1. Investment Snapshot
2. Thesis
3. Valuation & Price Target
4. Business & Product Moat
5. People & Governance
6. Market & Macro
7. Financial Quality
8. Risk Register
9. Prediction Market
10. 𝕏 Posts
Discussion
1. Investment Snapshot
2. Thesis
3. Valuation & Price Target
4. Business & Product Moat
5. People & Governance
6. Market & Macro
7. Financial Quality
8. Risk Register
9. Prediction Market
10. 𝕏 Posts
Discussion
1. Investment Snapshot
2. Valuation
Discussion
Symbol
ACON
Event Date
2022-04-21
IPO Date (Actual)
2022-04-22
Sector
Health Care
Subsector
Life Sciences Tools & Services
Offer Range
$4.35
Shares Offered
2.17M
7.82M
$34.0M
27.7%
Implied Upside vs Midpoint
Description
Aclarion is a healthcare technology company that leverages Magnetic Resonance Spectroscopy (“MRS”), and a proprietary biomarker to optimize clinical treatments. Aclarion’s technology addresses the $134.5B U.S. low back and neck pain market, which according to a 2020 JAMA (Journal of the American Medical Association) article is now the most costly healthcare condition in the United States. The Company is currently utilizing Artificial Intelligence (“AI”) to assist in quality control processes that flag spectroscopy data indicative of a poor MRS study. The use of AI in this application is early in its development cycle and is expected to evolve with further research and development. The Company is also researching the application of AI and machine learning platforms to analyze both the raw spectroscopy data and the post-processed signal to evaluate whether AI platforms can more efficiently and more effectively associate MRS data with clinical outcomes. The use of AI in this application is aspirational and we intend this type of AI research and development to be an ongoing process applied not only to the various treatment paths associated with back pain, such as conservative therapies, regenerative and cell therapies and surgical intervention, but also to potentially expand into other clinical explorations involving the diagnosis of brain, breast and prostate tumors. The Company, which has limited sales to date, is addressing this market by initially focusing on improving the outcomes of surgical interventions to treat low back pain. In this initial application, Aclarion technology is intended to assist surgeons in determining the optimal surgical procedure for a patient undergoing surgery for pain isolated to their lumbar spine (the “lumbar spine” is comprised of the five (5) lower vertebrae, L-1 to L-5). We then intend add additional applications of our technology targeting the management of large segments of low back pain patients from the point of initial MRI through to episode resolution. We believe this will expand the use of our technology to low back pain patients undergoing conservative therapies such as physical therapy or biologic and cell therapies aimed at regenerating the lumbar discs. We plan to expand the application of our technology beyond the lumbar spine to address neck pain populations in addition to low back pain populations. To expand the application of our technology for use in neck pain populations, we will need to overcome technical changes associated with securing adequate MRS data from the cervical disc, which is significantly smaller than the lumbar disc, and there can be no assurance the Company will be able to overcome these challenges. The core technology Aclarion employs is MR Spectroscopy. The patient experience when undergoing an MRS exam is exactly like that of a standard MRI, with the exception of an additional 3-5 minutes for each disc undergoing a spectroscopy exam. Whereas a standard MRI produces a signal that is converted into anatomical images, an MRS produces a signal that is converted into a waveform that identifies the chemical composition of tissues. Just like with standard MRI’s, the data from spectroscopy is useless without technologies that can process the data. Aclarion has developed proprietary signal processing software that transforms spectroscopy data into clear biomarkers. These biomarkers, which are exclusively licensed from the Regents of University of California, San Francisco (“UCSF”), are the key data inputs for our proprietary algorithms that, when applied, determine if an intervertebral disc is consistent with pain. Our patent portfolio includes 21 U.S. Patents, 17 Foreign Patents, 6 pending U.S. patent applications, and 7 pending Foreign patent application, including patents and patent applications exclusively licensed from Regents of the University of California. We believe one of the biggest issues driving the cost of treating low back and neck pain patients to the top of the list for healthcare spending is that there is no objective, cost effective and noninvasive diagnostics to reliably identify the source of a patient’s pain. We believe the poor surgical outcomes for DLBP are largely due to difficulties in reliably and accurately diagnosing the specific spinal discs that are