Neurophotonics: Global Markets and Technologies to 2023
ID : RND_038860 Format : PDF May, 2019 Publisher : BCC Research Pages : 138
This report provides an updated review of neurophotonics technologies, including a description of various devices, and identifies current and emerging technologies used in different neurology fields.
BCC Research delineates the current market status for these products, defines trends and presents growth forecasts for the next five years. The neurophotonics market is based on four segments: system type, application, neurological disorder and region. In addition, technological issues, including key events and the latest developments, are discussed.
More specifically, the market analysis conducted by BCC Research for this report appears over five chapters.
Chapter 3 of the report introduces the topic and a historical review of neurophotonic technologies, including an outline of recent events. This chapter identifies the main neurological conditions that are currently being evaluated or treated using these systems.
Chapter 4 provides a technological review of various types of optical systems for neurophotonics, together with their primary features and uses. This chapter concludes with an analysis of the most important technological developments since 2016, including examples of significant patents recently issued or applied. The chapter ends by listing the most active research organizations operating in this field and their activities.
Chapter 5 entails a global market analysis of neurophotonics technologies. Global revenues (sales data in millions of dollars) are presented for each segment (system type, application, neurological condition and region), with actual data for 2016 and 2017 and estimates for 2018. Dollar figures refer to sales of these systems at the manufacturing level.
The analysis of current revenues for neurophotonics technologies is followed by a detailed presentation of market growth trends, based on industry growth, technological trends and regional trends. The third section concludes by providing projected revenues for optical systems used in neurophotonics within each segment, together with forecast compound annual growth rates (CAGRs) for the period of 2018 through 2023. Projected and forecast revenue values are in constant U.S. dollars, unadjusted for inflation.
Chapter 6, which covers global industry structure, lists the leading manufacturers of neurophotonics systems, along with a description of their products. The analysis provides the geographical distribution of these firms and an evaluation of other key industry players. Company profiles of the top players are also provided.
Chapter 7 includes an analysis of recently issued U.S. patents, with a summary of patents related to fabrication processes, methods for using neurophotonic systems and applications. Patent analysis is performed by region, country, assignee, patent category, system type and application.
- 55 data tables and 20 additional tables
- A detailed overview of technologies and markets for neurophotonics within the industry
- Analyses of global market trends with data from 2017 to 2018, and projections of compound annual growth rates (CAGRs) through 2023
- Identification of important technology and industry trends within each market segment
- Information on new technological developments related to neurophotonic systems, while outlining current technical issues
- Description of the most relevant R&D activities and examination of trends in recently issued U.S. patents
- Company profiles of the leading market players, including Bruker Scientific, Carl Zeiss, Hitachi, Horiba, Leica Microsystems and Thermo Fisher Scientific"
Optical technologies are gaining increasing popularity in the biomedical field for evaluating and treating a range of medical conditions. During the past 50 years, optical technologies have also been introduced into the study of neurons and neural activities, contributing to the expansion of a new branch of biophotonics and neuroscience called neurophotonics. Light-based technologies are gaining growing interest in neurology because they offer advantages over other methods (e.g., X-rays, magnetic fields and radio waves), such as lower cost, long-term safety and portability.
BCC Research has identified three fields of application where neurophotonic technologies have current and potential use: research, diagnosis and therapy. Equipment for research and diagnosis primarily consists of imaging instruments, whereas systems for therapy are mainly used for neurostimulation and biomodulation.
This report provides a comprehensive description of neurophotonic systems and their characteristics, highlighting the latest developments in their fabrication technology and features. It also offers a detailed market analysis for these products by segment (system type, application, neurological condition and region), describing technical aspects and trends that will affect the future growth of this market. As shown in the Summary Table, the global market for neurophotonics increased from REDACTED in 2016 to REDACTED in 2017 and is estimated to be valued at REDACTED in 2018.
The increasing prevalence of neurological disorders, especially age-related and developmental conditions, the search for state-of-the art diagnostic techniques, and the need to provide better healthcare to a population that is growing older worldwide, are the main drivers for this growth, which corresponds to a healthy CAGR of REDACTED during the period of 2016 through 2018.
With estimated revenues of REDACTED, imaging equipment currently accounts for REDACTED of the total market. These systems consist of microscopy, spectroscopy and multimodal equipment, as well as instruments that can detect photosensitive materials genetically incorporated in animal cells. By comparison, light-based systems for therapy currently represent a much smaller share of the market at REDACTED of the total, corresponding to estimated 2018 revenues of REDACTED."
