| Information content of point radiance measurements in turbid media | Chin, L. C. L.; Whelan, William M.; Vitkin, I. A. |
| Characterization of measurement artefacts in fluoroptic temperature sensors | Davidson, S. R. H.; Vitkin, I. A.; Sherar, M. D.; Whelan, William M. |
| Optical method using fluence or radiance measurements to monitor thermal therapy | Chin, L.; Pop, M.; Whelan, William M.; Sherar, M.; Vitkin, A. |
| Investigations of Large Vessel Cooling during Interstitial Laser-Heating | Whelan, William M.; Wyman, D. R.; Wilson, B. C. |
| Interstitial Laser Photocoagulation - Nd-Yag 1064 Nm Optical Fiber Source Compared to Point Heat-Source | Wyman, D. R.; Whelan, William M.; Wilson, B. C. |
| Basic Optothermal Diffusion-Theory for Interstitial Laser Photocoagulation | Wyman, D. R.; Whelan, William M. |
| Frequency domain photothermoacoustic signal amplitude dependence on the optical properties of water | Spirou, Gloria M.; Mandelis, Andreas; Vitkin, I. Alex; Whelan, William M. |
| Perturbative diffusion theory formalism for interpreting temporal light intensity changes during laser interstitial thermal therapy | Chin, Lee C. L.; Whelan, William M.; Vitkin, I. Alex |
| Radiance-based monitoring of the extent of tissue coagulation during laser interstitial thermal therapy | Chin, L. C. L.; Wilson, B. C.; Whelan, William M.; Vitkin, I. A. |
| Changes in relative light fluence measured during laser heating | Chin, L. C. L.; Whelan, William M.; Sherar, M. D.; Vitkin, I. A. |
| Models and measurements of light intensity changes during laser interstitial thermal therapy | Chin, L. C. L.; Whelan, William M.; Vitkin, I. A. |
| Interstitial point radiance spectroscopy of turbid media | Chin, Lee C. L.; Lloyd, Brendan; Whelan, William M.; Vitkin, I. A. |
| Assessment of thermal coagulation in ex-vivotissues using Raman spectroscopy | Rodrigues, Matthew; Weersink, Robert A.; Whelan, William M. |
| Study of laser-induced thermoelastic deformation of native and coagulated ex-vivobovine liver tissues for estimating their optical and thermomechanical properties | Soroushiam, Behrouz; Whelan, William M; Kolios, Michael C |
| A calibration technique for frequency domain photothermoacoustics | Spirou, G. M.; Mandelis, A.; Vitkin, I. A.; Whelan, William M. |
| Laser thermal therapy | Whelan, William M.; Chun, P.; Chin, L. C. L.; Sherar, M. D.; Vitkin, I. A. |
| Dynamic modeling of interstitial laser photocoagulation | Whelan, William M.; Wyman, D. R. |
| Optoacoustic imaging in a murine prostate cancer model | Patterson, Michelle P.; Riley, Christopher B.; Kolius, Michael C. Whelan, William M. |
| Laser photothermoacoustic heterodyned lock-in depth profilometry in turbid tissue phantoms | Fan, Y.; Mandelis, A.; Spirou, G.; Vitkin, I. A.; Whelan, William M. |
| Detection of localized inclusions of gold nanoparticles in Intralipid-1% by point-radiance spectroscopy | Grabtchak, S.; Palmer, T. J.; Whelan, W. M. |
| A novel strategy for monitoring laser thermal therapy based on changes in optothermal properties of heated tissues | Whelan, William M.; Davidson, S. R. H.; Chin, L. C. L.; Vitkin, I. A. |
| Optical and acoustic properties at 1064 nm of polyvinyl chloride-plastisol for use as a tissue phantom in biomedical optoacoustics | Spirou, G. M.; Oraevsky, A. A.; Vitkin, I. A.; Whelan, William M. |
| Determination of the optical properties of turbid media using relative interstitial radiance measurements | Chin, Lee C. L.; Worthington, Arthur E.; Whelan, William M.; Vitkin, I. Alex |
| Optical monitoring of interstitial thermal therapy | Chin, L. C.; Pop, M.; Whelan, W. M.; Sherar, M. D.; Vitkin, I. A. |
| A model of tissue charring during interstitial laser photocoagulation | Whelan, W. M.; Wyman, D. R. |