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Clinical Usefulness of Optical Skin Biopsy

Clinical Usefulness of Optical Skin Biopsy

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT00154921
Enrollment
30
Registered
2005-09-12
Start date
2004-01-31
Completion date
2007-12-31
Last updated
2005-11-23

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Skin Neoplasms

Brief summary

Traditional biopsy requires the removal, fixation, and staining of tissues from the human body. Its procedure is invasive and painful. Non-invasive in vivo optical biopsy is thus required, which should provide non-invasive, highly penetrative, three-dimensional (3D) imaging with sub-micron spatial resolution. Optical biopsy based on scanning two-photon fluorescence microscopy (TPFM) is a good method for biopsy of skin due to its high lateral resolution, low out-of-focus damage, and intrinsic three-dimensional (3D) section capability. However current technology still presents several limitations including low penetration depth, in-focus cell damages, and multi-photon phototoxicity due to high optical intensity in the 800 nm wavelength region, and toxicity if exogenous fluorescence markers were required. We study the harmonics optical biopsy of a human skin sample using a femtosecond Cr:forsterite laser centered at 1230 nm. Higher harmonics generation is known to leave no energy deposition to the interacted matters due to their energy-conservation characteristic. This energy-conservation characteristic provides the noninvasive nature desirable for clinical imaging. In our study, we will evaluate the clinical applications of optical skin biopsy using harmonic generation microscopy.

Detailed description

Traditional biopsy requires the removal, fixation, and staining of tissues from the human body. Its procedure is invasive and painful. Non-invasive in vivo optical biopsy is thus required, which should provide non-invasive, highly penetrative, three-dimensional (3D) imaging with sub-micron spatial resolution. Optical biopsy based on scanning two-photon fluorescence microscopy (TPFM) is a good method for biopsy of skin due to its high lateral resolution, low out-of-focus damage, and intrinsic three-dimensional (3D) section capability. However current technology still presents several limitations including low penetration depth, in-focus cell damages, and multi-photon phototoxicity due to high optical intensity in the 800 nm wavelength region, and toxicity if exogenous fluorescence markers were required. We study the harmonics optical biopsy of a human skin sample using a femtosecond Cr:forsterite laser centered at 1230 nm. Higher harmonics generation is known to leave no energy deposition to the interacted matters due to their energy-conservation characteristic. This energy-conservation characteristic provides the noninvasive nature desirable for clinical imaging. In our study, we will evaluate the clinical applications of optical skin biopsy using harmonic generation microscopy.

Interventions

None listed

Sponsors

National Science and Technology Council, Taiwan
CollaboratorOTHER_GOV
National Health Research Institutes, Taiwan
CollaboratorOTHER
National Taiwan University Hospital
Lead SponsorOTHER

Study design

Observational model
DEFINED_POPULATION
Time perspective
OTHER

Eligibility

Sex/Gender
ALL
Age
0 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Skin lesions admitted for surgical resection.

Exclusion criteria

* none

Countries

Taiwan

Contacts

Primary ContactWen-jeng Lee, M.D.
jacklee@ntumc.org

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026