uid replaced by OCA.Compared with glucose solution,polyethylene glycol 400(PEG 400)and glycerol can considerably increase the average penetration depth of photons in the skin tissue,thereby raising the sampling depth of the LSI.After the action of glycerol,PEG 400,and glucose,the average photon penetration depth is increased by 51.78%,51.06%,and 21.51%for 808nm,68.93%,67.94%,and 26.67%for 632.8 nm lasers,respectively.In vivo experiment by dorsal skin chamber proves that glycerol can cause a substantial decrease in blood°ow rate,whereas PEG 400 can signicantly improve the capability of light penetration without a®ecting blood velocity,which exhibits considerable potential in the monitoring of blood°ow in skin tissues.