Table of Contents
Chapter 1 Introduction
Study Goals and Objectives
Reasons for Doing this Study
Scope of Report
Methodology and Information Sources
BCC Custom Research
Related BCC Research Reports
Chapter 2 Summary and Highlights
Chapter 3 Market and Technology Background
Definition and Study Focus
Neurons and the Nervous System
Light for Neurophotonics
Applications of Neurophotonics
Milestones in the History of Neurophotonics and Recent Events
Most Popular Current End Uses of Neurophotonics
Brain Development and Neurological Disorders in Infants and Young Children
Cerebral Ischemia and Stroke
Memory Disorders and Alzheimer's
Traumatic Brain Injury
Attention Deficit/Hyperactivity Disorder
Autism Spectrum Disorder
Motor Tasks and Exercise
Chapter 4 Technology
Optical Technologies for Neurophotonics
Brain Stimulation and Therapeutic Devices
Techniques Based on Photosensitive Materials
Fast Optical Signal Imaging
Diffuse Correlation Spectroscopy
Optical Coherence Tomography
Laser Speckle Flowmetry
Infrared Neural Stimulation
Optical Technologies, by Working Principle
Neural Activities Evaluated in Nanophotonics
Latest Technological Developments, 2016 to Present
Wearable Diffuse Optical Tomography for Super-Pixel Detection
Wireless Wearable Monitoring System for Brain Blood Oxygenation
Deep Brain Stimulation System Based on Surface-Enhanced Raman Spectroscopy
Implantable Device for Optical Brain Stimulation
Other Relevant R&D Activities
Chapter 5 Global Markets
Global Market Summary
Current Market Status
Market, by Technology Type
Market, by Application
Market, by Neurological Condition
Market, by Region
Market Growth Trends
Research, Diagnosis and Therapy for Neurological Disorders
Market, by Technology Type
Market, by Application
Market, by Neurological Condition
Market, by Region/Country
Chapter 6 Global Industry Structure and Company Profiles
Leading Manufacturers of Optical Technologies for Neurophotonics
Distribution of Leading Suppliers, by Technology Type and Region
Other Industry Players
ARTINIS MEDICAL SYSTEMS
INTELLIGENT IMAGING INNOVATIONS
THERMO FISHER SCIENTIFIC
Chapter 7 Patent Analysis
Summary of Recently Awarded Patents
Trends, by Country and Region
Trends, by Assignee
Trends, by Patent Category
Trends, by System Type
Trends, by Application
List of Tables
Summary Table : Global Market for Neurophotonics, by End Use, Through 2023
Table 1 : Category of Disorders Targeted, by Neurophotonics
Table 2 : Technological Milestones in Neurophotonics
Table 3 : Global Patent Applications and Patents Issued for Neurophotonics, 1980-2018
Table 4 : Most Popular Applications for Neurophotonics
Table 5 : Other Applications of Neurophotonics
Table 6 : Optical Technologies Used in Neurophotonics
Table 7 : Optical Technologies, by Primary Working Principle
Table 8 : Neural Activities Evaluated in Neurophotonics
Table 9 : Other Relevant R&D Activities, 2019
Table 10 : Drivers, Restraints, Challenges and Opportunities for the Neurophotonics Market
Table 11 : Global Market for Neurophotonic Systems, by Optical Technology, Through 2023
Table 12 : Global Market for Neurophotonic Technologies, by Type, Through 2018
Table 13 : Global Market for Microscopy Neurophotonic Technologies, by Type, Through 2018
Table 14 : Global Market for Spectroscopy Neurophotonic Technologies, by Type, Through 2018
Table 15 : Global Market for Neurophotonic Technologies, by Application, Through 2018
Table 16 : Global Market for Neurophotonic Technologies for Research, by Application, Through 2018
Table 17 : Global Market for Neurophotonic Technologies, by Neurological Condition Category, Through 2018
Table 18 : Global Market for Neurophotonic Technologies Used for Age-Related Disorders, by Neurological Condition Type, Through 2018
Table 19 : Global Market for Neurophotonic Technologies Used for Traumatic Disorders, by Neurological Condition Type, Through 2018
Table 20 : Global Market for Neurophotonic Technologies Used for Developmental Disorders, by Neurological Condition Type, Through 2018
Table 21 : Global Market for Neurophotonic Technologies Used for Other Disorders, by Neurological Condition Type, Through 2018
Table 22 : Global Market for Neurophotonic Technologies, by Region/Country, Through 2018
Table 23 : Global Market for Therapies for Alzheimer's Disease, by Region/Country, Through 2023
Table 24 : Global Market for Neonatal and Infant Care Equipment, by Region/Country, Through 2023
Table 25 : Global Market for Stroke Diagnostics and Therapy, by Type, Through 2023
Table 26 : Global Market for Stroke Diagnostics and Therapy, by Region/Country, Through 2023
Table 27 : Global Market for Traumatic Brain Injury Treatment, by Region/Country, Through 2023
Table 28 : Global Market for Epilepsy Treatment, by Region/Country, Through 2023
Table 29 : Global Market for ADHD Treatment, by Region/Country, Through 2023
Table 30 : Global Market for ASD Treatment, by Region/Country, Through 2023
Table 31 : Global Market for Research, Diagnosis and Therapy of Neurological Disorders, by Category, Through 2023
Table 32 : Global Market for Neurological Disorder Therapy, by Region/Country, Through 2023
Table 33 : Global Market for Neurological Disorder Research, by Region/Country, Through 2023
Table 34 : Global Market for Neurological Disorder Diagnosis, by Region/Country, Through 2023
Table 35 : Global Market for Biophotonics, by Region/Country, Through 2023
Table 36 : Global Market for Molecular Imaging, by Region/Country, Through 2023
Table 37 : Global Market for Artificial Intelligence, by Type, Through 2023
Table 38 : Global Market for Image-guided Surgery, by Region/Country, Through 2023
