Pranav Lanka

416 total citations
30 papers, 235 citations indexed

About

Pranav Lanka is a scholar working on Radiology, Nuclear Medicine and Imaging, Biomedical Engineering and Biophysics. According to data from OpenAlex, Pranav Lanka has authored 30 papers receiving a total of 235 indexed citations (citations by other indexed papers that have themselves been cited), including 28 papers in Radiology, Nuclear Medicine and Imaging, 21 papers in Biomedical Engineering and 11 papers in Biophysics. Recurrent topics in Pranav Lanka's work include Optical Imaging and Spectroscopy Techniques (28 papers), Photoacoustic and Ultrasonic Imaging (20 papers) and Spectroscopy Techniques in Biomedical and Chemical Research (10 papers). Pranav Lanka is often cited by papers focused on Optical Imaging and Spectroscopy Techniques (28 papers), Photoacoustic and Ultrasonic Imaging (20 papers) and Spectroscopy Techniques in Biomedical and Chemical Research (10 papers). Pranav Lanka collaborates with scholars based in Italy, United Kingdom and Spain. Pranav Lanka's co-authors include Antonio Pifferi, Sanathana Konugolu Venkata Sekar, Andrea Farina, Stefan Andersson‐Engels, Paola Taroni, Pavel Matousek, Sara Mosca, Gianluca Valentini, Haiyang Li and Nicholas Stone and has published in prestigious journals such as Scientific Reports, Philosophical Transactions of the Royal Society A Mathematical Physical and Engineering Sciences and Applied Sciences.

In The Last Decade

Pranav Lanka

26 papers receiving 228 citations

Peers

Pranav Lanka
Raeef Istfan United States
Sean Merritt United States
Hailong He Germany
So Hyun Chung United States
X. D. Li United States
Helge Jess Germany
Jan S. Dam Sweden
Raeef Istfan United States
Pranav Lanka
Citations per year, relative to Pranav Lanka Pranav Lanka (= 1×) peers Raeef Istfan

Countries citing papers authored by Pranav Lanka

Since Specialization
Citations

This map shows the geographic impact of Pranav Lanka's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Pranav Lanka with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Pranav Lanka more than expected).

Fields of papers citing papers by Pranav Lanka

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Pranav Lanka. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Pranav Lanka. The network helps show where Pranav Lanka may publish in the future.

Co-authorship network of co-authors of Pranav Lanka

This figure shows the co-authorship network connecting the top 25 collaborators of Pranav Lanka. A scholar is included among the top collaborators of Pranav Lanka based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Pranav Lanka. Pranav Lanka is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Lanka, Pranav, et al.. (2025). Broadband time domain diffuse optical characterization of human cadaver bone from 500 to 1100 nm. Scientific Reports. 15(1). 25931–25931.
2.
Pifferi, Antonio, Massimo Miniati, Andrea Farina, et al.. (2024). Initial non-invasive in vivo sensing of the lung using time domain diffuse optics. Scientific Reports. 14(1). 6343–6343. 4 indexed citations
5.
Lanka, Pranav, et al.. (2023). Interstitial null-distance time-domain diffuse optical spectroscopy using a superconducting nanowire detector. Journal of Biomedical Optics. 28(12). 121202–121202. 7 indexed citations
6.
Sekar, Sanathana Konugolu Venkata, Pranav Lanka, Cosimo D’Andrea, et al.. (2023). Time domain diffuse Raman spectroscopy using single pixel detection. Biomedical Optics Express. 14(11). 5749–5749. 4 indexed citations
7.
Lanka, Pranav, Marco Pagliazzi, Mirco Kolarczik, et al.. (2023). Fast time-domain diffuse correlation spectroscopy with superconducting nanowire single-photon detector: system validation and in vivo results. Scientific Reports. 13(1). 11982–11982. 11 indexed citations
8.
Lanka, Pranav, Leonardo Bianchi, Andrea Farina, et al.. (2022). Estimation of porcine pancreas optical properties in the 600–1100 nm wavelength range for light-based therapies. Scientific Reports. 12(1). 14300–14300. 14 indexed citations
9.
Lanka, Pranav, Marco Pagliazzi, Mirco Kolarczik, et al.. (2022). Fast in-vivo time-domain diffuse correlation spectroscopy. Virtual Community of Pathological Anatomy (University of Castilla La Mancha). OM4D.7–OM4D.7. 1 indexed citations
10.
Lange, Frédéric, Pranav Lanka, Stanisław Wojtkiewicz, et al.. (2021). Time-domain NIRS system based on supercontinuum light source and multi-wavelength detection: validation for tissue oxygenation studies. Biomedical Optics Express. 12(10). 6629–6629. 18 indexed citations
11.
Lanka, Pranav, Andrea Farina, Rinaldo Cubeddu, et al.. (2021). Optical signatures of radiofrequency ablation in biological tissues. Scientific Reports. 11(1). 6579–6579. 15 indexed citations
12.
Sieno, Laura Di, Andrea Farina, Pranav Lanka, et al.. (2021). Enhanced diffuse optical tomographic reconstruction using concurrent ultrasound information. Philosophical Transactions of the Royal Society A Mathematical Physical and Engineering Sciences. 379(2204). 20200195–20200195. 5 indexed citations
13.
Mosca, Sara, Pranav Lanka, Nicholas Stone, et al.. (2020). Optical characterization of porcine tissues from various organs in the 650–1100 nm range using time-domain diffuse spectroscopy. Biomedical Optics Express. 11(3). 1697–1697. 41 indexed citations
14.
Lanka, Pranav, Andrea Farina, Sanathana Konugolu Venkata Sekar, et al.. (2020). Non-invasive investigation of adipose tissue by time domain diffuse optical spectroscopy. Biomedical Optics Express. 11(5). 2779–2779. 20 indexed citations
15.
Lanka, Pranav, Sanathana Konugolu Venkata Sekar, Andrea Farina, et al.. (2020). Key features in the optical properties of tissue during and after radiofrequency ablation. University of Twente Research Information. 16–16. 2 indexed citations
16.
Lanka, Pranav, Daniele Ancora, Marco Pagliazzi, et al.. (2020). Coherent fluctuations in time-domain diffuse optics. APL Photonics. 5(7). 71301–71301. 7 indexed citations
17.
Sekar, Sanathana Konugolu Venkata, et al.. (2019). Solid phantom recipe for diffuse optics in biophotonics applications: a step towards anatomically correct 3D tissue phantoms. Biomedical Optics Express. 10(4). 2090–2090. 39 indexed citations
18.
Sekar, Sanathana Konugolu Venkata, et al.. (2019). A solid phantom recipe for biophotonics applications: a step towards anatomically correct 3D tissue phantoms. 11. 46–46. 1 indexed citations
19.
Sekar, Sanathana Konugolu Venkata, Pranav Lanka, Andrea Farina, et al.. (2019). Broadband Time Domain Diffuse Optical Reflectance Spectroscopy: A Review of Systems, Methods, and Applications. Applied Sciences. 9(24). 5465–5465. 19 indexed citations
20.
Sekar, Sanathana Konugolu Venkata, Lorenzo Spinelli, Pranav Lanka, et al.. (2017). In vivo depth heterogeneity of the abdomen assessed by broadband time-domain diffuse optical spectroscopy. Virtual Community of Pathological Anatomy (University of Castilla La Mancha). 39–39. 4 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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