causing pain. The current primary diagnostic standard is the MRI, which is useful for showing abnormal structures and tissue dehydration, but, we believe, cannot reliably identify specific discs that are causing pain. To diagnose specific discs that are causing pain, a needle-based Provocation Discogram test (“PD Test”) has been developed. PD Tests have been shown to be highly accurate when performed properly. However, a PD Test is invasive, subjective and unpleasant for the patient as the patient needs to be awake in order to tell the physician if the pain the physician is purposefully causing in the disc is the same as the pain the patient feels when they are experiencing a back pain episode. In addition, recent evidence has shown that the action of inserting a needle into a normal disc during a discogram procedure leads to an increased rate of degeneration in these previously normal discs. Based on the limitations and concerns of the PD Test, we believe there is a significant need for an objective, accurate, personalized and noninvasive diagnostic test that can reliably determine if an individual disc is a pain generator. By providing physicians information about whether a disc has the chemical and structural makeup consistent with pain or not, we believe the treatment plan for each patient will lead to more efficient and targeted care that, will in turn, result in lower costs and healthier patient outcomes. Aclarion has taken the first steps to demonstrate the potential use of our technology in helping to improve the outcome of surgical intervention for discogenic low back pain patients by publishing a clinical study in the European Spine Journal in April 2019. The study illustrated that when all discs identified as consistent with pain by our technology were included in a surgical treatment, 97% of the patients met the criteria for “clinical improvement”. This compared to only 54% of patients meeting the criteria for clinical improvement if a disc that our technology identified as consistent with pain, was not included in the surgical treatment. The results of this clinical study led the CPT committee to approve four Category III codes for our technology in January 2021. The NIH also included our technology as one of the handful of technologies selected to participate in their $150 million Back Pain Consortium (BACPAC) Research Program, an NIH translational, patient-centered effort to address the need for effective and personalized therapies for chronic low back pain. Aclarion Solution Evolving science coupled with the understanding of degenerative painful discs has suggested that lumbar discs may become painful due to certain chemical changes, which changes cannot be identified using standard lumbar MRI imaging. However, an application of MRI scanners Magnetic Resonance Spectroscopy has been developed by manufacturers of MRI equipment. MRSs are different than MRIs. An MRI generates images of body structures, while an MRS analyzes the relative amounts of various chemicals in body tissues. Aclarion has developed a software application called NOCISCAN-LS® which uses the existing MRS capabilities of many commercially available scanners to non-invasively analyze the chemical makeup of intervertebral discs in the spine. The software post-processes the MRS exam data and detects the presence of chemical biomarkers that we, in conjunction with spine researchers at UCSF, have demonstrated to be associated with degenerative pain and structural integrity of the lumbar discs. After processing the MRS exam data, we send the ordering clinician a report that details how to interpret the results of the MRS exam. We believe these results help clinicians make quicker and more informed decisions about which lumbar discs are painful, and which are not. We believe the ordering clinician can use this information to determine the optimal treatment plan for an individual patient. NOCISCAN-LS Post-Processor Suite: The NOCISCAN-LS Post Processor Suite is comprised of the products that Aclarion currently markets and sells. The post-processor technology requires MRS exam data acquired only according to Aclarion’s proprietary MRS exam protocols. The Suite is comprised of two software products that interact with each other: . NOCICALC-LS® receives the raw un-processed NOCISCAN-LS MRS exam data and post-processes that raw data into final spectra, and performs various degenerative pain biomarker calculations from those spectra, for each disc examined. NOCICALC-LS is Registered as a Class I Medical Device with the FDA. . NOCIGRAM® further processes the NOCICALC-LS results into individual NOCISCORES, on a 0-10 scale, that represent the different relative levels of degenerative pain biomarkers the various discs examined in the patient. High/low NOCISCORE ranges are also correlated to painful (indicated as “NOCI+” result) versus non-painful (indicated as a “NOCI-result). The NOCISCORE scale was developed according to a reference PD TEST that