Table 39 : Global Market for Augmented and Virtual Reality, by Type, Through 2023
Table 40 : Global Market for Augmented and Virtual Reality, by Product, Through 2023
Table 41 : Global Market for Wearable Medical Devices, by Application, Through 2023
Table 42 : Global Market for 3D Imaging and Sensing Devices, by Application, Through 2023
Table 43 : Global Market for Deep Brain Stimulation Devices, by Application, Through 2023
Table 44 : Global Market for Deep Brain Stimulation Devices, by Region/Country, Through 2023
Table 45 : Global Market for Neurophotonic Technologies, by Type, Through 2023
Table 46 : Global Market for Microscopy Neurophotonic Technologies, by Type, Through 2023
Table 47 : Global Market for Spectroscopy Neurophotonic Technologies, by Type, Through 2023
Table 48 : Global Market for Neurophotonic Technologies, by Application, Through 2023
Table 49 : Global Market for Neurophotonic Technologies in Research, by Application, Through 2023
Table 50 : Global Market for Neurophotonic Technologies, by Neurological Condition Category, Through 2023
Table 51 : Global Market for Neurophotonic Technologies Used for Age-Related Disorders, by Neurological Condition Type, Through 2023
Table 52 : Global Market for Neurophotonic Technologies Used for Traumatic Disorders, by Neurological Condition Type, Through 2023
Table 53 : Global Market for Neurophotonic Technologies Used for Developmental Disorders, by Neurological Condition Type, Through 2023
Table 54 : Global Market for Neurophotonic Technologies Used for Other Disorders, by Neurological Condition Type, Through 2023
Table 55 : Global Market for Neurophotonic Technologies, by Region/Country, Through 2023
Table 56 : Leading Manufacturers of Optical Technologies for Neurophotonics, 2019
Table 57 : Leading Suppliers of FL Systems, 2019
Table 58 : Leading Suppliers of RS Systems, 2019
Table 59 : Leading Suppliers of NIR Systems, 2019
Table 60 : Leading Suppliers of OP Systems, 2019
Table 61 : Leading Suppliers of MI Systems, 2019
Table 62 : Leading Manufacturers of PM Systems, 2019
Table 63 : Leading Manufacturers of BST Systems, 2019
Table 64 : Leading Suppliers of Optical Technologies for Neurophotonics, by Type and Region/Country, 2019
Table 65 : Other Relevant Industry Players, 2019
Table 66 : U.S. Patents Related to Neurophotonics, 2018
Table 67 : U.S. Patents Related to Neurophotonics, 2017
Table 68 : U.S. Patent Trend for Neurophotonics, Through 2018
Table 69 : U.S. Patents Related to Neurophotonics, by Region/Country, 2017-2018
Table 70 : U.S. Patents Related to Neurophotonics, by Country, 2017-2018
Table 71 : U.S. Patents Related to Neurophotonics, by Assignee, 2017-2018
Table 72 : U.S. Patents Related to Neurophotonics, by Patent Category, 2017-2018
Table 73 : U.S. Patents Related to Neurophotonics, by System Type, 2017-2018
Table 74 : U.S. Patents Related to Neurophotonics, by Application, 2017-2018
A research methodology is a systematic approach for assessing or conducting a market study. Researchers tend to draw on a variety of both qualitative and quantitative study methods, inclusive of investigations, survey, secondary data and market observation.
Such plans can focus on classifying the products offered by leading market players or simply use statistical models to interpret observations or test hypotheses. While some methods aim for a detailed description of the factors behind an observation, others present the context of the current market scenario.
Now let’s take a closer look at the research methods here.
Secondary Research Model:
Extensive data is obtained and cumulated on a substantial basis during the inception phase of the research process. The data accumulated is consistently filtered through validation from the in-house database, paid sources as well reputable industry magazines. A robust research study requires an understanding of the overall value chain. Annual reports and financials of industry players are studied thoroughly to have a comprehensive idea of the market taxonomy.
Post conglomeration of the data obtained through secondary research; a validation process is initiated to verify the numbers or figures. This process is usually performed by having a detailed discussion with the industry experts.
However, we do not restrict our primary interviews only to the industry leaders. Our team covers the entire value chain while verifying the data. A significant number of raw material suppliers, local manufacturers, distributors, and stakeholders are interviewed to make our findings authentic. The current trends which include the drivers, restraints, and opportunities are also derived through the primary research process.
The market estimation is conducted by analyzing the data collected through both secondary and primary research. This process involves market breakdown, bottom-up and top- down approach.
Moreover, while forecasting the market a comprehensive statistical time series model is designed for each market. Macroeconomic indicators are considered to understand the current trends of the market. Each data point is verified by the process of data triangulation method to arrive at the final market estimates.
The penultimate process results in a holistic research report. The study equips key industry players to undertake significant strategic decisions through the findings. The report encompasses detailed market information. Graphical representations of the current market trends are also made available in order to make the study highly comprehensible for the reader.
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