跳转到内容

购物车

您的购物车为空

提示和技巧

Microscopic view of a fibroblast cell synthesizing collagen fibers under red light stimulation.

如何促进体内胶原蛋白的生长?

Microscopic view of a fibroblast cell synthesizing collagen fibers under red light stimulation.

如何促进体内胶原蛋白的生长?

Every wrinkle is a fibroblast problem. Fibroblasts build the collagen and elastin that determine your skin's structure — and their output declines 1% per year from age 25. This clinical explanation...

阅读更多
Diagram of a cell membrane showing red light photons being absorbed by Cytochrome C Oxidase to produce ATP.

光疗法真的可以治疗疼痛吗?还是只是安慰剂效应?

We are used to treatments we can feel—like massage or creams. But the most powerful healing happens at a cellular level. Learn how specific wavelengths of light "charge" your mitochondria to stop p...

阅读更多
Infographic comparing LED Irradiance (mW/cm²) as delivery speed versus Fluence (Joules) as total energy dose for medical-grade light therapy efficacy.

这是有关您的红光 LED 面罩的误导性信息!

Is 100mW/cm² a sign of power, or just a marketing distraction? In the world of clinical LED therapy, 'High Power' doesn't always mean 'High Performance.' Discover the science of the Arndt-Schulz La...

阅读更多
Illustration of blue light destroying P. acnes bacteria and red light soothing dermal inflammation in an acne-prone pore.

如果您正在与痤疮作斗争,请阅读此文!

Every topical acne product works on the surface. LED light therapy works inside the follicle — destroying the bacteria that cause acne through photochemistry, and shutting down the inflammation tha...

阅读更多
secret behind Celluma LED therapy—an essential read to learn how this advanced technology enhances healing, pain relief, and skin rejuvenation

商业机密曝光!必读!

著名研究员Daniel Barolet 博士广泛研究了 LED 疗法中脉冲光的益处。他的研究表明,脉冲可增强能量向细胞的传输,从而实现更好的吸收并促进细胞通信。 脉冲光可以使细胞在能量爆发之间恢复,这有助于增加整体吸收并改善治疗效果,如减少炎症、促进愈合和增强线粒体的 ATP 产生。

阅读更多
red light therapy Boost cellular energy and accelerate healing with 640 nm best LED light therapy Celluma Singapore

为什么 660 nm 是红光光谱中最优质的波长?

选择660 nm作为治疗目的的理想波长,特别是在红光疗法中,是基于其能够有效穿透组织并触发有益的细胞反应。这种波长被细胞色素 c 氧化酶(线粒体呼吸链中的关键酶)特异性吸收,该酶在细胞能量产生中起着至关重要的作用。当 660 nm 光被吸收时,它会增强线粒体功能,从而增加 ATP 产生,减少氧化应激并增强组织修复。

阅读更多
Infographic comparing the penetration depth of therapeutic 640nm light vs. non-therapeutic decorative red light.

红光疗法中最大的骗局

许多产品声称具有红光疗法的功效, 使用相同波长并具有高辐照度,很容易假设它们都同样有效。但现实要复杂得多。许多产品都标榜这些规格,但仍未能提供真正的治疗效果。秘密在于光的质量、光的传输方式以及光如何穿透皮肤。  让我们探索一下它们之间有何区别,以及如何从骗局中识别出真正的、基于科学的解决方案。

阅读更多
Clinical diagram comparing standard red LED bulb emission versus Celluma’s 640nm-880nm therapeutic energy penetrating the dermal layers.

为什么有的灯不一样?

光,特别是红光和近红外 (NIR) 波长,能够穿透组织并与关键分子(尤其是线粒体内的关键分子)相互作用,从而影响细胞水平的生物过程。

阅读更多
Diagram of the mitochondrial electron transport chain showing red light photons stimulating Cytochrome C Oxidase to increase ATP production.

低强度光疗 (LLLT) 如何影响线粒体?

低强度光疗(LLLT),具体利用红光和近红外 (NIR) 光,通过多种关键机制有效增强线粒体健康。让我们探索这些机制如何协同工作以优化细胞功能并促进整体健康。

阅读更多
Cross-section diagram of a mitochondrion showing the inner membrane where ATP synthesis occurs through the electron transport chain.

必读-为什么线粒体如此重要?

线粒体就像你体内的发电厂,为每个细胞提供运作所需的能量。没有它们,心脏跳动、肌肉运动和大脑思考等基本过程将无法进行。你体内的每一项活动,从呼吸到复杂的思考,都依赖于线粒体产生的能量。

阅读更多
Testing Alt

Celluma 家庭用户除皱方案

 红光和近红外光的多色发射可以穿透皮肤深层,到达真皮层,刺激胶原蛋白和弹性蛋白的产生,这些都是皮肤紧致度和弹性所必需的蛋白质。

阅读更多
Testing Alt

Celluma 家庭用户痤疮治疗方案

蓝光穿透皮肤,瞄准并杀死痤疮丙酸杆菌(P.acnes),这是痤疮的主要原因。这一过程有效减少皮肤上的细菌负荷。

阅读更多
Mitochondria within cells absorbing therapeutic red light, stimulating cellular energy production, ATP synthesis, and photobiomodulation-driven repair processes.

线粒体到底是什么?

ATP — Adenosine Triphosphate — is the biological currency that funds every process in your body: muscle contraction, collagen synthesis, immune response, and tissue repair. Aging reduces mitochondr...

阅读更多