was used as a standard control in a peer reviewed clinical development trial for our technology. The post-processed MRS results are shown in an intuitive NOCIGRAM-LS report with reference to certain MRI images of the related patient’s lumbar spine. The NOCIGRAM-LS report is provided to the physician to aide in the physician’s diagnosis and treatment planning. NOCIGRAM is commercially available in the United States as “Clinical Decision Support Software” under the 21st Century Cures Act, and as such is not considered a medical device nor regulated by the FDA. Clinical Evidence We have pursued a clinical study (the “Gornet Study”) to demonstrate the benefits of our technology to surgeons, imaging centers, third party payers, and patients. Without strong clinical data in support of our technology to improve clinical outcomes, the opportunity to secure new reimbursement codes and change existing treatment pathways would be limited. In a clinical study sponsored by us, and authored by, among others, a spine surgeon who has a financial interest in the Company. and published in the European Spine Journal in April 2019, it was shown that 97% of the treated patients met the criteria for significant clinical improvement, where all discs identified as painful by NOCISCAN-LS were included in the surgical treatment. This compared to 54% of surgical patients achieving clinically significant improvement when discs identified as painful by NOCISCAN-LS were omitted from the surgical treatment, or discs identified as not painful by NOCISCAN-LS were included in the treatment. Some authors of this study had a financial relationship with Aclarion, who sponsored the study. This clinical study included 139 chronic low back pain patients who collectively underwent a NOCISCAN-LS exam across 623 lumbar discs. Seventy-three patients underwent surgical intervention, consisting of fusion or disc replacement, and reached six months follow up. Clinical improvement post surgically was evaluated using the industry standard Oswestry Disability Index (ODI), and the Visual Analog Scale (VAS). ODI evaluates patient disability on a scale of 1-100 with a higher score indicating less impairment. VAS evaluates subjective pain on a scale of 1-10 with a lower score indicating less pain. Significant clinical improvement in the study was defined as a 15-point improvement in ODI and a 2-point improvement in VAS. NOCISCAN-LS data was not used in surgical decision making. Post-operatively, patients were separated into various groups for analysis. One group consisted of patients where the surgical intervention included every disc that was identified by NOCISCAN-LS as painful. This group consisted of 36 patients with 26 undergoing a one-level surgical procedure and 10 undergoing a two-level surgical procedure. 97% (35 of 36) of the patients in this category met the criteria for significant clinical improvement. The one failure in this group did meet the VAS requirement and missed the ODI cutoff of 15 by only one point. In another group consisting of 13 patients, a disc identified as painful by NOCISCAN-LS was not included in the surgical intervention. In this group only 54% (7 of 13) of patients met the criteria for clinically significant improvement. We believe the results of this study indicates that using NOCISCAN-LS data to help determine the appropriate level for surgical intervention will significantly improve the outcomes for patients undergoing spine surgery for back pain. However, the Gornet Study was a single (relatively small) clinical study at a single clinical center sponsored by us, and authored by, among others, a spine surgeon who has a financial interest in the Company, and there can be no assurance that the results of such study accurately support our conclusions related to the market opportunity of our products. --- We were formed under the name Nocimed, LLC, a limited liability company in January 2008, under the laws of the State of Delaware. In February 2015, Nocimed, LLC was converted into Nocimed, Inc. a Delaware corporation. On December 3, 2021, we changed our name to Aclarion, Inc. Our principal executive offices are located at 951 Mariners Island Blvd, Suite 300 San Mateo, California 94404. Our main telephone number is (650) 241-1741. Our internet website is www.aclarion.com.
Aclarion, Inc. annual income statement and balance sheet, FY 2022 to FY 2025, as reported in SEC filings.
| Metric | FY 2022 | FY 2023 | FY 2024 | FY 2025 |
|---|---|---|---|---|
| Revenue | $60.4K | $75.4K | $45.7K | $75.7K |
| Gross profit | ($4.9K) | ($324) | ($38.9K) | $6.8K |
| Operating income | ($5.6M) | ($4.9M) | ($5.5M) | ($7.1M) |
| Net income | ($7.1M) | ($4.9M) | ($7.0M) | ($7.2M) |
| Metric | FY 2022 | FY 2023 | FY 2024 | FY 2025 |
|---|---|---|---|---|
| Total assets | $2.9M | $2.5M | $2.1M | $13.7M |
| Total liabilities | — | — | $1.2M | $837K |
| Total equity | $2.2M | ($728K) | $970K | $12.8M |
| Cash & equivalents | $1.5M | $1.0M | $454K | $12.0M |